Measurement method and system and related apparatus

By acquiring physiological data from the user at rest and after exercise, and combining exercise load and user information, the system assesses the user's cardiac reserve function and cardiovascular risk, solving the problem of the inability of existing technologies to accurately assess the user's health status, and achieving real-time and accurate health assessment.

WO2026056815A1PCT designated stage Publication Date: 2026-03-19HUAWEI TECH CO LTD

Patent Information

Application Number
PCT/CN2025/119777
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-09-10
Filing Date
2025-09-08
Publication Date
2026-03-19

AI Technical Summary

Technical Problem

Existing electronic devices cannot accurately determine a user's cardiovascular risk and cardiac reserve function; they can only determine whether blood pressure is normal at the moment of measurement and cannot assess a user's health status in real time.

Method used

By acquiring users' physiological data at rest and after exercise, and combining exercise load and user information, the system assesses users' cardiac reserve function and cardiovascular risk, including measuring users' blood pressure and heart rate before and after exercise, and making assessments based on this data.

Benefits of technology

It enables real-time assessment of users' cardiac reserve function and cardiovascular risk, provides accurate health status assessment, reduces measurement errors, and ensures the accuracy of assessment results.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided are a measurement method and system and a related apparatus. The method is applied to a first electronic device and comprises: acquiring user information; acquiring first physiological data of a user in a resting state, the first physiological data comprising a first blood pressure value and a first heart rate; outputting a first prompt, the first prompt being used for prompting the user to start exercising; measuring second physiological data after the user finishes exercising, the second physiological data comprising a second blood pressure value and a second heart rate; acquiring an exercise load of the user; determining, on the basis of the user information, the first physiological data, the second physiological data, and the exercise load, a first evaluation result, the first evaluation result comprising cardiac reserve function evaluation; and outputting the first evaluation result. In this way, not only can the blood pressure status of a user be evaluated, but also the cardiac reserve function of the user can be judged, such that the user knows his / her own health status in time.
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Description

A measurement method, system and related device

[0001] The present application claims priority from the Chinese patent application No. 202411269983.9 filed on September 10, 2024, and entitled "A measurement method, system and related device", the content of which is incorporated herein by reference in its entirety. TECHNICAL FIELD

[0002] The present application relates to the field of electronic technology, and in particular to a measurement method, system and related device. BACKGROUND

[0003] With the continuous development of electronic technology, the functions of electronic devices are becoming more and more diversified, and more and more electronic devices have health monitoring functions, such as blood pressure measurement functions, etc.

[0004] The electronic device can measure the blood pressure of the user, and determine whether the blood pressure of the user is normal based on the blood pressure measurement result.

[0005] However, this can only determine whether the blood pressure of the user is normal at the measurement time, and cannot accurately determine whether the cardiovascular risk and heart reserve function of the user are normal. SUMMARY

[0006] The present application provides a measurement method, system and related device, which realizes measuring the blood pressure before and after the user exercises, and evaluates the heart reserve function and cardiovascular risk of the user based on the physiological parameters such as the blood pressure and heart rate before and after the user exercises, so as to facilitate the user to know the health status of himself in real time.

[0007] In a first aspect, the present application provides a measurement method applied to a first electronic device, the method comprising: obtaining user information; obtaining first physiological data of the user in a resting state, the first physiological data comprising a first blood pressure value and a first heart rate; outputting a first prompt, the first prompt being used to prompt the user to start exercising; measuring second physiological data of the user after the user finishes exercising, the second physiological data comprising a second blood pressure value and a second heart rate; obtaining exercise load of the user; determining a first evaluation result based on the user information, the first physiological data, the second physiological data and the exercise load, the first evaluation result comprising a heart reserve function evaluation; and outputting the first evaluation result.

[0008] By adopting the measurement method provided in the application, the first electronic device can obtain the first physiological data of the user before exercise and the second physiological data of the user after exercise, and can also obtain the exercise load and the user information, and determine the first evaluation result based on the first physiological data, the second physiological data, the exercise load and the user information. The first evaluation result can include the heart reserve function evaluation of the user, which is used to indicate the heart reserve ability of the user. In this way, not only the blood pressure condition of the user can be evaluated, but also the heart reserve function of the user can be judged, so that the user can know the health condition of the user in time.

[0009] In a possible implementation, the first physiological data of the user in the resting state is obtained, and specifically, the following steps are included: at the first time, the first operation of the user is received; in response to the first operation, the first activity amount of the user in the first time period is obtained, the length of the first time period is the first length, and the end time of the first time period is the first time; if the first activity amount is less than the preset resting activity amount threshold, the first physiological data of the user is measured.

[0010] It should be noted that the first physiological data needs to be measured when the user is in the resting state. If the first physiological data is physiological data of the user in a non-resting state, the subsequent first evaluation result will be affected, resulting in inaccurate evaluation result.

[0011] By adopting the measurement method provided in the application, it can be ensured that the first physiological data measured by the user at the first time is the first physiological data of the user in the resting state, the measurement error is reduced, and the final first evaluation result is avoided to be affected.

[0012] In a possible implementation, the first physiological data of the user in the resting state is obtained, and specifically, the following steps are included: at the second time, the third physiological data of the user in the resting state is measured; at the first time, the first operation of the user is received; in response to the first operation, if the length between the first time and the second time is less than the second length, the third physiological data is determined as the first physiological data.

[0013] By adopting the measurement method provided in the application, the first electronic device can reuse the third physiological data of the user in the resting state measured in the past as the first physiological data, and the measurement time of the third physiological data is close to the measurement time of the first physiological data. In this way, the measurement error can be reduced, and the final first evaluation result is avoided to be affected.

[0014] In a possible implementation, the method further includes: in response to the first operation, obtaining a first activity amount of the user in a first time period, a time length of the first time period being a first time length, and an ending moment of the first time period being a first moment; and determining the third physiological data as the first physiological data if a time length between the first moment and the second moment is less than a second time length, specifically including: if the first activity amount is greater than or equal to a preset resting activity amount threshold, and the time length between the first moment and the second moment is less than the second time length, determining the third physiological data as the first physiological data.

[0015] By using the measurement method provided in this application, if the user is in a non-resting state at the first moment, and the first electronic device has measured the third physiological data of the user in a resting state at a time close to the first moment, the first electronic device can take the third physiological data as the first physiological data. In this way, the measurement error can be reduced, and the final first evaluation result can be avoided from being affected.

[0016] In a possible implementation, the user information includes, but is not limited to, any one or more of the following: age, gender, height, weight, body mass index (BMI), medical history, and the like.

[0017] In this way, the first electronic device can determine the first evaluation result in combination with the user information, taking into account different situations of different users, so as to obtain an evaluation result that is closest to the user's own situation.

[0018] In a possible implementation, the first physiological data further includes a first electrocardiogram signal.

[0019] In a possible implementation, before measuring the second physiological data after the user's exercise ends, the method further includes: receiving and responding to a second operation of the user to determine that the user ends the exercise; and measuring the second physiological data after the user's exercise ends, specifically including: after the second operation, measuring one or more blood pressure values and one or more heart rates, the one or more blood pressure values including a second blood pressure value, and the one or more heart rates including a second heart rate.

[0020] In this way, the first electronic device can determine that the user ends the exercise based on the manual operation of the user, and measure the second physiological data after the exercise, the second physiological data including the blood pressure at one or more moments after the exercise and the heart rate at one or more moments after the exercise.

[0021] In a possible implementation, before measuring the second physiological data after the user's motion ends, the method further includes: monitoring a motion parameter of the user; determining that the user ends the motion based on the motion parameter; and measuring the second physiological data after the user's motion ends, specifically including: measuring one or more blood pressure values and one or more heart rates after it is determined that the user ends the motion based on the motion parameter, the one or more blood pressure values including a second blood pressure value, and the one or more heart rates including a second heart rate.

[0022] In this way, the first electronic device can determine whether the user ends the motion based on the monitored motion parameter of the user in real time, and measure the second physiological data after the user ends the motion, the second physiological data including the blood pressure at one or more time points after the motion ends and the heart rate at one or more time points after the motion ends.

[0023] In a possible implementation, determining that the user ends the motion based on the motion parameter specifically includes: determining that the user is static based on the motion parameter; outputting a second prompt, the second prompt being used to inquire whether the user ends the motion; and receiving and responding to a second operation of the user to determine that the user ends the motion.

[0024] In this way, when it is detected that the user stops the motion, the first electronic device can output a prompt to inquire whether the user ends the motion, and determine whether the user ends the motion based on the operation of the user.

[0025] In a possible implementation, measuring the one or more blood pressure values specifically includes: measuring the second blood pressure value at a third time point, the third time point being the time point at which it is determined that the user ends the motion.

[0026] In this way, the first electronic device can measure the first blood pressure after the motion at the time point at which the motion ends.

[0027] In a possible implementation, measuring the one or more blood pressure values specifically includes: determining the third time point based on the motion load; and measuring the second blood pressure value at the third time point, the third time point being later than the time point at which the user ends the motion.

[0028] In this way, the first electronic device can also determine the time point at which the first blood pressure after the motion is measured based on the motion load of the user, avoid measuring the blood pressure immediately after the motion ends in the case of a high motion load, and thus avoid measurement errors caused by unstable center of gravity or unstable arms of the user, improve the accuracy of the blood pressure measurement after the motion, and thus improve the accuracy of the evaluation result.

[0029] In a possible implementation, the method further includes: measuring a third blood pressure value of the user at a fourth time point, a third time length being between the fourth time point and the third time point.

[0030] In this way, the first electronic device can measure another blood pressure after the exercise ends and after the third time length elapses; or, after measuring the first blood pressure after the exercise and after the third time length elapses, measure another blood pressure after the exercise.

[0031] In a possible implementation, the third blood pressure value of the user at the fourth time is measured, specifically including: at the fourth time, outputting a third prompt, the third prompt being used to prompt the user to measure the blood pressure; and in response to a third operation of the user, measuring the third blood pressure value.

[0032] In this way, when the measurement time of the second (or third, etc.) blood pressure after the exercise is detected, the first electronic device can output a prompt to prompt the user to measure the blood pressure.

[0033] In a possible implementation, the method further includes: at a fifth time, measuring a fourth blood pressure value of the user, a time length between the fifth time and the third time being a fourth time length.

[0034] In this way, the first electronic device can measure another blood pressure after the exercise ends and after the fourth time length elapses; or, after measuring the first blood pressure after the exercise and after the fourth time length elapses, measure another blood pressure after the exercise.

[0035] In a possible implementation, the second physiological data further includes a second electrocardiosignal.

[0036] In this way, the second electrocardiosignal can also be measured after the exercise ends.

[0037] In a possible implementation, before measuring the second electrocardiosignal, the method further includes: determining a measurement time of the second electrocardiosignal based on the exercise load.

[0038] In this way, the first electronic device can determine the measurement time of the second electrocardiosignal after the exercise based on the exercise load of the user, to avoid the interference of the electromyosignal on the electrocardiosignal when the exercise load is too high, and improve the accuracy of the electrocardiosignal measurement.

[0039] In a possible implementation, the exercise load of the user is acquired, specifically including: after the first prompt is output, monitoring the heart rate of the user during the exercise; and determining the exercise load based on the heart rate of the user during the exercise.

[0040] In this way, the first electronic device can determine the exercise load of the user based on the heart rate of the user during the exercise.

[0041] In another possible implementation, the first electronic device can also determine the exercise load of the user based on other exercise parameters, such as the speed, slope of running, power, time length of cycling, and weight, etc.

[0042] In this way, the first electronic device can calculate the exercise load of the user based on other motion parameters.

[0043] In a possible implementation, the first evaluation result further includes any one or more of the following: an abnormality analysis of the first physiological data, an abnormality analysis of the second physiological data, an abnormality analysis of the cardiac reserve function, the abnormality analysis of the first physiological data being used to indicate whether the physical condition of the user before exercise is abnormal, the abnormality analysis of the second physiological data being used to indicate whether the physical condition of the user after exercise is abnormal, and the abnormality analysis of the cardiac reserve function being used to indicate whether the cardiac reserve function of the user is abnormal.

[0044] In a possible implementation, the outputting of the first prompt specifically includes: outputting the first prompt based on the first physiological data, the first prompt including one or more exercise options, the one or more exercise options being used to prompt the exercise types suitable for the user.

[0045] In this way, the exercise suggestion including the one or more exercise options can be output before starting exercise, so as to facilitate the user to select the suitable exercise type under the current situation.

[0046] In another possible implementation, if the first blood pressure value belongs to a first interval, the exercise types corresponding to the one or more exercise options include high-intensity exercise, medium-intensity exercise, and low-intensity exercise; if the first blood pressure value belongs to a second interval, the exercise types corresponding to the one or more exercise options include medium-intensity exercise and low-intensity exercise; and if the first blood pressure value belongs to a third interval, the exercise types corresponding to the one or more exercise options include low-intensity exercise; wherein the value of the first interval is less than the value of the second interval, and the value of the second interval is less than the value of the third interval.

[0047] In this way, the first electronic device can determine to prompt the user to select exercise types with different exercise intensities based on the blood pressure value in the resting state, so as to ensure the safety of the user during exercise.

[0048] In a possible implementation, the one or more exercise options include a first exercise option; and the method further includes: receiving and responding to a fourth operation of the user on the first exercise option; and outputting a fourth prompt, the fourth prompt being used to prompt the user that the started exercise type is a first exercise type corresponding to the first exercise option.

[0049] The first electronic device can determine the exercise type started by the user in the evaluation process based on the selection operation of the user.

[0050] In a possible implementation, the method further includes: after outputting the fourth prompt, detecting that the type of the motion performed by the user is a second motion type, the second motion type being different from the first motion type; and outputting a fifth prompt, the fifth prompt being used to prompt that the actual motion type does not match the selected motion type.

[0051] In this way, when the actual motion type does not match the motion type selected by the user, the first electronic device can prompt that the actual motion type does not match the selected motion type.

[0052] In a possible implementation, the method further includes: when a value of any one of the physiological parameters in the first physiological data and the second physiological data belongs to an abnormal interval of the physiological parameter, outputting an abnormal prompt, the abnormal prompt being used to prompt that the physiological parameter is abnormal.

[0053] In another possible implementation, when any one of the following conditions occurs: a wearing abnormality, a wearing tightness abnormality, an electrocardiogram electrode pollution, an electrocardiogram circuit failure, an air bag connection abnormality, a device temperature abnormality, a device power abnormality, and the like, the first electronic device outputs an abnormal condition prompt, the abnormal condition prompt being used to prompt that an abnormal condition occurs.

[0054] In this way, when an abnormal physiological parameter, a device abnormality, a wearing abnormality, or the like occurs, the first electronic device can also timely prompt the user to handle.

[0055] In a second aspect, the present application provides an electronic device, which is the first electronic device. The first electronic device includes one or more processors and one or more memories; the one or more memories are coupled to the one or more processors, and the one or more memories are used to store computer instructions; when the one or more processors execute the computer instructions, the measurement method in any one of the possible implementation manners of any one of the aspects is implemented.

[0056] In a third aspect, the present application provides a chip system, which includes a processing circuit and an interface circuit; the interface circuit is used to receive code instructions and transmit the code instructions to the processing circuit; the processing circuit is used to run the code instructions to execute the measurement method in any one of the possible implementation manners of any one of the aspects.

[0057] In a fourth aspect, the present application provides a readable storage medium, which stores computer instructions; when the computer instructions are executed by a processor, the measurement method in any one of the possible implementation manners of any one of the aspects is implemented.

[0058] In a fifth aspect, the present application provides a computer program product, which includes computer instructions; when the computer program is executed by a processor, the measurement method in any one of the possible implementation manners of any one of the aspects is implemented.

[0059] The beneficial effects of the second aspect to the fifth aspect can refer to the beneficial effects of the first aspect. BRIEF DESCRIPTION OF DRAWINGS

[0060] FIG. 1A is a schematic diagram of a device form of an electronic device 100 according to an embodiment of the present application;

[0061] FIG. 1B is a schematic diagram of a system architecture of a measurement system according to an embodiment of the present application;

[0062] FIG. 1C is a schematic diagram of a hardware structure of an electronic device 100 according to an embodiment of the present application;

[0063] FIG. 2 is a schematic diagram of a flow of a measurement method according to an embodiment of the present application;

[0064] FIG. 3 is a schematic diagram of a flow of measuring one or more blood pressure values after movement according to an embodiment of the present application;

[0065] FIG. 4A is a schematic diagram of a flow of measuring an electrocardiogram signal after movement of a user according to an embodiment of the present application;

[0066] FIG. 4B is a waveform of an electrocardiogram signal in a short circuit condition according to an embodiment of the present application;

[0067] FIG. 4C is a waveform of an electrocardiogram signal in a normal condition according to an embodiment of the present application;

[0068] FIGS. 5A-5J are a set of schematic diagrams of interfaces for measuring resting blood pressure before movement of a user according to an embodiment of the present application;

[0069] FIGS. 6A-6F are a set of schematic diagrams of interfaces for determining a movement type of a user based on an operation of the user by an electronic device 100 according to an embodiment of the present application;

[0070] FIGS. 7A-7B are a set of schematic diagrams of interfaces for evaluating a timeout of a state according to an embodiment of the present application;

[0071] FIGS. 7C-7D are a set of schematic diagrams of interfaces for starting evaluation in movement according to an embodiment of the present application;

[0072] FIGS. 8A-8F are a set of schematic diagrams of interfaces for measuring blood pressure at an end time of movement according to an embodiment of the present application;

[0073] FIGS. 9A-9F are a set of schematic diagrams of interfaces for measuring an electrocardiogram signal after movement according to an embodiment of the present application;

[0074] FIGS. 10A-10K are a set of schematic diagrams of interfaces for measuring multiple blood pressures after movement and outputting evaluation results according to an embodiment of the present application;

[0075] FIG. 11A-FIG. 11L are a set of interface schematic diagrams of viewing measurement data in a motion and blood pressure evaluation process according to an embodiment of the present application;

[0076] FIG. 11M-FIG. 11N are a set of interface schematic diagrams of viewing measurement results of a measurement task that has been performed after exiting the evaluation according to an embodiment of the present application;

[0077] FIG. 11O-FIG. 11P are a set of interface schematic diagrams of viewing an evaluation tutorial during the evaluation process according to an embodiment of the present application;

[0078] FIG. 12A-FIG. 12I are a set of interface schematic diagrams of viewing historical evaluation records by the electronic device 100 according to an embodiment of the present application;

[0079] FIG. 13A-FIG. 13F are a set of interface schematic diagrams of outputting result interpretation of an evaluation result by the electronic device 100 according to an embodiment of the present application;

[0080] FIG. 14A-FIG. 14H are a set of interface schematic diagrams of outputting an abnormal condition prompt when an abnormal condition is detected by the electronic device 100 according to an embodiment of the present application;

[0081] FIG. 15A-FIG. 15D are a set of interface schematic diagrams of outputting an abnormal condition prompt when a device abnormality is detected by the electronic device 100 according to an embodiment of the present application;

[0082] FIG. 15E-FIG. 15H are a set of interface schematic diagrams of outputting an abnormal prompt when a blood pressure abnormality is detected by the electronic device 100 according to an embodiment of the present application;

[0083] FIG. 16A-FIG. 16B are a set of interface schematic diagrams of outputting an evaluation result when the evaluation result cannot be determined by the electronic device 100 according to an embodiment of the present application;

[0084] FIG. 17A-FIG. 17F are a set of interface schematic diagrams of prompting a user to select different motion types based on blood pressure in a resting state by the electronic device 100 according to an embodiment of the present application;

[0085] FIG. 18A-FIG. 18J are a set of interface schematic diagrams of determining user information based on a user's input by the electronic device 100 according to an embodiment of the present application;

[0086] FIG. 19A-FIG. 19L are a set of interface schematic diagrams of outputting electrocardiogram detection results and electrocardiogram result interpretation by the electronic device 100 according to an embodiment of the present application;

[0087] FIG. 20A-FIG. 20L are a set of interface schematic diagrams of starting a motion and blood pressure study by the electronic device 200 according to an embodiment of the present application;

[0088] FIG. 21A-FIG. 21E are a set of interface schematic diagrams of the electronic device 200 displayed in the evaluation process according to an embodiment of the present application;

[0089] FIG. 22A-FIG. 22J are a set of interface schematic diagrams of the electronic device 200 outputting evaluation results according to an embodiment of the present application;

[0090] FIG. 23A-FIG. 23C are a set of interface schematic diagrams of the electronic device 200 viewing historical evaluation records according to an embodiment of the present application;

[0091] FIG. 23D-FIG. 23H are a set of interface schematic diagrams of the electronic device 200 viewing or setting the partition interval of the exercise heart rate grade according to an embodiment of the present application;

[0092] FIG. 24 is a flow schematic diagram of the electronic device 100 judging whether the blood pressure of the user is large according to an embodiment of the present application;

[0093] FIG. 25A-FIG. 25G are a set of interface schematic diagrams of the electronic device 100 outputting blood pressure fluctuation prompts in the case of large blood pressure fluctuation of the user according to an embodiment of the present application;

[0094] FIG. 26A-FIG. 26D are a set of interface schematic diagrams of the electronic device 100 displaying fluctuation reason explanations according to an embodiment of the present application;

[0095] FIG. 27 is a flow schematic diagram of the electronic device 100 measuring an electrocardio signal according to an embodiment of the present application;

[0096] FIG. 28 is a functional module schematic diagram of the electronic device 100 according to an embodiment of the present application;

[0097] FIG. 29 is a physical entity structure schematic diagram of the electronic device 100 according to an embodiment of the present application;

[0098] FIG. 30 is a flow schematic diagram of a measurement method according to an embodiment of the present application. DETAILED DESCRIPTION

[0099] The technical solutions in the embodiments of the present application will be described clearly and thoroughly below with reference to the drawings. In the description of the embodiments of the present application, unless otherwise specified, “ / ” represents the meaning of or, for example, A / B can represent A or B; the “and / or” in the text only represents a description of the association relationship of the associated objects, which means that there can be three relationships, for example, A and / or B, which means that there are three cases of A alone, A and B together, and B alone. In addition, in the description of the embodiments of the present application, “multiple” means two or more than two.

[0100] Hereinafter, the terms "first", "second" are used only for the purpose of description, and cannot be understood as implying or suggesting relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features, and in the description of the embodiments of the present application, the meaning of "a plurality of" is two or more, unless otherwise specified.

[0101] The term "user interface (UI)" in the following embodiments of the present application is a medium interface for interaction and information exchange between an application program or an operating system and a user, which realizes the conversion between the internal form of information and the form acceptable to the user. The user interface is source code written in a specific computer language such as Java, extensible markup language (XML), etc., and the interface source code is parsed, rendered, and finally presented as content recognizable by the user on the electronic device. The commonly used form of user interface is graphic user interface (GUI), which refers to a user interface related to computer operation displayed in a graphical manner. It can be a visual interface element such as text, icon, button, menu, tab, text box, dialog box, status bar, navigation bar, Widget, etc. displayed in the display screen of the electronic device.

[0102] The following introduces the terms related to the embodiments of the present application.

[0103] Exercise and cardiovascular risk: During exercise, the cardiovascular system will greatly enhance its function, and a series of adaptive changes in the pumping function of the heart and the blood flow of skeletal muscles will occur to ensure the supply of oxygen to the body during intense exercise. If there is a cardiovascular disease, when the amount of exercise increases, the heart may not be able to supply enough oxygen, blood pressure may be abnormal, exercise capacity may decrease, arrhythmia may occur, etc. Therefore, by detecting physiological indicators such as blood pressure, electrocardiogram, heart rate before and after exercise, it can be determined whether there is a blood pressure fluctuation after exercise, and whether there is an exercise and cardiovascular risk.

[0104] Post-exercise blood pressure response: Post-exercise blood pressure response (also referred to as blood pressure response) is used to indicate the change in blood pressure of a user after exercise relative to the resting state before exercise. When performing aerobic exercise, in order to meet the needs of the body, the heart will speed up and strengthen contraction, the blood circulation speed will increase, the heart rate will increase, the cardiac output will increase, the skeletal muscle blood flow will increase, the peripheral resistance will slightly decrease, and the blood pressure will change. Post-exercise blood pressure response can include any one or more of the following: normal blood pressure response, high blood pressure response, low blood pressure response, and slow blood pressure recovery, etc.

[0105] Normal blood pressure response: Generally, after exercise, the change of arterial blood pressure is mainly manifested as an increase in systolic blood pressure, and diastolic blood pressure does not increase significantly, or even decreases slightly. After exercise, blood pressure gradually returns to the level before exercise, or slightly lower than the level before exercise.

[0106] Hypertensive response: During high-intensity exercise, if the systolic blood pressure of a male is greater than or equal to 210 mmHg after exercise, or the systolic blood pressure of a female is greater than or equal to 190 mmHg after exercise, or during low-intensity exercise, if the systolic blood pressure is greater than or equal to 170 mmHg after exercise, it is considered that the blood pressure response is too large, which is called hypertensive response. Hypertensive response is often associated with hypertension, left ventricular hypertrophy, impaired vascular endothelial function, etc. During exercise, diastolic blood pressure usually does not change significantly or decreases slightly. If the peak diastolic blood pressure is greater than 90 mmHg, or the diastolic blood pressure increases compared with that at rest and the increase is greater than 10 mmHg, it can be considered as an abnormal response, and exertional ischemia may occur. If the diastolic blood pressure is greater than 115 mmHg, it indicates that the blood pressure response is too large, and exercise should be stopped immediately. If the blood pressure is measured before exercise without sufficient rest, or the physical activity is high, it may affect the accuracy of the assessment.

[0107] Hypotensive response: Hypotensive response refers to the phenomenon that the systolic blood pressure decreases compared with that before exercise, or decreases after an initial increase and the decrease is greater than 10 mmHg during exercise. Hypotensive response is often accompanied by symptoms such as dizziness, chest pain, and severe arrhythmia, and is associated with exertional myocardial ischemia, left ventricular dysfunction, and the risk of subsequent cardiac events. If the blood pressure is measured before exercise without sufficient rest, or the physical activity is high, it may affect the accuracy of the assessment.

[0108] Slow blood pressure recovery: During aerobic exercise, the systolic blood pressure should generally return to the resting level before exercise or be lower than the level before exercise at 6 minutes after exercise. Slow blood pressure recovery is associated with cardiovascular risks such as hypertension, myocardial ischemia, and coronary artery disease. If the blood pressure is measured before exercise without sufficient rest, or the exercise is still being performed after the exercise is completed, it may affect the accuracy of the assessment.

[0109] The following introduces a device form diagram of an electronic device 100 provided by an embodiment of the present application.

[0110] FIG. 1A shows a device form diagram of an electronic device 100 provided by an embodiment of the present application.

[0111] As shown in FIG. 1A, the electronic device 100 can be a bracelet, and the electronic device 100 can include a core 11 and a band 12. In some embodiments, the band 12 of the electronic device 100 can be provided with an air bag 13, and the electronic device 100 can further include a micro air pump (not shown in the figure), in which case the electronic device 100 can inflate the air bag 13 by the micro air pump to measure the blood pressure of the user. In other embodiments, the core 11 of the electronic device 100 can be provided with a contact point (not shown in FIG. 1A), and the contact point can be connected with an electrocardiogram (ECG) module and / or a fingertip photoplethysmography (PPG) module, in which case the user can touch the contact point with the hand not wearing the electronic device 100 when wearing the electronic device 100, and the blood pressure of the user can also be measured by the ECG module and the fingertip PPG module.

[0112] It can be understood that the above-mentioned embodiment shown in FIG. 1A is only an example, and in the embodiments of the present application, the electronic device 100 can be the bracelet shown in FIG. 1A, or can be a watch, smart glasses, a smart brooch, a smart ring, and the like. In other embodiments, the electronic device 100 can also be a mobile phone or other electronic devices in other forms including a contact point, an ECG module, and a fingertip (or wrist) PPG module, which are not limited in the present application.

[0113] FIG. 1B shows a system architecture schematic diagram of a measurement system 10 provided by the embodiments of the present application.

[0114] As shown in FIG. 1B, the measurement system 10 can include an electronic device 100 and an electronic device 200.

[0115] The electronic device 100 can measure physiological data of a user, such as blood pressure, heart rate, electrocardiogram, and the like. The electronic device 100 can determine and output an evaluation result based on the measured physiological data, and the evaluation result can include a heart reserve function evaluation of the user, which can be used to indicate the heart reserve function of the user. In some embodiments, the evaluation result can also include a cardiovascular risk evaluation and / or a blood pressure response evaluation of the user, the cardiovascular risk evaluation is used to indicate the cardiovascular risk level of the user, and the blood pressure response evaluation is used to indicate the blood pressure response of the user after exercise.

[0116] In some embodiments, the electronic device 100 can send the evaluation result to the electronic device 200, and the electronic device 200 can display the evaluation result. In other embodiments, the electronic device 100 can send the measured physiological data to the electronic device 200 in real time, and the electronic device 200 can determine and output the evaluation result based on the received physiological data.

