Grip measurement method, apparatus, device, and storage medium

By obtaining identity information to determine a personalized safe heart rate range and monitoring heart rate in real time, the safety issues caused by lack of supervision among the elderly in grip strength measurement have been resolved, and safe and effective grip strength measurement has been achieved.

CN115530832BActive Publication Date: 2026-04-10CENT SOUTH UNIV +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-30
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

During grip strength measurement, elderly people are prone to adverse reactions due to lack of supervision, which may lead to sudden illnesses and other safety accidents.

Method used

By obtaining the subject's identity information, a personalized safe heart rate range is determined, and the heart rate value is monitored in real time and compared with this range. If the heart rate exceeds the limit, the grip strength test mode is exited to ensure safety.

Benefits of technology

It enables personalized, safe and effective grip strength measurement, which is especially suitable for the elderly and avoids adverse reactions and safety accidents caused by excessive heart rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a grip strength measurement method, device, equipment and storage medium. The method comprises the following steps: obtaining the identity information of a subject; determining the corresponding safety heart rate range of the subject based on the identity information; obtaining the heart rate value and grip strength value of the subject monitored in the grip strength test mode; comparing the heart rate value with the determined safety heart rate range; if the heart rate value is greater than or equal to the maximum value of the safety heart rate range, the grip strength test mode is exited. The application can set a personalized safety heart rate range for the subject, compare the personalized safety heart rate range with the monitored heart rate, and exit the grip strength test mode in time when the heart rate is out of limit, so that the safety of the subject in the grip strength test process is effectively guaranteed, thereby the grip strength of the subject can be measured in a personalized, safe and effective manner, and the application is especially suitable for the grip strength measurement of the elderly.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of body performance evaluation, and in particular, to a handgrip strength measurement method, device, equipment and storage medium. BACKGROUND

[0002] Handgrip strength (HGS) is the total force generated by a single hand gripping a handgrip, which is generated by the contraction of the intramuscular and forearm muscle groups. It not only reflects the strength of the hand and forearm muscles, but also reflects the overall strength of the body muscles and the physical condition of the body. Handgrip strength is an important indicator that can accurately predict a variety of key outcomes, and it is also an evaluation of upper limb strength and muscle strength. Handgrip strength has the advantages of simple measurement, simple tool and easy operation.

[0003] In related technologies, in order to effectively evaluate the health status and action ability of the elderly, a handgrip strength measurement tool is often used to measure the handgrip strength of the elderly, such as using a hydraulic, pneumatic, electronic watch type, etc. Handgrip strength meter for measurement. However, in the process of handgrip strength test, the test personnel (i.e. the person receiving the test) should emphasize that the individual should exert as much force as possible to accelerate to the maximum, and after reaching the maximum force, the test personnel must continue to exert force with such maximum effort until they cannot or do not want to continue to maintain the force. Continuous handgrip strength test is muscle isometric contraction, which can easily cause adverse reactions such as elevated blood pressure and increased heart rate. Elderly people often have high blood pressure, coronary heart disease and other diseases, so in the process of handgrip strength measurement, if the supervision is not careful, it may cause adverse reactions in the test personnel, and even cause safety accidents such as sudden illness in the elderly. SUMMARY

[0004] Therefore, the embodiments of the present application provide a handgrip strength measurement method, device, equipment and storage medium, which aims to measure the handgrip strength of the test personnel individually, safely and effectively.

[0005] The technical solutions of the embodiments of the present application are as follows:

[0006] In a first aspect, the embodiments of the present application provide a handgrip strength measurement method, comprising:

[0007] Obtaining the identity information of the test personnel;

[0008] Determining the safe heart rate range corresponding to the test personnel based on the identity information;

[0009] Obtaining the heart rate value and handgrip strength value of the test personnel monitored in the handgrip strength test mode;

[0010] Comparing the heart rate value with the determined safe heart rate range;

[0011] If the heart rate value is greater than or equal to the maximum value of the safe heart rate range, the grip strength test mode is exited.

[0012] In some embodiments, the method further comprises:

[0013] If, in the grip strength test mode, the heart rate values are all less than the maximum value of the safe heart rate range, the grip strength test mode is exited based on a set time length of a running time length of the grip strength test mode being reached or a set number of times of grip strength tests in the grip strength test mode being reached.

[0014] In some embodiments, after the grip strength test mode is exited, the method further comprises:

[0015] Based on the grip strength values acquired in the grip strength test mode and the identity information, a grip strength level of the testee is determined.

