Rectus abdominis physiotherapy electrode equipment, rectus abdominis rehabilitation system and application method of rectus abdominis physiotherapy electrode equipment
By designing wireless communication rectus abdominal physiotherapy electrode equipment, the problem of rectus abdominal rehabilitation patients lacking effective guidance and management during home exercises is solved, convenient and safe exercise management is achieved, and exercise compliance is improved and costs are reduced.
Patent Information
- Application Number
- CN202510022256.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-05-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Patients with rectus abdominal muscle rehabilitation lack effective guidance and management during home exercise, resulting in poor exercise compliance, increasing the patient's time and transportation costs. At the same time, it is difficult for the hospital to track the patient's exercise in real time.
A wireless communication rectus abdomen muscle physiotherapy electrode device is designed, equipped with MCU, A/D converter, wireless communication module, etc., which can collect the electromyography value and upload it to the backend server of the rehabilitation center through the wireless module to realize data recording and real-time management.
Through wireless communication technology, patients with rectus abdominal muscle can exercise safely and conveniently at home. Through the management and monitoring of backend servers, the hospital can track the patient's exercise in real time, improving exercise compliance and reducing patients' time and transportation costs.
Smart Images

Figure CN119925803A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the field of medical rehabilitation technology, and in particular to a rectus abdominis physiotherapy electrode device, a rectus abdominis rehabilitation system, an application method thereof, and an electronic device. Background Art
[0002] Rectus abdominis separation is a common complication after childbirth, so patients are usually required to undergo rectus abdominis physiotherapy.
[0003] As attached Figure 1 The rectus abdominis muscle training device shown in the figure is a traditional rectus abdominis muscle training device that is available on the market and includes an electrode sheet and a controller. The rectus abdominis muscle rehabilitation patient needs to operate the controller according to the instructions to select the corresponding working mode of the electrode sheet. However, due to geographical restrictions, the rectus abdominis muscle rehabilitation patient usually needs to go to the hospital to enjoy the guidance of the rehabilitation doctor, which leads to poor compliance with the rectus abdominis muscle training.
[0004] In addition, patients with rectus abdominis muscle rehabilitation need to go to the hospital to receive rectus abdominis muscle training guidance, which will increase the patient's time and transportation costs. Rectus abdominis muscle rehabilitation patients go home to do rectus abdominis muscle training, but the hospital cannot better manage the rectus abdominis muscle rehabilitation patients after discharge, and cannot track the rectus abdominis muscle rehabilitation training of patients in real time. Summary of the invention
[0005] In order to solve the above problems, the present application proposes a rectus abdominis muscle physiotherapy electrode device, a rectus abdominis muscle rehabilitation system and an application method and an electronic device.
[0006] In one aspect, the present application provides a rectus abdominis muscle physiotherapy electrode device, comprising:
[0007] A number of electrodes;
[0008] A / D converter, used for digital-to-analog signal conversion;
[0009] MCU, used to control the operation of the electrode sheet; and collect the electromyographic value sensed and monitored by the electrode sheet, and report the electromyographic value to the background server of the rehabilitation center through the wireless communication module;
[0010] A wireless communication module, used for the device to communicate with the background server of the rehabilitation center;
[0011] A memory device, used for storing the rectus abdominis rehabilitation exercise data of each rectus abdominis rehabilitation patient;
[0012] An electronic screen is used to display the rectus abdominis rehabilitation exercise data forwarded by the MCU;
[0013] A control panel, used for a rectus abdominis rehabilitation patient to input corresponding first rectus abdominis rehabilitation exercise control parameters;
[0014] Power supply, used for power supply;
[0015] The electrode sheet is electrically connected to the A / D converter;
[0016] The A / D converter, wireless communication module, memory, electronic screen, control panel and power supply are electrically connected to the MCU respectively.
