AntiG physiology and neck and waist strengthening training evaluation system
By designing a load-resistant physiology and neck and waist strength training evaluation system integrating hardware and software, the problem of correctness and proficiency of pilots' anti-load movements is solved, and effective improvement of pilots' anti-load ability and real-time monitoring of training effects is achieved.
Patent Information
- Application Number
- CN202510039290.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-05-23
AI Technical Summary
The existing technology cannot effectively solve the correctness and proficiency of pilots' anti-load action, resulting in the risk of decreasing load resistance and even fainting in the air. The cost of centrifuge construction is high, and the pilot's regular training cannot be guaranteed.
A anti-load physiological and neck and waist strength training evaluation system was designed, integrating hardware and software systems, and collecting muscle strength data of the neck, waist and lower limbs through sensors, monitoring and feedback training effects in real time, and providing personalized training solutions.
It realizes scientific evaluation and real-time feedback on the pilot's anti-load movements, improves the scientificity and safety of training, and helps the pilot improve its anti-load ability and physical endurance.
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Figure CN120022571A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of physiological training and evaluation, in particular to an anti-load physiological and cervical and lumbar strengthening training evaluation system. Background Art
[0002] With the continuous deployment of new generation high-performance fighter jets, new challenges have been raised to the pilots' anti-G endurance. Among the many effective anti-G measures that have been adopted, anti-G action is the only protective behavior that pilots need to actively implement. Whether the anti-G action is correct and proficient is related to flight safety. It has been confirmed that the improvement of flight personnel's anti-G ability is closely related to their mastery of action essentials and anti-G related muscle groups. Incorrect anti-G actions will not only fail to improve endurance, but will reduce endurance and even cause air syncope. Therefore, it is particularly important to implement correct anti-G actions and related muscle group training for flight personnel so that they can be implemented quickly and effectively before acceleration loading. Anti-G training is mostly carried out on centrifuges abroad, but due to the high construction cost and limited number of centrifuges, regular training of pilots cannot be guaranteed. Therefore, it is imperative to develop a set of ground anti-G action training equipment for daily training of pilots. Summary of the invention
[0003] In view of the above situation and to overcome the current technical defects, the present invention provides a comprehensive system integrating anti-load physiological training, muscle group strengthening training, real-time evaluation and intelligent feedback, which can scientifically evaluate the health status of key muscle groups such as the neck and waist, provide personalized training plans, and monitor the training effects in real time.
[0004] The technical scheme adopted by the present invention is as follows: The anti-load physiological and cervical and lumbar strengthening training evaluation system proposed in this scheme includes a hardware system part and a software system part. The hardware system part includes a computer, a touch operation and display screen, a data acquisition part, an A / D processing part, a sensor, a display, a digital-analog circuit, a hardware structure of an acquisition module, an adjustable seat part, a multi-angle cervical muscle force transmission fixed structure, a multi-angle lumbar muscle force transmission fixed structure, a pedal force collection pedal, a respiratory muscle force collection mask and catheter, a video camera recording and playback monitoring system, an electromyography collection interface, and an audio prompt guidance part.
[0005] Among them, the software system part includes a multifunctional anti-g physiological testing part and a cervical and lumbar muscle training part. The multifunctional anti-g physiological testing part has the functions of detecting, displaying and recording the physiological indicators of comprehensive anti-g movements, and also has the functions of detecting, displaying, recording and evaluating the physiological indicators of a single movement and the guiding curve function of the anti-g movement. The cervical and lumbar muscle training part has the functions of real-time detection, display, recording and evaluation of the state of the cervical and lumbar muscle strength of the subject under cervical and lumbar muscle training, and can be carried out according to the training plan and store the training records.