[0117] It should be noted that in the measurement system 10, the device form of the electronic device 100 can refer to the related description in the embodiment shown in FIG. 1A, which will not be repeated here. In addition, the electronic device 200 can be an electronic device with a display screen, such as a smart phone, a tablet computer, a computer, a smart television, etc. The specific device form of the electronic device 200 is not limited in the present application.

[0118] It can be understood that the embodiment shown in FIG. 1B is only an example. In the embodiments of the present application, the measurement system 10 can include more or different electronic devices than the above-mentioned embodiments, which are not limited herein.

[0119] The hardware structure of the electronic device 100 provided in the embodiments of the present application will be introduced below.

[0120] FIG. 1C shows a schematic diagram of the hardware structure of the electronic device 100 provided in the embodiments of the present application.

[0121] The electronic device 100 can be a wearable device (also referred to as a wearable device), such as a watch, a bracelet, smart glasses, a smart ring, a smart brooch, etc. It can also be a mobile phone, a tablet computer, a desktop computer, a laptop computer, a handheld computer, a notebook computer, an ultra-mobile personal computer (UMPC), a cellular phone, a personal digital assistant (PDA), an augmented reality (AR) device, a virtual reality (VR) device, an artificial intelligence (AI) device, a wearable device, a vehicle-mounted device, a smart home device, and / or a smart city device. The specific type of the electronic device is not specially limited in the embodiments of the present application.

[0122] The electronic device 100 can include a processor 110, an internal memory 121, a charge management module 140, a power management module 141, a battery 142, a wireless communication module 160, a sensor module 180, a display screen 194, etc. Optionally, the electronic device 100 can further include any one or more of the following: an external memory interface 120, a universal serial bus (USB) interface 130, an audio module 170, a key 190, a motor 191, an indicator 192, a photoplethysmography (PPG) module 195, an electrocardiogram (ECG) module 193, an airbag 196, and a micro air pump 197, etc.

[0123] The sensor module 180 can include a pressure sensor 180A and a touch sensor 180K, and optionally, the sensor module 180 can further include any one or more of the following sensors: a gyro sensor, a barometric pressure sensor, a magnetic sensor, an acceleration sensor, a distance sensor, a proximity light sensor, a fingerprint sensor, a temperature sensor, an ambient light sensor, etc.

[0124] It can be understood that the structure shown in the embodiments of the present application does not constitute a specific limitation on the electronic device 100. In other embodiments of the present application, the electronic device 100 can include more or fewer components than shown, or combine certain components, or split certain components, or different component arrangements. The components shown can be implemented in hardware, software, or a combination of software and hardware.

[0125] The processor 110 can include one or more processing units, for example: the processor 110 can include an application processor (AP), a modem processor, a graphics processing unit (GPU), an image signal processor (ISP), a controller, a video codec, a digital signal processor (DSP), a baseband processor, and / or a neural-network processing unit (NPU), etc. Different processing units can be independent devices, or can be integrated in one or more processors.

[0126] The controller can generate operation control signals according to instruction operation codes and timing signals, and complete the control of fetching and executing instructions.

[0127] The memory in the processor 110 can also be configured to store instructions and data. In some embodiments, the memory in the processor 110 is a cache memory. The memory can save instructions or data that the processor 110 has just used or repeatedly uses. If the processor 110 needs to use the instructions or data again, it can directly call from the memory. This avoids repeated access and reduces the waiting time of the processor 110, thereby improving the efficiency of the system.

[0128] In some embodiments, the processor 110 can include one or more interfaces. The interfaces can include an inter-integrated circuit (I2C) interface, an inter-integrated circuit sound (I2S) interface, a pulse code modulation (PCM) interface, a universal asynchronous receiver / transmitter (UART) interface, a mobile industry processor interface (MIPI), a general-purpose input / output (GPIO) interface, a subscriber identity module (SIM) interface, and / or a universal serial bus (USB) interface, etc.

[0129] The USB interface 130 is an interface conforming to the USB standard specification, and can be a Mini USB interface, a Micro USB interface, a USB Type C interface, etc. The USB interface 130 can be used to connect a charger to charge the electronic device 100, and can also be used to transmit data between the electronic device 100 and a peripheral device. It can also be used to connect earphones to play audio through the earphones. The interface can also be used to connect other electronic devices, such as AR devices, etc.

[0130] The charging management module 140 is configured to receive charging input from a charger. The charger can be a wireless charger or a wired charger. In some wired charging embodiments, the charging management module 140 can receive charging input from a wired charger through the USB interface 130. In some wireless charging embodiments, the charging management module 140 can receive wireless charging input through the wireless charging coil of the electronic device 100. The charging management module 140 can charge the battery 142 while also providing power to the electronic device through the power management module 141.

[0131] The power management module 141 is configured to connect the battery 142 and the charging management module 140 to the processor 110. The power management module 141 receives input from the battery 142 and / or the charging management module 140 to power the processor 110, the internal memory 121, the display 194, the wireless communication module 160, and the like. The power management module 141 can also be configured to monitor parameters such as battery capacity, battery cycle count, battery health (leakage, impedance), and the like. In some embodiments, the power management module 141 can also be integrated into the processor 110. In some other embodiments, the power management module 141 and the charging management module 140 can be integrated into the same device.

[0132] The wireless communication module 160 can provide wireless communication solutions for applications on the electronic device 100, including wireless local area networks (WLAN) (e.g., wireless fidelity (Wi-Fi) networks), Bluetooth (BT), global navigation satellite system (GNSS), frequency modulation (FM), near field communication (NFC), infrared (IR), NearLink, intrabody communication (IBC), and the like. For example, when two electronic devices communicate using an IBC scheme, each of the two electronic devices has at least one electrode in contact with the skin, and the two electronic devices exchange information through the electrodes in contact with the skin. The wireless communication module 160 can be one or more devices that integrate at least one communication processing module.

[0133] In some embodiments, the electronic device 100 can include an antenna, and the wireless communication module 160 can be coupled with the antenna, so that the electronic device 100 can communicate with a network and other devices through wireless communication technology. The wireless communication technology can include global system for mobile communications (GSM), general packet radio service (GPRS), code division multiple access (CDMA), wideband code division multiple access (WCDMA), time-division code division multiple access (TD-SCDMA), long term evolution (LTE), BT, GNSS, WLAN, NFC, FM, and / or IR technology, etc. The GNSS can include global positioning system (GPS), global navigation satellite system (GLONASS), beidou navigation satellite system (BDS), quasi-zenith satellite system (QZSS), and / or satellite based augmentation systems (SBAS).

[0134] The electronic device 100 implements a display function through a GPU, a display screen 194, and an application processor, etc. The GPU is a microprocessor for image processing, which is connected to the display screen 194 and the application processor. The GPU is used to perform mathematical and geometric calculations for graphics rendering. The processor 110 can include one or more GPUs, which execute program instructions to generate or change display information.

[0135] The display screen 194 is configured to display images, videos, and the like. The display screen 194 includes a display panel. The display panel can be manufactured by using a liquid crystal display (LCD), an organic light-emitting diode (OLED), an active-matrix organic light-emitting diode (AMOLED), a flex light-emitting diode (FLED), a Miniled, a MicroLed, a Micro-oLed, a quantum dot light emitting diodes (QLED), or the like. In some embodiments, the electronic device 100 can include one or N display screens 194, where N is a positive integer greater than 1.

[0136] The internal memory 121 can include one or more random access memories (RAMs) and one or more non-volatile memories (NVMs). The random access memory can be directly read and written by the processor 110, and can be used to store executable programs (e.g., machine instructions) of an operating system or other programs that are currently running, and can also be used to store data of users and application programs, and the like. The non-volatile memory can also store executable programs and store data of users and application programs, and can be loaded into the random access memory in advance for direct reading and writing by the processor 110.

[0137] The external memory interface 120 can be configured to connect an external non-volatile memory, and to expand the storage capacity of the electronic device 100. The external non-volatile memory communicates with the processor 110 via the external memory interface 120, and implements a data storage function. For example, files such as music, videos, and the like can be saved in the external non-volatile memory.

[0138] The audio module 170 can include any one or more of a speaker 170A, a receiver 170B, a microphone 170C, and the like. The electronic device 100 can implement audio functions through the audio module 170 and the application processor, and the like. For example, music playback, voice recording, and the like.

[0139] The audio module 170 is configured to convert digital audio information into an analog audio signal output, and to convert an analog audio input into a digital audio signal. The audio module 170 can also be configured to encode and decode audio signals. In some embodiments, the audio module 170 can be disposed in the processor 110, or some of the functional modules of the audio module 170 can be disposed in the processor 110.

[0140] The speaker 170A, also referred to as a "loudspeaker", is configured to convert an audio electrical signal into a sound signal. The electronic device 100 can listen to music or listen to a hands-free call through the speaker 170A.

[0141] The receiver 170B, also referred to as a "earpiece", is configured to convert an audio electrical signal into a sound signal. When the electronic device 100 receives a call or a voice message, the user can listen to the voice by holding the receiver 170B close to the ear.

[0142] The microphone 170C, also referred to as a "microphone", "microphone", is configured to convert a sound signal into an electrical signal. When making a call or sending a voice message, the user can make a sound by holding the microphone 170C close to the mouth, and input the sound signal into the microphone 170C. The electronic device 100 can be provided with at least one microphone 170C. In other embodiments, the electronic device 100 can be provided with two microphones 170C, in addition to collecting sound signals, it can also realize the function of noise reduction. In other embodiments, the electronic device 100 can also be provided with three, four or more microphones 170C, which can realize the functions of collecting sound signals, noise reduction, identifying sound sources, realizing directional recording, etc.

[0143] The pressure sensor 180A is configured to sense a pressure signal and convert the pressure signal into an electrical signal. In some embodiments, the pressure sensor 180A can be disposed on the display 194. The pressure sensor 180A can be of various types, such as a resistive pressure sensor, an inductive pressure sensor, a capacitive pressure sensor, etc. The capacitive pressure sensor can include at least two parallel plates of conductive material. When a force is applied to the pressure sensor 180A, the capacitance between the electrodes changes. The electronic device 100 determines the intensity of the pressure based on the change in capacitance. When a touch operation is applied to the display 194, the electronic device 100 detects the intensity of the touch operation based on the pressure sensor 180A. The electronic device 100 can also calculate the position of the touch based on the detection signal of the pressure sensor 180A. In some embodiments, touch operations applied to the same touch position but with different touch operation intensities can correspond to different operation instructions. For example, when a touch operation with an intensity less than a first pressure threshold is applied to a short message application icon, an instruction to view short messages is executed. When a touch operation with an intensity greater than or equal to the first pressure threshold is applied to the short message application icon, an instruction to create a new short message is executed. In some embodiments, the pressure sensor 180A can also measure the blood pressure of the user.

[0144] The touch sensor 180K, also referred to as a "touch device". The touch sensor 180K can be disposed on the display 194, and the touch sensor 180K and the display 194 together form a touch screen, also referred to as a "touch panel". The touch sensor 180K is configured to detect a touch operation applied thereto or in the vicinity thereof. The touch sensor can transmit the detected touch operation to the application processor to determine the type of touch event. Visual output related to the touch operation can be provided through the display 194. In other embodiments, the touch sensor 180K can also be disposed on the surface of the electronic device 100, which is different from the position where the display 194 is located.

[0145] In some embodiments, the sensor module 180 of the electronic device 100 can further include any one or more of the following sensors: a temperature sensor, an acceleration sensor, a gyroscope sensor, a magnetic sensor, etc. Among them:

[0146] The temperature sensor is configured to detect temperature. In some embodiments, the electronic device 100 can measure the body temperature of the user through the temperature sensor. In other embodiments, the electronic device 100 can also measure the temperature of the environment in which the user is located through the temperature sensor.

[0147] The gyroscope sensor can be configured to determine the motion posture of the electronic device 100. In some embodiments, the angular velocity of the electronic device 100 around three axes (i.e., x, y, and z axes) can be determined through the gyroscope sensor.

[0148] The acceleration sensor can detect the magnitude of acceleration of the electronic device 100 in various directions (typically, three axes). The magnitude and direction of gravity can be detected when the electronic device 100 is stationary.

[0149] The magnetic sensor can be used to detect the ambient magnetic field. In some embodiments, the magnetic sensor can include a Hall sensor.

[0150] The keys 190 include a power key, a volume key, and the like. The keys 190 can be mechanical keys. They can also be touch keys. The electronic device 100 can receive key inputs and generate key signal inputs related to user settings and function control of the electronic device 100.

[0151] The motor 191 can generate a vibration prompt. The motor 191 can be used for incoming call vibration prompts and also for touch vibration feedback. For example, touch operations on different applications (e.g., taking pictures, playing audio, and the like) can correspond to different vibration feedback effects. Touch operations on different regions of the display screen 194 can also correspond to different vibration feedback effects. Different application scenarios (e.g., time reminders, receiving messages, alarms, games, and the like) can also correspond to different vibration feedback effects. The touch vibration feedback effects can also be customizable.

[0152] The indicator 192 can be an indicator light that can be used to indicate charging status, power changes, and also to indicate messages, missed calls, notifications, and the like.

[0153] In some embodiments, the electronic device 100 can include one or more PPG modules 195. The PPG module 195 can include a transmitter and a receiver. The transmitter can be used to emit infrared light or green light, and the receiver can be used to receive infrared light or green light reflected by biological tissues (e.g., skin, blood, and the like). The PPG module 195 can measure a PPG signal, which can be used to measure blood pressure in embodiments of the present application.

[0154] In some embodiments, the electronic device 100 can also include an electrocardiogram (ECG) module 193. The electronic device 100 can measure a user's electrocardiogram signal through the ECG module 193, which can be used to determine whether the user's cardiovascular system is at risk.

[0155] In some embodiments, the electronic device 100 can also include an air bag 196 and a micro air pump 197. The electronic device 100 can inflate the air bag 196 through the micro air pump 197 and measure the user's blood pressure in combination with the sensor module 180 (e.g., the pressure sensor 180A, and the like).

[0156] The application provides a measurement method. The electronic device 100 measures a blood pressure value 1 of a user in a resting state, outputs a motion prompt, and the motion prompt is used to prompt the user to start motion. The electronic device 100 can also detect one or more blood pressure values of the user after the user ends the motion, and determine a motion and blood pressure evaluation result based on the blood pressure value 1 and the one or more blood pressure values after the motion ends, and the motion and blood pressure evaluation result includes a cardiovascular health condition of the user.

[0157] In this way, the electronic device 100 can evaluate the cardiovascular health condition of the user based on the measured blood pressure value 1 before the motion and the one or more blood pressure values after the motion, and also determine whether the blood pressure condition of the user in the non-resting state is normal.

[0158] The following introduces a specific flow of a measurement method provided by an embodiment of the application.

[0159] FIG. 2 shows a flowchart of a measurement method provided by an embodiment of the application.

[0160] As shown in FIG. 2, the specific flow of the measurement method provided by an embodiment of the application can include the following steps:

[0161] S201. The electronic device 100 monitors the activity amount of the user.

[0162] In some embodiments, the electronic device 100 can monitor the activity amount of the user in real time through any one or more of the devices such as an acceleration sensor, a gyroscope sensor, and a magnetic sensor after being turned on.

[0163] It should be noted that the activity amount of the user refers to the activity amount of the user in a time period, and the length of the time period can be a preset length, for example, 3 minutes, 5 minutes, or 15 minutes, etc. The activity amount of the user can be used to determine whether the user is in a resting state.

[0164] In a possible implementation manner, the electronic device 100 can store an activity amount calculation model. The input of the activity amount calculation model can include an acceleration signal in a time period, and the output of the activity amount calculation model can include the activity amount of the user in the time period. The electronic device 100 can collect the acceleration signal in a time period through the acceleration sensor, and the length of the time period can be a preset length (for example, 5 minutes or 15 minutes, etc.). After the acceleration signal in the time period is collected, the electronic device 100 can obtain the activity amount of the user in the time period through the activity amount calculation model based on the collected acceleration signal.

[0165] In this way, the electronic device 100 can monitor the activity amount of the user in each time period in real time based on the acceleration sensor, so as to determine whether the user is in a resting state.

[0166] S202. The electronic device 100 receives operation 1 of the user.

[0167] In the embodiments of the present application, operation 1 can be used to trigger the electronic device 100 to start the motion and blood pressure assessment function.

[0168] In some embodiments, operation 1 can be an operation of the user starting the motion and blood pressure assessment function. In other embodiments, operation 1 can also be an operation of the user starting the motion mode, in which case the electronic device 100 can start the motion and blood pressure assessment function in response to operation 1.

[0169] S203. The electronic device 100 determines whether the activity level of the user in the time period 1 is a high activity level in response to operation 1.

[0170] The end time of the time period 1 is the time when the electronic device 100 receives operation 1, and the duration of the time period 1 can be a preset duration, such as 5 minutes or 15 minutes, etc. The present application does not limit the duration of the time period 1.

[0171] In some embodiments, the activity level of the user can be divided into multiple levels, such as low activity level, medium activity level, and high activity level, etc. Each activity level can correspond to a different activity value range. The electronic device 100 can store a correspondence between different activity levels and value ranges.

[0172] For example, Table 1 shows a correspondence between activity levels and value ranges provided by an embodiment of the present application.

[0173] Table 1

[0174] As shown in Table 1, the electronic device 100 can store multiple activity levels and the corresponding activity value range of each activity level. For example, the activity level can include high activity level, medium activity level, and low activity level. Moreover, the activity value range of the high activity level is [Act2, Act3); the activity value range of the medium activity level is [Act1, Act2); and the activity value range of the low activity level is [0, Act1).

[0175] It can be understood that the embodiment shown in Table 1 is only an example. In the embodiments of the present application, the activity level of the user can include more, less, or different levels than the above-mentioned embodiments, which are not limited herein.

[0176] After receiving operation 1 of the user, in response to operation 1, the electronic device 100 can determine the activity amount of the user in the time period 1, and determine the activity amount level of the user in the time period 1 based on the value range of the plurality of activity amount levels stored by the electronic device 100.

[0177] If the activity amount level of the user in the time period 1 is a high activity amount level, it can be determined that the user is in a motion state in the time period 1, that is, the user is not in a resting state at present, at this time, the blood pressure value of the user in the resting state cannot be measured, therefore, the electronic device 100 can perform the following step S204.

[0178] If the activity amount level of the user in the time period 1 is not a high activity amount level, it can be determined that the user is in a resting state in the time period 1, at this time, the blood pressure value of the user in the resting state can be measured, therefore, the electronic device 100 can perform the following step S205.

[0179] S204. The electronic device 100 outputs an abnormal prompt 1, the abnormal prompt 1 is used to prompt the user to rest before starting the motion and blood pressure evaluation.

[0180] In some embodiments, in the case that the electronic device 100 determines that the user is in a non-resting state, the electronic device 100 can output an abnormal prompt 1, the abnormal prompt 1 is used to prompt that the current state of the user is not a resting state, and the blood pressure in the resting state cannot be measured. The abnormal prompt 1 can also be used to prompt the user to rest for a period of time before starting the motion and blood pressure evaluation.

[0181] In another possible implementation, the electronic device 100 can also determine whether the blood pressure value of the user in the resting state measured before is stored in the electronic device 100 in the case that the electronic device 100 determines that the user is in a non-resting state. If the blood pressure value of the user in the resting state measured before is stored in the electronic device 100, and the time interval between the measurement time of the blood pressure value and the current time is less than a preset time interval (for example, 5 minutes, or 10 minutes, etc.), the electronic device 100 can also take the blood pressure value as the blood pressure value 1 in the resting state of the user in the current motion and blood pressure evaluation, and perform the following step S206.

[0182] S205. The electronic device 100 measures the blood pressure value 1, and takes the blood pressure value 1 as the blood pressure value of the user in the resting state.

[0183] In some embodiments, in the case that the electronic device 100 determines that the user is in a resting state, the electronic device 100 can measure the blood pressure of the user, and take the measured blood pressure value 1 as the blood pressure value of the user in the resting state.

[0184] In some embodiments, the electronic device 100 can measure the heart rate of the user in the resting state at the same time of measuring the blood pressure value 1.

[0185] S206. The electronic device 100 outputs a motion prompt, the motion prompt being used to prompt the user to start the motion.

[0186] After determining the blood pressure value 1 of the user in the resting state, the electronic device 100 can output a motion prompt, the motion prompt being used to prompt the user to start the motion.

[0187] In some embodiments, after outputting the motion prompt, the electronic device 100 can set the state of the user to the motion state.

[0188] In other embodiments, after outputting the motion prompt, the electronic device 100 can continue to monitor the activity amount of the user, and determine whether the activity amount of the user is in the high activity amount level in a time period 2 after outputting the motion prompt, wherein the starting moment of the time period 2 can be the moment when the electronic device 100 outputs the motion prompt, or the moment when the electronic device 100 measures the blood pressure value 1; in addition, the time length of the time period 2 can be a preset time length, for example, 5 minutes, 10 minutes, or 15 minutes, etc. In some embodiments, the time length of the time period 2 can be the same as the time length of the time period 1, and the present application does not limit the specific value of the time length of the time period 2. If the activity amount of the user in the time period 2 is in the high activity amount level, the electronic device 100 can determine that the user starts the motion, at this time, the electronic device 100 can set the state of the user to the motion state, and execute the subsequent steps. If the activity amount of the user in the time period 2 is not in the high activity amount level, the electronic device 100 can determine that the user does not start the motion, at this time, the electronic device 100 can output an end prompt, the end prompt being used to prompt the user that the motion and blood pressure evaluation cannot be performed due to the long time of not starting the motion, and thus the motion and blood pressure evaluation of this time is ended.

[0189] S207. The electronic device 100 monitors the motion parameter of the user.

[0190] Steps S207 to S209 are optional steps.

[0191] It should be noted that the electronic device 100 can execute all steps in steps S207 to S209, or execute one or more steps, for example, only execute step S207, etc., which is not limited in the present application.

[0192] After outputting the motion prompt, the electronic device 100 can monitor the motion parameter of the user.

[0193] The motion parameter can include, but is not limited to, any one or more of the following: motion type, motion time, speed, posture, heat consumption, slope, heart rate, etc.

[0194] In some embodiments, the electronic device 100 can monitor the motion parameters of the user by any one or more of the following devices: an acceleration sensor, a gyroscope sensor, a magnetic sensor, a satellite positioning module, a PPG module, etc.

[0195] For example, the electronic device 100 can measure the speed of the user by the acceleration sensor; the electronic device 100 can measure the posture of the user by the gyroscope sensor; the electronic device 100 can determine the motion type of the user by any one or more of the following devices: the acceleration sensor, the gyroscope sensor, the satellite positioning module, and the magnetic sensor; the electronic device 100 can monitor the heart rate of the user during the motion by the PPG module; the electronic device 100 can calculate the heat consumption of the user during the motion based on the motion type, the speed, the time, etc. of the user. It can be understood that the above embodiments are only some examples, and in the embodiments of the present application, the electronic device 100 can also measure the motion parameters of the user by more, less or different devices than the above embodiments, and the motion parameters of the user can also include more, less or different parameters than the above embodiments, which are not limited herein.

[0196] In some embodiments, the electronic device 100 can also determine whether the user starts the motion after outputting the motion prompt based on the motion parameters of the user. For example, the electronic device 100 can determine whether the user starts the motion based on the speed of the user and the preset speed threshold. If the electronic device 100 detects that the speed (e.g. the average speed or the maximum value of the speed, etc.) of the user in the time period 2 is greater than the preset speed threshold after outputting the motion prompt, the electronic device 100 can determine that the user starts the motion and set the state of the user to the motion state. If the speed of the user is less than or equal to the preset speed threshold, the electronic device 100 can determine that the user does not start the motion. In this case, the electronic device 100 can output the end prompt to prompt the user that the motion and blood pressure evaluation cannot be performed due to the long time without starting the motion, and thus the motion and blood pressure evaluation is ended. It can be understood that the above embodiment is only an example, and in the embodiments of the present application, the electronic device 100 can also determine whether the user starts the motion after outputting the motion prompt based on the manner described in the above step S206, and in other embodiments, the electronic device 100 can also determine whether the user starts the motion based on any one or more of the other parameters in the motion parameters (e.g. the motion type, the posture, the heart rate, the heat consumption, etc.), which are not limited herein.

[0197] In some embodiments, the electronic device 100 can determine any one or more of the following heart rate parameters of the user during the exercise based on the heart rate during the exercise: maximum heart rate, reserve heart rate, lactate threshold heart rate, etc. The maximum heart rate refers to the limit heart rate that the heart can reach during exercise. The reserve heart rate is the difference between the measured maximum heart rate and the resting heart rate, which represents the potential ability of the human body to increase heart rate during labor or exercise. The lactate threshold heart rate is the critical point at which lactic acid accumulates when the human body performs aerobic exercise.

[0198] The electronic device 100 can divide the maximum heart rate into different levels based on the value range of the maximum heart rate, for example, from high to low, including: limit, anaerobic endurance, aerobic endurance, fat burning, warm-up, etc. Similarly, the electronic device 100 can also divide the reserve heart rate into different levels based on the value range of the reserve heart rate, for example, from high to low, including: anaerobic advanced, anaerobic basic, lactate threshold, aerobic advanced, aerobic basic, etc. Similarly, the electronic device 100 can also divide the lactate threshold heart rate into different levels based on the value range of the lactate threshold heart rate, for example, from high to low, including: anaerobic exercise, lactate threshold, aerobic advanced, aerobic basic, warm-up relaxation, etc. The electronic device 100 can store the correspondence between the value range of different heart rates and the levels. After obtaining the heart rate of the user during the exercise, the electronic device 100 can determine any one or more of the maximum heart rate level, the reserve heart rate level, and the lactate threshold heart rate level of the user based on the heart rate of the user during the exercise.

[0199] S208. The electronic device 100 determines that the user stops exercising based on the exercise parameter.

[0200] The electronic device 100 can also determine whether the user stops exercising based on the measured exercise parameter during the process of monitoring the exercise parameter of the user.

[0201] In some embodiments, the electronic device 100 can determine whether the user stops exercising based on any one or more of the exercise parameters. For example, the electronic device 100 can determine whether the user stops exercising based on whether the speed (e.g., average speed or minimum speed) of the user within a time period 3 is lower than a preset speed threshold. The end time of the time period 3 can be the current time (i.e., the time when the electronic device 100 determines whether the user stops exercising based on the exercise parameter), and the time length of the time period 3 can be a preset time length, such as 30 seconds, 1 minute, or 2 minutes, etc. If the speed of the user within the time period 3 is less than or equal to the preset speed threshold, the electronic device 100 can determine that the user stops exercising; if the speed of the user within the time period 3 is greater than the preset speed threshold, the electronic device 100 can determine that the user does not stop exercising.

[0202] In the case of detecting that the user stops exercising, the electronic device 100 can perform the following step S209.

[0203] In a case where it is detected that the user does not stop the motion, the electronic device 100 can continue to monitor the motion parameter of the user, and determine whether the user stops the motion based on the motion parameter.

[0204] S209. The electronic device 100 outputs a motion state prompt, the motion state prompt being used to inquire whether the user ends the motion.

[0205] In a case where it is detected that the user stops the motion, the electronic device 100 can execute step S209 to output the motion state prompt, the motion state prompt being used to inquire whether the user ends the motion.

[0206] S210. The electronic device 100 receives operation 2 of the user, the operation 2 being used to trigger the electronic device 100 to end the motion state of the user.

[0207] In some embodiments, after outputting the motion state prompt, the electronic device 100 can receive and respond to the operation 2 of the user to determine to end the motion state of the user.

[0208] In some other embodiments, the electronic device 100 can also receive and respond to the operation of the user to end the motion state without executing step S209 described above.

[0209] S211. The electronic device determines whether the activity level of the user in a time period 4 is a high activity level.

[0210] Steps S211 to S212 are optional steps.

[0211] In some embodiments, after receiving the operation 2 of the user, the electronic device 100 can determine whether the activity level of the user in a time period 4 is a high activity level. The time length of the time period 4 can be a preset time length (e.g., 30 seconds, 1 minute, etc.). In some embodiments, the starting time of the time period 4 can be the time when the operation 2 is received. In some other embodiments, the ending time of the time period 4 can be the time when the operation 2 is received.

[0212] If the activity level of the user is not the high activity level, the electronic device 100 can determine that the user stops the motion, and in this case, the electronic device 100 can execute step S213 described below.

[0213] If the activity level of the user is the high activity level, the electronic device 100 can determine that the user does not stop the motion, and in this case, the electronic device 100 can execute step S212 described below.

[0214] S212. The electronic device 100 outputs an abnormal prompt 2, the abnormal prompt 2 being used to prompt that the motion state is not ended.

[0215] In a case where the user manually ends the motion state, and the electronic device 100 determines that the motion state of the user is not ended based on the activity amount of the user, the electronic device 100 can output an abnormal prompt 2, which can be used to prompt the user that the motion state is not ended and the blood pressure value after the motion cannot be measured.