[0017] As an optional implementation scheme of the present application, optionally, the MCU is further used for:
[0018] In the initialization stage, the rectus abdominis physiotherapy electrode device reports the electromyographic value of the rectus abdominis rehabilitation patient to the backend server of the rehabilitation center;
[0019] The backend server of the rehabilitation center: finding a rectus abdominis rehabilitation exercise mode that matches the electromyographic value, generating a corresponding rectus abdominis rehabilitation exercise control instruction, and sending the instruction to the rectus abdominis physiotherapy electrode device through a gateway;
[0020] The rectus abdominis physiotherapy electrode device: receives and forwards the rectus abdominis rehabilitation exercise control instruction to the MCU through a wireless communication module; parses the rectus abdominis rehabilitation exercise control instruction through the MCU to obtain a second rectus abdominis rehabilitation exercise control parameter of a corresponding mode, and controls the operation of the electrode sheet based on the second rectus abdominis rehabilitation exercise control parameter.
[0021] As an optional implementation scheme of the present application, optionally, the wireless communication module adopts Bluetooth or 5G communication.
[0022] As an optional implementation scheme of the present application, optionally, the MCU adopts a STM32F103C8T6 single-chip microcomputer.
[0023] On the other hand, the present application provides a rectus abdominis muscle rehabilitation system, comprising:
[0024] Rectus abdominis physiotherapy electrode device;
[0025] The backend server of the rehabilitation center is used to manage the rectus abdominis physiotherapy electrode device, as well as manage the rectus abdominis rehabilitation exercise tasks of the rectus abdominis rehabilitation patients and record the rectus abdominis rehabilitation exercise data of each time;
[0026] The patient-side APP is used to log in to the backend server of the rehabilitation center, view the rectus abdominis muscle rehabilitation exercise data, and participate in doctor-patient communication;
[0027] The medical APP is used to log in to the backend server of the rehabilitation center, manage patients with rectus abdominis rehabilitation and participate in doctor-patient communication;
[0028] The rectus abdominis muscle physiotherapy electrode device is connected to the rehabilitation center backend server through a gateway;
[0029] The patient-side APP and the medical-side APP are respectively connected to the rehabilitation center backend server through API port communication.
[0030] As an optional implementation scheme of the present application, optionally, the rehabilitation center backend server includes:
[0031] The device management system is used to manage the working state of the rectus abdominis physiotherapy electrode device and bind the activated rectus abdominis physiotherapy electrode device to the consultation ID of the corresponding rectus abdominis rehabilitation patient;
[0032] The patient management system is used to register the basic information of the patients with rectus abdominis rehabilitation, including the clinic ID, and record the rectus abdominis rehabilitation exercise data of each patient;
[0033] HIS-rectus abdominis medical record system is used to generate a rectus abdominis rehabilitation exercise medical record file of the patients according to the rectus abdominis rehabilitation exercise data of the patients, including: exercise time, change value of the rectus abdominis each time, exercise frequency and exercise duration;
[0034] A rehabilitation exercise mode recommendation system, for finding a rectus abdominis rehabilitation exercise mode that matches the electromyographic value of the rectus abdominis rehabilitation patient collected in the initialization phase from a background database, and generating a corresponding mode of rectus abdominis rehabilitation exercise control instruction and sending it to the corresponding rectus abdominis physiotherapy electrode device through a gateway;
[0035] A backend database for data storage includes: a rectus abdominis rehabilitation exercise mode corresponding to different myoelectric value ranges, wherein the rectus abdominis rehabilitation exercise mode includes corresponding electrode sheet control parameters;
[0036] Doctor-patient communication system, used to provide doctor-patient consultation and communication services;
[0037] Message middleware, used to provide data sending and receiving services based on the KAFKA mechanism;
[0038] API port, used to provide APP login port;
[0039] USB port, used to provide data transmission port.
[0040] On the other hand, the present application also proposes an application method of the rectus abdominis rehabilitation system, comprising the following steps:
[0041] System initialization: The rectus abdominis physiotherapy electrode device worn by the rectus abdominis rehabilitation patient tests and collects the initial electromyographic value and reports it to the rehabilitation center backend server through the gateway;
[0042] The rehabilitation center backend server:
[0043] The electromyographic value is received and forwarded to the rehabilitation exercise mode recommendation system through the message middleware, and the rehabilitation exercise mode recommendation system searches the database to find the rectus abdominis rehabilitation exercise mode that matches the electromyographic value from the background database, and generates a corresponding mode of rectus abdominis rehabilitation exercise control instruction and sends it to the rectus abdominis physiotherapy electrode device through the gateway;
[0044] The rectus abdominis physiotherapy electrode device:
[0045] The wireless communication module receives and forwards the rectus abdominis rehabilitation exercise control instruction to the MCU; the MCU parses the rectus abdominis rehabilitation exercise control instruction to obtain a second rectus abdominis rehabilitation exercise control parameter of a corresponding mode, and controls the operation of the electrode sheet based on the second rectus abdominis rehabilitation exercise control parameter;
[0046] The MCU collects the new electromyographic value monitored by the electrode sensor in real time, and reports the new electromyographic value to the background server of the rehabilitation center through the wireless communication module, which is then written into the rectus abdominis rehabilitation exercise medical record file of the rectus abdominis rehabilitation patient by the background server of the rehabilitation center.