[0016] In some embodiments, the determination of the grip strength level of the testee based on the grip strength values acquired in the grip strength test mode and the identity information comprises:

[0017] If grip strength values of at least two grip strength tests are acquired in the grip strength test mode, a maximum grip strength value of the at least two grip strength tests is taken as a grip strength test result, and the grip strength level of the testee is determined based on the grip strength test result and the identity information;

[0018] If a grip strength value of only one grip strength test is acquired in the grip strength test mode, a maximum grip strength value of the one grip strength test is taken as a grip strength test result, and the grip strength level of the testee is determined based on the grip strength test result and the identity information;

[0019] If a grip strength value is not successfully acquired in the grip strength test mode, a prompt information of test failure is output.

[0020] In some embodiments, the identity information comprises gender and age, and the determination of the grip strength level of the testee based on the grip strength test result and the identity information comprises:

[0021] Based on the gender, age of the testee, and the grip strength test result and a pre-stored grip strength level division interval based on gender, age, and grip strength value range division, a grip strength level corresponding to the grip strength test result is determined as the grip strength level of the testee; or,

[0022] The gender, age of the testee, and the grip strength test result are sent to an application server, and a grip strength level returned by the application server is received as the grip strength level of the testee.

[0023] In some embodiments, the identity information at least includes an age, and the determining the safe heart rate range corresponding to the subject based on the identity information comprises:

[0024] obtaining a first heart rate based on a difference between the target heart rate and the age of the subject;

[0025] obtaining the safe heart rate range of the subject based on the first heart rate and a value interval corresponding to the motion state.

[0026] In some embodiments, the identity information further includes a disease condition, and the obtaining the safe heart rate range of the subject based on the first heart rate and the value interval corresponding to the motion state comprises:

[0027] if the disease condition of the subject matches a set disease type, correcting the value interval, and obtaining the safe heart rate range of the subject based on the first heart rate and the corrected value interval.

[0028] In a second aspect, the embodiments of the present application further provide a grip strength measuring device, characterized in that it comprises:

[0029] a first obtaining module configured to obtain identity information of a subject;

[0030] a determining module configured to determine a safe heart rate range corresponding to the subject based on the identity information;

[0031] a second obtaining module configured to obtain a heart rate value and a grip strength value of the subject monitored in a grip strength test mode;

[0032] a measuring protection module configured to compare the heart rate value with the determined safe heart rate range, and if the heart rate value is greater than or equal to a maximum value of the safe heart rate range, exit the grip strength test mode.

[0033] In a third aspect, the embodiments of the present application further provide a grip strength measuring device, comprising a processor and a memory for storing a computer program capable of running on the processor, wherein the processor is configured to run the computer program to perform the steps of the method described in the embodiments of the present application.

[0034] In a fourth aspect, the embodiments of the present application further provide a storage medium having a computer program stored thereon, wherein the computer program is executed by a processor to perform the steps of the method described in the embodiments of the present application.

[0035] The technical scheme provided in the embodiments of the present application obtains the heart rate value and the grip strength value of the subject monitored in the grip strength test mode, compares the heart rate value with the determined safe heart rate range of the subject, and exits the grip strength test mode if the heart rate value is greater than or equal to the maximum value of the safe heart rate range. In this way, the personalized safe heart rate range of the subject can be set, and the monitored heart rate is compared with the personalized safe heart rate range, and the grip strength test mode is exited in time when the heart rate is out of limit, so that the safety of the subject in the grip strength test process is effectively guaranteed, thereby the grip strength of the subject can be measured in a personalized, safe and effective manner, and the grip strength measurement of the elderly is especially suitable. BRIEF DESCRIPTION OF DRAWINGS

[0036] Figure 1 A flowchart of a grip strength measurement method according to an embodiment of the present application is shown;

[0037] Figure 2 A structural diagram of a grip strength measurement device according to an embodiment of the present application is shown;

[0038] Figure 3 A flowchart of a grip strength measurement method according to an embodiment of the present application is shown;

[0039] Figure 4 A structural diagram of a grip strength measurement device according to an embodiment of the present application is shown;

[0040] Figure 5 Another structural diagram of a grip strength measurement device according to an embodiment of the present application is shown. DETAILED DESCRIPTION

[0041] The present application will be further described in detail below with reference to the accompanying drawings and embodiments.

[0042] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application.

[0043] In the related art, if supervision is not paid attention to during the grip strength measurement process, the subject may have an adverse reaction, and thus a safety accident such as a sudden illness of the elderly may occur. Based on this, in various embodiments of the present application, a personalized safe heart rate range of the subject is set, and the monitored heart rate is compared with the personalized safe heart rate range, and the grip strength test mode is exited in time when the heart rate is out of limit, so that the safety of the subject in the grip strength test process is effectively guaranteed, thereby the grip strength of the subject can be measured in a personalized, safe and effective manner, and the grip strength measurement of the elderly is especially suitable.