[0006] Furthermore, the anti-load physiological and cervical and lumbar strengthening training evaluation system is based on the premise of the neutral position of the neck, and conducts and collects the strength, direction, amplitude, and rhythm of the neck flexor and extensor muscles, lateral flexor muscles, rotator muscles, and neck and shoulder muscles when the neck moves forward, backward, left, right, left rotation, and right rotation, respectively, and displays it on the touch screen through the system's software and hardware processing; the multi-angle waist muscle strength takes the waist as the axis of movement, and conducts and collects the strength, direction, amplitude, and rhythm of the waist-related muscle groups when the waist moves forward, backward, left, and right, respectively, and displays it on the touch screen through the system's software and hardware processing; the pedaling force value is converted into an electrical signal transmission by the pedaling force sensor through the pedaling force pedal, and the double lower limb movements are collected independently without affecting each other. The pedaling force values of a single lower limb and double lower limbs can be measured separately, which is used to measure, evaluate, and study the threshold and muscle strength status of the lower limb pedaling force; the respiratory muscle strength is collected by a mask-type respiratory pressure sensor, which is connected to the collection box through a catheter, and the strength of the respiratory muscles can be measured and the muscle strength status of the respiratory muscles can be evaluated;
[0007] Furthermore, the anti-gravity physiological training test uses lower limb strength and breathing movements to fit the guiding curve to complete the movements, master the essentials of anti-gravity movements, and evaluate the level of anti-gravity movements.
[0008] Furthermore, the video capture of the action process is carried out by an independent time-delay-free camera and hard disk recording system, and displayed in real time on a liquid crystal display.
[0009] Furthermore, the respiratory muscle force collection mask and the airway tube are hung on the adjustable seat through hanging rings, the headgear straps for neck muscle training and the waist muscle training straps are installed on the upper part of the adjustable seat, and the lower limb pedal force fixing belt is at the rear of the adjustable seat.
[0010] Specifically, the respiratory muscle strength collection mask is a replaceable respiratory mask.
[0011] The beneficial effects achieved by the present invention using the above structure are as follows: The anti-load physiological and cervical and lumbar strengthening training evaluation system of the present invention has the following advantages:
[0012] 1. This system can collect and display the subject's physiological data such as muscle strength, intensity, direction, amplitude and rhythm in real time during different movements. Through precise force collection and real-time feedback, the trainee can clearly see his or her training status and make real-time adjustments. The hardware structures such as the adjustable seat and headgear can be adjusted according to the height and body shape of the subject to ensure the comfort and safety of the training. This system can realize personalized settings and customized training plans through the touch screen interface, and can make appropriate training adjustments according to each person's physical condition and goals;
[0013] 2. This system not only supports the evaluation of multi-angle muscle strength of the neck and waist (such as front-to-back, left-to-right, and rotational movements of the neck, and front-to-back, left-to-right movements of the waist), but also can perform comprehensive tests of lower limb pedaling and respiratory muscle strength. Each training or test can obtain accurate force data through relevant sensors, providing a reliable basis for the evaluation of training effects. The anti-gravity training part combines lower limb strength and breathing movements to help subjects complete anti-gravity training movements and master correct movement techniques. This whole-body coordination training can improve the body's endurance and strength, while helping subjects improve their anti-gravity capabilities.
[0014] 3. By real-time monitoring of the changes in the subject's muscle strength during training, the system can provide immediate numerical feedback and present continuous data curves through the display screen and oscilloscope to help the subject better understand his or her muscle strength status and training effect. After each action or training is completed, the system will automatically record the relevant data and provide feedback through audio prompts and indicator lights to see whether the subject has reached the preset training standard. Based on the accumulated muscle strength data, the system can determine whether the training has reached the standard, conduct dynamic evaluation, and provide intuitive training feedback.
[0015] 4. Whenever the action reaches the standard, the system will sound a reminder and indicate "reached" with a green indicator light. This timely feedback mechanism helps the subjects maintain motivation during training and know when the standard has been reached and can enter the next step of training. At the same time, the system will record the strength data of each training and accumulate the training effect, which will be used as a basis for subsequent training plan adjustments. Through the guidance of the system and the standard curve, the subjects can gradually adapt to the rhythm of training, adjust their muscle strength output and breathing rhythm, and ensure the efficiency and safety of training.
[0016] 5. The system uses video monitoring and recording functions to observe the subject's movements in real time. This function not only helps to replay the training effect in real time, but also helps the coach or the subject to evaluate and optimize the movements themselves. Through the system's standard guidance curve function, combined with video monitoring and real-time feedback, the subject can continuously improve the quality of the movement during training and reduce the risk of sports injuries.