[0047] In another aspect, the present application further provides an electronic device, comprising:
[0048] processor;
[0049] a memory for storing processor-executable instructions;
[0050] Wherein, the processor is configured to implement the application method when executing the executable instructions.
[0051] Technical effects of the present invention:
[0052] This application designs a wireless communication rectus abdominis muscle therapy electrode device, which can be used by rectus abdominis muscle rehabilitation patients at home and can collect corresponding electromyographic values, and upload them to the rehabilitation center's backend server through a wireless module. The backend server records the patient's rectus abdominis muscle rehabilitation exercise data. Hospital medical staff can log in to the backend and conduct continuity management of the patient's rectus abdominis muscle function. Patients can log in to the backend server through the APP to view each rectus abdominis muscle rehabilitation exercise information and participate in doctor-patient communication and consultation activities. Therefore, they do not need to go to the hospital for rectus abdominis muscle exercise guidance, which reduces time and transportation costs. It also allows the hospital to implement closed-loop management of the patient's rectus abdominis muscle after discharge and track their rectus abdominis muscle rehabilitation exercise status in real time.
[0053] Further features and aspects of the present disclosure will become apparent from the following detailed description of exemplary embodiments with reference to the attached drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0054] The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate exemplary embodiments, features, and aspects of the disclosure and, together with the description, serve to explain the principles of the disclosure.
[0055] Figure 1 Shown is a schematic diagram of a traditional rectus abdominis muscle training device;
[0056] Figure 2 Shown is a schematic diagram of a control system of the rectus abdominis muscle physiotherapy electrode device of the present invention;
[0057] Figure 3 Shown are schematic diagrams of electrode sheets of different types / specifications of the present invention;
[0058] Figure 4 FIG. 1 is a schematic diagram showing the composition structure of the rectus abdominis rehabilitation system of the present invention;
[0059] Figure 5 It is a schematic diagram showing the application of the electronic device of the present invention. DETAILED DESCRIPTION
[0060] Various exemplary embodiments, features and aspects of the present disclosure will be described in detail below with reference to the accompanying drawings. The same reference numerals in the accompanying drawings represent elements with the same or similar functions. Although various aspects of the embodiments are shown in the accompanying drawings, the drawings are not necessarily drawn to scale unless otherwise specified.
[0061] The word “exemplary” is used exclusively herein to mean “serving as an example, example, or illustration.” Any embodiment described herein as “exemplary” is not necessarily to be construed as preferred or advantageous over other embodiments.
[0062] In addition, in order to better illustrate the present disclosure, numerous specific details are given in the following specific embodiments. It should be understood by those skilled in the art that the present disclosure can also be implemented without certain specific details. In some examples, means, components and circuits well known to those skilled in the art are not described in detail in order to highlight the main purpose of the present disclosure.
[0063] Example 1
[0064] like Figure 2 As shown, in one aspect, the present application provides a rectus abdominis muscle physiotherapy electrode device, comprising:
[0065] A number of electrodes;
[0066] A / D converter, used for digital-to-analog signal conversion;
[0067] MCU, used to control the operation of the electrode sheet; and collect the electromyographic value sensed and monitored by the electrode sheet, and report the electromyographic value to the background server of the rehabilitation center through the wireless communication module;
[0068] A wireless communication module, used for the device to communicate with the background server of the rehabilitation center;
[0069] A memory device, used for storing the rectus abdominis rehabilitation exercise data of each rectus abdominis rehabilitation patient;
[0070] An electronic screen is used to display the rectus abdominis rehabilitation exercise data forwarded by the MCU;
[0071] A control panel, used for a rectus abdominis rehabilitation patient to input corresponding first rectus abdominis rehabilitation exercise control parameters;
[0072] Power supply, used for power supply;
[0073] The electrode sheet is electrically connected to the A / D converter;
[0074] The A / D converter, wireless communication module, memory, electronic screen, control panel and power supply are electrically connected to the MCU respectively.
