Health measurement method, device, equipment and storage medium
By judging health data anomalies in real time and pausing measurement, and asking the user whether to re-measure, the problem of cumbersome measurement process in existing technologies is solved, and the user experience and intelligence of the measurement process are improved.
Patent Information
- Application Number
- CN202310267425.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-17
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2043-03-17
AI Technical Summary
When an abnormality occurs during the measurement process of existing health monitoring equipment, it is necessary to wait until the measurement is completed before re-measurement, resulting in a poor user experience.
Determine in real time whether health data is abnormal, and suspend the current measurement function when an abnormality occurs, asking the user whether to re-measure or perform other measurements. If no response is received, the measurement will continue, and the user can choose to save the data.
It improves the user experience, avoids repeated and long-term measurements, and improves the intelligence and convenience of the measurement process.
Smart Images

Figure CN116269271B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of health detection technology, and in particular to a health measurement method, device, equipment and storage medium. Background Art
[0002] Currently, health monitoring devices integrate more and more monitoring items, such as heart rate, blood oxygen, blood pressure and ECG (electrocardiogram).
[0003] Common health monitoring methods usually require turning on one or more health measurement functions and then waiting until the measurement time ends before viewing the measurement results or performing other health measurements. If an abnormality occurs during the measurement process, it is also necessary to wait until the measurement time ends before re-measuring or performing other health measurements. The measurement process is cumbersome and unintelligent, which reduces the user experience.
[0004] Therefore, there is a problem in the related art that users have a poor experience when performing health monitoring. Summary of the Invention
[0005] The main purpose of this application is to provide a health measurement method, device, equipment and storage medium, aiming to solve the technical problem of poor user experience when performing health monitoring.
[0006] To achieve the above objectives, the present application provides a health measurement method, which includes the following steps:
[0007] Collect the user's current health data and determine whether the current health data is abnormal;
[0008] If there is an abnormality, the current health measurement function is suspended, and the user is asked whether the current health measurement needs to be repeated and / or whether other health measurements need to be performed;
[0009] If no response is received from the user, the current health measurement function continues.
[0010] In a possible implementation of the present application, after the step of collecting the user's current health data, the method further includes:
[0011] When the current health measurement function ends, asking the user whether to save the current health data;
[0012] If a save request from the user is received, the current health data is stored as historical health data.
[0013] In a possible implementation of the present application, the step of determining whether the current health data is abnormal includes:
[0014] Determining whether a deviation between the historical health data and the current health data is greater than a preset normal deviation threshold;
[0015] If it is greater, it is determined that there is an abnormality in the current health data.
[0016] In a possible implementation of the present application, before the step of collecting the user's current health data, the method further includes:
[0017] Asking the user whether to configure a fluctuation range of health data;
[0018] If a configuration request from a user is received, the fluctuation range configured by the user is used as the preset normal fluctuation range;
[0019] The step of determining whether the current health data is abnormal includes:
[0020] Based on the preset normal fluctuation range, determine whether the current health data is abnormal.
[0021] In a possible implementation of the present application, the other health measurement functions are one or more functions other than the current health measurement function. After the step of asking the user whether to re-perform the current health measurement and / or whether to perform other health measurement functions, the method further includes:
[0022] If the user needs to perform health measurements of multiple functions in addition to the current health measurement function, health measurements are performed simultaneously based on the multiple functions selected by the user.
[0023] In a possible implementation of the present application, before the step of asking the user whether to re-measure the current health measurement and / or whether to perform other health measurements, the method further includes:
[0024] The user is prompted to confirm whether the current measurement method is correct so that the user can make adjustments.
[0025] In a possible implementation of the present application, the present invention is applied to a health monitoring device, wherein the health monitoring device is provided with a plurality of electrode sheets, a PPG module, and a main chip;
[0026] The plurality of electrode sheets are used to collect ECG data by contacting the user's skin, and the PPG module is used to collect the user's PPG data;
[0027] The step of collecting the user's current health data includes:
[0028] Based on the health measurement function selected by the user, the main chip controls the multiple electrode sheets and / or the PPG module to collect corresponding health data.
[0029] In a possible implementation of the present application, a motion sensor is further provided inside the health monitoring device, and the motion sensor is used to sense changes in relative positions of the user's skin and the multiple electrode sheets and / or the PPG module;
[0030] Before the step of collecting the user's current health data, the method further includes:
[0031] Acquiring the relative position change through the motion sensor, and determining whether the relative position change affects data acquisition;
[0032] If there is no impact, execute the step of collecting the user's current health data.