[0216] S213. The electronic device 100 measures one or more blood pressure values as the blood pressure values of the user after the motion.

[0217] After determining that the user ends the motion state, the electronic device 100 can measure one or more blood pressure values and take the measured one or more blood pressure values as the blood pressure values of the user after the motion.

[0218] For example, the specific process in which the electronic device 100 measures the blood pressure values after the motion can refer to the related description in the embodiment shown in FIG. 3 below, which will not be described here again.

[0219] In some embodiments, the electronic device 100 can also measure one or more heart rates after the motion. In a possible implementation manner, the electronic device 100 can measure the heart rate after the motion at the same time of measuring the blood pressure after the motion.

[0220] S214. The electronic device 100 determines the motion and blood pressure evaluation result based on the blood pressure value 1 and the blood pressure value after the motion.

[0221] In some embodiments, the motion and blood pressure evaluation result (also referred to as the evaluation result) can include a cardiovascular health condition, which can include a cardiovascular risk assessment and / or a blood pressure response assessment. The cardiovascular risk assessment is used to indicate the risk of the user suffering from a cardiovascular disease, and the blood pressure response assessment is used to indicate whether the blood pressure of the user is abnormal.

[0222] The following describes a specific manner in which the cardiovascular risk assessment is determined based on the blood pressure value 1 and the blood pressure value after the motion.

[0223] In some embodiments, the cardiovascular risk assessment can include multiple risk levels, such as low risk, medium risk, and high risk, etc. The electronic device 100 can store the judgment conditions of different risk levels, and when the blood pressure value 1 and the blood pressure value after the motion meet the specified conditions, the electronic device 100 can determine the risk level corresponding to the cardiovascular risk assessment of the user. In some embodiments, if the electronic device 100 also measures the heart rate after the motion, the electronic device 100 can also determine the cardiovascular risk assessment in combination with the blood pressure before and after the motion and the heart rate after the motion.

[0224] For example, Table 2 shows a correspondence between a cardiovascular risk level and a judgment condition stored in the electronic device 100.

[0225] Table 2

[0226] As shown in Table 2, the electronic device 100 can store a correspondence between a cardiovascular risk level and a judgment condition. The cardiovascular risk level can include low risk, medium risk, and high risk, etc. The judgment condition of low risk can include that no abnormal cardiovascular event is detected, and the blood pressure fluctuation is within a normal range before, during and after exercise. The judgment condition of medium risk can include, but is not limited to, any one or more of the following: 1. The systolic pressure or diastolic pressure is high in a resting state before exercise; 2. The systolic pressure is high, but the exercise intensity is low; 3. The diastolic pressure is high in an exercise scene; 4. The diastolic pressure should not have significant fluctuations in an exercise scene, but it is significantly increased; 5. The systolic pressure should be significantly increased in an exercise scene, but it is abnormally decreased; 6. After exercise, the systolic pressure should recover to the resting level before exercise within a specified time limit, but it fails to recover in time and is still significantly higher than the resting level before exercise; 7. Arrhythmia, such as atrial fibrillation, premature beat, escape beat, etc.; 8. Left ventricular diastolic dysfunction; 9. Left ventricular systolic dysfunction. The judgment condition of high risk can include, but is not limited to, any one or more of the following: 1. The systolic pressure or diastolic pressure is extremely high in a resting state before exercise; 2. The systolic pressure is extremely low in a resting state before exercise; 3. The systolic pressure or diastolic pressure is extremely high in an exercise scene; 4. The diastolic pressure is extremely high in an exercise scene. The judgment method of whether the left ventricular diastolic function and the left ventricular systolic function are reduced can refer to the description of the cardiac reserve function evaluation below, which is not described here in detail.

[0227] It should be noted that in the embodiment shown in Table 2, the electronic device 100 can determine that the cardiovascular risk level is medium risk when any one of the judgment conditions of medium risk is detected; the electronic device 100 can determine that the cardiovascular risk level is high risk when any one of the judgment conditions of high risk is detected; and the electronic device 100 can determine that the cardiovascular risk level is low risk when the judgment condition of low risk is detected.

[0228] In the embodiment shown in Table 2, the judgment conditions involve the level judgment of diastolic pressure and systolic pressure, the fluctuation judgment of diastolic pressure and systolic pressure, the level judgment of exercise intensity, the judgment of the scene where the user is located, the judgment of electrocardio detection result, etc.

[0229] The specific method of the level judgment of diastolic pressure and systolic pressure provided by the embodiment of the present application is described below.

[0230] In some embodiments, the electronic device 100 can store a diastolic pressure grading threshold and a systolic pressure grading threshold. The diastolic pressure grades can include, but are not limited to, any one or more of the following: low, lower, normal, higher, high, very high, etc. The systolic pressure grades can include, but are not limited to, any one or more of the following: low, lower, normal, higher, high, very high, etc. Each grade can correspond to a different threshold. After measuring the blood pressure values before and after exercise, the electronic device 100 can determine the grade of the measured diastolic pressure and the grade of the measured systolic pressure based on the pre-stored diastolic pressure grading threshold and the systolic pressure grading threshold. In some embodiments, the electronic device 100 can also store diastolic pressure grading thresholds and systolic pressure grading thresholds for different scenarios. At this time, the electronic device 100 can determine the scenario in which the user is located (e.g., a resting scenario, a cycling scenario, a running scenario, an exercise ending scenario, etc.) based on any one or more of the acceleration sensor, the gyroscope sensor, the satellite positioning module, etc., and determine the grade of the currently measured diastolic pressure and systolic pressure based on the diastolic pressure grading thresholds and the systolic pressure grading thresholds for different scenarios. In this way, the electronic device 100 can complete the diastolic pressure grade determination and the systolic pressure grade determination.

[0231] The following describes a specific method for diastolic pressure and systolic pressure fluctuation determination provided by an embodiment of the present application.

[0232] In some embodiments, the electronic device 100 can store a diastolic pressure fluctuation grading threshold and a systolic pressure fluctuation grading threshold. The fluctuation grades can include, but are not limited to, any one or more of the following: no significant fluctuation, significant increase, abnormal decrease, etc. Different fluctuation grades can correspond to different fluctuation thresholds. In some embodiments, the diastolic pressure fluctuation grades and the systolic pressure fluctuation grades can also correspond to different fluctuation thresholds. The electronic device 100 can determine the actual fluctuation threshold based on the fluctuation of the measured blood pressure values and the fluctuation thresholds corresponding to different fluctuation grades. In this way, the electronic device 100 can complete the systolic pressure and diastolic pressure fluctuation determination.

[0233] The following describes a specific method for exercise intensity (also referred to as exercise load) grade determination provided by an embodiment of the present application.

[0234] In some embodiments, the electronic device 100 can monitor the heart rate of the user during the exercise. The electronic device 100 can determine the exercise intensity of the user based on the heart rate of the user during the exercise. For example, the heart rate variation of the user in a fixed time period (e.g., 10 minutes or 5 minutes before the end of the exercise, etc.) determines the exercise intensity of the user. The electronic device 100 can also store the classification threshold of the exercise intensity of the user. The classification of the exercise intensity can include, but is not limited to, any one or more of the following: low, lower, normal, high, higher, very high, etc. After determining the exercise intensity of the user, the electronic device 100 can determine the classification of the exercise intensity of the current exercise based on the pre-stored classification threshold of the exercise intensity. In this way, the electronic device 100 can complete the classification of the exercise intensity.

[0235] The following describes a specific process of determining the scenario in which the user is located according to an embodiment of the present application.

[0236] In some embodiments, the scenario of the user can include, but is not limited to, any one or more of the following: a resting scenario, an exercise scenario (also referred to as an exercise scenario), an exercise end scenario, etc. The exercise scenario can further include a cycling scenario, a running scenario, a walking scenario, a stair climbing scenario, a swimming scenario, etc. The electronic device 100 can store the exercise parameters (e.g., speed, posture, etc.) corresponding to different scenarios. The electronic device 100 can determine the exercise parameters of the user based on any one or more of the following devices: an acceleration sensor, a gyroscope sensor, a satellite positioning module, etc., and determine the scenario in which the user is located based on the exercise parameters. In this way, the determination of the scenario in which the user is located can be achieved.

[0237] The following describes a specific process of determining the electrocardiogram detection result according to an embodiment of the present application.

[0238] In some embodiments, the electrocardiogram detection result can include, but is not limited to, any one or more of the following: sinus rhythm, atrial premature beat, ventricular premature beat, atrial fibrillation, uncertain (heart rate is too low), uncertain (heart rate is too high), etc. The electronic device 100 can store the electrocardiogram signal features corresponding to different electrocardiogram detection results. After collecting the electrocardiogram signal, the electronic device 100 can extract the electrocardiogram signal features, and determine the electrocardiogram detection result of the user based on the pre-stored correspondence between different electrocardiogram detection results and electrocardiogram signal features. In this way, the determination of the electrocardiogram detection result can be achieved. In some embodiments, the arrhythmia shown in Table 2 above can include all of the electrocardiogram detection results other than the sinus rhythm in the above-mentioned electrocardiogram detection results. It should be noted that the specific process of the electronic device 100 collecting the electrocardiogram signal of the user can refer to the related description in the embodiments shown in FIG. 4A and FIG. 27 below, which will not be described here in detail.

[0239] It can be understood that the above-mentioned embodiment shown in Table 2 is only an example, and in the embodiments of the present application, the electronic device 100 can also store more, less or different cardiovascular risk levels and corresponding judgment conditions than the above-mentioned embodiment, which is not limited herein. In addition, in some embodiments, the electronic device 100 can determine whether the blood pressure values before and after the user's movement, the user's electrocardiogram signal meet the judgment condition in a manner different from the above-mentioned embodiment, which is not limited herein.

[0240] It should be noted that in some embodiments, the blood pressure measured before and after the movement can be multiple times, and in this multiple measurement, there can be a missed measurement or a measurement failure. In this case, the electronic device 100 can determine whether the value is output based on the measured blood pressure before and after the movement and the judgment condition of the cardiovascular risk level that the blood pressure meets.

[0241] For example, Table 3 shows the correspondence between the completion of the measurement task and whether the cardiovascular risk level is output by the electronic device 100 stored in the embodiments of the present application.

[0242] Table 3

[0243] As shown in Table 3, the electronic device 100 can store the completion of the measurement task and the output value relationship of the cardiovascular risk level. The measurement task can include mandatory measurement tasks (such as blood pressure measurement before movement, blood pressure measurement after movement, etc.) and non-mandatory measurement tasks (such as electrocardiogram measurement before movement, etc.). The measurement task completion condition can include but is not limited to any one or more of the following: completing all mandatory measurement tasks, completing part of the mandatory measurement tasks, not completing any mandatory measurement task, etc. Based on the completed measurement task, it can also be determined whether there is an abnormal cardiovascular event. Among them, in the case of completing all mandatory measurement tasks, if no abnormal cardiovascular event is detected, the cardiovascular risk level can be determined as low risk, and if an abnormal cardiovascular event is detected, the cardiovascular risk level can be determined as medium risk / high risk based on the relationship between the detected abnormal cardiovascular event and the judgment condition of medium risk / high risk. In the case of completing part of the mandatory measurement tasks, if no abnormal cardiovascular event is detected, the cardiovascular risk level cannot be evaluated, and if an abnormal cardiovascular event is detected, the cardiovascular risk level can be determined as medium risk / high risk based on the relationship between the detected abnormal cardiovascular event and the judgment condition of medium risk / high risk. In the case of not completing any mandatory measurement task, if no abnormal cardiovascular event is detected, the cardiovascular risk level cannot be evaluated, and if an abnormal cardiovascular event is detected, the cardiovascular risk level can be determined as medium risk / high risk based on the relationship between the detected abnormal cardiovascular event and the judgment condition of medium risk / high risk.

[0244] It should be noted that in some embodiments, the abnormal cardiovascular event can include, but is not limited to, any one or more of the judgment conditions of the medium risk and the judgment conditions of the high risk in the embodiments shown in Table 2.

[0245] It can be understood that the embodiments shown in Table 3 are only examples, and in the embodiments of the present application, the electronic device 100 can also store more, less or different measurement tasks, measurement task completion conditions and the relationship between the risk level and the output value than the above-mentioned embodiments, which are not limited herein.

[0246] In some other application scenarios, although the user completes the measurement task as required and does not miss the measurement, the user may not strictly follow the operation process, which will affect the measurement certainty, at this time, the electronic device 100 can output an inaccurate prompt to prompt that the measurement result may be inaccurate.

[0247] For example, when measuring blood pressure before exercise, if the user is not in a resting state (the heart rate before exercise is significantly higher than the daily resting heart rate, etc.), the measured resting blood pressure value may be higher than the actual resting blood pressure value. At this time, in order to avoid the influence on the subsequent exercise and blood pressure evaluation results, the electronic device 100 can output an inaccurate prompt to prompt the user to rest and then start measurement when detecting that the heart rate of the user during the resting blood pressure measurement process is significantly higher than the daily resting heart rate.

[0248] For another example, in the case of insufficient exercise intensity, the electronic device 100 can not be able to detect the abnormal cardiovascular event (for example, the systolic pressure cannot be normally increased, etc.); in the case of excessive exercise intensity, for example, in the case where the exercise intensity exceeds the upper limit of the exercise intensity of most people, the electronic device 100 can also not be able to detect the abnormal cardiovascular event, so as to cause that the cardiovascular risk level of the user cannot be judged according to the abnormal cardiovascular event, in the above-mentioned cases, the electronic device 100 can monitor the exercise intensity of the user in real time, and when detecting that the exercise intensity of the user is too high or too low (for example, higher than a preset high-intensity threshold, or lower than a preset low-intensity threshold), output an inaccurate prompt to prompt that the exercise intensity is abnormal, and the accurate exercise and blood pressure evaluation results cannot be obtained.

[0249] In some embodiments, the electronic device 100 can output different exercise suggestions based on the resting blood pressure value before the exercise, such as suggesting the user to perform exercise with different exercise intensity, or suggesting the user to avoid exercise, etc. In some embodiments, the electronic device 100 can store different high blood pressure intervals, such as normal high blood pressure interval, I-grade high blood pressure interval, II-grade high blood pressure interval, III-grade high blood pressure interval, etc. Different high blood pressure intervals can correspond to different exercise suggestions. The electronic device 100 can determine the high blood pressure interval to which the measured resting blood pressure value belongs, and output different exercise suggestions based on the high blood pressure interval. For example, when the measured resting blood pressure value belongs to the normal high blood pressure interval, the exercise suggestion output by the electronic device 100 can be to avoid high-intensity exercise; when the measured resting blood pressure value belongs to the I-grade high blood pressure interval, the exercise suggestion output by the electronic device 100 can be to suggest moderate-intensity exercise; when the measured resting blood pressure value belongs to the III-grade high blood pressure interval, the exercise suggestion output by the electronic device 100 can be to avoid exercise, etc. For example, the interface in which the electronic device 100 outputs different exercise suggestions based on the resting blood pressure value can refer to the related descriptions in the embodiments shown in FIGS. 17A-17F, which will not be described here in detail.

[0250] The following describes a specific manner of determining the blood pressure response evaluation based on the blood pressure value 1 and the blood pressure value after the exercise provided by the embodiments of the present application.

[0251] In some embodiments, the blood pressure response evaluation can include multiple blood pressure responses, such as low blood pressure response, high blood pressure response, abnormal blood pressure response before exercise, slow blood pressure recovery, normal blood pressure response, etc. The electronic device 100 can store the judgment conditions of different blood pressure responses, and when the blood pressure value 1 and the blood pressure value after the exercise satisfy the specified conditions, the electronic device 100 can determine the blood pressure response evaluation of the user. In some embodiments, if the electronic device 100 also measures the electrocardiogram signal after the exercise, the electronic device 100 can also determine the blood pressure response evaluation in combination with the electrocardiogram signal and the blood pressure before and after the exercise.

[0252] For example, Table 4 shows the correspondence between a blood pressure response evaluation and a judgment condition stored in the electronic device 100.

[0253] Table 4

[0254] As shown in Table 4, the electronic device 100 can store a corresponding relationship between the blood pressure response evaluation and the judgment condition. Among them, the blood pressure response can include but is not limited to any one or more of the following: normal blood pressure response, low blood pressure response, high blood pressure response, slow blood pressure recovery, and abnormal blood pressure response before exercise, etc. The judgment condition of the normal blood pressure response can include: no blood pressure abnormal event is detected, wherein the blood pressure abnormal event can include all blood pressure responses except the normal blood pressure response in the above blood pressure responses. The judgment condition of the low blood pressure response can include but is not limited to any one or more of the following: SBP drops and the drop value is greater than 10. The judgment condition of the high blood pressure response can include but is not limited to any one or more of the following: 1. The user is male, and SBP is greater than or equal to 210; or, the user is female, and SBP is greater than or equal to 190; 2. The heart rate is less than 70% of the maximum heart rate, and SBP is greater than or equal to 170; 3. DBP is greater than 115; 4. 115 is greater than or equal to DBP and less than 90; 5. DBP rises and the rise value is greater than 10. The judgment condition of the slow blood pressure recovery can include but is not limited to any one or more of the following: SBP after exercise is greater than SBP before exercise. The judgment condition of the abnormal blood pressure response before exercise can include but is not limited to any one or more of the following: 1. SBP is greater than or equal to 180 and / or DBP is greater than or equal to 110 (grade III) SBP is less than 80; 2. 179 is greater than or equal to SBP and less than 140 and / or 109 is greater than or equal to DBP and less than 90; 3. SBP is less than 90. It should be noted that in the embodiment shown in the above Table 4, the electronic device 100 can determine the blood pressure response evaluation of the user based on the blood pressure response corresponding to the judgment condition when any one of the judgment conditions is detected.

[0255] It can be understood that the embodiment shown in the above Table 4 is only an example, and in the embodiments of the present application, the electronic device 100 can include more, less or different blood pressure responses and corresponding judgment conditions than the above embodiment, which is not limited herein.

[0256] It should be noted that the effective measurement time of different blood pressure responses such as high blood pressure response, low blood pressure response, and slow blood pressure recovery can be different, and the electronic device 100 can determine the blood pressure response evaluation of the user based on the blood pressure values measured at different times after exercise. For example, the effective measurement time of low blood pressure response is short, which can be immediately after exercise. If the low blood pressure response occurs after a long rest, it can be a normal phenomenon caused by acute exercise-induced hypotension, and not an abnormal phenomenon of insufficient increase in systolic blood pressure with increased exercise load. Therefore, the electronic device 100 can determine whether there is a low blood pressure response based on the blood pressure value measured for the first time after exercise and the blood pressure value in the resting state. For another example, the effective measurement time of high blood pressure response is long, for example, which can last for 1-6 minutes after exercise. Therefore, the electronic device 100 can determine whether there is a high blood pressure response based on the blood pressure values measured after exercise and the blood pressure value in the resting state before exercise. For another example, the measurement time of slow blood pressure recovery is generally 3-6 minutes, and the speed of blood pressure recovery is used to determine whether there is an abnormality. Therefore, the electronic device 100 can determine whether there is a slow blood pressure recovery condition based on the blood pressure values measured within 3 minutes after exercise to 6 minutes after exercise and the blood pressure value in the resting state. It can be understood that the above examples are only three examples, and in the embodiments of the present application, the electronic device 100 can also determine different blood pressure response evaluations based on blood pressure values measured at different times from the above examples, which are not limited herein.

[0257] In some embodiments, the exercise and blood pressure evaluation result can include a cardiac reserve function evaluation, which is used to indicate the cardiac reserve function condition of the user.

[0258] In a possible implementation, the electronic device 100 can determine the cardiac reserve function evaluation based on the collected electrocardio signals and the blood pressure values before and after exercise.

[0259] For example, Table 5 shows a corresponding relationship between the cardiac reserve function evaluation stored by the electronic device 100 and the judgment condition according to the embodiments of the present application.

[0260] Table 5

[0261] As shown in Table 5, the electronic device 100 can store a corresponding relationship of the cardiac reserve function evaluation and the judgment condition. The cardiac function evaluation can include, but is not limited to, any one or more of the following: cardiac reserve capacity abnormality, cardiac reserve capacity normality, etc. The judgment condition of the cardiac reserve capacity decline can include any one or more of the following: 1. left ventricular diastolic function decline; 2. left ventricular systolic function decline, etc. The judgment condition of the cardiac reserve capacity normality can include that the left ventricular systolic function and diastolic function are both normal. Optionally, the electronic device 100 can also store a corresponding relationship of the cardiac reserve function evaluation and the cardiovascular risk level, for example, in the case of cardiac reserve capacity abnormality, the cardiovascular risk level is medium risk; in the case of cardiac reserve capacity normality, the cardiovascular risk level is low risk, etc.

[0262] It should be noted that the electronic device 100 can store an evaluation model of the cardiac reserve function, the input of the evaluation model can include the blood pressure before and after exercise, and can also include the electrocardiogram signal, the heart rate (or exercise load) during exercise, etc., and the output of the evaluation model can include whether the left ventricular diastolic function is reduced, whether the left ventricular systolic function is reduced, etc. The electronic device 100 can determine whether the left ventricular diastolic function and systolic function are reduced based on the evaluation model.

[0263] It can be understood that the above-mentioned embodiment shown in Table 5 is only an example, and in the embodiments of the present application, the electronic device 100 can also store more, less or different cardiac reserve function evaluation results than the above-mentioned embodiments, and the corresponding judgment conditions, which are not limited herein.

[0264] In some embodiments, the evaluation result can also include exercise suggestions. The electronic device 100 can determine the exercise suggestion based on any one or more of the cardiac reserve function evaluation, the blood pressure response evaluation, the cardiovascular risk level, etc. For example, the exercise suggestion can include any one or more of the following:

[0265] Suggestion 0: Before the blood pressure is effectively controlled, it is recommended that you avoid strenuous exercise.

[0266] Suggestion 1: The intensity of this exercise may be too high, please rest and avoid strenuous exercise.

[0267] Suggestion 2: It is recommended that you reduce the intensity of exercise, control the exercise heart rate below XXX times per minute, and appropriately reduce the exercise duration.

[0268] Suggestion 3: Please rest adequately after exercise and wait for the blood pressure to return to the resting level.

[0269] Suggestion 4: It is recommended that you maintain regular exercise habits and exercise moderately.

[0270] In a possible implementation, when the cardiovascular risk level is high risk, the exercise suggestion output by the electronic device 100 can be suggestion 0; when the cardiovascular risk level is low risk, the exercise suggestion output by the electronic device 100 can be suggestion 4; when the cardiovascular risk level is medium risk, the exercise suggestion output by the electronic device 100 can be any one of suggestion 1, suggestion 2, or suggestion 3.

[0271] In another possible implementation, when the electronic device 100 determines that the electrocardio detection result of the user is abnormal (that is, the electrocardio detection result is not sinus rhythm), the exercise suggestion output by the electronic device 100 can be suggestion 1; when the electronic device 100 determines that the heart reserve capacity of the user is reduced, the exercise suggestion output by the electronic device 100 can be suggestion 1 or suggestion 2; when the electronic device 100 determines that the blood pressure response evaluation is slow blood pressure recovery, the exercise suggestion output by the electronic device 100 can be suggestion 3; when the electronic device 100 determines that the blood pressure response evaluation is low blood pressure response or high blood pressure response, the exercise suggestion output by the electronic device 100 can be suggestion 1 or suggestion 2, and the like.

[0272] It can be understood that the embodiments herein are only a set of examples, and in the embodiments of the present application, the electronic device 100 can also store more, less, or different exercise suggestions than the above-mentioned embodiments, and can also store a correspondence between the exercise suggestions and the heart reserve function evaluation, the blood pressure response evaluation, the cardiovascular risk level, and the like, which is different from the above-mentioned embodiments, which is not limited herein.

[0273] In some other embodiments, the electronic device 100 can also determine, based on the cardiovascular risk level, a prompt for reducing the exercise intensity in the exercise suggestion. The exercise intensity can be calculated based on the heart rate during the exercise, and can also be calculated based on the exercise power, speed, pedal frequency, exercise equivalent, and the like, which is not limited herein. For example, if the cardiovascular risk level is high risk, the electronic device 100 can prompt the user to reduce the exercise intensity by two levels (for example, from high intensity to low intensity) in the exercise suggestion output by the electronic device 100; if the cardiovascular risk level is medium risk, the electronic device 100 can prompt the user to reduce the exercise intensity by one level, for example, from medium intensity to low intensity, in the exercise suggestion output by the electronic device 100; and if the cardiovascular risk level is low risk, the electronic device 100 can prompt the user to maintain the existing exercise intensity in the exercise suggestion output by the electronic device 100. It should be noted that if the current exercise intensity cannot be reduced in the case of medium-high risk, the user can be prompted to avoid exercise.

[0274] In some embodiments, the evaluation result further comprises any one or more of the following: a cardiovascular risk result interpretation, a blood pressure response result interpretation, a blood pressure measurement result interpretation (e.g., a pre-exercise resting blood pressure result interpretation), a heart rate measurement result interpretation (e.g., a pre-exercise heart rate result interpretation, an exercise heart rate result interpretation, a post-exercise heart rate result interpretation, etc.), an electrocardiogram measurement result interpretation (e.g., a pre-exercise electrocardiogram result interpretation, a post-exercise electrocardiogram result interpretation, etc.), a heart reserve function result interpretation, a pre-exercise physiological data result interpretation (e.g., a pre-exercise resting blood pressure and heart rate result interpretation), a post-exercise physiological data result interpretation (e.g., a result interpretation based on one or more of post-exercise blood pressure, heart rate, ECG, etc.), etc. It should be noted that the result interpretation can include abnormal analysis and normal analysis. In the case of an abnormal physiological parameter, the evaluation result can output abnormal analysis related to the abnormality of the physiological parameter; in the case of a normal physiological parameter, the evaluation result can optionally output normal analysis related to the physiological parameter; the result analysis can facilitate the user to understand his / her own health status.

[0275] For example, in the case of an abnormal heart reserve function, the abnormal analysis of the heart reserve function can be output, such as including the text "systolic blood pressure does not rise enough when exercise load increases, and the user's heart reserve capacity decreases, which can be caused by the user's high age. The decrease in heart reserve capacity can lead to a decrease in exercise capacity, and it is recommended to avoid high-intensity exercise." It should be understood that the above embodiment is only an example, and in the embodiments of the present application, the result interpretation of the heart reserve function can also be different from the above-mentioned embodiments, which are not limited herein.

[0276] For example, the related content of the cardiovascular risk result interpretation and the related content of the blood pressure response result interpretation can refer to the related descriptions in the embodiments shown in FIGS. 13A-13F, which are not described herein again.

[0277] For another example, the related content of the electrocardiogram measurement result interpretation can refer to the related descriptions in the embodiments shown in FIGS. 19A-19L, which are not described herein again.

[0278] It should be understood that the above embodiments are only some examples, and in the embodiments of the present application, the electronic device 100 can also output different result interpretations from the above-mentioned embodiments in different ways from the above-mentioned embodiments, which are not limited herein.

[0279] S215. The electronic device 100 outputs the exercise and blood pressure evaluation result.

[0280] The electronic device 100 can output the exercise and blood pressure evaluation result in any one or more of the following ways: display on the display screen, voice broadcast, vibration, indicator light flashing, etc.

[0281] By adopting the measurement method provided in the embodiments of the present application, the blood pressure of the user in a non-resting state can be measured, and the cardiovascular health status of the user can be determined based on the blood pressure values before and after exercise, so that the user can know the health status of the user in real time, and more reliable protection can be provided for the health of the user.

[0282] It can be understood that the embodiment shown in FIG. 2 is only an example, and in the embodiments of the present application, the specific process of the measurement method can also include more, less or different steps than the above-mentioned embodiments, which are not limited herein.

[0283] The specific process of measuring one or more blood pressure values after exercise provided in the embodiments of the present application will be introduced below.

[0284] For example, FIG. 3 shows a flowchart of measuring one or more blood pressure values after exercise provided in the embodiments of the present application, and takes measuring three blood pressure values after exercise as an example for illustration.

[0285] As shown in FIG. 3, the specific process of measuring one or more blood pressure values of the user after exercise by the electronic device 100 can include the following steps:

[0286] S301. The electronic device 100 measures the blood pressure value 2 at time 1 after the end of exercise.

[0287] In some embodiments, time 1 can be the time when the electronic device 100 receives the operation 2 of the user.

[0288] In some embodiments, the electronic device 100 can receive and respond to the operation 2 of the user, and after ending the exercise state of the user, the blood pressure measurement prompt 1 can be outputted, and the blood pressure measurement prompt 1 is used to prompt the user to measure the first blood pressure after exercise.