[0075] like Figure 3 The figure shows a schematic diagram of electrode pads of different types / specifications. The specific electrode pads can be configured by the hospital and only need to be connected to the port of the controller MCU of the present invention. The corresponding supported interface model can be determined according to the configured MCU signal.
[0076] The electrodes can be directly attached to the skin surface to monitor the electromyographic signals in the muscles.
[0077] The way the electrode sheet senses and monitors the electromyographic signal:
[0078] Surface electrode application: The electrodes are placed on the surface of the skin to record the weak potential difference generated when the muscle contracts.
[0079] Signal acquisition: The electrode patch senses the voltage difference of the human body's electromyographic signal. The signal is weak and needs to be amplified and converted.
[0080] Signal processing: The electromyographic signal acquisition module is used for differential amplification, secondary amplification, bandpass filtering, and voltage boosting, so that the signal can be used for subsequent processing.
[0081] Signal display and analysis: The processed signal can be sent to the computer (backstage) through serial communication, displayed in real time on the interface, and used for rectus abdominis rehabilitation analysis.
[0082] This method mainly uses surface electromyography (sEMG) to reflect muscle and nerve activity. It is non-destructive and widely used in sports muscle assessment, fatigue assessment, and prosthetic control. Through electrode sensing monitoring, the electrical signal of muscle contraction can be obtained, and then the health status of muscles and nerves can be analyzed, providing an important basis for disease diagnosis and treatment effect evaluation.
[0083] The electrode sheet or electrode probe etc. need to be fitted to the patient's abdomen. Generally, the electrode sheet has a corresponding fitting instruction method, so the patient can fit the abdomen according to the instruction method.
[0084] The electrode can collect the corresponding electromyographic signal. The signal needs to be converted from digital to analog (A / D conversion), so an A / D converter is configured for digital to analog conversion. The MCU can control the operation of the electrode and collect the electromyographic value generated by the electromyographic signal sensed and monitored by the electrode. At the same time, the MCU can store the electromyographic value collected by real-time monitoring in the memory, and upload it to the background server of the rehabilitation center (referred to as the background) through the wireless communication module.
[0085] On the electronic screen, the MCU can also display the electromyographic value on the electronic screen. For the electromyographic values sensed and monitored by the electrodes at different parts, the MCU can identify and display the electromyographic values of each part in different areas. For example, the electromyographic value of electrode No. 1 can be displayed in the corresponding display area on the electronic screen.
[0086] The power supply can be lithium battery, and a wireless charging module can also be added for charging.
[0087] The control panel can refer to the control panel of the existing rectus abdominis therapeutic apparatus, and can input control parameters. For example, if the patient needs to perform a manual control exercise mode, the corresponding control parameters can be input to the MCU through the control panel, and corresponding buttons such as buttons of different gears can be set on the control panel. The control panel can use a touch screen.
[0088] In the present invention, each electronic hardware can refer to the model of the existing therapeutic apparatus, for example, the memory can use an SD memory card, the electronic screen can use an LED electronic screen or be integrated with a touch screen, and the MCU can use a single chip microcomputer or other control chips.
[0089] As an optional implementation scheme of the present application, optionally, the MCU is further used for:
[0090] In the initialization stage, the rectus abdominis physiotherapy electrode device reports the electromyographic value of the rectus abdominis rehabilitation patient to the backend server of the rehabilitation center;
[0091] The backend server of the rehabilitation center: finding a rectus abdominis rehabilitation exercise mode that matches the electromyographic value, generating a corresponding rectus abdominis rehabilitation exercise control instruction, and sending the instruction to the rectus abdominis physiotherapy electrode device through a gateway;
[0092] The rectus abdominis physiotherapy electrode device: receives and forwards the rectus abdominis rehabilitation exercise control instruction to the MCU through a wireless communication module; parses the rectus abdominis rehabilitation exercise control instruction through the MCU to obtain a second rectus abdominis rehabilitation exercise control parameter of a corresponding mode, and controls the operation of the electrode sheet based on the second rectus abdominis rehabilitation exercise control parameter.