[0044] The embodiment of the present application provides a grip measurement method, which is applied to a grip measurement device, such as Figure 1 As shown in the figure, the method comprises the following steps:

[0045] Step 101: obtaining identity information of a subject;

[0046] Step 102: determining a safe heart rate range corresponding to the subject based on the identity information;

[0047] Step 103: obtaining a heart rate value and a grip value of the subject monitored in a grip test mode;

[0048] Step 104: comparing the heart rate value with the determined safe heart rate range;

[0049] Step 105: if the heart rate value is greater than or equal to the maximum value of the safe heart rate range, exiting the grip test mode.

[0050] Here, the grip measurement device can obtain the identity information of the subject based on a human-computer interaction unit. For example, an operator can input the identity information of the subject, such as the age, gender, disease condition, etc. of the subject, based on the human-computer interaction unit (keyboard, button, touch screen, etc.). For example, the human-computer interaction unit can include a loudspeaker for outputting voice and a microphone for collecting voice. The grip measurement device can output voice prompt information based on the loudspeaker, such as asking the age, gender, disease condition, etc. of the subject. The grip measurement device can also collect voice signals corresponding to the answers of the subject to the foregoing questions based on the microphone, and then obtain the identity information of the subject, such as the age, gender, disease condition, etc.

[0051] In some embodiments, the grip measurement device determines the safe heart rate range corresponding to the subject based on the identity information, comprising:

[0052] obtaining a first heart rate based on the difference between the target heart rate and the age of the subject;

[0053] obtaining the safe heart rate range of the subject based on the first heart rate and the value interval corresponding to the motion state.

[0054] For example, the target heart rate is 220 beats per minute, the first heart rate = target heart rate - age of the subject, and the value interval corresponding to the motion state is 65% to 85%. Taking the subject 60 years old as an example, the first heart rate is 160 beats per minute, and the corresponding safe heart rate range is 104 to 136 beats per minute.

[0055] In some embodiments, when the identity information of the subject includes a disease condition, the obtaining of the safe heart rate range of the subject based on the value range corresponding to the first heart rate and the motion state comprises: if the disease condition of the subject conforms to a set disease type, correcting the value range, and obtaining the safe heart rate range of the subject based on the first heart rate and the corrected value range.

[0056] Here, the set disease type can include heart disease, diabetes, hypertension and other disease types, and each disease type is set with a corresponding value range. For example, the subject is 60 years old and has heart disease, the first heart rate is 160 beats per minute, and the corrected value range is 55% to 75%. The corresponding safe heart rate range is 88 to 120 beats per minute.

[0057] Here, the grip measuring device can obtain the heart rate value and the grip value of the subject monitored in the grip test mode. It can be understood that the grip measuring device includes a heart rate sensor for detecting the heart rate of the human body and a grip sensor for detecting the grip of the human body.

[0058] As shown in Figure 2 In an application example, the grip measuring device includes a seat 21 and a heart rate sensor 22 and a grip sensor 23 arranged on the seat 21. For example, the heart rate sensor 22 and the grip sensor 23 are arranged on the armrests on both sides of the seat 21, respectively. As shown in Figure 2 The heart rate sensor 22 on both sides of the seat 21 can be arranged on the armrests of the seat 21, so as to monitor the heart rate of the subject when the arms of the subject are placed on the armrests. The grip sensor 23 can be arranged on the handle connected to the seat 21, so as to detect the grip when the subject holds the handle. The heart rate sensor 22 and the grip sensor 23 can both be implemented by known technologies, which will not be described here.

[0059] Exemplarily, the seat 21 is further provided with a human-computer interaction module 24, which can be provided with a touch screen, so that the operator can input the identity information of the subject. The human-computer interaction module 24 can also be provided with a voice output unit, so that voice prompts and other information can be output during the grip strength test. For example, after the operator inputs the information such as the age, gender and disease condition of the subject, the grip strength test is started. At this time, the grip strength measuring device enters the grip strength test mode, and the voice output unit outputs the voice prompt: "Please keep sitting, with 90-degree bending of the knees and hip joints, naturally place your feet on the ground, keep the forearms in neutral position and the shoulders in retracted position, bend the elbows by 90°. Limit the range of motion of the wrists within 30 degrees, and then squeeze the grip strength handle with maximum force. Please squeeze the grip strength handle with maximum force again. Please squeeze the grip strength handle with maximum force again". The subject performs the corresponding test action based on the voice prompt, thereby completing the grip strength test. Based on the voice prompt, the elderly can be guided in a standardized manner during the test, which is beneficial to the smooth progress of the grip strength test.