[0289] It should be noted that in some application scenarios, if the user measures the blood pressure after the end of the exercise, due to the influence of exercise, for example, in the case of excessive exercise load, the user's wrist is difficult to keep stable, thereby introducing motion artifacts, which will affect the measurement accuracy of the blood pressure after exercise. Therefore, in some embodiments, the electronic device 100 can monitor the heart rate of the user during exercise, and optionally, the posture of the user can also be monitored through acceleration sensors, gyroscope sensors and the like. The electronic device 100 can determine the exercise load of the user based on the heart rate of the user during exercise, and dynamically adjust the measurement time (i.e., time 1) of the blood pressure value 2 in combination with the exercise load and the posture of the user. For example, when the user's posture is stable and the exercise load is lower than the preset load threshold, the electronic device 100 can determine that the time 1 is the time when the user ends the exercise. When the user's posture is not stable, or the exercise load is higher than the preset load threshold, the electronic device 100 can determine that the time 1 is the time after a fixed time length (for example, 20 seconds, 30 seconds, etc.) from the time when the user ends the exercise.

[0290] S302. The electronic device 100 measures the blood pressure value 3 at time 2 after the end of the exercise, and the time 2 is the time when the exercise ends for a time length of time 1.

[0291] Exemplarily, the time length 1 can be 3 minutes, 2 minutes, or 4 minutes, etc., and the specific value of the time length 1 is not limited in the present application.

[0292] In a possible implementation, the electronic device 100 can measure the blood pressure value 3 of the user when the time 2 arrives.

[0293] In another possible implementation, the electronic device 100 can output a blood pressure measurement prompt 2 when the time 2 arrives, and the blood pressure measurement prompt 2 is used to prompt the user to measure the second blood pressure after the exercise.

[0294] S303. The electronic device 100 measures the blood pressure value 4 at time 3 after the end of the exercise, and the time 3 is the time when the exercise ends for a time length of time 2.

[0295] Exemplarily, the time length 1 can be 6 minutes, 5 minutes, or 7 minutes, etc., and the specific value of the time length 2 is not limited in the present application.

[0296] In a possible implementation, the electronic device 100 can measure the blood pressure value 4 of the user when the time 3 arrives.

[0297] In another possible implementation, the electronic device 100 can output a blood pressure measurement prompt 3 when the time 3 arrives, and the blood pressure measurement prompt 3 is used to prompt the user to measure the third blood pressure after the exercise.

[0298] It can be understood that the above-mentioned embodiment shown in FIG. 3 is only an example, and in the embodiments of the present application, the electronic device 100 measures the blood pressure of the user after the movement more or less times than the above-mentioned embodiment, which is not limited herein.

[0299] By using the measurement method provided in the embodiments of the present application, the movement of the user and the blood pressure evaluation result can be determined based on the plurality of blood pressure values measured before and after the movement, so as to facilitate the user to know the cardiovascular health status of the user in real time.

[0300] In some application scenarios, the electronic device 100 can inflate the air bag by the micro air pump to realize the measurement of the blood pressure. At this time, the air inlet hole and / or the air outlet hole can be arranged on the electronic device 100 to facilitate the inflation and deflation of the air bag. Since the user may sweat during the movement, the air inlet hole / outlet hole can be blocked by the sweat, which can cause water ingress, thereby causing inaccurate blood pressure measurement. Therefore, in some embodiments, the electronic device 100 can determine whether the water ingress occurs in the air inlet hole / outlet hole based on the power of the micro air pump and the air pressure measured by the air pressure sensor after detecting that the movement is ended. The electronic device 100 can store a corresponding relationship between different micro air pump functions and air pressures in the air path. In the case of water ingress, the actual measured air pressure will be different from the stored air pressure value under the condition of the micro air pump power, and the electronic device 100 can determine whether the water ingress occurs based on the power of the micro air pump, the actual measured air pressure, and the pre-stored relationship between the micro air pump power and the air pressure. If the water ingress occurs, the electronic device 100 can output a water ingress prompt to prompt the user to handle the water ingress (for example, to remove the watchband to wipe the air inlet hole / outlet hole) as soon as possible. If the water ingress does not occur, the blood pressure of the user can be measured normally.

[0301] It can be understood that the above-mentioned embodiment is only an example, and in the embodiments of the present application, the electronic device 100 can also perform the water ingress hole blocking detection once before measuring the blood pressure each time, or perform the water ingress hole blocking detection once before the movement and perform the water ingress hole blocking detection once after the movement, which is not limited herein.

[0302] In some embodiments, after the movement of the user is ended, the electronic device 100 can also measure the electrocardiosignal of the user, and the electrocardiosignal can also be used to evaluate the cardiovascular health status of the user.

[0303] For example, FIG. 4A shows a flow diagram of the electronic device 100 measuring the electrocardiosignal of the user after the movement according to an embodiment of the present application.

[0304] As shown in FIG. 4A, the specific flow of the electronic device 100 measuring the electrocardiosignal of the user after the movement can include the following steps:

[0305] S401. The electronic device 100 measures the electrocardiosignal of the user after the movement of the user is ended.

[0306] In some embodiments, the electronic device 100 can measure the electrocardiogram signal of the user after performing step S301 described in FIG. 3. Alternatively, the electronic device 100 can output an electrocardiogram measurement prompt after performing step S301, which can be used to prompt the user to measure the electrocardiogram signal. It can be understood that the embodiment herein is only an example, and in the embodiments of the present application, the electronic device 100 can also measure the electrocardiogram signal of the user at other time after exercise (for example, after performing step S302 or step S303 described in FIG. 3), which is not limited herein.

[0307] In some embodiments, the electronic device can also measure the electrocardiogram signal of the user while performing step S301 or S302 or S303. That is, the electronic device 100 can collect the electrocardiogram signal of the user while measuring the blood pressure. For example, the electronic device can integrate a PPG module and an electrocardiogram module at the same time, and when the user places the finger in the designated area, the PPG module and the electrocardiogram module can be used to complete the collection of the blood pressure value and the electrocardiogram signal at the same time.

[0308] In some embodiments, the electronic device 100 can include an electrocardiogram (ECG) module, and the electronic device 100 can collect the electrocardiogram signal of the user through the ECG module.

[0309] In a possible implementation, the electronic device 100 can measure the electrocardiogram signal of the user at a preset time after the exercise (for example, 1 minute after the exercise, etc.).

[0310] It should be noted that the electrocardiogram signal is easily disturbed by the electromyogram signal, especially in the exercise scenario, the electromyogram signal is very rich, which can disturb the electrocardiogram signal and affect the signal quality and measurement accuracy. In the case that the user has a large exercise load, the electrocardiogram signal of the user after exercise can be disturbed by the electromyogram signal, which affects the measurement. Therefore, in order to reduce the influence of the electromyogram signal on the electrocardiogram signal, in a possible implementation, the electronic device 100 can adjust the measurement time of the electrocardiogram signal based on the exercise load (also referred to as exercise intensity). Specifically, during the exercise of the user, the electronic device 100 can monitor the heart rate of the user, and determine the exercise load of the user based on the heart rate of the user during the exercise, and determine the measurement time of the electrocardiogram after exercise based on the exercise load of the user. For example, when the exercise load is high (for example, the heart rate is higher than 150 bpm, or the heart rate is higher than 2 times of the resting heart rate, etc.), the electronic device 100 can delay the measurement time of the electrocardiogram for a certain period of time (for example, 3 minutes, 5 minutes, etc.).

[0311] In another possible implementation, the electronic device 100 can also determine the optimal measurement time of the electrocardiogram under different motion loads based on the measurement data of multiple motion and blood pressure evaluations, based on the measurement time of multiple electrocardiograms, the motion load of the user, and the quality of the electrocardiogram, etc., and determine the current optimal measurement time based on the real-time measured motion load. In this way, the measurement time of the electrocardiogram can be personalized based on the multiple measurement data of the user, the interference of the electromyogram can be reduced, and the quality of the electrocardiogram can be improved.

[0312] S402. The electronic device 100 determines whether the electrocardiogram is successfully measured.

[0313] Steps S402 and S403 are optional steps.

[0314] In some embodiments, during the measurement of the electrocardiogram of the user, if there is electrode short circuit, electrode contamination, etc., the electrocardiogram measurement will fail. In order to avoid the failure to obtain the effective electrocardiogram after exercise, the electronic device 100 can determine whether the electrocardiogram measurement is successful based on the measured electrocardiogram after measuring the electrocardiogram.

[0315] The electronic device 100 can determine whether the electrocardiogram is successfully measured based on the electrocardiogram collected by the ECG module. Optionally, in the case of electrocardiogram measurement failure, the electronic device 100 can also determine the cause of the electrocardiogram measurement failure.

[0316] In a possible implementation, after collecting the electrocardiogram, the electronic device 100 can extract the electrocardiogram features based on the electrocardiogram. The electrocardiogram features can include but are not limited to any one or more of the following: peak value, trough value, period, first derivative, second derivative, etc. The electronic device 100 can store the corresponding relationship between the electrocardiogram features and the success of the electrocardiogram measurement. Optionally, the electronic device 100 can also store the corresponding relationship between the electrocardiogram features and the abnormal conditions.

[0317] For example, Table 6 shows the corresponding relationship between the activity level and the value range provided by the embodiments of the present application.

[0318] Table 6

[0319] As shown in Table 6, the electronic device 100 can store a plurality of corresponding relationships between measurement situations and electrocardio signal features. The measurement situations can include measurement success and measurement failure, and the measurement failure can be subdivided into one or more abnormal situations. For example, when the electrocardio signal feature satisfies the feature cha0, the electronic device 100 can determine that the electrocardio measurement is successful; when the electrocardio signal feature satisfies the feature cha1, the electronic device 100 can determine that the electrocardio measurement is failed, and the abnormal situation is electrode short circuit; and when the electrocardio signal feature satisfies the feature cha2, the electronic device 100 can determine that the electrocardio measurement is failed, and the abnormal situation is electrode contamination.

[0320] It can be understood that the embodiment shown in Table 6 is only an example. In the embodiments of the present application, the electronic device 100 can store more, less or different measurement situations, abnormal levels and the like than the above-mentioned embodiments, and the corresponding relationship between different measurement situations and electrocardio signal features can also be different from the above-mentioned embodiments, which are not limited herein.

[0321] After the electronic device 100 extracts the electrocardio signal feature based on the electrocardio signal, it can determine whether the current electrocardio measurement is successful based on the corresponding relationship between the electrocardio signal feature and the measurement situation. Optionally, in the case of measurement failure, the specific abnormal situation can also be determined based on the corresponding relationship between the electrocardio signal feature and the abnormal situation.

[0322] In another possible implementation, the electronic device 100 can store an electrocardio signal recognition model, the input of the electrocardio signal recognition model can be the electrocardio signal collected by the electronic device 100, and the output can be measurement success or measurement failure. Optionally, in the case of measurement failure, the output of the electrocardio signal recognition model can also include the abnormal situation. In this case, after the electronic device 100 collects the electrocardio signal through the ECG module, it can determine whether the electrocardio measurement is successful through the electrocardio signal recognition model, and also determine the abnormal situation through the electrocardio signal recognition model in the case of determining measurement failure.

[0323] In another possible implementation, the electronic device 100 can also store the waveforms of the electrocardio signal in different measurement situations. For example, the ECG signal waveform in normal situation, the ECG signal waveform in short circuit situation, etc. The electronic device 100 can compare the real-time collected ECG signal waveform with the pre-stored electrocardio signal waveforms in different situations, determine whether the waveform of the ECG signal collected this time is consistent with the waveform feature of the ECG signal in the preset normal situation, and further determine whether the current electrocardio measurement is successful.

[0324] For example, the waveform of the ECG signal in the short circuit condition stored by the electronic device 100 can refer to the embodiment shown in FIG. 4B below, and the waveform of the ECG signal in the normal condition can refer to the embodiment shown in FIG. 4C below.

[0325] As shown in FIG. 4B, in the short circuit condition, the waveform of the ECG signal is relatively smooth, and the ST segment is not obvious. It can be understood that when the ECG circuit short circuit is identified, in some embodiments, the electronic device 100 can display the electrocardiogram measurement exception interface 1420 as shown in FIG. 14C, prompting the user that the electrocardiogram signal is abnormal, and can also prompt the user that the electrocardiogram circuit is short-circuited (or the electrocardiogram electrode is dirty, etc.), which is not limited herein.

[0326] As shown in FIG. 4C, in the normal condition, the waveform of the ECG signal is relatively rough, and has an obvious ST segment.

[0327] It can be understood that the embodiments herein are only three examples, and in the embodiments of the present application, the electronic device 100 can also determine whether the electrocardiogram measurement is successful in a manner different from the above-mentioned embodiments, and can also determine the specific abnormal condition in a manner different from the above-mentioned embodiments, which is not limited herein.

[0328] If the electrocardiogram signal measurement is successful, the electronic device 100 can no longer execute the following step S403, and determine the exercise and blood pressure evaluation results based on the electrocardiogram signal measured in step S401 and the blood pressure value 1 and the blood pressure value after exercise in the embodiment shown in FIG. 2.

[0329] If the electrocardiogram signal measurement fails, the electronic device 100 can execute the following step S403.

[0330] In some embodiments, if the electrocardiogram signal measurement fails, the electronic device 100 can also output an electrocardiogram measurement failure prompt, which is used to prompt the user that the electrocardiogram signal measurement fails. Optionally, the electrocardiogram measurement failure prompt can also be used to prompt the user of the abnormal condition of the measurement failure, which is not limited herein.

[0331] S403. The electronic device 100 re-measures the electrocardiogram signal of the user.

[0332] In some embodiments, after executing step S403, the electronic device 100 can execute the above-mentioned step S402 again to determine whether the current electrocardiogram measurement is successful.

[0333] It can be understood that the embodiment shown in FIG. 4A is only an example, and in the embodiments of the present application, the electronic device 100 can also measure more or fewer electrocardiogram signals than the above-mentioned embodiments after the user's exercise ends, and can also measure the electrocardiogram signal of the user after the exercise ends at a different measurement time than the above-mentioned embodiments, which is not limited herein.

[0334] By adopting the measurement method provided in the embodiments of the present application, the electronic device 100 can further determine the motion and blood pressure evaluation result of the user in combination with the electrocardiogram signal after the motion of the user, so as to facilitate the user to know the more accurate cardiovascular health status of the user in real time.

[0335] The interface of the measurement method provided in the embodiments of the present application is introduced below.

[0336] Exemplarily, FIGS. 5A-5J show a set of interface schematic diagrams of the measurement method provided in the embodiments of the present application for measuring the resting blood pressure before the motion of the user.

[0337] As shown in FIG. 5A, the electronic device 100 can display a main interface 500, and the main interface 500 can include one or more application icons, such as a blood pressure application icon 501, a motion application icon, a music application icon, and the like.

[0338] The electronic device 100 can receive and respond to the click operation of the user on the blood pressure application icon 501 to display a blood pressure application interface 510 as shown in FIG. 5B.

[0339] As shown in FIG. 5B, the blood pressure application interface 510 can include a blood pressure measurement control 511 and a motion and blood pressure evaluation control 512. The blood pressure measurement control 511 can be used to trigger the electronic device 100 to measure the blood pressure of the user at the current time. The motion and blood pressure evaluation control 512 can be used to trigger the electronic device 100 to display a motion and blood pressure evaluation interface.

[0340] The electronic device 100 can receive and respond to the click operation of the user on the motion and blood pressure evaluation control 512 to display a motion and blood pressure evaluation interface 520 as shown in FIG. 5C.

[0341] As shown in FIG. 5C, the motion and blood pressure evaluation interface 520 can include a start evaluation control 522, and optionally, can further include a data prompt 521. The data prompt 521 can be used to prompt the user whether the electronic device 100 stores the historical measurement data. Exemplarily, the data prompt 521 can include the text “no data”, which can be used to prompt the user that the electronic device 100 currently does not store the historical measurement data. It can be understood that the embodiment herein is only an example, and in the embodiments of the present application, the data prompt 521 can also include different text from the above-mentioned embodiment, or can also include a pattern or the like, which is not limited in the present application. The start evaluation control 522 can be used to trigger the electronic device 100 to start the motion and blood pressure evaluation function, measure the blood pressure before and after the motion of the user, and determine the motion and blood pressure evaluation result of the user based on the blood pressure values before and after the motion of the user.

[0342] In some embodiments, the electronic device 100 can receive and respond to a click operation of the user for starting the evaluation control 522 to display an evaluation tutorial interface 530 as shown in FIG. 5D. It should be noted that in some embodiments, the electronic device 100 can also only display the evaluation tutorial when the exercise and blood pressure evaluation function is used for the first time, and no longer display the evaluation tutorial when the exercise and blood pressure evaluation function is not used for the first time, but directly display the evaluation task interface 540 shown in FIG. 5F described below. The present application is not limited here.

[0343] As shown in FIG. 5D, the evaluation tutorial interface 530 can include an evaluation tutorial of exercise and blood pressure. The evaluation tutorial of exercise and blood pressure can include one or more operation steps. For example, the one or more operation steps can include a first step: measuring blood pressure before exercise, starting exercise; a second step: immediately measuring blood pressure and electrocardiogram after exercise; a third step: completing blood pressure measurement according to the reminder at 3 minutes after exercise, etc.

[0344] The electronic device 100 can receive and respond to an up-slip operation of the user for the evaluation tutorial interface 530, as shown in FIG. 5E, to display the remaining steps in the evaluation tutorial.

[0345] As shown in FIG. 5E, the evaluation tutorial interface 530 can display the remaining steps in the evaluation tutorial. For example, the remaining steps can include a fourth step: completing blood pressure measurement according to the reminder at 6 minutes after exercise; a fifth step: viewing the evaluation result report. In addition, the evaluation tutorial interface 530 can also include a next step control 531, and optionally, can also display a motion type prompt 532. The next step control 531 can be used to trigger the electronic device 100 to display an evaluation task interface, which can be used to prompt the user to perform the exercise and blood pressure evaluation task. The motion type prompt 532 can be used to prompt the user of one or more motion types currently supported by the electronic device 100. For example, the motion type prompt 532 can include the text "Supported motion types: outdoor running, indoor running, outdoor walking, indoor walking, outdoor cycling, indoor cycling, etc."

[0346] The electronic device 100 can receive and respond to a click operation of the user for the next step control 531 to display an evaluation task interface 540 as shown in FIG. 5F.

[0347] As shown in FIG. 5F, the evaluation task interface 540 can display a task progress 541, a current task 542, and a start measurement control 543. The task progress 541 can be used to prompt the user about the number of tasks to be completed. For example, the task progress 541 can include the text "5 measurement tasks to be completed". The current task 542 can be used to prompt the user about the task to be performed currently, or prompt the user about the task being performed currently. For example, the current task 542 can include the text "blood pressure measurement" and "before exercise", indicating that the current task 542 can be used to prompt the user that the task to be performed currently is to measure the blood pressure of the user before exercise. The start measurement control 543 can be used to trigger the electronic device 100 to measure the blood pressure of the user before exercise.

[0348] In some embodiments, the electronic device 100 can receive and respond to a click operation of the user on the start measurement control 543, and optionally, the electronic device 100 can display a measurement method prompt interface 550 as shown in FIG. 5G.

[0349] As shown in FIG. 5G, the measurement method prompt interface 550 can include a measurement method prompt 551 and a countdown prompt 552. The measurement method prompt 551 can be used to prompt the user about the method of measuring the blood pressure. The measurement method prompt 551 can include any one or more of text, pictures, animations, voice, etc. For example, the measurement method prompt 551 can include a pattern 551a and text 551b, and the text 551b can include "start measuring blood pressure, please pay attention to the watch being worn on the heart level during measurement". It can be understood that the above embodiment is only an example, and in the embodiments of the present application, the measurement method prompt 551 can also include more, less or different content than the above embodiment, for example, prompting the user to touch the electrode arranged on the surface of the electronic device 100 to complete the blood pressure measurement, etc., which is not limited in the present application. In addition, the countdown prompt 552 can be used to prompt the display countdown of the measurement method prompt 551. For example, the countdown prompt 552 can include a pattern 552a and text 552b, and the pattern 552a can be a ring-shaped progress bar, and the text 552b can be the number "4", used to prompt that the display time of the blood pressure measurement method prompt is still 4 seconds.

[0350] In some embodiments, after the countdown ends, the electronic device 100 can display a blood pressure measurement interface 560 as shown in FIG. 5H. It should be noted that in other embodiments, the electronic device 100 can also receive and respond to a click operation of the user on the start measurement control 543 in the above embodiment shown in FIG. 5F, and display the blood pressure measurement interface 560 as shown in FIG. 5H.

[0351] As shown in FIG. 5H, the blood pressure measurement interface 560 can include a blood pressure fluctuation indication 561, a cancel measurement control 562, and optionally, a measurement attention 563. The blood pressure fluctuation indication 561 can be used to indicate the change of the blood pressure value during the blood pressure measurement. The cancel measurement control 562 can be used to trigger the electronic device 100 to display a cancel measurement interface 570 as shown in FIG. 5I, which is used to ask the user whether to cancel the exercise and blood pressure evaluation. The measurement attention 563 can be used to prompt the user that the blood pressure is being measured, and can also prompt the user of the attention during the blood pressure measurement. For example, the measurement attention 563 can include the text "Blood pressure measurement in progress, please remain still".

[0352] In some embodiments, the electronic device 100 can receive and respond to the user's click operation on the cancel measurement control 562 to display the cancel measurement interface 570 as shown in FIG. 5I.

[0353] As shown in FIG. 5I, the cancel measurement interface 570 can include a cancel prompt 571, which can be used to ask the user whether to exit the exercise and blood pressure evaluation. For example, the cancel prompt 571 can include the text "The exercise and blood pressure evaluation is in progress. Do you want to exit the evaluation?". In addition, the cancel prompt 571 can also include a yes control 572 and a no control 573. The yes control 572 can be used to trigger the electronic device 100 to end the exercise and blood pressure evaluation, and the no control 573 can be used to trigger the electronic device 100 to return to the blood pressure measurement interface 560 shown in FIG. 5H.

[0354] In some embodiments, after the electronic device 100 determines the blood pressure of the user before the exercise, the electronic device 100 can display a blood pressure output interface 580 as shown in FIG. 5J.

[0355] As shown in FIG. 5J, the blood pressure output interface 580 can include the blood pressure value of the user before the exercise, which includes a systolic pressure 581 and a diastolic pressure 582. Optionally, the blood pressure output interface 580 can also include the pulse 583 of the user during the blood pressure measurement. For example, the systolic pressure of the user before the exercise can be 118 mmHg, the diastolic pressure can be 75 mmHg, and the pulse can be 76 beats per minute. The blood pressure output interface 580 can also include a start exercise control 584. The start exercise control 584 can be used to trigger the electronic device 100 to display one or more exercise items for the user to select.

[0356] It can be understood that the above-mentioned embodiments shown in FIGS. 5A-5J are only examples, and in the embodiments of the present application, the electronic device 100 can also display more, less or different interfaces than the above-mentioned embodiments when measuring the blood pressure before the exercise, or display more or less content than the above-mentioned embodiments, which are not limited herein.

[0357] FIGS. 6A-6F show interface schematic diagrams in which a set of electronic devices 100 provided by embodiments of the present application determine a user's exercise type based on the user's operation.

[0358] For example, as shown in FIG. 6A, the electronic device 100 can display an evaluation task interface 600. The evaluation task interface 600 can include a task progress 601, an exercise selection control 602, and the like. The specific content of the task progress 601 can refer to the related description in the embodiment shown in FIG. 5F described above. For example, the task progress 601 can include the text “4 measurement tasks to be completed”. In addition, the exercise selection control 602 can be used to prompt the user to select the exercise type after determining the blood pressure before starting the exercise. For example, the exercise selection control 602 can include the text “exercise to start” and “select exercise type to start exercise”. The exercise selection control 602 can be used to prompt the user that the next task is to select the exercise type and start the exercise. The exercise selection control 602 can also be used to trigger the electronic device 100 to display one or more exercise items to facilitate the user to select the appropriate exercise type to start the exercise.

[0359] In some embodiments, the electronic device 100 can receive and respond to the user's click operation on the exercise selection control 602 to display the exercise selection interface 610 as shown in FIG. 6B. In other embodiments, the electronic device 100 can also receive and respond to the user's click operation on the start exercise control 584 shown in FIG. 5J described above to display the exercise selection interface 610 as shown in FIG. 6B.

[0360] As shown in FIG. 6B, the exercise selection interface 610 can include one or more exercise items, such as an outdoor walking item 611, an indoor walking item 612, an outdoor running item 613, an indoor running item 614, and the like. Each exercise item can correspond to an exercise type, and each exercise item can trigger the electronic device 100 to set the exercise type corresponding to the exercise item as the user's current exercise type.

[0361] In some embodiments, the electronic device 100 can receive and respond to the user's up swipe operation on the exercise selection interface 610 to display other exercise items in the exercise selection interface 610, such as an outdoor cycling item 615 and an indoor cycling item 616, and the like, as shown in FIG. 6C.

[0362] In some embodiments, the electronic device 100 can receive and respond to the user's click operation on the outdoor running item 613 to display the exercise interface 620 as shown in FIG. 6D.

[0363] As shown in FIG. 6D, the motion interface 620 can display a motion type 621, a heart rate 622, and a parameter viewing control 623. The motion type 621 can be used to indicate the current motion type of the user, for example, "outdoor running". In some embodiments, the motion type 621 indicated can have a corresponding relationship with the motion item selected by the user in the motion selection interface 610. In some other embodiments, the motion type 621 can also be detected by the electronic device 100 based on the acceleration sensor, gyroscope sensor, etc., in which case, the motion type 621 can also be different from the motion type selected by the user in the motion selection interface 610, which is not limited in this application. The heart rate 622 can be the heart rate of the user monitored by the electronic device 100 in real time during the user's motion, and the value of the heart rate 622 can change over time and the user's state. The parameter viewing control 623 can be used to trigger the electronic device 100 to display one or more motion parameters, so as to facilitate the user to know the motion condition of the user in real time. Optionally, the motion interface 620 can also display a signal strength indicator 624, which can be used to indicate the signal strength of the GPS of the electronic device 100 in some embodiments. In some other embodiments, the signal strength indicator 624 can also be used to indicate the signal strength of other types of signals, such as cellular signals, Wi-Fi signals, etc.

[0364] The electronic device 100 can receive and respond to the click operation of the user on the parameter viewing control 623 to display the motion parameter interface 630 as shown in FIG. 6E.

[0365] As shown in FIG. 6E, the motion parameter interface 630 can include one or more motion parameters, such as maximum heart rate level 631, heart rate 632, pace 633, distance 634, and motion duration 635, etc. The maximum heart rate level 631 can be used to indicate the maximum heart rate level of the user, for example, aerobic endurance. The maximum heart rate level 631 can indicate the maximum heart rate level of the user through the pattern shown in FIG. 6E. The heart rate 632 can be used to indicate the heart rate of the user during the motion. The pace 633 can be used to indicate the speed of the user during the motion, which can be the average speed of the user or the instantaneous speed. The distance 634 can be used to indicate the distance moved by the user during the motion. The motion duration 635 can be used to indicate the motion duration of the user. It can be understood that the embodiment shown in FIG. 6E is only an example, and in the embodiments of the present application, the motion parameter interface 630 can also include more, less or different motion parameters than the embodiment, and the displayed motion parameters can also be different when the motion type of the user is different; and any motion parameter can be output in any one or more ways, such as text, pattern, animation, voice, etc., which is not limited in this application.

[0366] In some embodiments, the electronic device 100 can also display an evaluation task interface 640 as shown in FIG. 6F. The evaluation task interface 640 can include a task progress 641 and a motion state control 642. The specific functions of the task progress 641 can refer to the related description in the above-mentioned embodiment shown in FIG. 5F. For example, the task progress 641 can include the text “4 measurement tasks to be completed”. The motion state control 642 can be used to prompt the user that the user is currently exercising, and optionally, can also be used to prompt the user of the current type of exercise, such as “outdoor running”. In addition, the motion state control 642 can be used to trigger the electronic device 100 to display one or more motion parameters.

[0367] In some embodiments, the electronic device 100 can also receive and respond to the user's click operation on the motion state control 642 shown in FIG. 6F to display the motion parameter interface 630 as shown in FIG. 6E.

[0368] In some application scenarios, after measuring the blood pressure value of the user before exercise, if the user does not start exercising for a long time, the electronic device 100 can output a cancellation prompt, which can be used to prompt the user that this exercise and blood pressure evaluation are cancelled due to the user not starting exercising for a long time. In this way, it can be avoided that the user not starting exercising for a long time affects the exercise and blood pressure evaluation results.

[0369] For example, as shown in FIG. 7A, the electronic device 100 can display an evaluation task interface 600, and the specific content of the evaluation task interface 600 can refer to the related description in the above-mentioned embodiment shown in FIG. 6A, which will not be described here.