[0093] As an optional implementation scheme of the present application, optionally, the wireless communication module adopts Bluetooth or 5G communication, preferably 5G, which is convenient for remote transmission.
[0094] The working mode of MCU executing the rehabilitation exercise instructions issued by the background will be described in detail in the following system.
[0095] As an optional implementation scheme of the present application, optionally, the MCU adopts a STM32F103C8T6 single-chip microcomputer.
[0096] like Figure 4 As shown, on the other hand, the present application provides a rectus abdominis rehabilitation system, comprising:
[0097] The rectus abdominis physiotherapy electrode device described above;
[0098] The backend server of the rehabilitation center is used to manage the rectus abdominis physiotherapy electrode device, as well as manage the rectus abdominis rehabilitation exercise tasks of the rectus abdominis rehabilitation patients and record the rectus abdominis rehabilitation exercise data of each time;
[0099] The patient-side APP is used to log in to the backend server of the rehabilitation center, view the rectus abdominis muscle rehabilitation exercise data, and participate in doctor-patient communication;
[0100] The medical APP is used to log in to the backend server of the rehabilitation center, manage patients with rectus abdominis rehabilitation and participate in doctor-patient communication;
[0101] The rectus abdominis muscle physiotherapy electrode device is connected to the rehabilitation center backend server through a gateway;
[0102] The patient-side APP and the medical-side APP are respectively connected to the rehabilitation center backend server through API port communication.
[0103] As an optional implementation scheme of the present application, optionally, the rehabilitation center backend server includes:
[0104] The device management system is used to manage the working state of the rectus abdominis physiotherapy electrode device and bind the activated rectus abdominis physiotherapy electrode device to the consultation ID of the corresponding rectus abdominis rehabilitation patient;
[0105] The patient management system is used to register the basic information of the patients with rectus abdominis rehabilitation, including the clinic ID, and record the rectus abdominis rehabilitation exercise data of each patient;
[0106] HIS-rectus abdominis medical record system is used to generate a rectus abdominis rehabilitation exercise medical record file of the patients according to the rectus abdominis rehabilitation exercise data of the patients, including: exercise time, change value of the rectus abdominis each time, exercise frequency and exercise duration;
[0107] A rehabilitation exercise mode recommendation system, for finding a rectus abdominis rehabilitation exercise mode that matches the electromyographic value of the rectus abdominis rehabilitation patient collected in the initialization phase from a background database, and generating a corresponding mode of rectus abdominis rehabilitation exercise control instruction and sending it to the corresponding rectus abdominis physiotherapy electrode device through a gateway;
[0108] A backend database for data storage includes: a rectus abdominis rehabilitation exercise mode corresponding to different myoelectric value ranges, wherein the rectus abdominis rehabilitation exercise mode includes corresponding electrode sheet control parameters;
[0109] Doctor-patient communication system, used to provide doctor-patient consultation and communication services;
[0110] Message middleware, used to provide data sending and receiving services based on the KAFKA mechanism;
[0111] API port, used to provide APP login port;
[0112] USB port, used to provide data transmission port.
[0113] The system includes the backend, various devices and gateways, as well as the patient-side APP and the medical-side APP. The APP is installed under the guidance of the backend administrator.
[0114] The APP can communicate through the API port and exchange data with the background. The devices worn by each patient can communicate data with the background through the gateway. The communication port and address of the corresponding device can be saved in the gateway (the administrator configures the gateway in advance through the background, configures the corresponding communication address, etc.).
[0115] Administrators can manage the communication of each device through the background. When patients are discharged from the hospital or in the outpatient clinic, the corresponding medical staff can manage the devices distributed to the patients in the background, bind the patient's identity number or medical ID with the device number, etc., so that when the patient exercises, the device he wears can report the electromyographic value, and automatically bind it with the device and medical ID in the background, and write it into the HIS system. For specific device binding management and patient management, etc., please refer to the management plan of the existing hospital management system.