[0017] 6. In addition to conventional indicators such as muscle strength and pedaling force, this system can also comprehensively evaluate the condition of respiratory muscle strength. This comprehensive physiological assessment can provide important data support for health management, helping coaches or medical personnel to better monitor the physical condition and health level of trainees. Anti-load training can improve the physiological endurance of subjects when facing external loads. At the same time, through comprehensive physiological data evaluation and feedback, it helps subjects improve their overall physical fitness and functional recovery ability. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0019] Figure 1 It is a schematic diagram for reference of the overall structure of the present invention;
[0020] Figure 2 A reference schematic diagram for use of the present invention;
[0021] Figure 3 It is a reference diagram of the system principle of the present invention;
[0022] Figure 4 It is a schematic diagram of setting system parameters of the present invention;
[0023] Figure 5 It is a schematic diagram of the real-time waveform of the display and training force value of the present invention;
[0024] Figure 6 A schematic diagram of the training evaluation operation and storage of the present invention;
[0025] Figure 7 A reference schematic diagram of the multi-angle neck muscle strength collection and strengthening training evaluation of the present invention;
[0026] Figure 8 Annotated reference diagram for the instrument interface of the present invention;
[0027] Fig. 9 A reference schematic diagram of the multi-angle waist muscle strength collection and strengthening training evaluation of the present invention;
[0028] Fig.10 It is a reference schematic diagram of the collection of the pedaling force of the two lower limbs and the evaluation of the strengthening training of the present invention;
[0029] Fig.11 It is a reference schematic diagram for the collection and strengthening training evaluation of respiratory muscle strength of the present invention;
[0030] Fig.12 It is a reference schematic diagram of the anti-g physiological training and evaluation of the present invention. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0032] It should be noted that the words "front", "rear", "left", "right", "up" and "down" used in the following description refer to directions in the drawings, and the words "inside" and "outside" refer to directions toward or away from the geometric center of a specific component, respectively.
[0033] like Figure 1 — Fig.12 As shown, the technical scheme adopted by the present invention is as follows: the anti-load physiological and cervical and lumbar strengthening training evaluation system proposed in this scheme includes a hardware system part and a software system part. The hardware system part includes a computer, a touch operation and display screen, a data acquisition part, an A / D processing part, a sensor, a display, a digital-analog circuit, a hardware structure of an acquisition module, an adjustable seat part, a multi-angle cervical muscle force transmission fixed structure, a multi-angle lumbar muscle force transmission fixed structure, a pedal force collection pedal, a respiratory muscle force collection mask and catheter, a video camera recording and playback monitoring system, an electromyography collection interface, and an audio prompt guidance part.
[0034] The software system part includes a multifunctional anti-load physiological test part and a cervical and lumbar muscle training part. The multifunctional anti-load physiological test part has the functions of detecting, displaying and recording the physiological indicators of comprehensive anti-load movements. It also has the functions of detecting, displaying, recording and evaluating the physiological indicators of single movements and the guiding curve function of anti-load movements. The cervical and lumbar muscle training part has the functions of real-time detection, display, recording and evaluation of the state of the cervical and lumbar muscle strength of the subjects under cervical and lumbar muscle training, and can be carried out according to the training plan and store training records.
[0035] Furthermore, the anti-load physiological and cervical and lumbar strengthening training evaluation system is based on the premise of the neutral position of the neck. The strength, direction, amplitude, and rhythm of the neck flexor and extensor muscles, lateral flexor muscles, rotator muscles, and neck and shoulder muscles in the front, back, left, right, left rotation, and right rotation of the neck are respectively collected and transmitted, and displayed on the touch screen through the system's software and hardware processing; the multi-angle waist muscle strength is based on the waist as the axis of movement, and the strength, direction, amplitude, and rhythm of the waist-related muscle groups in the front, back, left, and right movements of the waist are respectively collected and transmitted, and displayed on the touch screen through the system's software and hardware processing; the pedaling force value is converted into an electrical signal transmission by the pedaling force sensor through the pedaling force pedal, and the double lower limb movements are collected independently without affecting each other. The pedaling force values of single and double lower limbs can be measured separately, which is used to measure, evaluate, and study the threshold and muscle strength status of the lower limb pedaling force; the collection of respiratory muscle strength adopts a mask-type respiratory pressure sensor, which is connected to the collection box through a catheter, and can measure the strength of the respiratory muscles and evaluate the muscle strength status of the respiratory muscles.