[0060] In order to evaluate the grip strength level of the subject, it should be noted that the subject needs to be tested for grip strength multiple times in the grip strength test mode. Exemplarily, in the grip strength test mode, the subject can be prompted by voice for three times of grip strength test. The number of grip strength tests can be set based on the requirements, which is not limited in the present application.

[0061] It can be understood that in the grip strength test mode, the grip strength measuring device can collect the heart rate value detected by the heart rate sensor 22 and the grip strength value detected by the grip strength sensor 23. The grip strength measuring device can compare the collected heart rate value with the determined safe heart rate range of the subject. If the current heart rate value is greater than or equal to the maximum value of the safe heart rate range, the grip strength test mode is exited. The grip strength test device can prompt the subject to exit the current grip strength test based on voice, such as playing the voice: "the current heart rate is too high, please exit the grip strength test" and other prompt information.

[0062] Exemplarily, the heart rate sensor 22 and the grip strength sensor 23 of the grip strength measuring device can enter the detection working mode in response to the grip strength test mode. If the grip strength measuring device exits the grip strength test mode, the heart rate sensor 22 and / or the grip strength sensor 23 can enter the standby mode with low power consumption, thereby effectively reducing the power consumption of the device.

[0063] In some embodiments, if the heart rate value is less than the maximum value of the safe heart rate range during the grip strength test, the grip strength test mode is exited based on that the test duration of the grip strength test reaches a set duration or the number of tests in the grip strength test reaches a set number.

[0064] Here, the set time length can be determined based on the sampled measurement time consumption. The set number of times can be reasonably set based on the test requirements. Exemplarily, the set number of times is three. It can be understood that, for a single grip strength test, the grip strength sensor can generate a plurality of grip strength detection values for characterizing the grip strength change of the subject. If the detected heart rate values during the grip strength test are all less than the maximum value of the safe heart rate range of the subject, the grip strength measurement device will not exit the grip strength test mode in advance, so as to exit the grip strength test mode after the set number of times of grip strength tests are completely performed.

[0065] In some embodiments, after the grip strength test mode is exited, the method further comprises:

[0066] determining a grip strength level of the subject based on the grip strength values acquired in the grip strength test mode and the identity information.

[0067] It can be understood that the grip strength measurement device can determine the grip strength level of the subject based on the grip strength values acquired in the grip strength test mode and the identity information of the subject.

[0068] In some embodiments, the determination of the grip strength level of the subject based on the grip strength values acquired in the grip strength test mode and the identity information comprises:

[0069] if the grip strength values of at least two grip strength tests are acquired in the grip strength test mode, taking the maximum grip strength value of the at least two grip strength tests as a grip strength test result, and determining the grip strength level of the subject based on the grip strength test result and the identity information;

[0070] if the grip strength value of only one grip strength test is acquired in the grip strength test mode, taking the maximum grip strength value of the one grip strength test as a grip strength test result, and determining the grip strength level of the subject based on the grip strength test result and the identity information;

[0071] if the grip strength value is not successfully acquired in the grip strength test mode, outputting a test failure prompt information.

[0072] Here, in the grip strength test mode, if the heart rate of the subject is out of limit, the grip strength measurement device will exit the grip strength test mode in time, so that the acquired grip strength value may not correspond to the grip strength value of the pre-designed set number of times of grip strength tests. In the embodiment of the application, the maximum value of the acquired grip strength test value can be taken as a grip strength test result based on the acquired grip strength test value, so that even if the subject exits the grip strength test mode due to the out-of-limit heart rate, the grip strength level can be evaluated based on the existing grip strength value. In this way, safety accidents in the grip strength measurement process are effectively prevented, and the efficiency of the grip strength measurement is also taken into account.

[0073] It can be understood that if the subject exits the grip strength test mode due to excessive heart rate at the beginning of the test, resulting in no valid grip strength value being obtained, the grip strength measuring device can output prompt information such as voice information prompting test failure, and medical personnel can reasonably evaluate the subject to determine whether the subject can reattempt grip strength measurement, thereby further improving the safety of grip strength measurement.