[0116] The equipment management system can register outpatients, etc., and the HIS-rectus abdominis case system can generate cases for rectus abdominis rehabilitation patients, and after each rehabilitation exercise, write the patient's rectus abdominis rehabilitation exercise data into the case, and record the patient's rectus abdominis rehabilitation exercise frequency, time, changes in electromyographic values each time, etc. in their medical records.
[0117] In the background, a rehabilitation exercise mode recommendation system is also deployed, which can match the corresponding rehabilitation exercise mode for the patient according to the EMG value of the patient's rectus abdominis collected during the initialization phase, and send the mode to the device worn by the patient through the background. The device works according to the rehabilitation exercise mode recommended by the system, so there is no need for the patient to go to the hospital for mode guidance. When matching the mode specifically, because the rehabilitation exercise modes corresponding to different EMG range values can be pre-saved in the background database in advance (each mode is configured with corresponding electrode working parameters, which can be executed by the MCU). Therefore, when processing the EMG values tested by the patient later, the recommendation system can generate the corresponding SQL instructions based on the EMG values collected during the initialization phase, and search in the background database (SQL search), and find the rehabilitation exercise control mode that matches the EMG values in the initial stage, and send it from the background.
[0118] The control parameters in the rectus abdominis rehabilitation exercise mode corresponding to different myoelectric range values pre-stored in the background database can be pre-configured by the administrator. The working parameters of each electrode sheet in different modes can be set by the administrator.
[0119] The doctor-patient communication system may adopt a system for communicating between patients and medical staff on an existing hospital backend server, and the present invention does not limit this.
[0120] Both patients and medical staff can log in to the backend through the APP to communicate and consult about the corresponding rectus abdominis rehabilitation exercises. Medical staff can log in to the backend to view the medical records of each patient and determine whether the rehabilitation of each patient is effective.
[0121] When using the present invention, the patient needs to stick the physiotherapy electrode sheet on the abdomen, waist, and coccyx, open the APP end or management platform, select the part to be stuck, test the electromyographic value of the muscle in the corresponding part, and give the most suitable exercise mode based on these data. The patient can also choose the exercise mode by himself. During the patient's exercise, the changes in the electromyographic value of the part are recorded and saved.
[0122] Patients can check the frequency, time, and changes in the electromyographic value of each exercise. If patients have any questions, they can also send these data to the medical staff on the APP or management platform.
[0123] Medical staff can view the information of all patients who use the device in the hospital through the APP or the management platform background, including the frequency and time of exercise, changes in the electromyographic value of each exercise, etc. Targeted intervention can be carried out based on these results (login to the background through the APP to generate an intervention plan and send it to the patient's APP through the background, etc.).
[0124] Obviously, those skilled in the art should understand that the implementation of all or part of the processes in the above-mentioned embodiments can be completed by instructing the relevant hardware through a computer program, and the program can be stored in a computer-readable storage medium. When the program is executed, it can include the processes of the above-mentioned embodiments. Those skilled in the art can understand that the implementation of all or part of the processes in the above-mentioned embodiments can be completed by instructing the relevant hardware through a computer program, and the program can be stored in a computer-readable storage medium. When the program is executed, it can include the processes of the above-mentioned embodiments. Among them, the storage medium can be a disk, an optical disk, a read-only memory (ROM), a random access memory (RAM), a flash memory (Flash Memory), a hard disk (Hard Disk Drive, abbreviated: HDD) or a solid-state drive (SSD), etc.; the storage medium can also include a combination of the above-mentioned types of memory.