[0036] Among them, the anti-g physiological training test uses lower limb strength and breathing movements to fit the guiding curve to complete the movement, master the essentials of anti-g movements, and evaluate the level of anti-g movements. The video capture of the movement process is carried out through an independent time-delay-free camera and hard disk recording system, and displayed in real time on a LCD monitor. The respiratory muscle strength collection mask and airway tube are hung on the adjustable seat through hanging rings. The headgear straps for cervical muscle training and the lumbar muscle training straps are installed on the upper part of the adjustable seat. The lower limb pushing force fixing belt is at the back of the adjustable seat. The respiratory muscle strength collection mask is a replaceable breathing mask.
[0037] During specific use, turn on the computer to enter the operation interface of the anti-load physiological and cervical and lumbar strengthening training evaluation system, adjust the front and rear position of the seat and the height of the head and neck headgear to facilitate adjustment according to the height needs of the user, press the relevant buttons on the operation interface on the touch screen display to perform corresponding operations, and set the standard value to determine whether the single muscle strength value and muscle capacity value of a certain action meet the training mark indicators. When the action meets the standard, the instrument will emit a "beep" prompt sound and the corresponding indicator light will light up.
[0038] Embodiment 1: Multi-angle neck muscle strength collection and strengthening training evaluation
[0039] The multi-angle neck muscle strength collection training adopts a sitting posture; after the trainee sits with the neck in a neutral position, adjust the neck muscle headgear lifting main switch and the seat movement main switch to make the headgear fit the trainee's head in a suitable position; adjust the tightness of the nylon buckle of the chin strap and the headgear strap to fix the trainee's head and the headgear firmly, and fasten the headgear strap to the trainee's head. The front and back movements use the forehead and the back of the head as the force points, so that the trainee uses the neck strength to move his head forward or tilt his head back. The pointer degree of the neck muscle scale is the strength of the flexor and extensor groups of the neck muscles. Negative values indicate rear pressure, and positive values indicate front pressure. The real-time digital display of the strength and the waveform diagram during continuous training test are used.
[0040] According to the training project, select the corresponding interface of the system interface as shown in the figure, and let the trainee's head exert force in a certain direction - return to the correct position - exert force - return to the correct position..., repeat the action according to the beat, each action requires to relax the force, and there must be a certain time interval. The corresponding measuring instrument on the system interface will display the single force value data and the cumulative muscle capacity value data of this item in real time. When the force value of an action reaches the preset standard, the system determines that the action has reached the standard, and a "beep" prompt sound is issued. The corresponding green indicator light on the system interface lights up once, indicating that the action that reaches the standard has been completed once, and the single force value is automatically included in the muscle capacity value. If you continue to exert force to maintain the force value, the system will continue to "beep" to prompt, and according to the unit of the length of time that the force value is maintained, it will be weighted and included in the cumulative muscle capacity value of the training evaluation; after repeatedly doing this action, the cumulative muscle capacity value reaches the preset indicator, the green indicator light of the total force value of the instrument on the system interface lights up, and the muscle strength value of this item is evaluated as "reaching the standard"; if it cannot be completed, the muscle strength value of this item is "not reaching the standard".
[0041] Example 2: Multi-angle waist muscle strength collection and strengthening training evaluation
[0042] Multi-angle waist muscle strength collection training adopts sitting posture; after the trainee sits with the waist in neutral position, adjust the two fixed straps on the left and right shoulders, the lifting master switch and the seat movement master switch to put the trainee in a suitable position for waist exertion forward, backward, left and right; adjust the tightness of the nylon buckle of the strap to fix the trainee's shoulders tightly to the left and right shoulder rests on the upper part of the seat.
[0043] According to the training project, select the corresponding interface of the system interface as shown in the figure, and let the trainee exert force on the waist in a certain direction - return to the correct position - exert force - return to the correct position..., repeat the action according to the beat, and each action requires to relax the force, and there must be a certain time interval. The corresponding measuring instrument on the system interface will display the single force value data and the cumulative muscle capacity value data of this item in real time. When the force value of an action reaches the preset standard, the system determines that the action has reached the standard, and a "beep" prompt sound is issued. The corresponding green indicator light on the system interface lights up once, indicating that the action that reaches the standard has been completed once, and the single force value is automatically included in the muscle capacity value. If you continue to exert force to maintain the force value, the system will continue to "beep" to prompt, and according to the unit of the length of time that the force value is maintained, it will be weighted and included in the cumulative muscle capacity value of the training evaluation; after repeatedly doing this action, the cumulative muscle capacity value reaches the preset indicator, the green indicator light of the total force value of the instrument on the system interface lights up, and the muscle strength value of this item is evaluated as "reaching the standard"; if it cannot be completed, the muscle strength value of this item is "not reaching the standard".