[0033] The present application also provides a health measurement device, comprising:
[0034] An abnormality judgment module is used to collect the user's current health data and judge whether there is any abnormality in the current health data;
[0035] an abnormality inquiry module, configured to suspend the current health measurement function if an abnormality occurs, and inquire the user whether the current health measurement needs to be repeated and / or whether other health measurements need to be performed;
[0036] The continue measurement module is used to continue the current health measurement function if no response from the user is received.
[0037] The present application also provides a health measurement device, which includes: a memory, a processor, and a health measurement program stored in the memory and executable on the processor, wherein the health measurement program is configured to implement the steps of any of the above-mentioned health measurement methods.
[0038] The present application also provides a storage medium, on which a health measurement program is stored. When the health measurement program is executed by a processor, the steps of any of the above-mentioned health measurement methods are implemented.
[0039] The present application provides a health measurement method. Compared with the prior art, if an abnormality occurs during the measurement process, it is necessary to wait until the measurement time is over before re-measuring or performing other health measurements. The present application collects the user's current health data and determines whether the current health data has an abnormality; it can make a judgment on the collected health data in real time, and it is not necessary to know whether there is an abnormality after the measurement is over. If there is an abnormality, the current health measurement function is paused, and the user is asked whether he needs to re-perform the current health measurement and / or whether he needs to perform other health measurements; when an abnormality occurs, it is not necessary to wait until the measurement is over before re-performing the current health measurement or performing other health measurements, which avoids the situation where the user needs to repeatedly perform different health measurements for a long time. If no response from the user is received, the current health measurement function is continued. If the user does not need to re-perform the current health measurement or perform other health measurements, the current health measurement function is continued without affecting the current health measurement. The present application can make a judgment on the collected health data in real time, which avoids the situation where the user needs to repeatedly perform different health measurements for a long time, thereby improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] Figure 1 This is a flow chart of a first embodiment of a health measurement method of the present application;
[0041] Figure 2 This is a schematic diagram of the first scenario of the health measurement method of the first embodiment of the present application;
[0042] Figure 3 This is a logical architecture diagram of the health measurement method of the first embodiment of the present application;
[0043] Figure 4 This is a schematic diagram of the first scenario of the health measurement method according to the second embodiment of the present application;
[0044] Figure 5 This is a schematic diagram of the second scenario of the health measurement method according to the third embodiment of the present application;
[0045] Figure 6 This is a schematic diagram of a third scenario of the health measurement method according to the third embodiment of the present application;
[0046] Figure 7 It is a structural diagram of a health measurement device for a hardware operating environment involved in an embodiment of the present application;
[0047] Figure 8 This is a schematic diagram of a health measurement device according to the first embodiment of the present application.
[0048] The realization of the objectives, functional features and advantages of this application will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION
[0049] It should be understood that the specific embodiments described herein are intended only to explain the present application and are not intended to limit the present application. Although terms such as first, second, and third may be used herein to describe various information, such information should not be limited to these terms. These terms are merely used to distinguish information of the same type from one another. For example, without departing from the scope of this disclosure, first information may also be referred to as second information, and similarly, second information may also be referred to as first information.
[0050] This application embodiment provides a health measurement method, referring to Figure 1 and Figure 3 In this embodiment, the health measurement method includes:
[0051] Step S10: Collect the user's current health data and determine whether the current health data is abnormal;
[0052] Step S20: If there is an abnormality, suspend the current health measurement function and ask the user whether to redo the current health measurement and / or whether to perform other health measurements;
[0053] Step S30: If no response from the user is received, continue the current health measurement function.
[0054] As an example, the health measurement method can be applied to a health monitoring device, which can be a wearable device, a portable device, etc.
[0055] As an example, the wearable device can be a portable device such as a watch, a wristband, a ring, an armband, etc., without specific limitation.
[0056] Currently, health monitoring devices integrate more and more monitoring items (health measurement functions), such as heart rate, blood oxygen, blood pressure and ECG (electrocardiogram).
[0057] As an example, the health monitoring device can perform one health measurement independently, and can also perform multiple health measurements simultaneously.
[0058] Common health monitoring methods usually require turning on one or more health measurement functions, and then waiting until the measurement time ends before viewing the measurement results or performing other health measurements. If an abnormality occurs during the measurement process, it is also necessary to wait until the measurement time ends before resuming the current health measurement or performing other health measurements. The measurement process is cumbersome and unintelligent, which reduces the user experience.