[0125] Example 2
[0126] Based on the implementation principle of Example 1, the present application further proposes an application method of a rectus abdominis rehabilitation system, comprising the following steps:
[0127] System initialization: The rectus abdominis physiotherapy electrode device worn by the rectus abdominis rehabilitation patient tests and collects the initial electromyographic value and reports it to the rehabilitation center backend server through the gateway;
[0128] The rehabilitation center backend server:
[0129] The electromyographic value is received and forwarded to the rehabilitation exercise mode recommendation system through the message middleware, and the rehabilitation exercise mode recommendation system searches the database to find the rectus abdominis rehabilitation exercise mode that matches the electromyographic value from the background database, and generates a corresponding mode of rectus abdominis rehabilitation exercise control instruction and sends it to the rectus abdominis physiotherapy electrode device through the gateway;
[0130] The rectus abdominis physiotherapy electrode device:
[0131] The wireless communication module receives and forwards the rectus abdominis rehabilitation exercise control instruction to the MCU; the MCU parses the rectus abdominis rehabilitation exercise control instruction to obtain a second rectus abdominis rehabilitation exercise control parameter of a corresponding mode, and controls the operation of the electrode sheet based on the second rectus abdominis rehabilitation exercise control parameter;
[0132] The MCU collects the new electromyographic value monitored by the electrode sensor in real time, and reports the new electromyographic value to the background server of the rehabilitation center through the wireless communication module, which is then written into the rectus abdominis rehabilitation exercise medical record file of the rectus abdominis rehabilitation patient by the background server of the rehabilitation center.
[0133] Please understand the above method in conjunction with Example 1, and this example will not be repeated.
[0134] The modules or steps of the present invention described above can be implemented by a general-purpose computing device, they can be concentrated on a single computing device, or distributed on a network composed of multiple computing devices, and optionally, they can be implemented by a program code executable by a computing device, so that they can be stored in a storage device and executed by the computing device, or they can be made into individual integrated circuit modules, or multiple modules or steps therein can be made into a single integrated circuit module for implementation. Thus, the present invention is not limited to any specific combination of hardware and software.
[0135] Example 3
[0136] like Figure 5 As shown, further, in another aspect, the present application also proposes an electronic device, including:
[0137] processor;
[0138] a memory for storing processor-executable instructions;
[0139] Wherein, the processor is configured to implement the application method described in Example 2 when executing the executable instructions.
[0140] The electronic device according to the embodiment of the present disclosure includes a processor and a memory for storing processor executable instructions, wherein the processor is configured to implement the above application method when executing the executable instructions.
[0141] Here, it should be noted that the number of processors can be one or more. At the same time, the electronic device in the embodiment of the present disclosure may also include an input device and an output device. Among them, the processor, memory, input device and output device may be connected through a bus or in other ways, which are not specifically limited here.
[0142] The memory is a computer-readable storage medium that can be used to store software programs, computer executable programs, and various modules, such as the program or module corresponding to the application method of the embodiment of the present disclosure. The processor executes various functional applications and data processing of the electronic device by running the software programs or modules stored in the memory.
[0143] The input device can be used to receive input numbers or signals. The signal can be a key signal related to user settings and function control of the device / terminal / server. The output device can include a display device such as a display screen.
[0144] The embodiments of the present disclosure have been described above, and the above description is exemplary, not exhaustive, and is not limited to the disclosed embodiments. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The selection of terms used herein is intended to best explain the principles of the embodiments, practical applications, or technical improvements to the technology in the market, or to enable other persons of ordinary skill in the art to understand the embodiments disclosed herein.
Claims
1. A rectus abdominis muscle physiotherapy electrode device, characterized in that: include: A number of electrodes; A / D converter, used for digital-to-analog signal conversion; MCU, used to control the operation of the electrode sheet; And, collecting the electromyographic value monitored by the electrode sheet, and reporting the electromyographic value to the background server of the rehabilitation center through the wireless communication module; A wireless communication module, used for the device to communicate with the background server of the rehabilitation center; A memory device, used for storing the rectus abdominis rehabilitation exercise data of each rectus abdominis rehabilitation patient; An electronic screen is used to display the rectus abdominis rehabilitation exercise data forwarded by the MCU; A control panel, used for a rectus abdominis rehabilitation patient to input corresponding first rectus abdominis rehabilitation exercise control parameters; Power supply, used for power supply; The electrode sheet is electrically connected to the A / D converter; The A / D converter, wireless communication module, memory, electronic screen, control panel and power supply are electrically connected to the MCU respectively.