[0074] In some embodiments, the identity information includes gender and age, and the determination of the grip strength level of the subject based on the grip strength test result and the identity information includes:

[0075] determining the grip strength level corresponding to the grip strength test result based on the gender, age, and grip strength test result of the subject and a pre-stored grip strength level division interval based on gender, age, and grip strength value range division, as the grip strength level of the subject; or,

[0076] sending the gender, age, and grip strength test result of the subject to an application server, and receiving the grip strength level returned by the application server as the grip strength level of the subject.

[0077] It can be understood that the grip strength measuring device can pre-store a grip strength level division interval based on gender, age, and grip strength value range division. For example, the grip strength level division interval can be stored in the form of Table 1 as follows:

[0078] Table 1

[0079]

[0080] In Table 1, the grip strength value is in kilograms (kg), and the grip strength level includes weak, medium, and strong.

[0081] The grip strength measuring device can match the grip strength test result determined based on the grip strength value obtained in the grip strength test mode, the age, and the gender of the subject with Table 1 above to determine the grip strength level of the subject. Assuming that the subject is 60 years old, male, and the grip strength test result is 40 kg, the grip strength level of the subject is “medium”.

[0082] In another example, the grip strength level division interval based on the gender, age and grip strength value range can be pre-stored in the application server, for example, the application server stores the standard age range male and female grip strength level table shown in Table 1. The grip strength measuring device obtains the grip strength test result based on the grip strength test, and sends the grip strength test result, gender and age of the testee to the application server. The application server matches the received information with Table 1, determines the grip strength level of the testee, and sends the determined grip strength level to the grip strength measuring device. This example can simplify the processing steps of the grip strength measuring device, eliminate the step of grip strength level evaluation, and facilitate the unified update of the grip strength level table on the server side, saving the trouble of individual configuration of each grip strength measuring device.

[0083] For example, the grip strength measuring device can also output the grip strength level of the testee. For example, the grip strength level can be output by voice or text, etc. Optionally, the grip strength test device can also output the maximum grip strength value and / or the number of grip strength tests.

[0084] The application will be further described in detail below in conjunction with an application example.

[0085] Figure 3 The flowchart of the grip strength measuring method of the application example is shown, and the method comprises Figure 3 The method comprises:

[0086] Step 301, obtaining the identity information of the testee.

[0087] Here, the operator can input the identity information of the testee, such as the age, gender, disease condition, etc. of the testee, based on the man-machine interaction unit (keyboard, button, touch screen, etc.) of the grip strength measuring device.

[0088] Step 302, determining the safe heart rate range of the testee.

[0089] Here, the grip strength measuring device can determine the safe heart rate range corresponding to the testee based on the obtained identity information of the testee, which can be referred to the foregoing description and will not be repeated here.

[0090] Step 303, starting the grip strength test mode.

[0091] Here, the grip strength measuring device can start the grip strength test mode based on the identity information of the testee input by the operator. Alternatively, the grip strength test mode can be started based on the key switch when the testee is ready.

[0092] Step 304, obtaining the heart rate value and grip strength value of the testee monitored in the grip strength test mode.

[0093] Here, the grip strength measuring device can acquire a heart rate value of the subject based on the heart rate sensor, and the grip strength measuring device can also acquire a grip strength value of the subject based on the grip strength sensor.

[0094] Exemplarily, after the grip strength measuring device enters the grip strength test mode, the grip strength measuring device outputs a voice prompt: "Please keep sitting, with the knee and hip joints bent at 90 degrees, the feet naturally placed on the ground, the forearms in a neutral position and the shoulders kept in a retracted position, the elbow bent at 90 degrees. Limit the range of motion of the wrist within 30 degrees, and then squeeze the grip strength handle with maximum force. Please squeeze the grip strength handle with maximum force again. Please squeeze the grip strength handle with maximum force again", to guide the subject to perform the corresponding test action. The grip strength measuring device can store the grip strength value corresponding to each grip strength test of the subject in the grip strength test mode, for example, as a grip strength test curve.

[0095] Step 305, judge whether the heart rate value exceeds the maximum heart rate, if yes, execute step 306, if no, execute step 307 after the test is completed.

[0096] The grip strength measuring device judges the heart rate value detected by the heart rate sensor based on the safety heart rate range in the grip strength test mode. If the current heart rate value is greater than or equal to the maximum value of the safety heart rate range (i.e. the maximum heart rate), step 306 is executed; if the heart rate value in the grip strength test mode is less than the maximum heart rate, step 307 is executed after the test is completed.

[0097] Step 306, stop the test and output the number of grip strength tests, the maximum grip strength value and the classification.