[0059] This embodiment aims to provide users with more health measurement function options by determining abnormal situations that occur during the health measurement process, thereby improving the user experience.
[0060] The specific steps are as follows:
[0061] Step S10: Collect the user's current health data and determine whether the current health data is abnormal;
[0062] As an example, based on the health measurement function selected by the user, the user's current health data is correspondingly collected. The current health data may be electrocardiogram data, or electrocardiogram and blood oxygen data.
[0063] As an example, during the process of collecting current health data, it is determined in real time whether there is any abnormality in the current health data.
[0064] As an example, the health monitoring device can be connected to a client for communication, so the user can start the above-mentioned process of collecting the user's current health data through the health monitoring device or through a client connected to the health monitoring device, thereby improving the convenience of the user during the measurement process.
[0065] As an example, the above step of determining whether the current health data has an abnormality can be performed by the health monitoring device or the client. Specifically, if the client determines whether the current health data has an abnormality, the power consumption of the health measurement device can be reduced.
[0066] As an example, abnormal conditions in current health data include abnormal blood pressure values, abnormal patterns of changes in electrocardiogram parameters, etc., which are not limited here.
[0067] In this embodiment, before the step of collecting the user's current health data, the method further includes:
[0068] Step S40: asking the user whether to configure the fluctuation range of health data;
[0069] As an example, when a user uses the health measurement device for the first time through the client, the user is asked whether to configure the fluctuation range of the health data. If the user rejects the configuration request or no request is received, the historical health data accumulated by the user during the measurement process can be used to determine whether the current health data has any abnormalities.
[0070] As an example, the fluctuation range of health data may be a daily fluctuation range that is consistent with the user's own condition, or may be a fluctuation range determined by the user with reference to medical norms.
[0071] Step S50: If a configuration request from the user is received, the fluctuation range configured by the user is used as a preset normal fluctuation range;
[0072] As an example, if a user configuration request is received, the fluctuation range configured by the user will be used as the preset normal fluctuation range. For example, the above-mentioned daily fluctuation range input by the user can be used as the preset normal fluctuation range, or the above-mentioned medical standard fluctuation range input by the user can be used as the preset normal fluctuation range.
[0073] As an example, the preset normal fluctuation range may be the user's daily heart rate fluctuation range, the normal blood pressure range specified by medical standards, and the like.
[0074] The step of determining whether the current health data is abnormal includes:
[0075] Step A1: Based on the preset normal fluctuation range, determine whether the current health data is abnormal.
[0076] As an example, the user's currently measured blood pressure can be determined to be abnormal based on a preset normal blood pressure fluctuation range. If the blood pressure fluctuation is not within the preset normal blood pressure fluctuation range, the blood pressure is determined to be abnormal. Alternatively, the user's currently measured ECG data can be determined to be abnormal based on a preset normal ECG parameter variation pattern. If the ECG parameter variation does not conform to the preset normal ECG parameter variation pattern, the ECG is determined to be abnormal.
[0077] Step S20: If there is an abnormality, suspend the current health measurement function and ask the user whether to redo the current health measurement and / or whether to perform other health measurements;
[0078] As an example, a health measurement function refers to a health monitoring function (e.g., ECG monitoring function, blood pressure monitoring function, etc.) that a health monitoring device has. For example, the current health measurement function refers to the ECG monitoring function that the user is currently using, and other health monitoring functions refer to the blood pressure monitoring function that the user can select in addition to the ECG monitoring function.
[0079] As an example, the current health measurement refers to the current health data collected based on the health measurement function currently selected by the user, and other health measurements refer to the health data collected based on functions other than the current health measurement function selected by the user. For example, if the user is currently collecting PPG (Photoplethysmography) data, the corresponding other health measurements may include collecting ECG, body temperature, and other data.
[0080] For example, if the current health data is determined to be abnormal, the user can know that the current measurement result is abnormal. Therefore, the user can choose not to continue the current measurement result and choose to perform other health measurements to obtain more comprehensive and accurate measurement results. The user can also choose to re-take the current health measurement to verify the previous health measurement result.
[0081] As an example, Figure 2 As shown, if the current health measurement function is a blood pressure measurement function, the user may be asked whether he needs to re-measure his blood pressure and / or perform heart rate, blood oxygen or electrocardiogram (ECG) measurement, etc. If the user does not respond within a preset time period (3 seconds or 2 seconds, etc.) or touches the cancel button, the current health measurement function will continue.