[0044] Example 3: Collection of lower limb pushing force and evaluation of strength training
[0045] The training of collecting the pushing force of both lower limbs adopts a sitting posture; after the trainee sits down, adjust the groin fixing strap, the lifting master switch and the seat movement master switch, so that the trainee's feet are located on the front pushing pedal, which is convenient for the lower limbs to push in the appropriate position.
[0046] According to the training project, select the corresponding interface of the system interface as shown in the figure, and let the trainee push the pedal hard, force - return to the right position - force - return to the right position..., repeat the action according to the beat, each action requires to relax the force, and there must be a certain time interval. The corresponding measuring instrument on the system interface will display the single force value data and the cumulative muscle capacity value data of this item in real time. When the force value of an action reaches the preset standard, the system determines that the action has reached the standard, and a "beep" prompt sound is issued. The corresponding green indicator light on the system interface lights up once, indicating that the action that reaches the standard has been completed once, and the single force value is automatically included in the muscle capacity value. If you continue to use force to maintain the force value, the system will continue to "beep" to prompt, and according to the unit of the length of time that the force value is maintained, it will be weighted and included in the cumulative muscle capacity value of the training evaluation; after repeatedly doing this action, the cumulative muscle capacity value reaches the preset indicator, the green indicator light of the total force value of the instrument on the system interface lights up, and the muscle strength value of this item is evaluated as "reaching the standard"; if it cannot be completed, the muscle strength value of this item is "not reaching the standard".
[0047] Example 4: Collection of respiratory muscle strength and evaluation of strength training
[0048] The respiratory muscle strength is collected and strengthened in a sitting position. The trainee is asked to sit on a chair and wear a breathing mask. The rubber fastening buckle on the mask can be adjusted to make the rubber ring of the mask fit tightly to the face. First, the trainee is asked to breathe a few times at random and observe the waveform on the screen to familiarize himself with the breathing process.
[0049] According to the training items, select the corresponding interface of the system interface as shown in the figure, and let the trainee exhale forcefully, exhale forcefully-inhale-exhale forcefully-inhale..., repeat the action according to the beat, and each action requires to relax the force, and there must be a certain time interval. The corresponding measuring instrument on the system interface will display the single force value data and the cumulative muscle capacity value data of this item in real time. When the force value of an action reaches the preset standard, the system determines that the action has reached the standard, and a "beep" prompt sound is issued. The corresponding green indicator light on the system interface lights up once, indicating that the action that reaches the standard has been completed once, and the single force value is automatically included in the muscle capacity value. If the force value continues to be maintained, the system will continue to "beep" to prompt, and the cumulative muscle capacity value of the training evaluation will be weighted according to the length of time the force value is maintained; after repeatedly doing the action, the cumulative muscle capacity value reaches the preset indicator, the green indicator light of the total force value of the instrument on the system interface lights up, and the muscle strength value of this item is evaluated as "reaching the standard"; if it cannot be completed, the muscle strength value of this item is "not reaching the standard".
[0050] Example 5: Anti-G Physiological Training and Evaluation
[0051] Anti-G physiological training and evaluation adopts sitting posture, adjusts the seat and wears a mask according to the requirements of the aforementioned lower limb pushing force and respiratory muscle strength. Anti-G physiological training combines anti-G breathing movements and lower limb pushing force training movements, and performs joint movements according to the anti-G requirements. The oscilloscope in the middle of the interface displays the breathing guidance curve (select L-1 movement, M-1 movement or HP movement respectively), the real-time pushing force curves of the left and right lower limbs, and the real-time curves of the respiratory muscles. The two scales at the bottom display the strength of the pushing force in real time.
[0052] This training is a comprehensive training based on the action requirements of the training design. For example, the trainee is asked to pedal to reach more than 40kgf and maintain it, and at the same time fit the breathing action curve to do L-1 breathing action training for 2 minutes continuously, etc. The specific requirements for the trainee can be based on the designed training outline.
[0053] By clicking the button on the upper part of the oscilloscope, you can choose to train the L-1 action, M-1 action or HP action. Click the corresponding button and the standard curve of the corresponding action will appear on the oscilloscope. Click the button again to close the curve. The trainee performs breathing actions according to the rhythm and waveform of the curve. The respiratory pressure collected by the instrument is displayed synchronously on the oscilloscope in the form of a curve. The trainee adjusts his or her breathing rhythm and strength to make the training curve fit the standard curve.