[0370] In some embodiments, if the electronic device 100 does not receive the user's operation of selecting the type of exercise after a predetermined time (for example, 2 minutes or 3 minutes, etc.) after the electronic device 100 displays the evaluation task interface 600, the electronic device 100 can display a cancellation prompt interface 700 as shown in FIG. 7B. It should be noted that in other embodiments, if the electronic device 100 does not detect the user starting exercising after a predetermined time (for example, 2 minutes or 3 minutes, etc.) after the electronic device 100 displays the evaluation task interface 600, the electronic device 100 can display the cancellation prompt interface 700 as shown in FIG. 7B. In other embodiments, if the electronic device 100 does not receive the user's operation of selecting the type of exercise and does not detect the user starting exercising after a predetermined time (for example, 2 minutes or 3 minutes, etc.) after the electronic device 100 displays the evaluation task interface 600, the electronic device 100 can display the cancellation prompt interface 700 as shown in FIG. 7B.

[0371] As shown in FIG. 7B, the cancel prompt interface 700 can display a cancel prompt 701, and optionally, a know control 702. The cancel prompt 701 can be used to prompt the user that the long time without starting the exercise, and the exercise and blood pressure assessment have been canceled. The cancel prompt 701 can include text such as "The assessment state has timed out, and the long time without starting the exercise has been detected. This assessment has been canceled." The know control 702 can be used to trigger the electronic device 100 to confirm that the user has read the cancel prompt 701, and to trigger the electronic device 100 to stop displaying the cancel prompt interface 700.

[0372] It can be understood that the above-described embodiments shown in FIGS. 7A-7B are only examples. In the embodiments of the present application, the electronic device 100 can also display a cancel prompt different from the above-described embodiments, which is not limited herein.

[0373] In some application scenarios, the electronic device 100 can output a start failure prompt if it receives an operation of the user starting the exercise and blood pressure assessment function during the user's exercise. The start failure prompt is used to prompt the user that the current exercise cannot start the exercise and blood pressure assessment.

[0374] For example, as shown in FIG. 7C, the assessment task interface 710 can include a task progress 711, a current task 712, and a start measurement control 713. The task progress 711 can be used to prompt the user for the number of tasks to be completed. For example, the task progress 711 can include the text "5 measurement tasks to be completed." The current task 712 can be used to prompt the user for the task to be executed currently, or to prompt the user for the task being executed currently. For example, the current task 712 can include the text "blood pressure measurement", indicating that the current task 712 can be used to prompt the user that the task to be executed currently is to measure the blood pressure before the user's exercise. In addition, the current task 712 can also include the text "exercising", used to prompt the user that the current exercise is being performed. The start measurement control 713 can be used to trigger the electronic device 100 to measure the blood pressure before the user's exercise.

[0375] In some embodiments, the electronic device 100 can receive and respond to the user's click operation on the start measurement control 713 to display a start failure interface 720 as shown in FIG. 7D.

[0376] As shown in FIG. 7D, the start failure interface 720 can include a start failure prompt 721, and can further include an awareness control 722. The start failure prompt 721 can be used to prompt the user that the current exercise is in progress and cannot start the exercise and blood pressure assessment. The start failure prompt 721 can include text such as "The exercise is in progress, please end the current exercise and start the assessment again". The awareness control 722 can be used to trigger the electronic device 100 to determine that the user has read the start failure prompt 721, and can also be used to trigger the electronic device 100 to stop displaying the start failure interface 720.

[0377] It can be understood that the above-mentioned embodiments shown in FIGS. 7C-7D are only examples, and in the embodiments of the present application, the electronic device 100 can also display a start failure prompt different from the above-mentioned embodiments, which is not limited herein.

[0378] In some application scenarios, when the electronic device 100 starts the exercise and blood pressure assessment and the user is exercising, if the electronic device 100 receives an operation of the user ending the exercise, the electronic device 100 can start measuring the blood pressure at the time when the user ends the exercise. In this way, the electronic device 100 can measure the blood pressure value of the user after ending the exercise.

[0379] For example, FIGS. 8A-8F show a set of interface schematic diagrams of the electronic device 100 measuring the blood pressure at the time when the exercise ends according to the embodiments of the present application.

[0380] In some embodiments, when the electronic device 100 displays the exercise parameter interface 630 shown in FIG. 6E, if it is detected that the user stops exercising (or receives an operation of the user pausing the exercise, etc.), the electronic device 100 can display the exercise pause interface 800 as shown in FIG. 8A.

[0381] As shown in FIG. 8A, the exercise pause interface 800 can include a pause prompt 801, a stop control 802, a continue control 803, and optionally, the exercise pause interface 800 can further include any one or more of the following: a lock control 804 and a speaker control 805, etc. The pause prompt 801 can be used to prompt the user that the current exercise has been paused. The pause prompt 801 can include text such as "Paused". The stop control 802 can be used to trigger the electronic device 100 to end the exercise state of the user. The continue control 803 can be used to trigger the electronic device 100 to maintain the exercise state of the user. The lock control 804 can be used to trigger the electronic device 100 to return to the exercise parameter interface 630 and continuously display the exercise parameter interface 630 in the display screen (i.e., lock the exercise parameter interface 630 in the display screen). The speaker control 805 can be used to trigger the electronic device 100 to turn on the speaker, and after turning on the speaker, the electronic device 100 can play specified voice, audio, etc. through the speaker.

[0382] The electronic device 100 can receive and respond to a click operation of the user on the stop control 802. Optionally, the electronic device 100 can display a motion end confirmation interface 810 as shown in FIG. 8B.

[0383] As shown in FIG. 8B, the motion end confirmation interface 810 can include a motion end prompt 811, and can further include a yes control 812 and a no control 813. The motion end prompt 811 can be used to ask the user whether to end the motion. For example, the motion end prompt 811 can include a text, i.e., “Confirm to end the motion?” The yes control 812 can be used to trigger the electronic device 100 to end the motion state of the user, and the no control 813 can be used to trigger the electronic device 100 to return to the motion parameter interface 630.

[0384] In some embodiments, the electronic device 100 can receive and respond to a click operation of the user on the yes control 812. If it is determined that the motion duration of the user is less than the preset motion duration, the electronic device 100 can display a motion duration insufficient interface 820 as shown in FIG. 8C. In other embodiments, the electronic device 100 can also receive and respond to a click operation of the user on the stop control 802 in the above-mentioned embodiment shown in FIG. 8A. If it is determined that the motion duration of the user is less than the preset motion duration, the electronic device 100 can display a motion duration insufficient interface 820 as shown in FIG. 8C.

[0385] As shown in FIG. 8C, the motion duration insufficient interface 820 can include a motion duration insufficient prompt 821, and can further include a know control 822. The motion duration insufficient prompt 821 can be used to prompt the user that the motion duration of this time is insufficient, and the motion and blood pressure evaluation cannot be performed. For example, the motion duration insufficient prompt 821 can include a text, i.e., “The motion has ended, and the motion duration of this time is insufficient to continue the evaluation of this round.” The know control 822 can be used to trigger the electronic device 100 to stop displaying the motion duration insufficient interface 820.

[0386] In some embodiments, the electronic device 100 can receive and respond to a click operation of the start control 812 by the user, and if it is determined that the motion duration of the user is greater than or equal to the preset motion duration, the electronic device 100 can display the measurement method prompt interface 830 as shown in FIG. 8D. In some embodiments, the electronic device 100 can also receive and respond to a click operation of the stop control 802 in the embodiment shown in FIG. 8A by the user, and if it is determined that the motion duration of the user is greater than or equal to the preset motion duration, the electronic device 100 can display the measurement method prompt interface 830 as shown in FIG. 8D. In some embodiments, the electronic device 100 can also return to the evaluation task interface after determining that the motion duration of the user is greater than or equal to the preset motion duration, and the evaluation task interface displays the measurement task of measuring blood pressure after motion and the start measurement control (similar to the evaluation task interface 710 shown in FIG. 7C). After receiving a click operation of the start measurement control by the user, the electronic device 100 can display the interface shown in FIG. 8D or FIG. 8E.

[0387] As shown in FIG. 8D, the measurement method prompt interface 830 can include a measurement method prompt 831 and a countdown 832. The measurement method prompt 831 can include a text 831a and an animation 831b. For example, the text 831a can be “Start measuring blood pressure, touch the electrode with your finger, and please keep still during measurement”. The countdown 832 can be used to indicate the display duration of the measurement method prompt 831. The specific content of the countdown 832 can be referred to the related description in the embodiment shown in FIG. 5G, which will not be described here.

[0388] In some embodiments, after the countdown 832 ends, the electronic device 100 can display the blood pressure measurement interface 840 as shown in FIG. 8E. In some embodiments, the electronic device 100 can receive and respond to a click operation of the start control 812 by the user, and if it is determined that the motion duration of the user is greater than or equal to the preset motion duration, the electronic device 100 can display the blood pressure measurement interface 840 as shown in FIG. 8E. In some embodiments, the electronic device 100 can also receive and respond to a click operation of the stop control 802 in the embodiment shown in FIG. 8A by the user, and if it is determined that the motion duration of the user is greater than or equal to the preset motion duration, the electronic device 100 can display the blood pressure measurement interface 840 as shown in FIG. 8E. The specific content of the blood pressure measurement interface 840 can be referred to the related description in the embodiment shown in FIG. 5H, which will not be described here.

[0389] After measuring the blood pressure at the end of the user's motion, the electronic device 100 can display the blood pressure output interface 850 as shown in FIG. 8F.

[0390] As shown in FIG. 8F, the blood pressure output interface 850 can include the blood pressure value before the user motion, which includes the systolic pressure 851 and the diastolic pressure 852. Optionally, the blood pressure output interface 850 can further include the pulse 853 of the user during the blood pressure measurement. For example, the systolic pressure of the user after the motion can be 188 mmHg, the diastolic pressure can be 95 mmHg, and the pulse can be 128 beats per minute. The blood pressure output interface 850 can further include the next step control 854. The next step control 854 can be used to trigger the electronic device 100 to perform the next motion and blood pressure evaluation task, such as measuring the electrocardiogram signal, etc.

[0391] It can be understood that the embodiments shown in FIGS. 8A-8F are only examples. In the embodiments of the present application, the electronic device 100 can also display more, less or different interfaces than the above-mentioned embodiments when measuring the blood pressure at the end of the motion, or display more or less content than the above-mentioned embodiments, which is not limited herein.

[0392] In some application scenarios, after measuring the blood pressure value at the end of the user motion, the electronic device 100 can prompt the user to measure the electrocardiogram signal after the motion. After measuring the electrocardiogram signal after the motion of the user, the electronic device 100 can output the electrocardiogram measurement result. In this way, the electronic device 100 can measure the electrocardiogram signal after the motion of the user, so as to determine the motion and blood pressure evaluation result based on the electrocardiogram signal and the blood pressure value before and after the motion.

[0393] For example, the electronic device 100 can receive and respond to the user's click operation on the next step control 854 shown in FIG. 8F to display the evaluation task interface 900 shown in FIG. 9A.

[0394] As shown in FIG. 9A, the evaluation task interface 900 can include the task progress 901, the current task 902 and the start measurement control 903. The task progress 901 can be used to prompt the user for the number of tasks to be completed. For example, the task progress 901 can include the text "3 measurement tasks to be completed". The current task 902 can be used to prompt the user for the task to be executed currently, or to prompt the user for the task being executed. For example, the current task 902 can include the text "electrocardiogram measurement", indicating that the current task 902 can be used to prompt the user that the task to be executed currently is to measure the blood pressure before the motion. In addition, the current task 902 can further include the text "motion end", which is used to prompt the user that the motion state has been ended. The start measurement control 903 can be used to trigger the electronic device 100 to measure the electrocardiogram signal after the motion of the user.

[0395] The electronic device 100 can receive and respond to a click operation of the user on the start measurement control 903. Optionally, the electronic device 100 can display an electrocardiogram measurement prompt interface 910 as shown in FIG. 9B.

[0396] As shown in FIG. 9B, the electrocardiogram measurement prompt interface 910 can include an electrocardiogram measurement prompt 911 and a countdown 912. The electrocardiogram measurement prompt 911 can include text 911a and an animation 911b. For example, the text 911a can be “Start measuring electrocardiogram, please touch the side electrode and keep it”. The countdown 912 can be used to indicate the display duration of the electrocardiogram measurement prompt 911. The specific content of the countdown 912 can also refer to the related description in the above-mentioned embodiment shown in FIG. 5G, which will not be repeated here.

[0397] In some embodiments, after the countdown 912 ends, the electronic device 100 can display an electrocardiogram measurement interface 920 as shown in FIG. 9C. In other embodiments, the electronic device 100 can receive and respond to a click operation of the user on the start measurement control 903 shown in FIG. 9A to display the electrocardiogram measurement interface 920 as shown in FIG. 9C.

[0398] As shown in FIG. 9C, the electrocardiogram measurement interface 920 can include a measurement time 921, an electrocardiogram signal waveform 922, a measurement note 923, and optionally, a heart rate 924. The measurement time 921 can be used to prompt the remaining duration of the electrocardiogram measurement, for example, “30 seconds”. The electrocardiogram signal waveform 922 can be used to indicate the waveform of the electrocardiogram signal collected by the electronic device 100 in real time, and the waveform of the electrocardiogram signal can change in real time. The measurement note 923 can be the notes during the measurement process, for example, the measurement note 923 can include the text “Please do not speak and keep still”. The heart rate 924 can be used to indicate the heart rate of the user during the measurement of the electrocardiogram signal, for example, “98 times / minute”.

[0399] After measuring the electrocardiogram signal, the electronic device 100 can display an electrocardiogram output interface 930 as shown in FIG. 9D.

[0400] As shown in FIG. 9D, the electrocardio output interface 930 can include an electrocardio detection result 931, and optionally, can further include any one or more of the following: an average heart rate 932 and a view exercise result control 933. The electrocardio detection result 931 can be used to indicate whether the electrocardio detection of the user is abnormal. For example, the electrocardio detection result 931 can be "sinus rhythm", indicating that the electrocardio detection of the user is normal this time. Optionally, the electrocardio detection result 931 can further include a comment symbol 931a, which can be used to trigger the electronic device 100 to display detailed comments of the electrocardio detection result 931, for example, display detailed comments of "sinus rhythm", so as to enable the user to understand the electrocardio detection result. The average heart rate 932 can be used to indicate the average heart rate of the user during the measurement of the electrocardio signal, for example, "109 times / minute". The view exercise result control 933 can be used to trigger the electronic device 100 to display the exercise result.

[0401] The electronic device 100 can receive and respond to the click operation of the user on the view exercise result control 933 to display the exercise result interface 940 as shown in FIG. 9E, which can be used to display the exercise result.

[0402] As shown in FIG. 9E, the exercise result interface 940 can display the exercise result, which can include one or more exercise parameters. For example, the one or more exercise parameters can include an exercise distance 941, an exercise duration 942, an average speed 943, and a calorie consumption 944, etc. The exercise distance 941 can be used to indicate the total distance of the user's exercise, for example, "9.56 kilometers (km)". The exercise duration 942 can be used to indicate the total duration of the user's exercise, for example, "00:40:49". The average speed 943 can be used to indicate the average speed of the user during the exercise, for example, "average 6 minutes and 18 seconds per kilometer". The calorie consumption 944 can be used to indicate the total calorie consumption of the user during the exercise, for example, "410 kilocalories".

[0403] In some embodiments, after starting the exercise and blood pressure assessment, if the electronic device 100 receives an operation of the user to exit the exercise and blood pressure assessment, the electronic device 100 can display the exit prompt interface 950 as shown in FIG. 9F.

[0404] As shown in FIG. 9F, the exit prompt interface 950 can include an exit prompt 951, and can further include a yes control 952 and a no control 953. The exit prompt 951 can be used to ask the user whether to exit the exercise and blood pressure assessment. For example, the exit prompt 951 can include the text "The exercise and blood pressure assessment is in progress. If you exit now, it may not be able to provide effective assessment results. Are you sure to exit?". The yes control 952 can be used to trigger the electronic device 100 to exit the exercise and blood pressure assessment. The no control 953 can be used to trigger the electronic device 100 to return to the exercise and blood pressure assessment.

[0405] It can be understood that the embodiments shown in FIGS. 9A-9F are only a set of examples, in the embodiments of the present application, the electronic device 100 can also display more, less or different interfaces than the above-mentioned embodiments when measuring the electrocardiogram signal of the user after the movement, and the electronic device 100 can also display more, less or different content than the above-mentioned embodiments in the interface, which is not limited herein.

[0406] In some application scenarios, after measuring the first blood pressure value of the user after the movement (i.e., the blood pressure value at the end of the movement), the electronic device 100 can measure the blood pressure value of the user after the movement again after detecting that the time length after the end of the movement reaches a preset time length (e.g., 3 minutes, 6 minutes, etc.). In this way, multiple blood pressure values of the user after the movement can be measured, and more accurate movement and blood pressure evaluation results can be obtained.

[0407] For example, after the electronic device 100 measures the electrocardiogram signal of the user after the end of the movement, the electronic device 100 can display an evaluation task interface 1000 as shown in FIG. 10A.

[0408] As shown in FIG. 10A, the evaluation task interface 1000 can include a task progress 1001, a current task 1002, and a start measurement control 1003. The task progress 1001 can be used to prompt the user for the number of tasks to be completed. For example, the task progress 1001 can include the text “2 measurement tasks to be completed”. The current task 1002 can be used to prompt the user for the task to be performed currently, or to prompt the user for the task being performed currently. For example, the current task 1002 can include the text “blood pressure measurement”, indicating that the current task 1002 can be used to prompt the user that the task to be performed currently is to measure the blood pressure of the user. In addition, the current task 1002 can also include the text “3 minutes after the end of the movement”, which is used to prompt the user that the movement state has ended and the time length has reached 3 minutes. The start measurement control 1003 can be used to trigger the electronic device 100 to measure the blood pressure value of the user after the end of the movement.

[0409] In some embodiments, the electronic device 100 can receive and respond to the click operation of the user on the start measurement control 1003 to measure the second blood pressure of the user after the end of the movement. During the blood pressure measurement, the electronic device 100 can display a blood pressure measurement interface. Optionally, a measurement method prompt interface can also be displayed before measuring the blood pressure. The specific content of the measurement method prompt interface and the blood pressure measurement interface can be referred to the related description in the above-mentioned embodiments of FIGS. 5G-5H, which will not be described herein again.

[0410] In some embodiments, the electronic device 100 can display a measurement prompt interface 1010 as shown in FIG. 10B when the electronic device 100 detects that the time duration after the user ends the exercise reaches a preset time duration 1 (e.g., 3 minutes, etc.).

[0411] As shown in FIG. 10B, the measurement prompt interface 1010 can include a blood pressure measurement prompt 1011 and a start measurement control 1012. The blood pressure measurement prompt 1011 can be used to prompt the user to complete the second blood pressure measurement after the end of the exercise. For example, the blood pressure measurement prompt 1011 can include the text “After exercise, you need to complete 3 blood pressure measurements. The second blood pressure measurement time is up. Please complete it in time for more accurate evaluation.” The start measurement control 1012 can be used to trigger the electronic device 100 to complete the second blood pressure measurement after the user exercises.

[0412] For another example, after the electronic device 100 measures the second blood pressure value of the user after the end of the exercise, the electronic device 100 can display an evaluation task interface 1020 as shown in FIG. 10C.

[0413] As shown in FIG. 10C, the evaluation task interface 1020 can include a task progress 1021, a current task 1022, and a start measurement control 1023. The task progress 1021 can be used to prompt the user for the number of tasks to be completed. For example, the task progress 1021 can include the text “1 measurement task to be completed.” The current task 1022 can be used to prompt the user for the task to be performed currently, or prompt the user for the task being performed currently. For example, the current task 1022 can include the text “blood pressure measurement”, indicating that the current task 1022 can be used to prompt the user that the task to be performed currently is to measure the blood pressure of the user. In addition, the current task 1022 can also include the text “6 minutes after the end of the exercise”, prompting the user that the exercise state has ended and the time duration after the end of the exercise has reached 6 minutes. The start measurement control 1023 can be used to trigger the electronic device 100 to measure the blood pressure value of the user after the end of the exercise.

[0414] In some embodiments, the electronic device 100 can receive and respond to the user's click operation on the start measurement control 1023 to measure the third blood pressure of the user after the end of the exercise. During the blood pressure measurement, the electronic device 100 can display a blood pressure measurement interface. Optionally, a measurement method prompt interface can also be displayed before the blood pressure measurement. The specific content of the measurement method prompt interface and the blood pressure measurement interface can refer to the related description in the above-mentioned embodiments of FIGS. 5G-5H, which will not be described here.

[0415] In some embodiments, the electronic device 100 can display a measurement prompt interface 1030 as shown in FIG. 10D when the electronic device 100 detects that the time duration after the user ends the exercise reaches a preset time duration 2 (e.g., 6 minutes, etc.).

[0416] As shown in FIG. 10D, the measurement prompt interface 1030 can include a blood pressure measurement prompt 1031 and a start measurement control 1032. The blood pressure measurement prompt 1031 can be used to prompt the user to complete the third blood pressure measurement after the end of the exercise. For example, the blood pressure measurement prompt 1031 can include the text "After exercise, you need to complete 3 blood pressure measurements. The third blood pressure measurement time is up. Please complete it in time for more accurate assessment." The start measurement control 1032 can be used to trigger the electronic device 100 to complete the third blood pressure measurement after the user's exercise.

[0417] It can be understood that the embodiments shown in FIGS. 10A-10D are only a set of examples. In the embodiments of the present application, the electronic device 100 can measure more, less, or at different times than the above-mentioned embodiments after the user's exercise, and the present application is not limited herein.

[0418] In some application scenarios, after completing the last blood pressure measurement after the user's exercise, the electronic device 100 can display the exercise and blood pressure assessment result based on the blood pressure values measured before and after the exercise (optionally combined with the ECG after the exercise). The exercise and blood pressure assessment result can include a cardiovascular health condition, which can include a cardiovascular risk assessment and a blood pressure response assessment. The cardiovascular risk assessment is used to indicate the cardiovascular risk of the user, and the blood pressure response assessment is used to indicate whether the blood pressure response of the user before and after the exercise is abnormal. In this way, the electronic device 100 can determine the exercise and blood pressure assessment result based on the blood pressure values before and after the user's exercise.

[0419] For example, after the electronic device 100 measures the last blood pressure value after the user's exercise, the electronic device 100 can display a blood pressure output interface 1050 as shown in FIG. 10E.

[0420] As shown in FIG. 10E, the blood pressure output interface 1050 can include the last blood pressure value measured by the electronic device 100, which can include a systolic pressure 1051 and a diastolic pressure 1052. For example, the systolic pressure 1051 can be "116 mmHg", and the diastolic pressure 1052 can be "71 mmHg". Optionally, the blood pressure output interface 1050 can also display a pulse 1053, which can be used to indicate the pulse of the user when measuring the blood pressure value. For example, the pulse 1053 can be 79 times / minute. The blood pressure output interface 1050 can also include a view assessment result control 1054. The view assessment result control 1054 can be used to trigger the electronic device 100 to display the exercise and blood pressure assessment result.

[0421] The electronic device 100 can receive and respond to a click operation of the user for the viewing evaluation result control 1054 to display an evaluation result interface 1060 as shown in FIG. 10F, which can be used to display the evaluation result of the current exercise and blood pressure assessment.

[0422] As shown in FIG. 10F, the evaluation result interface 1060 can include an exercise and blood pressure evaluation result, which can include a cardiovascular risk assessment 1061 and a blood pressure response assessment 1062. Among them, the cardiovascular risk assessment 1061 can be used to indicate the cardiovascular risk of the user, such as “low risk” and the like. The blood pressure response assessment 1062 can be used to indicate whether the blood pressure response of the user after exercise is normal, such as “no abnormalities” and the like. Optionally, the cardiovascular risk assessment 1061 can also include an annotation symbol 1061a, which can be used to trigger the electronic device 100 to display the detailed annotation corresponding to the cardiovascular risk assessment 1061. Optionally, the blood pressure response assessment 1062 can also include an annotation symbol 1062a, which can be used to trigger the electronic device 100 to display the detailed annotation corresponding to the blood pressure response assessment 1062. Further optionally, the evaluation result interface 1060 can also include a symptom bar 1063 and an add symptom control 1064. Among them, the symptom bar 1063 can be used to display the symptoms of the user before and after exercise. The add symptom control 1064 can be used to trigger the electronic device 100 to add the symptom selected by the user, and display the symptom added by the user in the symptom bar 1063. In addition, the evaluation result interface 1060 can also include a complete control 1065, which is used to trigger the electronic device 100 to update the exercise and blood pressure evaluation result based on the symptom added by the user.

[0423] The electronic device 100 can receive and respond to a click operation of the user for the add symptom control 1064 to display an add symptom interface 1070 as shown in FIG. 10G.

[0424] As shown in FIG. 10G, the add symptom interface 1070 can include one or more symptom entries, each of which can correspond to a symptom for the user to select. Optionally, the add symptom interface 1070 can also include one or more exertion level entries, each of which can correspond to an exertion level. Further optionally, the add symptom interface 1070 can include a textual prompt, such as “To accurately assess your health, please fill in the exertion level and symptoms after exercise truthfully.” The one or more exertion level entries can include a no feeling entry, an easy entry, a moderate entry 1071, a hard entry, a very hard entry, etc. Each of the exertion level entries can include a selection indicator, which can include a selected and an unselected state, to indicate whether the exertion level entry is selected by the user. For example, the moderate entry 1071 can include a selection indicator 1071a.

[0425] The electronic device 100 can receive and respond to a tap operation by the user on the moderate entry 1071, and set the selection indicator 1071a to the selected state in the add symptom interface 1070 shown in FIG. 10G.

[0426] The electronic device 100 can also receive and respond to an upward swipe operation by the user on the add symptom interface 1070, and display one or more symptom entries in the display, as shown in FIG. 10H.

[0427] As shown in FIG. 10H, the add symptom interface 1070 can also include one or more symptom entries, such as a no symptom entry 1072, a chest pain entry, a chest tightness entry, a palpitation entry, a dizziness entry, a nausea entry, an abdominal pain entry, etc. Each of the symptom entries can also include a selection indicator, which can include a selected and an unselected state, to indicate whether the exertion level entry is selected by the user. For example, the no symptom entry 1072 can include a selection indicator 1072a.

[0428] The electronic device 1000 can receive and respond to a tap operation by the user on the no symptom entry 1072, and set the selection indicator 1072a to the selected state in the add symptom interface 1070 shown in FIG. 10H.

[0429] In some embodiments, the electronic device 100 can receive and respond to an upward swipe operation by the user on the add symptom interface 1070, and display the remaining one or more symptom entries in the display, as shown in FIG. 101.

[0430] As shown in FIG. 101, the add symptom interface 1070 can further include more symptom entries, such as a dyspnea entry, and the like. In addition, the add symptom interface 1070 can further include a confirm control 1073 and a cancel control 1074. The confirm control 1073 can be used to trigger the electronic device 100 to return to the assessment result interface 1060 and display the user-selected exertion level and symptoms in the symptom bar 1063. The cancel control 1074 can be used to trigger the electronic device 100 to return to the assessment result interface 1060.

[0431] The electronic device 100 can receive and respond to a tapping operation of the user on the confirm control 1073 by displaying the assessment result interface 1060 as shown in FIG. 101.

[0432] As shown in FIG. 101, in the symptom bar 1063 of the assessment result interface 1060, the user-selected exertion level and symptoms, i.e., “exertion level: moderate” and “symptoms: no symptoms” can be displayed. Moreover, in some embodiments, at this time, the add symptom control 1064 can no longer be displayed in the symptom bar 1063. Other contents of the assessment result interface 1060 can refer to the related description in the above-described embodiment shown in FIG. 10F, which will not be described here again.

[0433] The electronic device 100 can receive and respond to a tapping operation of the user on the finish control 1065 by updating the exercise and blood pressure assessment result based on the user-added symptoms and exertion level, and display the assessment result interface 1080 as shown in FIG. 10K.

[0434] As shown in FIG. 10K, the assessment result interface 1080 can include the exercise and blood pressure assessment result updated by the electronic device 100 based on the user-added symptoms and exertion level. The updated exercise and blood pressure assessment result can include a cardiovascular risk assessment 1081 and a blood pressure response assessment 1082, and optionally, further include a re-assessment control 1083. The specific contents of the cardiovascular risk assessment 1081 and the blood pressure response assessment 1082 can refer to the related description in the above-described embodiment shown in FIG. 10F. At this time, the cardiovascular risk assessment 1081 can be “low risk”, and the blood pressure response assessment 1082 can be “no abnormalities found”, i.e., the updated exercise and blood pressure assessment result is the same as the exercise and blood pressure assessment result shown in FIG. 10F. The re-assessment control 1083 can be used to trigger the electronic device 100 to start the next exercise and blood pressure assessment.