[0082] Therefore, refer to Figure 2 If it is determined that the current health data is abnormal, the current health measurement function is suspended and the user is asked whether he needs to re-measure the current health data and / or whether he needs to perform other health measurements. If the user needs to re-measure, the waiting time for the user to re-measure is reduced, thereby improving the user's user experience. If the user does not need to re-measure and wants to perform other health measurements, the waiting time for the user to perform other health measurements is reduced, thereby improving the user's user experience. There is no need to wait for the current health measurement to be completely completed before re-measuring or performing further measurements.
[0083] As an example, pausing the current health measurement function means pausing the collection of current health data.
[0084] Step S30: If no response from the user is received, continue the current health measurement function.
[0085] As an example, if the user does not receive a response from the user, it is considered that the user does not need to re-perform the current health measurement, nor does he need to perform other health measurements. Instead, he wants to continue the current health measurement function to obtain more current health data to further verify whether there is any abnormality in the current health data. Alternatively, the user believes that external factors have interfered with the collection of the current health data and adjustments have been made, and the current health measurement can be continued. This does not force the user to suspend the current health measurement function, but provides the user with the active choice to improve the user experience.
[0086] As an example, continuing the current health measurement function means continuing the collection of current health data.
[0087] In this embodiment, before the step of asking the user whether a re-measurement is required and / or whether other health measurements are required, the method further includes:
[0088] Step S40: prompting the user to confirm whether the current measurement method is correct, so that the user can make adjustments.
[0089] As an example, when asking the user whether the current health measurement needs to be repeated and / or whether other health measurements need to be performed, the user may be prompted to confirm whether the current measurement method is correct so that the user can make adjustments, or before asking the user whether the current health measurement needs to be repeated and / or whether other health measurements need to be performed, the user may be prompted to confirm whether the current measurement method is correct.
[0090] As an example, the measurement method may include the measurement posture, the use method of the health monitoring device, etc. The measurement posture may be the user's motion state during the measurement process (vigorous exercise, walking, stillness, etc.), or the user's body state in a static state (standing, sitting, lying down, etc.). Specifically, the prompt may be based on the different types of health measurements currently being taken, and corresponding adjustment suggestions may be made. For example, for PPG measurement, the user may be advised to measure in a static state, and for blood pressure measurement, the user may be advised to measure before breakfast, etc., without limitation here. The use method of the health monitoring device may be the way / position of the user touching the health monitoring device, or the standard degree to which the user wears the health monitoring device, etc., without limitation here.
[0091] As an example, after the user makes adjustments based on the prompts, he or she can continue with the current health measurement, re-measure the current health measurement, or perform other health measurements. This avoids the situation where the health monitoring device continues to prompt the user that the current health data is abnormal without eliminating interference from external factors (measurement methods, etc.), thereby improving the efficiency of health measurement.
[0092] In this embodiment, after the step of asking the user whether to redo the current health measurement and / or whether to perform other health measurement functions, the method further includes:
[0093] In this embodiment, the other health measurement functions are one or more functions other than the current health measurement function.
[0094] Step C1: If the user needs to perform health measurement of multiple functions in addition to the current health measurement function, health measurement is performed simultaneously based on the multiple functions selected by the user.
[0095] As an example, Figure 2As shown, if the current health measurement function is the blood pressure measurement function, the user may be asked whether he needs to re-measure the blood pressure while performing heart rate, blood oxygen or electrocardiogram (ECG, electrocardiogram) measurements. If the current health measurement function is the blood pressure measurement function and the blood oxygen measurement function, the user may be asked whether he needs to re-measure the blood pressure and blood oxygen while performing other heart rate or electrocardiogram (ECG, electrocardiogram) measurements. The user may also be asked whether he needs to re-measure the blood pressure separately; or whether he needs to measure the blood oxygen separately. If the user touches the function button such as heart rate, blood oxygen, blood pressure, etc. and clicks to confirm, the single function selected by the user will be measured separately or the multiple functions will be measured simultaneously to meet the user's usage needs.
[0096] In this embodiment, by collecting the user's current health data and judging whether the current health data has any abnormalities, the collected health data can be judged in real time, and it is not necessary to know whether there are any abnormalities after the measurement is completed. If there is an abnormality, the current health measurement function is paused, and the user is asked whether he needs to redo the current health measurement and / or whether he needs to perform other health measurements. When an abnormality occurs, there is no need to wait until the measurement is completed before redoing the current health measurement or performing other health measurements, which avoids the situation where the user needs to repeatedly perform different health measurements for a long time. If no response from the user is received, the current health measurement function is continued. If the user does not need to re-measure or perform other health measurements, the current health measurement function is continued without affecting the current health measurement. The present application can judge the collected health data in real time, which avoids the situation where the user needs to repeatedly perform different health measurements for a long time, thereby improving the user experience.