[0054] The standard breathing action curve generated by the instrument can be adjusted through the corresponding adjustment box above the oscilloscope, such as rhythm, amplitude, width and other indicators. If no adjustment is made, the instrument generates the curve according to the default standard value.
[0055] Before the training begins, the trainee can breathe a few times at random and observe the waveform on the screen to become familiar with the relationship between his or her breathing curve and the standard curve. Then, the trainee can perform breathing movements according to the standard curve to fit the guide curve.
[0056] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, material or apparatus including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, material or apparatus.
[0057] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A load-resistant physiological and cervical and lumbar strengthening training evaluation system, including a hardware system part and a software system part. The hardware system part includes a computer, a touch operation and display screen, a data acquisition part, an A / D processing part, a sensor, a display, a digital-analog circuit, a hardware structure of an acquisition module, an adjustable seat part, a multi-angle cervical muscle force transmission fixed structure, a multi-angle lumbar muscle force transmission fixed structure, a pedal force collection pedal, a respiratory muscle force collection mask and catheter, a video camera recording and playback monitoring system, an electromyography collection interface, and an audio prompt guidance part.
2. The anti-gravity physiological and cervical and lumbar strengthening training evaluation system according to claim 1, characterized in that: The software system includes a multifunctional anti-G physiological test part and a cervical and lumbar muscle training part. The multifunctional anti-G physiological test part has the functions of detecting, displaying and recording the physiological indicators of the comprehensive anti-G movements, and also has the functions of detecting, displaying, recording and evaluating the physiological indicators of a single movement and the guiding curve function of the anti-G movement. The cervical and lumbar muscle training part has the functions of real-time detection, display, recording and evaluation of the state of the cervical and lumbar muscle strength of the subject under cervical and lumbar muscle training, and can be carried out according to the training plan and store the training records.
3. The anti-gravity physiological and cervical and lumbar strengthening training evaluation system according to claim 2, characterized in that: The anti-load physiological and cervical and lumbar strengthening training evaluation system is based on the premise of the neutral position of the neck, and conducts and collects the strength, direction, amplitude, and rhythm of the neck flexor and extensor muscles, lateral flexor muscles, rotator muscles, and neck and shoulder muscles when the neck moves forward, backward, left, right, left rotation, and right rotation, and displays it on the touch screen through the system's software and hardware processing; the multi-angle waist muscle strength uses the waist as the axis of movement, and conducts and collects the strength, direction, amplitude, and rhythm of the waist-related muscle groups when the waist moves forward, backward, left, and right, and displays it on the touch screen through the system's software and hardware processing; the pedaling force value is converted into an electrical signal by the pedaling force sensor through the pedaling force pedal, and the movements of both lower limbs are collected independently without affecting each other. The pedaling force values of single and double lower limbs can be measured separately, which can be used to determine, evaluate, and study the threshold and muscle strength status of the lower limb pedaling force; The respiratory muscle strength is collected using a mask-type respiratory pressure sensor, which is connected to the collection box through a catheter. It can measure the strength of the respiratory muscles and evaluate the muscle strength level of the respiratory muscles.
4. The anti-gravity physiological and cervical and lumbar strengthening training evaluation system according to claim 3, characterized in that: The anti-gravity physiological training test uses lower limb strength and breathing movements to fit the guiding curve to complete the movements, master the essentials of anti-gravity movements, and evaluate the level of anti-gravity movements.
5. The anti-gravity physiological and cervical and lumbar strengthening training evaluation system according to claim 4, characterized in that: The video capture of the action process is carried out by an independent time-delay-free camera and hard disk recording system, and is displayed in real time on an LCD monitor. , which is convenient for reviewing and evaluating the training process .
6. The anti-gravity physiological and cervical and lumbar strengthening training evaluation system according to claim 5, characterized in that: The respiratory muscle force collection mask and the airway tube are hung on the adjustable seat through hanging rings, the headgear straps for neck muscle training and the waist muscle training straps are installed on the upper part of the adjustable seat, and the lower limb pedal force fixing belt is at the rear of the adjustable seat.
7. The anti-gravity physiological and cervical and lumbar strengthening training evaluation system according to claim 6, characterized in that: The respiratory muscle strength collection mask is a replaceable breathing mask.