[0435] It can be understood that the embodiments shown in FIGS. 10E-10K are only a set of examples, in the embodiments of the present application, the electronic device 100 can also output the motion and blood pressure evaluation results in a manner different from the above-mentioned embodiments when outputting the motion and blood pressure evaluation results, and the motion and blood pressure evaluation results output by the electronic device 100 can include more, less or different content from the above-mentioned embodiments, which is not limited herein.

[0436] In some application scenarios, after the electronic device 100 starts the motion and blood pressure evaluation function, the electronic device 100 can view the measurement data of the measurement tasks that have been completed in the evaluation process, such as the blood pressure value measured before exercise, the blood pressure value measured after exercise, and the electrocardiogram detection result, etc. In this way, the user can view the measurement data in real time during the motion and blood pressure evaluation process and understand their own health status.

[0437] For example, FIGS. 11A-11L show a set of interface schematic diagrams for viewing measurement data in the motion and blood pressure evaluation process provided by the embodiments of the present application.

[0438] In some embodiments, after the electronic device 100 measures the blood pressure value of the user before exercise, and the user has finished the exercise, the electronic device 100 can display an evaluation task interface 1100 as shown in FIG. 11A.

[0439] As shown in FIG. 11A, the evaluation task interface 1100 can include a task progress 1101, a current task 1102, and a start measurement control 1103. The task progress 1101 can be used to prompt the user for the number of tasks to be completed. For example, the task progress 1101 can include the text “4 measurement tasks to be completed”. The current task 1102 can be used to prompt the user for the task to be performed currently, or to prompt the user for the task being performed currently. For example, the current task 1102 can include the text “blood pressure measurement”, indicating that the current task 1102 can be used to prompt the user that the task to be performed currently is to measure the blood pressure of the user. In addition, the current task 1102 can also include the text “exercise finished”, which is used to prompt the user that the exercise state has been finished. The start measurement control 1103 can be used to trigger the electronic device 100 to measure the blood pressure value of the user after exercise. In some embodiments, the current task 1102 can also include a data viewing control 1104, which is used to trigger the electronic device 100 to display the measurement data of the motion and blood pressure evaluation.

[0440] The electronic device 100 can receive and respond to the user's click operation on the data viewing control 1104 to display a measurement data interface 1110 as shown in FIG. 11B, which can include the measurement data in the motion and blood pressure evaluation.

[0441] As shown in FIG. 11B, the measurement data interface 1110 can include one or more measurement task bars, such as a pre-exercise blood pressure bar 1111, a first post-exercise blood pressure bar 1112, and the like. If the measurement task has been completed in the current exercise and blood pressure assessment, the measurement data of the measurement task in the current exercise and blood pressure assessment can be displayed in the measurement task bar. If the measurement task has not been completed in the current exercise and blood pressure assessment, the measurement task bar can be grayed out, and the measurement data is empty. For example, in the embodiment shown in FIG. 11B, the pre-exercise blood pressure measurement has been completed, and thus the pre-exercise blood pressure bar 1111 can display the blood pressure value, i.e., “118 / 78 mmHg”, where 118 mmHg can be the systolic blood pressure measured at rest before the user exercises, and 78 mmHg can be the diastolic blood pressure measured at rest before the user exercises. Since other measurement tasks have not been completed, the other measurement task bars can be grayed out, and the electronic device 100 will not respond to the user’s operation on the grayed-out area. Optionally, the description of the measurement task can also be displayed in each measurement task bar, for example, the pre-exercise blood pressure bar 1111 can display the text “measured at rest before exercise”, the first post-exercise blood pressure bar 1112 can display the text “measured immediately after exercise”, and the like, which are not limited herein.

[0442] The electronic device 100 can receive and respond to the user’s up-swipe operation on the measurement data interface 1110, as shown in FIG. 11C, to display one or more measurement task bars in the measurement data interface 1110, such as an electrocardiogram bar 1113, a second post-exercise blood pressure bar 1114, and a third post-exercise blood pressure bar 1115, and the like. Since other measurement tasks have not been completed except for the pre-exercise blood pressure measurement, the measurement task bars shown in FIG. 11C can be grayed out. Optionally, the description of the measurement task can also be displayed in each measurement task bar, for example, the electrocardiogram bar 1113 can display the text “measured immediately after exercise”; the second post-exercise blood pressure bar 1114 can display the text “measured 3 minutes after exercise”; the third post-exercise blood pressure bar 1115 can display the text “measured 6 minutes after exercise”, and the like, which are not limited herein.

[0443] The electronic device 100 can receive and respond to the user’s up-swipe operation on the measurement data interface 1110 shown in FIG. 11C, as shown in FIG. 11D, the electronic device 100 can display other content in the measurement data interface 1110, such as a home page control 1116. The home page control 1116 can be used to trigger the electronic device 100 to return to the assessment task interface 1100, or return to the exercise and blood pressure assessment interface 520 shown in FIG. 5C, and the like.

[0444] In some embodiments, after the electronic device 100 measures the first blood pressure value after the user motion, the electronic device 100 can display the evaluation task interface 900 as shown in FIG. 11E.

[0445] As shown in FIG. 11E, the evaluation task interface 900 can include a task progress 901, a current task 902, and a start measurement control 903. The task progress 901 can be used to prompt the number of tasks to be completed by the user. For example, the task progress 901 can include the text “3 measurement tasks to be completed”. The current task 902 can be used to prompt the user to perform the current task, or to prompt the user to perform the task in progress. For example, the current task 902 can include the text “ECG measurement”, indicating that the current task 902 can be used to prompt the user to measure the ECG of the user. In addition, the current task 902 can also include the text “motion end”, which is used to prompt the user to end the motion state. The start measurement control 903 can be used to trigger the electronic device 100 to measure the ECG signal of the user after the motion. In some embodiments, the current task 902 can also include a data viewing control 904, which is used to trigger the electronic device 100 to display the measurement data of the motion and blood pressure evaluation.

[0446] The electronic device 100 can receive and respond to the user's click operation on the data viewing control 904 to display the measurement data interface 1110 as shown in FIG. 11F, which can include the measurement data in the motion and blood pressure evaluation.

[0447] As shown in FIG. 11F, the measurement data interface 1110 can include one or more measurement task bars, such as the pre-motion blood pressure bar 1111, the first post-motion blood pressure bar 1112, and the like. In the embodiment shown in FIG. 11F, the completed measurement tasks include the pre-motion blood pressure measurement and the first post-motion blood pressure measurement, and therefore the pre-motion blood pressure bar 1111 can display the blood pressure value, i.e. “118 / 78 mmHg”, and the first post-motion blood pressure bar 1112 can display the blood pressure value, i.e. “168 / 75 mmHg”. In addition to the above two measurement tasks, other measurement tasks are not completed, and therefore other measurement task bars can be grayed out, and the electronic device 100 will not respond to the user's operation on the grayed-out area. The specific description of the blood pressure value can refer to the related description in the embodiment shown in FIG. 11B above, which will not be repeated here. The electronic device 100 can also receive and respond to the user's upslide operation on the measurement data interface 1110 to view other measurement task bars in the measurement data interface 1110. The specific description of the other measurement task bars can refer to the related description in the embodiment shown in FIG. 11C above, which will not be repeated here.

[0448] In some embodiments, after the electronic device 100 measures the first blood pressure value and the electrocardiogram signal after the user motion, the electronic device 100 can display an evaluation task interface 1000 as shown in FIG. 11G.

[0449] As shown in FIG. 11G, the evaluation task interface 1000 can include a task progress 1001, a current task 1002, and a start measurement control 1003. The task progress 1001 can be used to prompt the user about the number of tasks to be completed. For example, the task progress 1001 can include the text “2 measurement tasks to be completed”. The current task 1002 can be used to prompt the user about the task to be performed currently, or the task being performed currently. For example, the current task 1002 can include the text “blood pressure measurement”, indicating that the current task 1002 can be used to prompt the user that the task to be performed currently is to measure the blood pressure of the user. In addition, the current task 1002 can also include the text “motion ended 3 minutes”, prompting the user that the motion state has ended and the motion ending duration has reached 3 minutes. The start measurement control 1003 can be used to trigger the electronic device 100 to measure the second blood pressure after the user motion. In some embodiments, the current task 1002 can also include a data viewing control 1004, which can be used to trigger the electronic device 100 to display the measurement data of the motion and blood pressure evaluation.

[0450] The electronic device 100 can receive and respond to the user’s click operation on the data viewing control 1004 to display a measurement data interface 1110 as shown in FIG. 11H, which can include the measurement data in the motion and blood pressure evaluation.

[0451] As shown in FIG. 11H, the measurement data interface 1110 can include one or more measurement task bars, such as a pre-motion blood pressure bar 1111, a first post-motion blood pressure bar 1112, and the like. In the embodiment shown in FIG. 11H, the completed measurement tasks include the pre-motion blood pressure measurement, the first post-motion blood pressure measurement, and the electrocardiogram measurement. At this time, the pre-motion blood pressure bar 1111 can display the blood pressure value, i.e., “118 / 78 mmHg”; the first post-motion blood pressure bar 1112 can display the blood pressure value, i.e., “168 / 75 mmHg”. The specific description of the blood pressure value can refer to the related description in the embodiment shown in FIG. 11B above, which will not be described here again.

[0452] The electronic device 100 can receive and respond to a user's up-swipe operation on the measurement data interface 1110, as shown in FIG. 11I, to display the remaining one or more measurement task bars, such as the electrocardiogram bar 1113, the second post-exercise blood pressure bar 1114, and the third post-exercise blood pressure bar 1115, and the like, in the display screen. Among them, in the embodiment shown in FIG. 11I, the completed measurement task also includes electrocardiogram measurement, and at this time, the electrocardiogram measurement result, i.e., "sinus rhythm", can be displayed in the electrocardiogram bar 1113. In addition to the above three measurement tasks, other measurement tasks are not completed, and other measurement task bars can be grayed out, and the electronic device 100 will not respond to the user's operation on the grayed-out area.

[0453] The electronic device 100 can also receive and respond to a user's up-swipe operation on the measurement data interface 1110 to view other content in the measurement data interface 1110. The specific description of the other content can be referred to the related description in the embodiment shown in FIG. 11D above, which will not be described here.

[0454] In some embodiments, after the electronic device 100 measures the second post-exercise blood pressure value of the user, the electronic device 100 can display the evaluation task interface 1020 as shown in FIG. 11J.

[0455] As shown in FIG. 11J, the evaluation task interface 1020 can include a task progress 1021, a current task 1022, and a start measurement control 1023. Among them, the task progress 1021 can be used to prompt the number of tasks to be completed by the user. For example, the task progress 1021 can include the text "1 measurement task to be completed". The current task 1022 can be used to prompt the task to be executed by the user currently, or to prompt the task being executed by the user currently. For example, the current task 1022 can include the text "blood pressure measurement", indicating that the current task 1022 can be used to prompt the user that the task to be executed currently is to measure the user's blood pressure. In addition, the current task 1022 can also include the text "6 minutes after exercise is completed", which is used to prompt the user that the exercise state has been completed and the exercise completion time has reached 6 minutes. The start measurement control 1023 can be used to trigger the electronic device 100 to measure the third post-exercise blood pressure of the user. In some embodiments, the current task 1022 can also include a data viewing control 1024, which is used to trigger the electronic device 100 to display the measurement data of the current exercise and blood pressure evaluation.

[0456] The electronic device 100 can receive and respond to a user's click operation on the data viewing control 1024 to display the measurement data interface 1110 as shown in FIG. 11K, which can include the measurement data in the current exercise and blood pressure evaluation.

[0457] As shown in FIG. 11K, the measurement data interface 1110 can include one or more measurement taskbars, such as a pre-exercise blood pressure bar 1111, a first post-exercise blood pressure bar 1112, and the like. In the embodiment shown in FIG. 11K, the completed measurement tasks include the pre-exercise blood pressure measurement, the first post-exercise blood pressure measurement, the electrocardiogram measurement, and the second post-exercise blood pressure measurement. At this time, the pre-exercise blood pressure bar 1111 can display the blood pressure value, i.e., “118 / 78 mmHg”; the first post-exercise blood pressure bar 1112 can display the blood pressure value, i.e., “168 / 75 mmHg”. The specific description of the blood pressure value can refer to the related description in the embodiment shown in FIG. 11B, which will not be repeated here.

[0458] The electronic device 100 can receive and respond to a user's up-swipe operation on the measurement data interface 1110, as shown in FIG. 11L, to display the remaining one or more measurement taskbars, such as the electrocardiogram bar 1113, the second post-exercise blood pressure bar 1114, and the third post-exercise blood pressure bar 1115, and the like, in the display screen. In the embodiment shown in FIG. 11L, the completed measurement tasks further include the electrocardiogram measurement and the second post-exercise blood pressure measurement. At this time, the electrocardiogram bar 1113 can display the electrocardiogram measurement result, i.e., “sinus rhythm”; the second post-exercise blood pressure bar 1114 can display the blood pressure value, i.e., “146 / 76 mmHg”. The third post-exercise blood pressure measurement has not been completed, so the third post-exercise blood pressure bar 1115 is grayed out, and the electronic device 100 will not respond to the user's operation on the grayed-out area.

[0459] The electronic device 100 can also receive and respond to a user's up-swipe operation on the measurement data interface 1110 to view other content in the measurement data interface 1110. The specific description of the other content can refer to the related description in the embodiment shown in FIG. 11D, which will not be repeated here.

[0460] It can be understood that the embodiments shown in FIGS. 11A-11L are only a set of examples. In the embodiments of the present application, the electronic device 100 can view the measurement data in the exercise and blood pressure evaluation process in a manner different from the above-described embodiments. In addition, the electronic device 100 can display more, less, or different measurement data than the above-described embodiments, which are not limited herein.

[0461] In some application scenarios, after starting the motion and blood pressure assessment, the electronic device 100 can output an exit prompt if receiving an operation of the user exiting the motion and blood pressure assessment. The exit prompt is used to inquire whether the user exits the motion and blood pressure assessment. After receiving the user confirmation operation, the electronic device 100 can output the measurement data of one or more measurement tasks completed in the motion and blood pressure assessment process. In this way, the electronic device 100 can also output the measurement data of the completed measurement tasks in the case of the user exiting the motion and blood pressure assessment, so as to facilitate the user to understand the health status.

[0462] For example, after measuring the blood pressure value before the motion, the electronic device 100 can receive and respond to the operation of the user exiting the motion and blood pressure assessment to display the exit prompt interface 950 as shown in FIG. 11M. The specific content of the exit prompt interface 950 can refer to the related description in the embodiment shown in FIG. 9F, which will not be repeated here.

[0463] The electronic device 100 can receive and respond to the clicking operation of the user on the control 952 to display the measurement data interface 1110 as shown in FIG. 11N.

[0464] As shown in FIG. 11N, the measurement data interface 1110 can include one or more measurement task bars, such as the pre-motion blood pressure bar 1111, the first post-motion blood pressure bar 1112, and the like. In the embodiment shown in FIG. 11K, the completed measurement task includes the blood pressure measurement before the motion, and therefore the blood pressure value, i.e., “118 / 78 mmHg”, can be displayed in the pre-motion blood pressure bar 1111. Other measurement task bars can be grayed out. The specific content of the measurement data interface 1110 shown in FIG. 11N can also refer to the related description in the embodiments shown in FIGS. 11B-11D, which will not be repeated here.

[0465] It can be understood that FIGS. 11M-11N are only a set of examples. In the embodiments of the present application, if the electronic device 100 exits the motion and blood pressure assessment at other times, the electronic device 100 can also display a measurement data interface based on the completed measurement tasks. The measurement data interface can display the measurement data of all completed measurement tasks, which is not limited in the present application.

[0466] In some application scenarios, after starting the motion and blood pressure assessment, the electronic device 100 can display different assessment task interfaces when performing different measurement tasks. The assessment task interface can include a tutorial viewing control. The electronic device 100 can receive and respond to the clicking operation of the user on the tutorial viewing control to display the assessment tutorial. In this way, the electronic device 100 can view the assessment tutorial at any time during the motion and blood pressure assessment, so as to guide the user to complete the motion and blood pressure assessment.

[0467] For example, the electronic device 100 can display the evaluation task interface 1020 as shown in FIG. 110. The evaluation task interface 1020 can include the tutorial viewing control 1025, which can be used to trigger the electronic device 100 to display the evaluation tutorial. The other specific content of the evaluation task interface 1020 can refer to the related description in the above-mentioned embodiments shown in FIG. 10C or FIG. 111, and will not be repeated here.

[0468] The electronic device 100 can receive and respond to the user's click operation on the tutorial viewing control 1025 to display the evaluation tutorial interface 530 as shown in FIG. 11P, which can be used to display the evaluation tutorial of the exercise and blood pressure evaluation. The specific content of the evaluation tutorial interface 530 can refer to the related description in the above-mentioned embodiments shown in FIG. 5D, and will not be repeated here.

[0469] It can be understood that the above-mentioned embodiments shown in FIGS. 110-11P are only examples. In the embodiments of the present application, the electronic device 100 can also view the evaluation tutorial during the exercise and blood pressure evaluation by other ways, or the electronic device 100 can view the evaluation tutorial at different time from the above-mentioned embodiments, which is not limited herein.

[0470] In some application scenarios, the electronic device 100 displays the exercise and blood pressure evaluation interface, which can also include the two-dimensional code of the application 1, which can be used to trigger the code scanning device (such as a smart phone, etc.) to download and install the application 1, which can be used to view the exercise and blood pressure evaluation results of the user. In this way, the user can synchronize the measurement data of the electronic device 100 through other electronic devices, and view the exercise and blood pressure evaluation results on other electronic devices through the application 1.

[0471] For example, the electronic device 100 can display the exercise and blood pressure evaluation interface 1200 as shown in FIG. 12A. The exercise and blood pressure evaluation interface 1200 can include the start evaluation control 1202, and optionally, can also include the data prompt 1201, which can be used to prompt the user whether the electronic device 100 stores historical measurement data. For example, the data prompt 1201 can include the text "No data", which can be used to prompt the user that the electronic device 100 currently does not store historical measurement data. The other content of the exercise and blood pressure evaluation interface 1200 can also refer to the related description in the above-mentioned embodiments shown in FIG. 5C, and will not be repeated here.

[0472] The electronic device 100 can receive and respond to the user's upslide operation on the exercise and blood pressure evaluation interface 1200 to display the evaluation record in the display screen as shown in FIG. 12B.

[0473] As shown in FIG. 12B, the motion and blood pressure assessment interface 1200 can further include an assessment record 1203. In some embodiments, if the electronic device 100 has not performed a motion and blood pressure assessment before, or the electronic device 100 has cleared the historical data, the assessment record 1203 can be empty, i.e., the assessment record 1203 can display a text prompt "No record" as shown in FIG. 12B, to prompt the user that the electronic device 100 does not store the assessment record.

[0474] The electronic device 100 can receive and respond to a user's up-swipe operation on the motion and blood pressure assessment interface 1200, as shown in FIG. 12C, to display a two-dimensional code 1204 in the display screen.

[0475] As shown in FIG. 12C, the motion and blood pressure assessment interface 1200 can further include the two-dimensional code 1204, and optionally, a text description 1205. The two-dimensional code 1204 can be a download two-dimensional code of the application 1. When another electronic device scans the two-dimensional code 1204, the installation package of the application 1 (e.g., the innovative application) can be downloaded and installed. The application 1 can be used to view the results of the motion and blood pressure assessment, and other details related to the motion and blood pressure assessment. The text description 1205 can be used to describe the function of the two-dimensional code 1204. For example, the text description 1205 can include "Please check the innovative application for details", "Scan the code with your phone to install the application 1", and the like. It can be understood that the embodiment herein is only an example, and in the embodiments of the present application, the text description 1205 can also include more, less, or different texts than the above-described embodiments, which are not limited herein. In some other embodiments, the electronic device 100 can also output the description related to the two-dimensional code 1204 in the form of voice broadcast, animation, picture, and the like, to facilitate the user to understand the function of the two-dimensional code 1204, which are not limited herein.

[0476] The electronic device 100 can receive and respond to a user's up-swipe operation on the motion and blood pressure assessment interface 1200 shown in FIG. 12C, as shown in FIG. 12D, to display one or more controls, such as a quit assessment control 1206, and the like, in the display screen.

[0477] As shown in FIG. 12D, the motion and blood pressure assessment interface 1200 can further include one or more controls, such as the quit assessment control 1206 and an about control 1207. The quit assessment control 1206 can be used to trigger the electronic device 100 to exit the motion and blood pressure assessment, and stop displaying the motion and blood pressure assessment interface 1200. The about control 1207 can be used to trigger the electronic device 100 to display a detailed introduction of the motion and blood pressure assessment function.

[0478] It can be understood that the embodiments shown in FIGS. 12A-12D are only a set of examples, in the embodiments of the present application, the electronic device 100 can also view the evaluation record in a manner different from the above-mentioned embodiments, and the two-dimensional code of the application 1, and the motion and blood pressure evaluation interface can also display more, less or different content from the above-mentioned embodiments, which are not limited herein.

[0479] In some application scenarios, the electronic device 100 can receive and respond to the operation of the user viewing the evaluation record to display the evaluation record. The evaluation record can display zero, one or more evaluation results, such as evaluation result 1, etc. The electronic device 100 can receive and respond to the click operation of the user on the evaluation result 1 to display the detailed content of the evaluation result 1. In this way, the electronic device 100 can provide the user with the evaluation record, so as to facilitate the user to compare the current evaluation result with the historical evaluation result and understand the health status of the user.

[0480] For example, the electronic device 100 can display a motion and blood pressure evaluation interface 1210 as shown in FIG. 12E. The motion and blood pressure evaluation interface 1210 can include a start evaluation control 1212, and optionally, can also include a data prompt 1211, which can be used to prompt the user whether the electronic device 100 stores historical measurement data. For example, the data prompt 1211 can include the word "history record", which can be used to prompt the user that the electronic device 100 currently stores historical measurement data. The other contents of the motion and blood pressure evaluation interface 1210 can also refer to the related description in the above-mentioned embodiment shown in FIG. 5C, which will not be repeated here.

[0481] The electronic device 100 can receive and respond to the upslide operation of the user on the motion and blood pressure evaluation interface 1210, as shown in FIG. 12F, to display one or more recent evaluation results in the display screen.

[0482] As shown in FIG. 12F, the exercise and blood pressure assessment interface 1210 can include the latest three assessment results, such as the assessment result 1213, the assessment result 1214, and the assessment result 1215. The assessment result 1213 is an exercise and blood pressure assessment result measured at 12:08 on December 12, and the exercise and blood pressure assessment result indicates that the cardiovascular risk level of the user is low risk. The assessment result 1214 is an exercise and blood pressure assessment result measured at 13:30 on December 09, and the exercise and blood pressure assessment result indicates that the cardiovascular risk level of the user is medium risk. The assessment result 1215 is an exercise and blood pressure assessment result measured at 15:30 on December 08, and the exercise and blood pressure assessment result indicates that the cardiovascular risk level of the user is high risk. It can be understood that the embodiment herein is only an example, and in the embodiments of the present application, the electronic device 100 can also display more, less or different assessment results than the above-mentioned embodiments, which are not limited herein.

[0483] The electronic device 100 can receive and respond to the upslide operation of the user on the exercise and blood pressure assessment interface 1210 shown in FIG. 12F to display the latest exercise and blood pressure assessment result.

[0484] As shown in FIG. 12G, the exercise and blood pressure assessment interface 1210 can also display the latest exercise and blood pressure assessment result, which can include the cardiovascular risk assessment 1216 and the blood pressure response assessment 1217. The cardiovascular risk assessment 1216 can be used to indicate the exercise and cardiovascular risk of the user, such as “low risk”. The blood pressure response assessment 1217 can be used to indicate whether the blood pressure response of the user after exercise is normal, such as “no abnormalities”. Optionally, the cardiovascular risk assessment 1216 can also include the annotation symbol 1216a, which can be used to trigger the electronic device 100 to display the detailed annotation corresponding to the cardiovascular risk assessment 1216. Optionally, the blood pressure response assessment 1217 can also include the annotation symbol 1217a, which can be used to trigger the electronic device 100 to display the detailed annotation corresponding to the blood pressure response assessment 1217. In addition, the exercise and blood pressure assessment interface 1210 can also include the re-assessment control 1218, which is used to trigger the electronic device 100 to perform an exercise and blood pressure assessment again.

[0485] In other embodiments, the electronic device 100 can display the exercise and blood pressure assessment interface 1210 as shown in FIG. 12H, which can display one or more latest assessment results, such as the assessment result 1213. The specific content of the one or more latest assessment results can be referred to the related description in the embodiment shown in FIG. 12F above, which will not be described here.

[0486] The electronic device 100 can receive and respond to a click operation of the user on the evaluation result 1213 to display an evaluation record interface 1220 as shown in FIG. 121.

[0487] As shown in FIG. 121, the evaluation record interface 1220 can include a cardiovascular risk evaluation 1221 and a blood pressure response evaluation 1222. The cardiovascular risk evaluation 1221 is used to indicate the cardiovascular risk level obtained in this evaluation, for example, “low risk”; the blood pressure response evaluation 1222 is used to indicate whether the blood pressure response obtained in this evaluation is abnormal, for example, “no abnormalities found”. Optionally, the evaluation record interface 1220 can also display the measurement data of one or more measurement tasks, such as the pre-exercise blood pressure bar 1223, etc. The pre-exercise blood pressure bar 1223 can display the blood pressure value obtained by resting measurement before exercise, for example, “128 / 78 mmHg”.

[0488] The electronic device 100 can also receive and respond to a swipe-up operation of the user on the evaluation record interface 1220 to display more measurement data of the measurement task. The specific measurement data can also refer to the related description in the above-mentioned embodiments of FIGS. 11A-11P, which will not be repeated here.

[0489] It can be understood that the above-mentioned embodiments of FIGS. 12E-12I are only a set of examples. In the embodiments of the present application, the electronic device 100 can also view the evaluation record in a manner different from the above-mentioned embodiments, and the exercise and blood pressure evaluation interface can also display more, less or different content than the above-mentioned embodiments, which is not limited in the present application.

[0490] In some application scenarios, the electronic device 100 can display an evaluation result interface, which can include exercise and blood pressure evaluation results, and can also include one or more annotation symbols, which can be used to trigger the electronic device 100 to display detailed annotations of the exercise and blood pressure evaluation results. In this way, the electronic device 100 can display detailed annotations of the evaluation results to help the user better understand their own health status.

[0491] For example, the electronic device 100 can display an evaluation result interface 1300 as shown in FIG. 13A. The evaluation result interface 1300 can include a motion and blood pressure evaluation result, which can include a cardiovascular risk evaluation 1301 and a blood pressure response evaluation 1302. The specific content of the cardiovascular risk evaluation 1301 and the blood pressure response evaluation 1302 can refer to the related description in the embodiment shown in FIG. 10F described above, and will not be repeated here. Optionally, the cardiovascular risk evaluation 1301 can further include a note symbol 1301a, which can be used to trigger the electronic device 100 to display detailed notes corresponding to the cardiovascular risk evaluation 1301. Optionally, the blood pressure response evaluation 1302 can further include a note symbol 1302a, which can be used to trigger the electronic device 100 to display detailed notes corresponding to the blood pressure response evaluation 1302. Further optionally, the evaluation result interface 1300 can further include a re-evaluation control 1303. The re-evaluation control 1303 can be used to trigger the electronic device 100 to perform a motion and blood pressure evaluation again.

[0492] The electronic device 100 can receive and respond to a user's click operation on the note symbol 1301a to display a low risk explanation interface 1310 as shown in FIG. 13B.

[0493] As shown in FIG. 13B, the low risk explanation interface 1310 can include a low risk explanation 1311, which can be used to explain the low risk of cardiovascular risk in detail. For example, the low risk explanation 1311 can include the text "Your exercise cardiovascular risk is low. Your blood pressure before exercise is normal (high value) level, and the blood pressure change after exercise is within the normal range, and the electrocardiogram shows no abnormalities. It is recommended that you maintain a regular exercise habit. If you have discomfort, please seek medical treatment in time." In addition, the low risk explanation interface 1310 can further include a reference prompt 1312, for example, "The above information is for reference only and cannot be used as a medical diagnosis basis."

[0494] Further, the electronic device 100 can display an evaluation result interface 1320 as shown in FIG. 13C. The evaluation result interface 1320 can include an exercise and blood pressure evaluation result, which can include a cardiovascular risk evaluation 1321 and a blood pressure response evaluation 1322. The cardiovascular risk evaluation 1321 can be used to indicate the cardiovascular risk of the user, such as “medium risk” and the like. The blood pressure response evaluation 1322 can be used to indicate whether the blood pressure response of the user after exercise is normal, such as “slow blood pressure recovery” and the like. Optionally, the cardiovascular risk evaluation 1321 can further include a note symbol 1321a, which can be used to trigger the electronic device 100 to display detailed notes corresponding to the cardiovascular risk evaluation 1321. Optionally, the blood pressure response evaluation 1322 can further include a note symbol 1322a, which can be used to trigger the electronic device 100 to display detailed notes corresponding to the blood pressure response evaluation 1322. Further optionally, the evaluation result interface 1320 can further include a re-evaluation control 1323. The re-evaluation control 1323 can be used to trigger the electronic device 100 to perform an exercise and blood pressure evaluation again.