[0097] Furthermore, based on the above embodiment of the present application, another embodiment of the present application is provided. In this embodiment, after the step of collecting the user's current health data, the method further includes:
[0098] Step S50: When the current health measurement function ends, asking the user whether to save the current health data;
[0099] As an example, if the user receives a configuration rejection request or no request is received, the historical health data accumulated by the user during the measurement process can be used to determine whether the current health data has an abnormality (whether the current health data has an abnormality from the first measurement to the preset number of saves can be determined based on the user's subjective judgment. If the user believes that the current health data does not have an abnormality, the user can save it).
[0100] As an example, see Figure 4 , the health monitoring device may ask the user whether to save the current health data (for example, display the average value of the user's heart rate measured this time (67bpm, 72bpm), or display the specific values of the user's systolic and diastolic blood pressure measured this time, etc.) when the current health measurement is completed. If the user chooses to save (touch the confirmation button), the current health data will be used as historical health data. If the user does not respond, the save will be automatically canceled after a period of time (which may be after 3 seconds, or 2 seconds, etc.).
[0101] Step S60: If a save request from the user is received, the current health data is stored as historical health data.
[0102] As an example, if a user's save request is received, the current health data is stored as historical health data. Specifically, when storing, the average value of the current health data within a certain period of time can be stored, or the parameter value of the current health data at a certain moment can be stored. For example, each saved record is B_n, where n is the current record result. When n reaches the upper limit, the user can be prompted to end the record, or the historical record can be updated, etc., or the historical record can be automatically updated based on the recorded time.
[0103] In this embodiment, the step of determining whether the current health data is abnormal includes:
[0104] Step B1: determining whether the deviation between the historical health data and the current health data is greater than a preset normal deviation threshold;
[0105] As an example, the preset normal deviation threshold may be an average value of differences between historical health data in historical records, or may be a fixed value set based on empirical data.
[0106] As an example, the deviation between the historical health data and the current health data can be calculated based on the average value of the historical health data in the historical records and the average value of the current health data within K consecutive times. For example, the average value of the historical health data in the historical records is: the average value AVG_B of B_n, B_(n-1), ..., B_(nm); the average value of the current health data within K consecutive times is: the average value AVG_A of A_n, A_(n-1), ..., A_(nk).
[0107] As an example, the deviation between the historical health data and the current health data may be determined as the difference between AVG_A and AVG_B.
[0108] Step B2: If it is greater than, it is determined that there is an abnormality in the current health data.
[0109] As an example, if the difference between AVG_A and AVG_B is greater than a preset normal deviation threshold, it is considered that the current measurement result deviates from the historical measurement result, that is, the current health data is abnormal.
[0110] In this embodiment, the user's current health data is compared based on the user's historical health data, which can more accurately reflect the user's own physical changes, making it easier for the user to intuitively understand the physical changes before and after, thereby improving the user's usage experience.
[0111] Further, based on the above embodiment of the present application, another embodiment of the present application is provided, referring to Figure 5 and Figure 6 In this embodiment, it is applied to a health monitoring device, which is provided with a plurality of electrode sheets, a PPG module and a main chip; the plurality of electrode sheets (ECG monitoring module) are used to collect electrocardiogram data by contacting the user's skin, and the PPG module is used to collect the user's PPG data.
[0112] As an example, the PPG module has a heart rate measurement function and / or a blood oxygen measurement function, and the PPG data can be heart rate data, blood oxygen data, or heart rate and blood oxygen data.
[0113] As an example, the health monitoring device is also provided with a Hall sensor, which is used to monitor the opening and closing of the upper shell and the lower shell, and send a signal to the main chip / processor for the main chip / processor to control the working state switching of the whole machine.
[0114] As an example, the health monitoring device is also provided with a body temperature sensor that can measure the user's body temperature data.
[0115] As an example, the PPG module and the body temperature sensor are arranged under the PPG window.
[0116] As an example, the health monitoring device is also equipped with a data communication module, a power control module, a battery module, an indicator light (for prompting the user), a button, a sound module, a charging and communication interface, a theme shell (upper shell and lower shell), and the sensor module is equipped with other sensors (such as gas monitoring sensors, etc.) in addition to the motion sensor, Hall sensor, PPG module, body temperature sensor and ECG monitoring module.