[0098] The grip strength measuring device exits the grip strength test mode and prompts the subject to end the grip strength test, thereby protecting the subject and avoiding potential dangers caused by the subject continuing to hold with force. The grip strength measuring device outputs the number of grip strength tests, the maximum grip strength value, and the classification results of the grip strength classification, etc. based on the acquired grip strength values corresponding to the grip strength tests.

[0099] Step 307, output the maximum grip strength value and the classification.

[0100] The grip strength measuring device exits the grip strength test mode after the subject performs a set number of grip strength tests, and selects the maximum grip strength value based on the grip strength values corresponding to the set number of grip strength tests for grip strength classification evaluation, and outputs the maximum grip strength value and the classification results of the grip strength classification, etc.

[0101] It can be learned from the above description that the measurement method applied by the application can set a personalized safe heart rate range for a subject, compare the heart rate monitored based on the personalized safe heart rate range, and exit the grip strength test mode in time when the heart rate is out of limit, so that the safety of the subject in the grip strength test process is effectively guaranteed, thereby the grip strength of the subject can be measured in a personalized, safe and effective manner, and the grip strength measurement is especially suitable for the grip strength measurement of the elderly.

[0102] To implement the method of the application, the application further provides a grip strength measurement device corresponding to the grip strength measurement method, and each step in the grip strength measurement method embodiment is fully applicable to the grip strength measurement device embodiment.

[0103] As shown in the grip strength measurement device, Figure 4 the grip strength measurement device comprises a first acquisition module 401, a determination module 402, a second acquisition module 403 and a measurement protection module 404. The first acquisition module 401 is configured to acquire identity information of a subject. The determination module 402 is configured to determine a safe heart rate range corresponding to the subject based on the identity information. The second acquisition module 403 is configured to acquire a heart rate value and a grip strength value of the subject monitored in a grip strength test mode. The measurement protection module 404 is configured to compare the heart rate value with the determined safe heart rate range. If the heart rate value is greater than or equal to the maximum value of the safe heart rate range, the grip strength test mode is exited.

[0104] In some embodiments, the measurement protection module 404 is further configured to, if the heart rate value is less than the maximum value of the safe heart rate range in the grip strength test mode, exit the grip strength test mode based on that the running time length of the grip strength test mode reaches a set time length or the grip strength test times in the grip strength test mode reaches a set number of times.

[0105] In some embodiments, the grip strength measurement device further comprises a grip strength evaluation module 405 configured to determine a grip strength level of the subject based on the grip strength value acquired in the grip strength test mode and the identity information.

[0106] In some embodiments, the grip strength evaluation module 405 is specifically configured to:

[0107] If the grip strength value of at least two grip strength tests has been acquired in the grip strength test mode, the maximum grip strength value of the at least two grip strength tests is taken as a grip strength test result, and the grip strength level of the subject is determined based on the grip strength test result and the identity information.

[0108] If the grip strength value of the grip strength test is obtained only once in the grip strength test mode, the maximum grip strength value of the once grip strength test is taken as the grip strength test result, and the grip strength level of the testee is determined based on the grip strength test result and the identity information;

[0109] If the grip strength value is not successfully obtained in the grip strength test mode, a prompt information of test failure is output.

[0110] In some embodiments, the identity information includes gender and age, and the grip strength evaluation module 405 determines the grip strength level of the testee based on the grip strength test result and the identity information, including:

[0111] The grip strength level corresponding to the grip strength test result is determined based on the gender, age of the testee and the grip strength test result and the pre-stored grip strength level division interval based on gender, age and grip strength value range division, as the grip strength level of the testee; or,

[0112] The gender, age of the testee and the grip strength test result are sent to an application server, and the grip strength level returned by the application server is received as the grip strength level of the testee.

[0113] In some embodiments, the identity information at least includes age, and the determination module 402 determines the safety heart rate range corresponding to the testee based on the identity information, including:

[0114] The first heart rate is obtained based on the difference between the target heart rate and the age of the testee.

[0115] The safety heart rate range of the testee is obtained based on the first heart rate and the value interval corresponding to the motion state.

[0116] In some embodiments, the identity information further includes disease condition, and the determination module 402 obtains the safety heart rate range of the testee based on the first heart rate and the value interval corresponding to the motion state, including:

[0117] If the disease condition of the testee meets the set disease type, the value interval is corrected, and the safety heart rate range of the testee is obtained based on the first heart rate and the corrected value interval.

[0118] In actual application, the first acquisition module 401, the determination module 402, the second acquisition module 403, the measurement protection module 404 and the grip strength evaluation module 405 can be realized by a processor in the grip strength measurement device. Of course, the processor needs to run a computer program in the memory to realize its function.