[0495] The electronic device 100 can receive and respond to a user's click operation on the note symbol 1321a to display a medium risk explanation interface 1330 as shown in FIG. 13D.

[0496] As shown in FIG. 13D, the medium risk explanation interface 1330 can include a medium risk explanation 1331, which can be used to explain the medium risk of the cardiovascular risk in detail. For example, the medium risk explanation 1331 can include the text “Your exercise cardiovascular risk is medium risk. Your blood pressure before exercise is at a normal (high value) level, and the blood pressure recovery speed after exercise is slow, which indicates that you may have a risk of coronary artery disease. It is recommended that you maintain a healthy diet and regular work and rest, and pay attention to blood pressure fluctuations.” In addition, the medium risk explanation interface 1330 can further include a reference prompt 1332, such as “The above information is for reference only and cannot be used as a medical diagnosis basis.”

[0497] Further, the electronic device 100 can display an evaluation result interface 1320 as shown in FIG. 13E. The evaluation result interface 1320 can include an exercise and blood pressure evaluation result, which can include a cardiovascular risk evaluation 1321 and a blood pressure response evaluation 1322. The cardiovascular risk evaluation 1321 can be used to indicate the cardiovascular risk of the user, such as “medium risk”, etc. The blood pressure response evaluation 1322 can be used to indicate whether the blood pressure response of the user after exercise is normal, such as “no abnormalities found”, etc. Optionally, the cardiovascular risk evaluation 1321 can further include a note symbol 1321a, which can be used to trigger the electronic device 100 to display detailed notes corresponding to the cardiovascular risk evaluation 1321. Optionally, the blood pressure response evaluation 1322 can further include a note symbol 1322a, which can be used to trigger the electronic device 100 to display detailed notes corresponding to the blood pressure response evaluation 1322. Further optionally, the evaluation result interface 1320 can further include a re-evaluation control 1323. The re-evaluation control 1323 can be used to trigger the electronic device 100 to perform an exercise and blood pressure evaluation again.

[0498] The electronic device 100 can receive and respond to a user's click operation on the note symbol 1322a to display a blood pressure recovery slow explanation interface 1340 as shown in FIG. 13F.

[0499] As shown in FIG. 13F, the blood pressure recovery slow explanation interface 1340 can include a blood pressure recovery slow explanation 1341, which can be used to explain in detail the medium risk of cardiovascular risk. For example, the blood pressure recovery slow explanation 1341 can include the text “This evaluation detects that your blood pressure recovers slowly. Blood pressure recovery slow means that the blood pressure level 6 minutes after exercise has not been reduced to the blood pressure level before exercise, which may be due to excessive exercise intensity or the presence of cardiovascular abnormalities. It is recommended that you reduce the intensity of the next exercise and control the exercise heart rate to be below about 163 beats per minute in the reserve heart rate 1 zone, and appropriately reduce the exercise duration.” In addition, the blood pressure recovery slow explanation interface 1340 can further include a reference prompt 1342, such as “The above information is for reference only and is not a basis for medical diagnosis”.

[0500] It can be understood that the above embodiments shown in FIGS. 13A-13F are only a set of examples. In the embodiments of the present application, the electronic device 100 can also view detailed notes of the evaluation result in a manner different from the above embodiments, or the electronic device 100 can also display more, less or different detailed notes of the evaluation result than the above embodiments, which are not limited herein.

[0501] In some embodiments, if the blood pressure response is evaluated as a low blood pressure response, the electronic device 100 can display a low blood pressure response description. For example, the low blood pressure response description can include: "This evaluation detects that you have a low blood pressure response. Low blood pressure response indicates that blood pressure decreases too much at the end of exercise, which may be caused by excessive exercise intensity and cardiovascular abnormalities, resulting in abnormal blood circulation. It is recommended that you reduce the intensity of the next exercise and control the exercise heart rate in the reserve heart rate 0 zone, about 142 times per minute or less, and appropriately reduce the exercise duration."

[0502] In some embodiments, if the blood pressure response is evaluated as a low blood pressure response, the electronic device 100 can display a low blood pressure response description. For example, the low blood pressure response description can include: "This evaluation detects that you have a low blood pressure response. Low blood pressure response indicates that blood pressure decreases too much at the end of exercise, which may be caused by excessive exercise intensity and cardiovascular abnormalities, resulting in abnormal blood circulation. It is recommended that you reduce the intensity of the next exercise and control the exercise heart rate in the reserve heart rate 0 zone, about 142 times per minute or less, and appropriately reduce the exercise duration."

[0503] In some embodiments, if the blood pressure response is evaluated as a normal blood pressure response, the electronic device 100 can display a normal blood pressure response description. For example, the normal blood pressure response description can include: "This evaluation does not detect that you have a blood pressure abnormal response. The blood pressure increase after exercise is within the normal range, and the blood pressure recovery speed is not abnormal."

[0504] In some embodiments, if there is a data missing, for example, the xth blood pressure value after exercise is missing, the electronic device 100 can display a data missing description. For example, the data missing description can include: "This evaluation does not detect the xth blood pressure measurement result after exercise, which may affect the evaluation result. It is recommended to perform a complete evaluation next time."

[0505] In some embodiments, if the cardiovascular risk evaluation is high risk, the electronic device 100 can display a high risk description. For example, the high risk description can include: "Your exercise cardiovascular risk is high risk. Your blood pressure before exercise is normal (high value) level, and low blood pressure response occurs after exercise, and the ST segment is abnormally depressed in the electrocardiogram. There may be myocardial ischemia or other cardiovascular abnormalities. Please rest. If you still have palpitations, chest pain, chest tightness, and other discomfort symptoms, please seek medical attention in time."

[0506] It can be understood that the above embodiments are only a set of examples. In the embodiments of the present application, the electronic device 100 can also display more, less, or different detailed annotations of the evaluation results than the above embodiments. The present application is not limited herein.

[0507] In some application scenarios, if an abnormal situation is detected during the motion and blood pressure evaluation process of the electronic device 100, for example, ECG measurement failure, ECG measurement stop, ECG measurement abnormality, abnormal wearing, blood pressure measurement failure, wearing too loose, wearing too tight, and the like, the electronic device 100 can output an abnormality prompt. The abnormality prompt can be used to prompt the user of the abnormal situation.

[0508] For example, if the electronic device 100 detects ECG measurement failure, the electronic device 100 can display an ECG measurement failure interface 1400 as shown in FIG. 14A.

[0509] As shown in FIG. 14A, the ECG measurement failure interface 1400 can include an ECG measurement failure prompt 1401, which can be used to prompt the user of ECG measurement failure and how to correctly measure the ECG signal. For example, the ECG measurement failure prompt 1401 can include the text “Please wear the watch properly, keep still; keep the finger in contact with the electrode; if the skin is dry, you can wipe the finger with a small amount of water”. Optionally, the ECG measurement failure interface 1400 can also include a know control 1402, which can be used to trigger the electronic device 100 to stop displaying the ECG measurement failure interface 1400.

[0510] For another example, if the electronic device 100 detects ECG measurement stop, the electronic device 100 can display an ECG measurement stop interface 1410 as shown in FIG. 14B.

[0511] As shown in FIG. 14B, the ECG measurement stop interface 1410 can include an ECG measurement stop prompt 1411, which can be used to prompt the user of ECG measurement stop. For example, the ECG measurement stop prompt 1411 can include the text “Measurement stopped. To ensure accurate measurement, please tap gently, do not press the electrode hard”. Optionally, the ECG measurement stop interface 1410 can also include a know control 1412, which can be used to trigger the electronic device 100 to stop displaying the ECG measurement stop interface 1410.

[0512] For another example, if the electronic device 100 detects ECG measurement abnormality, the electronic device 100 can display an ECG measurement abnormality interface 1420 as shown in FIG. 14C.

[0513] As shown in FIG. 14C, the ECG measurement abnormality interface 1420 can include an ECG measurement abnormality prompt 1421, which can be used to prompt the user of the ECG measurement abnormality. For example, the ECG measurement abnormality prompt 1421 can include the text "The electrode is suspected to be dirty, and cannot be measured normally. Please clean it and try again later." Optionally, the ECG measurement abnormality interface 1420 can further include a know control 1422, which can be used to trigger the electronic device 100 to stop displaying the ECG measurement abnormality interface 1420.

[0514] For another example, if the electronic device 100 detects a wearing abnormality, the electronic device 100 can display a wearing abnormality interface 1430, as shown in FIG. 14D.

[0515] As shown in FIG. 14D, the wearing abnormality interface 1430 can include a wearing abnormality prompt 1431, which can be used to prompt the user of the wearing abnormality. For example, the wearing abnormality prompt 1431 can include the text "Please wear the watch to measure." The wearing abnormality prompt 1431 can further include an animation 1431a, which can be used to indicate the user to wear the watch. Optionally, the wearing abnormality interface 1430 can further include a re-measurement control 1432, which can be used to trigger the electronic device 100 to restart the motion and blood pressure measurement.

[0516] For another example, if the electronic device 100 detects a blood pressure measurement failure, the electronic device 100 can display a blood pressure measurement failure interface 1440, as shown in FIG. 14E.

[0517] As shown in FIG. 14E, the blood pressure measurement failure interface 1440 can include a blood pressure measurement failure prompt 1441, which can be used to prompt the user of the blood pressure measurement failure, and can be used to prompt the user on how to measure the blood pressure correctly. For example, the blood pressure measurement failure prompt 1441 can include the text "Please sit still and avoid talking; do not move the arm or the finger; do not press the watch against the chest." Optionally, the blood pressure measurement failure interface 1440 can further include a know control 1442, which can be used to trigger the electronic device 100 to stop displaying the blood pressure measurement failure interface 1440.

[0518] For another example, if the electronic device 100 detects that the watch is worn too loosely, the electronic device 100 can display a wearing too loosely interface 1450, as shown in FIG. 14F.

[0519] As shown in FIG. 14F, the wearing too loose interface 1450 can include a wearing too loose prompt 1451, which can be used to prompt the user to wear too loose and can also be used to prompt the user how to adjust the wearing tightness. For example, the wearing too loose prompt 1451 can include the text "It is detected that you wear too loose this time, and the measurement result can be inaccurate. It is suggested to re-measure after adjusting the watchband according to the wearing guide". Optionally, the wearing too loose interface 1450 can further include a knowing control 1452, which can be used to trigger the electronic device 100 to stop displaying the wearing too loose interface 1450. Further optionally, the wearing too loose interface 1450 can further include a wearing guide control 1453. The wearing guide control 1453 can be used to trigger the electronic device 100 to display the wearing guide.

[0520] The electronic device 100 can receive and respond to the user's click operation on the wearing guide control 1453 to display the wearing guide interface 1460 as shown in FIG. 14G.

[0521] As shown in FIG. 14G, the wearing guide interface 1460 can include a wearing guide 1461, which can include a picture 1461a and text 1461b. The wearing guide 1461 can be used to indicate how the user correctly wears. For example, the text 1461b can include "Buckle to the third grid". Optionally, the wearing guide interface 1460 can further include a knowing control 1462, which can be used to trigger the electronic device 100 to stop displaying the wearing guide interface 1460.

[0522] For another example, if the electronic device 100 detects that the wearing is too loose, the electronic device 100 can display the wearing too loose interface 1470 as shown in FIG. 14H.

[0523] As shown in FIG. 14H, the wearing too loose interface 1470 can include a wearing too loose prompt 1471, which can be used to prompt the user to wear too loose and can also be used to prompt the user how to adjust the wearing tightness. For example, the wearing too loose prompt 1471 can include the text "It is detected that you wear too loose this time, and the measurement result can be inaccurate. It is suggested to re-measure after adjusting the watchband according to the wearing guide". Optionally, the wearing too loose interface 1470 can further include a knowing control 1472, which can be used to trigger the electronic device 100 to stop displaying the wearing too loose interface 1470. Further optionally, the wearing too loose interface 1470 can further include a wearing guide control 1473. The wearing guide control 1473 can be used to trigger the electronic device 100 to display the wearing guide.

[0524] The electronic device 100 can receive and respond to a click operation of the user for wearing the hand guiding control 1473, and display the wearing hand guiding interface 1460 as shown in FIG. 14G.

[0525] It can be understood that the embodiments shown in FIGS. 14A-14H are only some examples, and in the embodiments of the present application, the electronic device 100 can also output an abnormal prompt corresponding to an abnormal situation when detecting that the abnormal situation occurs. The specific content of the abnormal situation and the abnormal prompt is not limited in the embodiments of the present application.

[0526] In some application scenarios, the electronic device 100 can output an abnormal prompt corresponding to an abnormal situation when detecting that the electronic device 100 occurs an abnormal situation (for example, airbag abnormality, power abnormality, temperature abnormality, etc.). The abnormal prompt can be used to prompt the user that the device of the current electronic device 100 occurs an abnormal situation. In this way, in the case that the electronic device 100 occurs an abnormal situation, the electronic device 100 can prompt the user that the abnormality occurs, so as to facilitate the user to solve the abnormal situation in time.

[0527] For example, if the electronic device 100 detects a pressure abnormality, the pressure abnormality interface 1500 as shown in FIG. 15A can be displayed.

[0528] As shown in FIG. 15A, the pressure abnormality interface 1500 can include a pressure abnormality prompt 1501, which can be used to prompt the user of the pressure abnormality and also can be used to prompt the user how to handle. For example, the pressure abnormality prompt 1501 can include the text "pressure abnormality, please check the airbag and watch connection before measuring". Optionally, the pressure abnormality interface 1500 can also include a know control 1502, which can be used to trigger the electronic device 100 to stop displaying the pressure abnormality interface 1500.

[0529] For another example, if the electronic device 100 detects that the power is too low, the power too low interface 1510 as shown in FIG. 15B can be displayed.

[0530] As shown in FIG. 15B, the power too low interface 1510 can include a power too low prompt 1511, which can be used to prompt the user of the power too low. For example, the power too low prompt 1511 can include the text "current power is too low, blood pressure measurement cannot be performed, please charge before measuring". Optionally, the power too low interface 1510 can also include a know control 1512, which can be used to trigger the electronic device 100 to stop displaying the power too low interface 1510.

[0531] For another example, if the electronic device 100 detects that the temperature is too low, the temperature abnormality interface 1520 as shown in FIG. 15C can be displayed.

[0532] As shown in FIG. 15C, the temperature too low interface 1520 can include a temperature too low prompt 1521, which can be used to prompt the user that the temperature is too low. For example, the temperature too low prompt 1521 can include the text "Watch temperature is too low, affecting blood pressure measurement, please try again later". Optionally, the temperature too low interface 1520 can further include an acknowledge control 1522, which can be used to trigger the electronic device 100 to stop displaying the temperature too low interface 1520.

[0533] For another example, if the electronic device 100 detects that the temperature is too high, the electronic device 100 can display a temperature too high interface 1530 as shown in FIG. 15D.

[0534] As shown in FIG. 15D, the temperature too high interface 1530 can include a temperature too high prompt 1531, which can be used to prompt the user that the temperature is too high. For example, the temperature too high prompt 1531 can include the text "Watch temperature is too high, affecting blood pressure measurement, please try again later". Optionally, the temperature too high interface 1530 can further include an acknowledge control 1532, which can be used to trigger the electronic device 100 to stop displaying the temperature too high interface 1530.

[0535] It can be understood that the above embodiments shown in FIGS. 15A-15D are only some examples, and in the embodiments of the present application, the electronic device 100 can also output an abnormal prompt corresponding to other abnormal conditions of the electronic device 100 when detecting the abnormal conditions, and the specific content of the abnormal conditions and the abnormal prompt is not limited in the embodiments of the present application.

[0536] In some application scenarios, the electronic device 100 can output a blood pressure abnormal prompt when detecting a blood pressure abnormality (for example, high blood pressure or low blood pressure), which can be used to prompt the user that the current measured blood pressure is abnormal. In this way, the electronic device 100 can prompt the user of the blood pressure abnormality when detecting the blood pressure abnormality, so as to enable the user to learn about the blood pressure abnormality in time.

[0537] For example, if the electronic device 100 detects that the high blood pressure value (systolic pressure) of the blood pressure value is higher than the upper limit of the measurement range, the electronic device 100 can display a blood pressure abnormal interface 1540 as shown in FIG. 15E.

[0538] As shown in Fig. 15E, the blood pressure abnormality interface 1540 can include a blood pressure abnormality prompt 1541, which can be used to prompt the user of the blood pressure abnormality. For example, the blood pressure abnormality prompt 1541 can include the text "High pressure value is higher than the upper limit of the measurement range. Please measure after rest. If it occurs multiple times, please consult a professional opinion." Optionally, the blood pressure abnormality interface 1540 can further include a know control 1542, which can be used to trigger the electronic device 100 to stop displaying the blood pressure abnormality interface 1540.

[0539] For another example, if the electronic device 100 detects that the low pressure value (diastolic pressure) of the blood pressure value is higher than the upper limit of the measurement range, the electronic device 100 can display a blood pressure abnormality interface 1550 as shown in Fig. 15F.

[0540] As shown in Fig. 15F, the blood pressure abnormality interface 1550 can include a blood pressure abnormality prompt 1551, which can be used to prompt the user of the blood pressure abnormality. For example, the blood pressure abnormality prompt 1551 can include the text "Low pressure value is higher than the upper limit of the measurement range. Please measure after rest. If it occurs multiple times, please consult a professional opinion." Optionally, the blood pressure abnormality interface 1550 can further include a know control 1552, which can be used to trigger the electronic device 100 to stop displaying the blood pressure abnormality interface 1550.

[0541] For another example, if the electronic device 100 detects that the low pressure value (diastolic pressure) of the blood pressure value is higher than the upper limit of the measurement range, the electronic device 100 can display a blood pressure abnormality interface 1550 as shown in Fig. 15F.

[0542] As shown in Fig. 15G, the blood pressure abnormality interface 1560 can include a blood pressure abnormality prompt 1561, which can be used to prompt the user of the blood pressure abnormality. For example, the blood pressure abnormality prompt 1561 can include the text "High pressure value is lower than the lower limit of the measurement range. Blood pressure is too low. Please consult a professional opinion." Optionally, the blood pressure abnormality interface 1560 can further include a know control 1562, which can be used to trigger the electronic device 100 to stop displaying the blood pressure abnormality interface 1560.

[0543] For another example, if the electronic device 100 detects that the low pressure value (diastolic pressure) of the blood pressure value is higher than the upper limit of the measurement range, the electronic device 100 can display a blood pressure abnormality interface 1550 as shown in Fig. 15F.

[0544] As shown in FIG. 15H, the blood pressure abnormality interface 1570 can include a blood pressure abnormality prompt 1571, which can be used to prompt the user of the blood pressure abnormality. For example, the blood pressure abnormality prompt 1571 can include the text "Low pressure value is below the upper and lower limits of the measurement range. Blood pressure is too low. It is recommended to consult a professional opinion." Optionally, the blood pressure abnormality interface 1570 can further include a know control 1572, which can be used to trigger the electronic device 100 to stop displaying the blood pressure abnormality interface 1570.

[0545] It can be understood that the embodiments shown in FIGS. 15E-15H are only some examples. In embodiments of the present application, the electronic device 100 can also output an abnormality prompt corresponding to other abnormal situations when the electronic device 100 detects the occurrence of the other abnormal situations. The specific content of the abnormal situations and the abnormality prompts is not limited in the embodiments of the present application.

[0546] In some application scenarios, if the electronic device 100 detects that the user does not complete the blood pressure measurement before and after the exercise according to the evaluation tutorial during the exercise and blood pressure evaluation process, the electronic device 100 can output a no evaluation result prompt, which is used to prompt the user that the operation is wrong and the evaluation result cannot be obtained. In this way, the electronic device 100 can output the no evaluation result prompt when the user does not complete the exercise and blood pressure evaluation according to the evaluation tutorial, so as to avoid providing inaccurate evaluation results to the user in the case of missing data or incorrect data.

[0547] For example, if the electronic device 100 detects that the user does not complete the blood pressure measurement before the exercise and / or does not complete the blood pressure measurement after the exercise according to the evaluation tutorial during the exercise and blood pressure evaluation process, the electronic device 100 can display a no result prompt interface 1600 as shown in FIG. 16A.

[0548] As shown in FIG. 16A, the no result prompt interface 1600 can include a no evaluation result prompt 1601, which is used to prompt the user that the operation is wrong and the evaluation result cannot be obtained. For example, the no evaluation result prompt 1601 can include the text "Since you did not complete the blood pressure measurement before and after the exercise as prompted, we cannot provide you with the blood pressure response and exercise cardiovascular risk evaluation result at present." Optionally, the no result prompt interface 1600 can further include a view details control 1602 and / or an ignore control 1603. The view details control 1602 can be used to trigger the electronic device 100 to view the details of the evaluation result of the current exercise and blood pressure evaluation. The ignore control 1603 can be used to trigger the electronic device 100 to stop displaying the no result prompt interface 1600.

[0549] The electronic device 100 can receive and respond to a click operation of the user for the view details control 1602, and display an evaluation result output interface 1610 as shown in FIG. 16B.

[0550] As shown in FIG. 16B, the evaluation result output interface 1610 can include a cardiovascular risk evaluation 1611 and a blood pressure response evaluation 1612. Among them, the cardiovascular risk evaluation 1611 can be no evaluation result, and the blood pressure response evaluation 1612 can be no evaluation result. In addition, the evaluation result output interface 1610 can also include a re-evaluation control 1613, which can be used to trigger the electronic device 100 to perform the exercise and blood pressure evaluation again.

[0551] It can be understood that the embodiments shown in FIGS. 16A-16B are only examples. In the embodiments of the present application, the electronic device 100 can also output a no evaluation result prompt in the case of missing measurement data caused by other measurement abnormalities, and the evaluation result at this time is no evaluation result, which is not limited in the present application. In addition, in some other embodiments, the electronic device 100 can also display more, less or different content than the above embodiments when outputting no evaluation result, which is not limited in the present application.

[0552] In some application scenarios, the electronic device 100 can display the type of exercise suitable for the current state of the user based on the blood pressure value before exercise after measuring the blood pressure value before exercise. In this way, the electronic device 100 can recommend suitable exercises for the user based on the user's state, so as to facilitate the user to select the exercise more suitable for his own state and ensure the safety of the exercise.

[0553] For example, when the electronic device 100 persistently measures a high blood pressure value before exercise (for example, greater than or equal to 180 / 110 mmHg), it can output an exercise suggestion interface 1700 as shown in FIG. 17A.

[0554] As shown in FIG. 17A, the exercise suggestion interface 1700 can include an exercise suggestion 1701 for suggesting an exercise suitable for the user based on the blood pressure value before the user exercises. For example, the exercise suggestion 1701 can include the text "Current blood pressure is high (≥ 180 / 110 mmHg), it is suggested to avoid medium-high intensity exercise. If you feel uncomfortable, please stop exercising, pay attention to rest, and seek medical treatment if necessary", which can be used to prompt the user that the blood pressure is high and it is not suitable for medium-high intensity exercise. In addition, the exercise suggestion interface 1700 can also include a start exercise control 1702 and a terminate assessment control 1703. The start exercise control 1702 can be used to trigger the electronic device 100 to display one or more exercise types suitable for the current condition of the user (i.e., low intensity exercise). The terminate assessment control 1703 can be used to trigger the electronic device 100 to terminate the exercise and blood pressure assessment.

[0555] The electronic device 100 can receive and respond to the user's click operation on the start exercise control 1702 to display the exercise selection interface 1710 as shown in FIG. 17B.

[0556] As shown in FIG. 17B, the exercise selection interface 1710 can include one or more exercise items, each of which can correspond to a low-intensity exercise type. For example, the one or more exercise intensities can include an outdoor walking item 1711 and an indoor walking item 1712, etc.

[0557] As another example, when the electronic device 100 persistently detects that the blood pressure value before the user exercises is high (e.g., greater than or equal to 140 / 90 mmHg), the electronic device 100 can output the exercise suggestion interface 1720 as shown in FIG. 17C.

[0558] As shown in FIG. 17C, the exercise suggestion interface 1720 can include an exercise suggestion 1721 for suggesting an exercise suitable for the user based on the blood pressure value before the user exercises. For example, the exercise suggestion 1721 can include the text "Current blood pressure is high (≥ 140 / 90 mmHg), it is suggested to perform medium-low intensity exercise, such as walking, leisure cycling. If you feel uncomfortable, please stop exercising, pay attention to rest, and seek medical treatment if necessary", which can be used to prompt the user that the blood pressure is high and it is suggested to perform medium-low intensity exercise. In addition, the exercise suggestion interface 1720 can also include a start exercise control 1722 and a terminate assessment control 1723. The start exercise control 1722 can be used to trigger the electronic device 100 to display one or more exercise types suitable for the current condition of the user (i.e., medium-low intensity exercise). The terminate assessment control 1723 can be used to trigger the electronic device 100 to terminate the exercise and blood pressure assessment.

[0559] The electronic device 100 can receive and respond to a click operation of the user on the start exercise control 1722 to display an exercise selection interface 1730 as shown in FIG. 17D.

[0560] As shown in FIG. 17D, the exercise selection interface 1730 can include one or more exercise items, each of which can correspond to a low-to-moderate intensity exercise type. For example, the one or more exercise intensities can include an outdoor walking item 1731, an indoor walking item 1732, an outdoor cycling item 1733, and an indoor cycling item 1734, etc.

[0561] As another example, the electronic device 100 can output an exercise suggestion interface 1720 as shown in FIG. 17E when it is determined that the blood pressure value before the user exercises is low (e.g., systolic pressure is less than or equal to 80 mmHg).

[0562] As shown in FIG. 17E, the exercise suggestion interface 1740 can include an exercise suggestion 1741 for suggesting an exercise suitable for the user based on the blood pressure value before the user exercises. For example, the exercise suggestion 1741 can include the text "Current blood pressure is low (systolic pressure ≤ 80 mmHg), avoid high-intensity exercise. If you feel unwell, please stop exercising, rest, and seek medical attention if necessary", which can prompt the user to avoid high-intensity exercise when the blood pressure is low. In addition, the exercise suggestion interface 1740 can also include a start exercise control 1742 and a terminate assessment control 1743. The start exercise control 1742 can be used to trigger the electronic device 100 to display one or more exercise types suitable for the user's current condition (i.e., low-to-moderate intensity exercise). The terminate assessment control 1743 can be used to trigger the electronic device 100 to terminate the current exercise and blood pressure assessment.

[0563] The electronic device 100 can receive and respond to a click operation of the user on the start exercise control 1742 to display an exercise selection interface 1710 as shown in FIG. 17F.

[0564] As shown in FIG. 17F, the exercise selection interface 1750 can include one or more exercise items, each of which can correspond to a low-to-moderate intensity exercise type. For example, the one or more exercise intensities can include an outdoor walking item 1751, an indoor walking item 1752, an outdoor cycling item 1753, and an indoor cycling item 1754, etc.

[0565] It can be understood that the above-mentioned embodiments shown in FIGS. 17A-17F are only three examples, and in the embodiments of the present application, the electronic device 100 can also suggest the user to stop the exercise when detecting that the blood pressure before the exercise has other abnormalities, or suggest the user to select a suitable exercise type, which is not limited herein. In addition, the exercise type selected by the user suggested by the electronic device 100 in different scenarios can include more, less or more exercise types than the above-mentioned embodiments, which is not limited herein.

[0566] In some embodiments, the electronic device 100 can also monitor the exercise type of the user in real time after the user selects the exercise type, and determine whether the measured exercise type is the same as the exercise type selected by the user. If the measured exercise type is different from the exercise type selected by the user, the electronic device 100 can output a mismatched exercise type prompt to prompt that the exercise type selected by the user is different from the actual exercise type.

[0567] In some application scenarios, when the electronic device 100 detects that the user starts the exercise and blood pressure evaluation for the first time, the electronic device 100 can prompt the user to fill in personal information (such as gender, age, height, weight, medical history, body mass index (BMI), etc.), and can also prompt the user to select a wearing method (such as left hand wearing or right hand wearing). The electronic device 100 can obtain the personal information and wearing method of the user based on the operation of the user. In this way, when the exercise and blood pressure evaluation are performed subsequently, the electronic device 100 can determine and output the exercise and blood pressure evaluation results in combination with the personal information and / or wearing method of the user, and the blood pressure and electrocardiogram data measured before and after the exercise, so as to avoid evaluation errors caused by individual differences. In some embodiments, the personal information can also be referred to as user information.

[0568] For example, the electronic device 100 can display an exercise and blood pressure evaluation interface 520 as shown in FIG. 18A, which can include a start evaluation control 522. The other contents of the exercise and blood pressure evaluation interface 520 can refer to the related description in the above-mentioned embodiment shown in FIG. 5C, which will not be repeated here.