[0117] As an example, the health monitoring device may also be provided with a display module (for prompting the user or displaying information to the user), and may also be provided with a touch module (for the user to perform touch operations on the device).
[0118] In this embodiment, the step of collecting the user's current health data includes:
[0119] Step C1: Based on the health measurement function selected by the user, the main chip controls the multiple electrode sheets and / or the PPG module to collect corresponding health data.
[0120] As an example, based on the health measurement function selected by the user, the main chip controls the multiple electrode sheets and / or the PPG module to collect corresponding health data.
[0121] As an example, if the user selects heart rate measurement, or selects heart rate and blood oxygen measurement at the same time, the main chip controls the PPG module to collect the user's heart rate data and upload it to the main chip.
[0122] As an example, if the user selects electrocardiogram measurement, the main chip controls the multiple electrode sheets (ECG monitoring module) to collect the user's electrocardiogram data and uploads it to the main chip.
[0123] As an example, if the user selects heart rate measurement and electrocardiogram measurement at the same time, the main chip controls the multiple electrode sheets (ECG monitoring module) and the PPG module to collect the user's electrocardiogram data and heart rate data respectively.
[0124] As an example, using three electrodes to collect the user's electrocardiogram data can improve the collection accuracy.
[0125] In this embodiment, a motion sensor is further provided inside the health monitoring device, and the motion sensor is used to sense the relative position changes between the user's skin and the multiple electrode sheets and / or the PPG module.
[0126] As an example, a motion sensor is further provided inside the health monitoring device, which is used to sense the relative position changes between the user's skin and the multiple electrode sheets and / or the PPG module. For example, when the user is in a non-stationary state, the contact position between the user's finger skin or other parts of the skin and the surface of the health monitoring device will produce slight changes. Such slight changes may affect the accuracy of the user health data collected by the multiple electrode sheets and / or the PPG module.
[0127] In this embodiment, before the step of collecting the user's current health data, the method further includes:
[0128] Step S70: acquiring the relative position change through the motion sensor, and determining whether the relative position change affects data acquisition;
[0129] Step S80: If there is no impact, execute the step of collecting the user's current health data.
[0130] In this embodiment, a motion sensor can be used to acquire the relative position change between the user's skin and the multiple electrode sheets and / or the PPG module, and determine whether the relative position change affects data collection. If the relative position change is less than the preset position change threshold, it is considered that it does not affect the collection of the current health data, and the user's current health data can continue to be collected. If the relative position change is greater than the preset position change threshold, it is considered that it affects the collection of the current health data. At this time, it can be considered that an abnormality has occurred in the measurement process, and the collection of the current health data is suspended and the user is prompted to adjust the current measurement posture, etc. The user can also be prompted whether the measurement needs to be repeated. If the user does not respond, the collection of the current health data will continue after a period of time.
[0131] As an example, the prompt functions mentioned above can all be prompted through the display screen of the health monitoring device, or can all be prompted through a client connected to the health monitoring device.
[0132] In this embodiment, the multi-functional and simultaneous measurement of the user is achieved through the above-mentioned health monitoring equipment, and the measurement signal of the user during health measurement is detected through the motion sensor, which improves the intelligence of the health measurement process and improves the accuracy of the current health data collected.
[0133] Reference Figure 7 , Figure 7 It is a schematic diagram of the device structure of the hardware operating environment involved in the embodiment of the present application.
[0134] like Figure 7 As shown, the health measurement device may include: a processor 1001 , a memory 1005 , and a communication bus 1002 . The communication bus 1002 is used to implement connection and communication between the processor 1001 and the memory 1005 .
[0135] Optionally, the health measurement device may further include a user interface, a network interface, a camera, an RF (Radio Frequency) circuit, a sensor, a WiFi module, and the like. The user interface may include a display screen and an input submodule such as a keyboard. The optional user interface may also include a standard wired interface and a wireless interface. The network interface may include a standard wired interface and a wireless interface (such as a WiFi interface).
[0136] Those skilled in the art will understand that Figure 7The structure of the health measurement device shown in the figure does not constitute a limitation on the health measurement device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently.
[0137] like Figure 7 As shown, memory 1005, a storage medium, may include an operating system, a network communication module, and a health measurement program. The operating system is a program that manages and controls the hardware and software resources of the health measurement device, supporting the execution of the health measurement program and other software and / or programs. The network communication module is used to enable communication between the various components within memory 1005, as well as with other hardware and software in the health measurement system.