[0119] It should be noted that the above embodiment provides the grip measuring device, when measuring the grip, only divides the above program modules for example, in actual application, the above processing can be completed by different program modules according to the needs, that is, the internal structure of the device is divided into different program modules to complete all or part of the above described processing. In addition, the grip measuring device and the grip measuring method provided by the above embodiment belong to the same concept, and the specific implementation process is detailed in the method embodiment, which will not be repeated here.

[0120] Based on the hardware implementation of the above program module, and in order to realize the method of the embodiment of the application, the embodiment of the application further provides a grip measuring device. Figure 5 Only the exemplary structure of the grip measuring device is shown, not all structures, which can be implemented according to the needs Figure 5 Part of the structure or the whole structure.

[0121] As Figure 5 shown, the grip measuring device 500 provided by the embodiment of the application includes at least one processor 501, a memory 502, a user interface 503 and at least one network interface 504. Each component in the grip measuring device 500 is coupled together through a bus system 505. It can be understood that the bus system 505 is used to realize the connection communication between the components. The bus system 505 includes not only a data bus, but also a power bus, a control bus and a status signal bus. However, in order to clearly illustrate, all kinds of buses are marked as bus system 505 in the Figure 5 .

[0122] Among them, the user interface 503 can include a display, a keyboard, a mouse, a trackball, a click wheel, a key, a button, a touchpad or a touch screen, etc.

[0123] The memory 502 in the embodiment of the application is used to store various types of data to support the operation of the grip measuring device. Examples of these data include: any computer programs used to operate on the grip measuring device.

[0124] The grip measurement method disclosed by the embodiments of the present application can be applied to the processor 501 or implemented by the processor 501. The processor 501 can be an integrated circuit chip with a signal processing capability. In the implementation process, the steps of the grip measurement method can be completed by the integrated logic circuit or the instruction in the form of software in the processor 501. The processor 501 mentioned above can be a general processor, a digital signal processor (DSP), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The processor 501 can implement or execute the methods, steps and logic block diagrams disclosed in the embodiments of the present application. The general processor can be a microprocessor or any conventional processor, etc. In combination with the steps of the method disclosed in the embodiments of the present application, the hardware decoding processor can be directly embodied to execute the steps, or the hardware and software modules in the decoding processor can be combined to execute the steps. The software module can be located in a storage medium, and the storage medium is located in the memory 502. The processor 501 reads the information in the memory 502 and combines the hardware to complete the steps of the grip measurement method provided in the embodiments of the present application.

[0125] In the exemplary embodiments, the grip measurement device can be implemented by one or more application specific integrated circuits (ASICs), DSPs, programmable logic devices (PLDs), complex programmable logic devices (CPLDs), field programmable gate arrays (FPGAs), general processors, controllers, micro controllers (MCUs), microprocessors (Microprocessors), or other electronic elements, for executing the foregoing method.

[0126] Exemplarily, the grip measurement device can further include a seat 21, a heart rate sensor 22 and a grip sensor 23 arranged on the seat 21. For details, reference can be made to the seat 21 and the corresponding description, which will not be repeated here. The heart rate sensor 22 and the grip sensor 23 are both in communication connection with the processor 501. Figure 2

[0127] ​It can be understood that the memory 502 can be a volatile memory or a non-volatile memory, and can also include both volatile and non-volatile memories. Among them, the non-volatile memory can be a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically erasable programmable read-only memory (EEPROM), a ferromagnetic random access memory (FRAM), a flash memory, a magnetic surface memory, an optical disc, or a compact disc read-only memory (CD-ROM); the magnetic surface memory can be a disk memory or a tape memory. The volatile memory can be a random access memory (RAM) used as an external cache. By way of example but not limitation, many forms of RAM can be used, such as static random access memory (SRAM), synchronous static random access memory (SSRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDR SDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct rambus random access memory (DRRAM).The memory described in the embodiments of the present application is intended to include, but not limited to, these and any other suitable types of memory.

[0128] In the example embodiments, the embodiments of the present application also provide a storage medium, i.e., a computer storage medium, which can be specifically a computer readable storage medium, such as a memory 502 storing a computer program, which can be executed by the processor 501 of the grip strength measuring device to complete the steps described in the method of the embodiments of the present application. The computer readable storage medium can be a ROM, a PROM, an EPROM, an EEPROM, a Flash Memory, a magnetic surface memory, an optical disc, or a CD-ROM memory, etc.

[0129] It should be noted that "first", "second", etc. are used to distinguish similar objects, and do not necessarily describe a specific order or sequence.