[0569] The electronic device 100 can receive and respond to the click operation of the user on the start evaluation control 522 to display a personal information interface 1800 as shown in FIG. 18B.

[0570] As shown in FIG. 18B, the personal information interface 1800 can include one or more information items, each of which can correspond to a kind of personal information, and each of which can be used to trigger the electronic device 100 to prompt the user to fill in (or select) the personal information corresponding to the information item. For example, the one or more information items can include a gender item 1801, a birth date item 1802, a height item 1803, and a weight item 1804, etc. In addition, the personal information interface 1800 can also include a determination control 1805.

[0571] The electronic device 100 can receive and respond to a user's click operation on the gender item 1801 to display a gender selection interface 1810 as shown in FIG. 18C.

[0572] As shown in FIG. 18C, the gender selection interface 1810 can include a plurality of gender selection controls, such as a male control 1811 and a female control 1812. Each gender selection control can also include a selection indicator, which can include a selected state and an unselected state. The selection indicator is used to indicate whether the gender selection control is selected by the user. For example, in the embodiment shown in FIG. 18C, the selection indicator 1811a of the male control 1811 is in the selected state, indicating that the currently selected gender of the user is "male". The gender selection interface 1810 can also include a determination control 1813, which can be used to trigger the electronic device 100 to determine the gender corresponding to the gender selection control currently in the selected state as the gender filled in by the user. In some embodiments, in the case that the user fills in the gender information for the first time, the electronic device 100 can default to setting the selection indicator 1811a in the male control 1811 to the selected state when the gender selection interface 1810 is first displayed.

[0573] The electronic device 100 can receive and respond to a user's click operation on the determination control 1813 to display the personal information interface 1800 as shown in FIG. 18D.

[0574] As shown in FIG. 18D, in the personal information interface 1800, the selected gender of the user, i.e. "male", can also be displayed on the gender item 1801. In addition, the other specific contents of the personal information interface 1800 can refer to the related description in the above embodiment shown in FIG. 18B, which will not be described here.

[0575] The electronic device 100 can receive and respond to a user's click operation on the birth date item 1802 to display a birth date selection interface 1820 as shown in FIG. 18E.

[0576] As shown in FIG. 18E, the birth year and month selection interface 1820 can include two sliding controls, for example, a year sliding control 1821 and a month sliding control 1822. The year sliding control 1821 can be used to trigger the electronic device 100 to select the birth year based on the operation of the user. The year selected by the user can be displayed in a different manner from other years, for example, displayed in a designated area and displayed in a larger and bolder font. The month sliding control 1822 can be used to trigger the electronic device 100 to select the birth month based on the operation of the user. The month selected by the user can be displayed in a different manner from other months, for example, displayed in a designated area and displayed in a larger and bolder font. It can be understood that the embodiment herein is only an example, and in the embodiments of the present application, different display manners from the above-mentioned embodiments can also be used, or a selection indicator can be displayed on the year (or month) selected by the user, which is not limited in the present application. In some embodiments, when the electronic device 100 displays the birth year and month selection interface 1820 for the first time, the electronic device 100 can default to set the years (or other years) corresponding to the 20 years before the current year to the selected state, and set the current month to the selected state. In addition, the birth year and month selection interface 1820 can further include a confirmation control 1823, which can be used to trigger the electronic device 100 to determine the currently selected year and month as the birth year and month of the user, and return to the personal information interface 1800, and display the birth year and month of the user in the birth year and month entry 1802 in the personal information interface 1800.

[0577] The electronic device 100 can also receive and respond to the user's click operation on the height entry 1803 in the personal information interface 1800 to display the height selection interface as shown in FIG. 18F.

[0578] As shown in FIG. 18F, the height selection interface 1830 can include a height sliding control 1831, which can be used to trigger the electronic device 100 to select the height of the user based on the operation of the user. The height selected by the user can be displayed in a different manner from other heights, for example, displayed in a specified area and displayed in a larger and bolder font. It can be understood that the embodiment herein is only an example, and in the embodiments of the present application, different display manners from the above-mentioned embodiments can be used, or a selection indicator can be displayed on the height selected by the user, which is not limited in the present application. In some embodiments, in the case that the electronic device 100 displays the height selection interface 1830 for the first time, the electronic device 100 can default 170 centimeters (or other values) to the selected state. In addition, the height selection interface 1830 can further include a confirmation control 1832, which can be used to trigger the electronic device 100 to determine the currently selected height as the height of the user, and return to the personal information interface 1800, and display the height of the user in the height entry 1803 in the personal information interface 1800.

[0579] The electronic device 100 can further receive and respond to the click operation of the user on the weight entry 1804 in the personal information interface 1800 to display a weight selection interface as shown in FIG. 18G.

[0580] As shown in FIG. 18G, the weight selection interface 1840 can include a weight sliding control 1841, which can be used to trigger the electronic device 100 to select the weight of the user based on the operation of the user. The weight selected by the user can be displayed in a different manner from other weights, for example, displayed in a specified area and displayed in a larger and bolder font. It can be understood that the embodiment herein is only an example, and in the embodiments of the present application, different display manners from the above-mentioned embodiments can be used, or a selection indicator can be displayed on the weight selected by the user, which is not limited in the present application. In some embodiments, in the case that the electronic device 100 displays the weight selection interface 1840 for the first time, the electronic device 100 can default 60 kilograms (or other values) to the selected state. In addition, the weight selection interface 1840 can further include a confirmation control 1842, which can be used to trigger the electronic device 100 to determine the currently selected weight as the weight of the user, and return to the personal information interface 1800, and display the weight of the user in the weight entry 1804 in the personal information interface 1800.

[0581] The electronic device 100 can receive and respond to the click operation of the user on the confirmation control 1842 to display the personal information interface 1800 as shown in FIG. 18H.

[0582] As shown in FIG. 18H, in the personal information interface 1800, the gender item 1801 can display the gender selected by the user, i.e., "male"; the birth date item 1802 can display the birth date selected by the user, i.e., "1994-8"; the height item 1803 can display the height selected by the user, i.e., "170 cm"; and the weight item 1804 can display the weight selected by the user, i.e., "60 kg".

[0583] The electronic device 100 can receive and respond to a click operation of the user on the determination control 1805 to display a wearing mode selection interface 1850 as shown in FIG. 181.

[0584] As shown in FIG. 181, the wearing mode selection interface 1850 can include a plurality of wearing mode controls, such as a left-hand wearing control 1851 and a right-hand wearing control 1852. Each wearing mode control can further include a selection indicator, which can include a selected state and an unselected state. The selection indicator is used to indicate whether the wearing mode control is selected by the user. For example, in the embodiment shown in FIG. 181, the selection indicator 1851a of the left-hand wearing control 1851 is in the selected state, indicating that the current wearing mode selected by the user is left-hand wearing. The wearing mode selection interface 1850 can further include a determination control 1853, which can be used to trigger the electronic device 100 to determine the wearing mode corresponding to the wearing mode control currently in the selected state as the current wearing mode of the user. In some embodiments, when the electronic device 100 displays the wearing mode selection interface 1850 for the first time, the selection indicator 1851a in the left-hand wearing control 1851 can be set to the selected state by default.

[0585] For another example, the electronic device 100 can display the personal information interface 1800, and in the personal information interface 1800, the weight item 1804 does not display the weight, indicating that the user has not set the weight. At this time, the electronic device 100 can receive and respond to a click operation of the user on the determination control 1805 to display a prompt 1860 on the personal information interface 1800 as shown in FIG. 18J.

[0586] As shown in FIG. 18J, the prompt 1860 can be used to prompt the user that the weight is not set. For example, the prompt 1860 can include the text "weight not selected".

[0587] It can be understood that the embodiments shown in FIGS. 18A-18J are only a set of examples. In the embodiments of the present application, the personal information interface can further include more, fewer, or different personal information items than the above-described embodiments, which are not limited herein.

[0588] In some application scenarios, the electronic device 100 can also display an annotation symbol for the electrocardio detection result when outputting the electrocardio detection result. The electronic device 100 can receive and respond to a user operation on the annotation symbol to display detailed annotations and related suggestions for the electrocardio detection result. In this way, the user can more comprehensively understand the electrocardio detection result of the user, and a better user experience can be provided.

[0589] For example, the electronic device 100 can display an electrocardio output interface 930 as shown in FIG. 19A. The specific content of the electrocardio output interface 930 can refer to the related description in the embodiment shown in FIG. 9D, which will not be described here again.

[0590] The electronic device 100 can receive and respond to a user click operation on the annotation symbol 931a to display a result suggestion interface 1900 as shown in FIG. 19B.

[0591] As shown in FIG. 19B, the result suggestion interface 1900 can include a result suggestion 1901 for the current electrocardio detection result (i.e., sinus rhythm). For example, when the electrocardio detection result is sinus rhythm, the result suggestion 1901 can include the text “Moderate exercise, work and rest in combination, keep a regular life and work schedule, low-salt, low-fat, and low-cholesterol diet, which can reduce the risk of cardiovascular disease.” Optionally, the result suggestion interface 1900 can also include a reference prompt, for example, “The above information is for reference only and is not a medical diagnosis basis.”

[0592] For another example, the electronic device 100 can display an electrocardio output interface 1910 as shown in FIG. 19C. The electrocardio output interface 1910 can include an electrocardio detection result 1911, and optionally, any one or more of the following: an average heart rate 1912 and a view exercise result control 1913. The electrocardio detection result 1911 can be used to indicate whether the electrocardio detection of the user is abnormal. For example, the electrocardio detection result 1911 can be “atrial premature beat”. Optionally, the electrocardio detection result 1911 can also include an annotation symbol 1911a, which can be used to trigger the electronic device 100 to display detailed annotations of the electrocardio detection result 1911, for example, to display detailed annotations of “atrial premature beat” to facilitate the user to understand the electrocardio detection result. The average heart rate 1912 can be used to indicate the average heart rate of the user during the measurement of the electrocardio signal, for example, “109 times / minute”. The view exercise result control 1913 can be used to trigger the electronic device 100 to display the exercise result.

[0593] The electronic device 100 can receive and respond to a user click operation on the annotation symbol 1911a to display a result suggestion interface 1920 as shown in FIG. 19D.

[0594] As shown in FIG. 19D, the result suggestion interface 1920 can include a result suggestion 1921 for the current electrocardio detection result (i.e., premature atrial contraction). For example, when the electrocardio detection result is premature atrial contraction, the result suggestion 1921 can include the text "There is a suspected premature atrial contraction heartbeat in your current detection result. Premature atrial contraction can occur in normal people. Overfatigue after exercise, sleep deprivation, high stress, anxiety, etc. can cause premature atrial contraction. Please relax your mood, maintain an optimistic attitude, work and rest in combination, exercise moderately and persist in continuous measurement and pay attention to heart health status." Optionally, the result suggestion interface 1920 can also include a reference prompt, for example, "The above information is for reference only and is not the basis for medical diagnosis."

[0595] As another example, the electronic device 100 can display an electrocardio output interface 1930 as shown in FIG. 19E. The electrocardio output interface 1930 can include an electrocardio detection result 1931, and optionally, one or more of the following: an average heart rate 1932 and a view exercise result control 1933. The electrocardio detection result 1931 can be used to indicate whether the electrocardio detection of the user is abnormal. For example, the electrocardio detection result 1931 can be "premature ventricular contraction". Optionally, the electrocardio detection result 1931 can also include a note symbol 1931a, which can be used to trigger the electronic device 100 to display detailed notes of the electrocardio detection result 1931, for example, to display detailed notes of "premature ventricular contraction" so that the user can understand the electrocardio detection result. The average heart rate 1932 can be used to indicate the average heart rate of the user during the measurement of the electrocardio signal, for example, "109 times / minute". The view exercise result control 1933 can be used to trigger the electronic device 100 to display the exercise result.

[0596] The electronic device 100 can receive and respond to a user's click operation on the note symbol 1931a to display a result suggestion interface 1940 as shown in FIG. 19F.

[0597] As shown in FIG. 19F, the result suggestion interface 1940 can include a result suggestion 1941 for the current electrocardio detection result (i.e., premature ventricular contraction). For example, when the electrocardio detection result is premature ventricular contraction, the result suggestion 1941 can include the text "There is a suspected premature ventricular contraction heartbeat in your current detection result. Premature ventricular contraction can occur in normal people. Overfatigue after exercise, sleep deprivation, high stress, anxiety, etc. can cause premature ventricular contraction. Please relax your mood, maintain an optimistic attitude, work and rest in combination, exercise moderately and persist in continuous measurement and pay attention to heart health status." Optionally, the result suggestion interface 1940 can also include a reference prompt, for example, "The above information is for reference only and is not the basis for medical diagnosis."

[0598] As another example, the electronic device 100 can display an electrocardiogram output interface 1950 as shown in FIG. 19G. The electrocardiogram output interface 1950 can include an electrocardiogram detection result 1951, and optionally, any one or more of the following: an average heart rate 1952 and a view exercise result control 1953. The electrocardiogram detection result 1951 can be used to indicate whether the electrocardiogram detection of the user is abnormal. For example, the electrocardiogram detection result 1951 can be "atrial fibrillation". Optionally, the electrocardiogram detection result 1951 can further include a note symbol 1951a, which can be used to trigger the electronic device 100 to display detailed notes of the electrocardiogram detection result 1951, for example, to display detailed notes of "atrial fibrillation" so as to enable the user to understand the electrocardiogram detection result. The average heart rate 1952 can be used to indicate the average heart rate of the user during the measurement of the electrocardiogram signal, for example, "109 beats per minute". The view exercise result control 1953 can be used to trigger the electronic device 100 to display the exercise result.

[0599] The electronic device 100 can receive and respond to a click operation of the user on the note symbol 1951a to display a result suggestion interface 1960 as shown in FIG. 19H.

[0600] As shown in FIG. 19H, the result suggestion interface 1960 can include a result suggestion 1961 of the current electrocardiogram detection result (i.e., atrial fibrillation). For example, when the electrocardiogram detection result is atrial fibrillation, the result suggestion 1961 can include the text "This measurement found that you are suspected of atrial fibrillation. Once you have symptoms such as palpitations, palpitations, chest pain, etc., please seek professional medical help in time. It is recommended that you measure ECG actively every day." Optionally, the result suggestion interface 1960 can further include a reference prompt, for example, "The above information is for reference only and is not the basis for medical diagnosis."

[0601] As another example, the electronic device 100 can display an electrocardiogram output interface 1970 as shown in FIG. 19I. The electrocardiogram output interface 1970 can include an electrocardiogram detection result 1971, and optionally, any one or more of the following: an average heart rate 1972 and a view exercise result control 1973. The electrocardiogram detection result 1971 can be used to indicate whether the electrocardiogram detection of the user is abnormal. For example, the electrocardiogram detection result 1971 can be "uncertain" and "low heart rate". Optionally, the electrocardiogram detection result 1971 can further include a note symbol 1971a, which can be used to trigger the electronic device 100 to display detailed notes of the electrocardiogram detection result 1971, for example, to display detailed notes of "uncertain" and "low heart rate" so as to enable the user to understand the electrocardiogram detection result. The average heart rate 1972 can be used to indicate the average heart rate of the user during the measurement of the electrocardiogram signal, for example, "48 beats per minute". The view exercise result control 1973 can be used to trigger the electronic device 100 to display the exercise result.

[0602] The electronic device 100 can receive and respond to a user's click operation on the annotation symbol 1971a to display a result suggestion interface 1980 as shown in FIG. 19J.

[0603] As shown in FIG. 19J, the result suggestion interface 1980 can include a result suggestion 1981 for the current electrocardio test result (i.e., uncertain and heart rate too low). For example, when the electrocardio test result is uncertain and heart rate too low, the result suggestion 1981 can include the text "In the case of frequent exercise, it is easy to have a heart rate too low. Please do not worry too much. The heart rate too low condition can be related to factors such as fatigue, poor mental state, etc. Please keep a good mood and combine work with rest, and pay attention to rest. If you have a heart rate too low or discomfort in a quiet state, please seek professional medical help." Optionally, the result suggestion interface 1980 can also include a reference prompt, for example, "The above information is for reference only and is not the basis for medical diagnosis."

[0604] As another example, the electronic device 100 can display an electrocardio output interface 1990 as shown in FIG. 19K. The electrocardio output interface 1990 can include an electrocardio test result 1991, and optionally, any one or more of the following: an average heart rate 1992 and a view exercise result control 1993. The electrocardio test result 1991 can be used to indicate whether the user's electrocardio test is abnormal. For example, the electrocardio test result 1991 can be "uncertain" and "heart rate too high". Optionally, the electrocardio test result 1991 can also include an annotation symbol 1991a, which can be used to trigger the electronic device 100 to display detailed annotations of the electrocardio test result 1991, for example, to display detailed annotations of "uncertain" and "heart rate too high" to facilitate the user to understand the electrocardio test result. The average heart rate 1992 can be used to indicate the average heart rate of the user during the measurement of the electrocardio signal, for example, "48 times / minute". The view exercise result control 1993 can be used to trigger the electronic device 100 to display the exercise result.

[0605] The electronic device 100 can receive and respond to a user's click operation on the annotation symbol 1991a to display a result suggestion interface 1995 as shown in FIG. 19L.

[0606] As shown in FIG. 19L, the result suggestion interface 1995 can include a result suggestion 1996 for the current electrocardio test result (i.e., uncertain and heart rate too high). For example, when the electrocardio test result is uncertain and heart rate too high, the result suggestion 1996 can include the text "This measurement found that your heart rate is too high, which may be due to high exercise intensity. If you have a heart rate too high or discomfort in a quiet state, please seek professional medical help." Optionally, the result suggestion interface 1995 can also include a reference prompt, for example, "The above information is for reference only and is not the basis for medical diagnosis."

[0607] It can be understood that the embodiments shown in FIGS. 19A-19L are only a set of examples, and in the embodiments of the present application, the electronic device 100 can also display more, less or different ECG detection results than the above-mentioned embodiments, and can also display different result suggestions (i.e., detailed annotations of ECG detection results and related suggestions, etc.) than the above-mentioned embodiments, which are not limited herein.

[0608] In some application scenarios, the electronic device 200 (such as a smart phone, etc.) can be installed with an application 1 (such as an innovative application, etc.), based on which the electronic device 200 can establish a communication connection with the electronic device 100, and obtain the measurement progress and the exercise and blood pressure evaluation result of the electronic device 100 through the communication connection. In this case, the electronic device 200 can display the progress of the exercise and blood pressure evaluation, the exercise and blood pressure evaluation result, and the historical measurement data, etc. to the user through the application 1 (such as the innovative application, etc.) based on the user's operation. In this way, the user can also view the exercise and blood pressure evaluation result through the electronic device 200, bringing a better user experience to the user.

[0609] For example, as shown in FIG. 20A, the electronic device 200 can display a desktop 2000. The electronic device 200 can display the desktop 2000, which displays a page with application icons, including a plurality of application icons (such as a reading application icon, a settings application icon, a music application icon, an innovative application icon 2004, etc.). Optionally, the page with application icons can also display a page indicator 2002 below, to indicate the total number of pages on the desktop, and the position relationship between the currently displayed page and other pages. For example, the desktop 2000 can include three pages, and the black dot in the page indicator is located at the first position from the left, which can indicate that the currently displayed page is the first page from the left among the three pages. Optionally, the page with application icons can also display a status bar 2001 above, which can include a communication signal strength indicator, a power value, a time, etc. Further optionally, the page indicator can have a dock area 2003 below, which can include one or more dock icons (such as a dialing application icon, an information application icon, a contacts application icon, a camera application icon, etc.), and one or more dock icons in the dock area can remain displayed when the page is switched.

[0610] The electronic device 200 can receive and respond to the user's click operation on the innovative application icon 2004, and display an innovative application interface 2010 as shown in FIG. 20B.

[0611] As shown in FIG. 20B, the innovative application interface 2010 can include one or more research projects, such as a heart health research project, a movement and blood pressure research project 2011, a blood vessel health research project, and a blood pressure health research project, etc. Each research project can further include a join control, which can be used to trigger the electronic device 200 to add a card corresponding to the research project to the main interface of the innovative application. For example, the movement and blood pressure research project 2011 can include a join control 2012. The join control 2012 can be used to trigger the electronic device 200 to add a card corresponding to the movement and blood pressure research project 2011 to the main interface of the innovative application. The join control 2012 can also be used to trigger the electronic device 200 to display an enablement interface of the movement and blood pressure research.

[0612] The electronic device 200 can receive and respond to a click operation of the user on the join control 2012 to display an enablement interface 2020 of the movement and blood pressure research as shown in FIG. 20C.

[0613] As shown in FIG. 20C, the enablement interface 2020 can include the name of the research project to be enabled, such as “movement and blood pressure research”. The enablement interface 2020 can further include an enablement notice 2021, which can include text, such as “This research requires your personal basic information (gender, age, height, weight, city, mobile phone number, etc.), and we will fully protect your personal data. Click “Agree” to indicate that you agree to share the above data with the movement and blood pressure research.” The enablement interface 2020 can further include a cancel control 2022 and an agree control 2023. The cancel control 2022 is used to trigger the electronic device 200 to cancel the enablement of the movement and blood pressure research project, and return to the innovative application interface 2010 shown in FIG. 20B. The agree control 2023 can be used to trigger the electronic device 200 to enable the movement and blood pressure research project.

[0614] The electronic device 200 can receive and respond to a click operation of the user on the agree control 2023 to display a movement and blood pressure research interface 2030 as shown in FIG. 20D.

[0615] As shown in FIG. 20D, the exercise and blood pressure research interface 2030 can include an evaluation result column 2031, a measurement statistics column 2032, and optionally, a questionnaire column 2033. The evaluation result column 2031 can be used to display the result of the exercise and blood pressure evaluation. In the absence of the result of the exercise and blood pressure evaluation, the evaluation result column 2031 can display the text "No data" as shown in FIG. 20D, and "No evaluation data at present. Please evaluate regularly and pay attention to the exercise and blood pressure health." In addition, the evaluation result column 2031 can further include an evaluation starting control 2031a, which can be used to trigger the electronic device 200 to send a starting instruction to the electronic device 200, where the starting instruction i...

Claims

1. A measurement method applied to a first electronic device, characterized in that, The method comprises: obtaining user information; obtaining first physiological data of the user in a resting state, the first physiological data comprising a first blood pressure value and a first heart rate; outputting a first prompt for prompting the user to start exercise; measuring second physiological data after the user finishes exercise, the second physiological data comprising a second blood pressure value and a second heart rate; obtaining exercise load of the user; determining a first evaluation result based on the user information, the first physiological data, the second physiological data and the exercise load, the first evaluation result comprising a cardiac reserve function evaluation; outputting the first evaluation result.

2. The method of claim 1, wherein, The method of obtaining the first physiological data of the user in the resting state comprises: receiving a first operation of the user at a first time; in response to the first operation, obtaining a first activity amount of the user in a first time period, the first time period having a first duration and ending at the first time; if the first activity amount is less than a preset resting activity amount threshold, measuring the first physiological data of the user.

3. The method of claim 1, wherein, The method of obtaining the first physiological data of the user in the resting state comprises: measuring third physiological data of the user in the resting state at a second time; receiving a first operation of the user at a first time; in response to the first operation, if a duration between the first time and the second time is less than a second duration, determining that the third physiological data is the first physiological data.

4. The method of claim 3, wherein, The method further comprises: in response to the first operation, obtaining a first activity amount of the user in a first time period, the first time period having a first duration and ending at the first time; if the first activity amount is greater than or equal to a preset resting activity amount threshold and the duration between the first time and the second time is less than a second duration, determining that the third physiological data is the first physiological data. The user information comprises any one or more of the following: age, gender, height, weight, body fat rate, BMI, medical history.

5. The method according to any one of claims 1-4, characterized in that, The first physiological data further comprises a first electrocardiogram signal.

6. The method according to any one of claims 1-5, characterized in that, Before the method of measuring the second physiological data after the user finishes exercise, the method further comprises:

7. The method according to any one of claims 1 to 6, characterized in that, receiving and responding to a second operation of the user to determine that the user finishes exercise; The method of measuring the second physiological data after the user finishes exercise comprises: after the second operation, measuring one or more blood pressure values and one or more heart rates, the one or more blood pressure values comprising the second blood pressure value, and the one or more heart rates comprising the second heart rate. Before the method of measuring the second physiological data after the user finishes exercise, the method further comprises:

8. The method according to any one of claims 1-6, characterized in that, monitoring exercise parameters of the user; determining that the user finishes exercise based on the exercise parameters; The method of measuring the second physiological data after the user finishes exercise comprises: ​ measure one or more blood pressure values and one or more heart rates, the one or more blood pressure values comprising the second blood pressure value, the one or more heart rates comprising the second heart rate, after determining that the user ends the exercise based on the motion parameter.

9. The method of claim 8, wherein, The determining that the user ends the exercise based on the motion parameter specifically comprises: determining that the user is static based on the motion parameter; outputting a second prompt for inquiring whether the user ends the exercise; receiving and responding to a second operation of the user to determine that the user ends the exercise.

10. The method according to any one of claims 7-9, characterized in that, The measuring one or more blood pressure values specifically comprises: measuring the second blood pressure value at a third time point, the third time point being the time point of the determining that the user ends the exercise.

11. The method according to any one of claims 7-9, characterized in that, The measuring one or more blood pressure values specifically comprises: determining a third time point based on the motion load; measuring the second blood pressure value at the third time point, the third time point being later than the time point of the user ending the exercise.

12. The method according to claim 10 or 11, characterized in that, The method further comprises: measuring a third blood pressure value of the user at a fourth time point, a time length between the fourth time point and the third time point being a third time length.

13. The method of claim 12, wherein, The measuring the third blood pressure value of the user at the fourth time point specifically comprises: outputting a third prompt for prompting the user to measure the blood pressure at the fourth time point; receiving and responding to a third operation of the user to measure the third blood pressure value.

14. The method according to any one of claims 10-13, characterized in that, The method further comprises: measuring a fourth blood pressure value of the user at a fifth time point, a time length between the fifth time point and the third time point being a fourth time length.

15. The method of any one of claims 1-14, wherein, The second physiological data further comprises a second electrocardio signal; Before measuring the second electrocardio signal, the method further comprises: determining a measurement time point of the second electrocardio signal based on the motion load.

16. The method of any one of claims 1-15, wherein, The acquiring the motion load of the user specifically comprises: monitoring the heart rate of the user during the exercise after the outputting the first prompt; determining the motion load based on the heart rate of the user during the exercise.

17. The method of any one of claims 1-16, wherein, The first evaluation result further comprises any one or more of the following: an abnormality analysis of the first physiological data, an abnormality analysis of the second physiological data, an abnormality analysis of the cardiac reserve function, the abnormality analysis of the first physiological data being used to indicate whether the physical condition of the user before the exercise is abnormal, the abnormality analysis of the second physiological data being used to indicate whether the physical condition of the user after the exercise is abnormal, and the abnormality analysis of the cardiac reserve function being used to indicate whether the cardiac reserve function of the user is abnormal.

18. The method of any one of claims 1-17, wherein, The outputting the first prompt specifically comprises: outputting the first prompt based on the first physiological data, the first prompt comprising one or more exercise options, the one or more exercise options being used to prompt the exercise type suitable for the user.

19. The method of claim 18, wherein, The one or more exercise options comprise a first exercise option; the method further comprises: receiving and responding to a fourth operation of the user for the first exercise option; outputting a fourth prompt for prompting the exercise type started by the user to be a first exercise type corresponding to the first exercise option.

20. The method of claim 19, wherein, The method further comprises: detecting that the exercise type performed by the user is a second exercise type after the outputting the fourth prompt, the second exercise type being different from the first exercise type; outputting a fifth prompt, the fifth prompt being used to prompt the user that the actual exercise type does not match the selected exercise type.

21. The method of any one of claims 1-20, wherein, The method further comprises: when the value of any one of the physiological parameters in the first physiological data and the second physiological data belongs to an abnormal interval of the physiological parameter, outputting an abnormal prompt, the abnormal prompt being used to prompt the user that the physiological parameter is abnormal.

22. An electronic device, being a first electronic device, characterized in that comprising one or more processors, one or more memories; wherein the one or more memories are coupled to the one or more processors, and the one or more memories are configured to store computer instructions, and when the one or more processors execute the computer instructions, the measurement method in any one of claims 1-21 is implemented.

23. A chip system, characterized by comprising processing circuitry and interface circuitry, the interface circuitry being configured to receive code instructions and transmit the code instructions to the processing circuitry, and the processing circuitry being configured to execute the code instructions to perform the measurement method in any one of claims 1-21.

24. A readable storage medium characterized by, a computer program product comprising computer instructions, when the computer instructions are executed by a processor, the measurement method in any one of claims 1-21 is implemented.

25. A computer program product, characterised in that, a computer program product comprising computer instructions, when the computer instructions are executed by a processor, the measurement method in any one of claims 1-21 is implemented.

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