[0138] exist Figure 7 In the health measurement device shown, the processor 1001 is used to execute the health measurement program stored in the memory 1005 to implement the steps of any of the above-mentioned health measurement methods.
[0139] The specific implementation of the health measurement device of the present application is basically the same as the embodiments of the above-mentioned health measurement method, and will not be repeated here.
[0140] This application also provides a health measurement device, such as Figure 8 As shown, the device includes:
[0141] The abnormality judgment module 10 is used to collect the user's current health data and judge whether there is any abnormality in the current health data;
[0142] The abnormality inquiry module 20 is used to suspend the current health measurement function if an abnormality occurs, and inquire the user whether the current health measurement needs to be repeated and / or whether other health measurement functions need to be performed;
[0143] The continuing measurement module 30 is configured to continue the current health measurement if no response from the user is received.
[0144] Optionally, in a possible implementation manner of the present application, after the step of collecting the user's current health data, the device further includes:
[0145] A data saving prompt module is used to ask the user whether to save the current health data when the current health measurement function ends;
[0146] The data storage module is used to store the current health data as historical health data if a save request from the user is received.
[0147] Optionally, in a possible implementation manner of the present application, the abnormality judgment module 10 includes:
[0148] a first abnormality determination unit, configured to determine whether a deviation between the historical health data and the current health data is greater than a preset normal deviation threshold;
[0149] The abnormality determination unit is used to determine that there is an abnormality in the current health data if it is greater than.
[0150] Optionally, in a possible implementation manner of the present application, before the step of collecting the user's current health data, the device further includes:
[0151] A configuration inquiry module, configured to inquire the user whether to configure a fluctuation range of health data;
[0152] a configuration module configured to, upon receiving a configuration request from a user, use the fluctuation range configured by the user as a preset normal fluctuation range;
[0153] The abnormality judgment module 10 includes:
[0154] The second abnormality judgment unit is used to judge whether the current health data has an abnormality based on the preset normal fluctuation range.
[0155] Optionally, in a possible implementation manner of the present application, the other health measurement functions are one or more functions other than the current health measurement function. After the step of asking the user whether to re-perform the current health measurement and / or whether to perform other health measurement functions, the device further includes:
[0156] The measurement selection module is configured to simultaneously perform health measurements based on the multiple functions selected by the user if the user needs to perform health measurements of multiple functions other than the current health measurement function.
[0157] Optionally, in a possible implementation manner of the present application, before the step of asking the user whether a current health measurement needs to be repeated and / or whether other health measurements need to be performed, the apparatus further includes:
[0158] The adjustment prompt module is used to prompt the user to confirm whether the current measurement method is correct so that the user can make adjustments.
[0159] Optionally, in a possible implementation manner of the present application, the device is applied to a health monitoring device, wherein the health monitoring device is provided with a plurality of electrode sheets, a PPG module, and a main chip, wherein the plurality of electrode sheets are used to collect electrocardiogram data by contacting the user's skin, and the PPG module is used to collect the user's PPG data;
[0160] The abnormality judgment module 10 includes:
[0161] The data acquisition unit is used to control the multiple electrode sheets and / or the PPG module to collect corresponding health data based on the health measurement function selected by the user through the main chip.
[0162] Optionally, in a possible implementation manner of the present application, a motion sensor is further provided inside the health monitoring device, and the motion sensor is used to sense changes in relative positions of the user's skin and the plurality of electrode sheets and / or the PPG module;
[0163] Before the step of collecting the user's current health data, the device further includes:
[0164] An impact judgment module, configured to obtain the relative position change through the motion sensor and judge whether the relative position change affects data collection;
[0165] The data collection module is used to execute the step of collecting the user's current health data if there is no impact.
[0166] The specific implementation of the health measurement device of the present application is basically the same as the embodiments of the above-mentioned health measurement method, and will not be repeated here.
[0167] The present application also provides a storage medium, on which a health measurement program is stored. When the health measurement program is executed by a processor, the steps of any of the above-mentioned health measurement methods are implemented.
[0168] The specific implementation of the storage medium of this application is basically the same as the embodiments of the above-mentioned health measurement method, and will not be repeated here.
[0169] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or system. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or system comprising the element.
[0170] The serial numbers of the above embodiments of the present application are for description only and do not represent the advantages or disadvantages of the embodiments.