[0130] In addition, the technical solutions described in the embodiments of the present application can be combined arbitrarily without conflict.

[0131] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A grip strength measurement method, characterized by, The method comprises: obtaining identity information of a subject; determining a safe heart rate range corresponding to the subject based on the identity information; obtaining a heart rate value and a grip strength value of the subject monitored in a grip strength test mode; comparing the heart rate value with the determined safe heart rate range; if the heart rate value is greater than or equal to the maximum value of the safe heart rate range, exiting the grip strength test mode and prompting the subject to exit the current grip strength test; the identity information at least includes age, disease condition, and the determination of the safe heart rate range corresponding to the subject based on the identity information comprises: obtaining a first heart rate based on the difference between the target heart rate and the age of the subject; obtaining the safe heart rate range of the subject based on the first heart rate and the value interval corresponding to the exercise state; if the disease condition of the subject meets the set disease type, correcting the value interval, and obtaining the safe heart rate range of the subject based on the first heart rate and the corrected value interval; after exiting the grip strength test mode, the method further comprises: if at least two grip strength values of grip strength tests have been obtained in the grip strength test mode, taking the maximum grip strength value of the at least two grip strength tests as a grip strength test result, and determining a grip strength level of the subject based on the grip strength test result and the identity information; if only one grip strength value of a grip strength test has been obtained in the grip strength test mode, taking the maximum grip strength value of the one grip strength test as a grip strength test result, and determining a grip strength level of the subject based on the grip strength test result and the identity information; if the grip strength value has not been successfully obtained in the grip strength test mode, outputting a prompt information of test failure; the identity information further includes gender, and the determination of the grip strength level of the subject based on the grip strength test result and the identity information comprises: determining a grip strength level corresponding to the grip strength test result based on the gender, age and grip strength test result of the subject and the pre-stored grip strength level division interval based on gender, age and grip strength value range division, as the grip strength level of the subject; or sending the gender, age and grip strength test result of the subject to an application server, and receiving a grip strength level returned by the application server as the grip strength level of the subject.

2. The method of claim 1, wherein, The method further comprises: if the heart rate value is less than the maximum value of the safe heart rate range in the grip strength test mode, exiting the grip strength test mode based on that the running time length of the grip strength test mode reaches a set time length or the number of grip strength tests in the grip strength test mode reaches a set number.

3. A grip strength measuring device characterized by, The method comprises: a first obtaining module for obtaining identity information of a subject; a determination module for determining a safe heart rate range corresponding to the subject based on the identity information; a second obtaining module for obtaining a heart rate value and a grip strength value of the subject monitored in a grip strength test mode; a measurement protection module for comparing the heart rate value with the determined safe heart rate range; If the heart rate value is greater than or equal to the maximum value of the safe heart rate range, the grip strength test mode is exited, and the subject is prompted to exit the current grip strength test; The identity information at least includes: age, disease condition, the determination module is specifically used for: Based on the difference between the target heart rate and the age of the subject, a first heart rate is obtained; Based on the first heart rate and the corresponding value interval of the motion state, a safe heart rate range of the subject is obtained; If the disease condition of the subject meets the set disease type, the value interval is corrected, and based on the first heart rate and the corrected value interval, the safe heart rate range of the subject is obtained; The grip strength evaluation module is used for: if at least two grip strength test values are obtained in the grip strength test mode, the maximum grip strength value of the at least two grip strength tests is taken as a grip strength test result, and based on the grip strength test result and the identity information, a grip strength grade of the subject is determined; If only one grip strength test value is obtained in the grip strength test mode, the maximum grip strength value of the one grip strength test is taken as a grip strength test result, and based on the grip strength test result and the identity information, a grip strength grade of the subject is determined; If the grip strength value is not successfully obtained in the grip strength test mode, a test failure prompt information is outputted; The identity information further includes: gender, and the grip strength evaluation module is specifically used for: Based on the gender, age and grip strength test result of the subject and the pre-stored grip strength grade division interval based on gender, age and grip strength value range division, a grip strength grade corresponding to the grip strength test result is determined as the grip strength grade of the subject; or, The gender, age and grip strength test result of the subject are sent to an application server, and a grip strength grade returned by the application server is received as the grip strength grade of the subject.

4. A grip strength measuring device, characterized in that, It comprises: A processor and a memory for storing a computer program capable of running on the processor, wherein, The processor is used to run the computer program to execute the steps of the method of any one of claims 1 to 2.

5. A storage medium having stored thereon a computer program, characterized in that The computer program is executed by the processor to implement the steps of the method of any one of claims 1 to 2.