[0171] Through the description of the above implementation methods, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of software plus the necessary general hardware platform, and of course can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of the present application, or the part that contributes to the prior art, can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) as described above, and includes a number of instructions for enabling a terminal device (which can be a mobile phone, computer, server, air conditioner, or network device, etc.) to execute the methods described in each embodiment of the present application.
[0172] The above are only preferred embodiments of the present application and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A health measurement method, characterized in that: The health measurement method comprises the following steps: Collect the user's current health data and determine whether the current health data is abnormal; If there is an abnormality, the current health measurement function is suspended, and the user is asked whether the current health measurement needs to be repeated and whether other health measurements need to be performed; If no response is received from the user, the current health measurement function continues until the current health measurement function ends; If the user's response is to re-perform the current health measurement and other health measurements, the current health measurement function is re-performed while performing other health measurement functions; if the user's response is to perform the current health measurement, the current health measurement function is re-performed; if the user's response is to perform other health measurements, other health measurement functions are performed.
2. The health measurement method according to claim 1, wherein: After the step of collecting the user's current health data, the method further includes: When the current health measurement function ends, asking the user whether to save the current health data; If a save request from the user is received, the current health data is stored as historical health data.
3. The health measurement method according to claim 2, wherein: The step of determining whether the current health data is abnormal includes: Determining whether a deviation between the historical health data and the current health data is greater than a preset normal deviation threshold; If it is greater, it is determined that there is an abnormality in the current health data.
4. The health measurement method according to claim 1, wherein: Before the step of collecting the user's current health data, the method further includes: Asking the user whether to configure a fluctuation range of health data; If a configuration request from a user is received, the fluctuation range configured by the user is used as the preset normal fluctuation range; The step of determining whether the current health data is abnormal includes: Based on the preset normal fluctuation range, determine whether the current health data is abnormal.
5. The health measurement method according to claim 1, wherein: The other health measurement functions are one or more functions other than the current health measurement function. After the step of inquiring the user whether the current health measurement needs to be redone and / or whether other health measurement functions need to be performed, the method further includes: If the user needs to perform health measurements of multiple functions in addition to the current health measurement function, health measurements are performed simultaneously based on the multiple functions selected by the user.
6. The health measurement method according to claim 1, wherein: Before the step of asking the user whether a current health measurement needs to be repeated and / or whether other health measurements need to be performed, the method further includes: The user is prompted to confirm whether the current measurement method is correct so that the user can make adjustments.
7. The health measurement method according to claim 1, wherein: Applicable to health monitoring equipment, wherein the health monitoring equipment is provided with multiple electrodes and a PPG module; The plurality of electrode sheets are used to collect ECG data by contacting the user's skin, and the PPG module is used to collect the user's PPG data; The step of collecting the user's current health data includes: Based on the health measurement function selected by the user, the main chip controls the multiple electrode sheets and / or the PPG module to collect corresponding health data.
8. The health measurement method according to claim 7, wherein: The health monitoring device is further provided with a motion sensor, which is used to sense the relative position changes between the user's skin and the multiple electrode sheets and / or the PPG module; Before the step of collecting the user's current health data, the method further includes collecting the relative position change through the motion sensor and determining whether the relative position change affects data collection; If there is no impact, execute the step of collecting the user's current health data.
9. A health measurement device, characterized in that: The device comprises: An abnormality judgment module is used to collect the user's current health data and judge whether there is any abnormality in the current health data; An abnormality inquiry module is used to suspend the current health measurement function if an abnormality occurs, and inquire the user whether the current health measurement needs to be re-measured and whether other health measurements need to be performed; The continue measurement module is used to continue the current health measurement function until the current health measurement function ends if no response from the user is received; if the response received from the user is to re-perform the current health measurement and other health measurements, then the current health measurement function is re-performed while performing other health measurement functions; if the response received from the user is to perform the current health measurement, then the current health measurement function is re-performed; if the response received from the user is to perform other health measurements, then other health measurement functions are performed.
10. A health measurement device, characterized in that: The device includes: a memory, a processor, and a health measurement program stored in the memory and executable on the processor, wherein the health measurement program is configured to implement the steps of the health measurement method according to any one of claims 1 to 8.
11. A storage medium, characterized in that: The storage medium stores a health measurement program, and when the health measurement program is executed by the processor, the steps of the health measurement method according to any one of claims 1 to 8 are implemented.
Citation Information
Patent Citations
Human body health monitoring method and device
CN109065164A
Continuous monitoring of a user's health with a mobile device
CN113168908A
Heart rate monitor
EP2612594A2