2. The rectus abdominis muscle physiotherapy electrode device according to claim 1, characterized in that: The MCU is also used for: In the initialization stage, the rectus abdominis physiotherapy electrode device reports the electromyographic value of the rectus abdominis rehabilitation patient to the backend server of the rehabilitation center; The backend server of the rehabilitation center: finding a rectus abdominis rehabilitation exercise mode that matches the electromyographic value, generating a corresponding rectus abdominis rehabilitation exercise control instruction, and sending the instruction to the rectus abdominis physiotherapy electrode device through a gateway; The rectus abdominis muscle physiotherapy electrode device receives and forwards the rectus abdominis muscle rehabilitation exercise control instruction to the MCU through a wireless communication module; The MCU parses the rectus abdominis rehabilitation exercise control instruction to obtain a second rectus abdominis rehabilitation exercise control parameter of a corresponding mode, and controls the operation of the electrode sheet based on the second rectus abdominis rehabilitation exercise control parameter.
3. The rectus abdominis muscle physiotherapy electrode device according to claim 1, characterized in that: The wireless communication module adopts Bluetooth or 5G communication.
4. The rectus abdominis muscle physiotherapy electrode device according to claim 1, characterized in that: The MCU adopts STM32F103C8T6 single chip microcomputer.
5. A rectus abdominis muscle rehabilitation system, characterized in that: include: The rectus abdominis muscle therapy electrode device as described in claims 1-4; The backend server of the rehabilitation center is used to manage the rectus abdominis physiotherapy electrode device, as well as manage the rectus abdominis rehabilitation exercise tasks of the rectus abdominis rehabilitation patients and record the rectus abdominis rehabilitation exercise data of each time; The patient-side APP is used to log in to the backend server of the rehabilitation center, view the rectus abdominis muscle rehabilitation exercise data, and participate in doctor-patient communication; The medical APP is used to log in to the backend server of the rehabilitation center, manage patients with rectus abdominis rehabilitation and participate in doctor-patient communication; The rectus abdominis muscle physiotherapy electrode device is connected to the rehabilitation center backend server through a gateway; The patient-side APP and the medical-side APP are respectively connected to the rehabilitation center backend server through API port communication.
6. The rectus abdominis rehabilitation system according to claim 5, characterized in that: The rehabilitation center backend server includes: The device management system is used to manage the working state of the rectus abdominis physiotherapy electrode device and bind the activated rectus abdominis physiotherapy electrode device to the consultation ID of the corresponding rectus abdominis rehabilitation patient; The patient management system is used to register the basic information of the patients with rectus abdominis rehabilitation, including the clinic ID, and record the rectus abdominis rehabilitation exercise data of each patient; HIS-rectus abdominis medical record system is used to generate a rectus abdominis rehabilitation exercise medical record file of the patients according to the rectus abdominis rehabilitation exercise data of the patients, including: exercise time, change value of the rectus abdominis each time, exercise frequency and exercise duration; A rehabilitation exercise mode recommendation system, for finding a rectus abdominis rehabilitation exercise mode that matches the electromyographic value of the rectus abdominis rehabilitation patient collected in the initialization phase from a background database, and generating a corresponding mode of rectus abdominis rehabilitation exercise control instruction and sending it to the corresponding rectus abdominis physiotherapy electrode device through a gateway; A backend database for data storage includes: a rectus abdominis rehabilitation exercise mode corresponding to different myoelectric value ranges, wherein the rectus abdominis rehabilitation exercise mode includes corresponding electrode sheet control parameters; Doctor-patient communication system, used to provide doctor-patient consultation and communication services; Message middleware, used to provide data sending and receiving services based on the KAFKA mechanism; API port, used to provide APP login port; USB port, used to provide data transmission port.
7. An application method of the rectus abdominis rehabilitation system according to claim 5, characterized in that: The steps include: System initialization: The rectus abdominis physiotherapy electrode device worn by the rectus abdominis rehabilitation patient tests and collects the initial electromyographic value and reports it to the rehabilitation center backend server through the gateway; The rehabilitation center backend server: The electromyographic value is received and forwarded to the rehabilitation exercise mode recommendation system through the message middleware, and the rehabilitation exercise mode recommendation system searches the database to find the rectus abdominis rehabilitation exercise mode that matches the electromyographic value from the background database, and generates a corresponding mode of rectus abdominis rehabilitation exercise control instruction and sends it to the rectus abdominis physiotherapy electrode device through the gateway; The rectus abdominis physiotherapy electrode device: Receive and forward the rectus abdominis muscle rehabilitation exercise control instruction to the MCU through the wireless communication module; The MCU analyzes the rectus abdominis rehabilitation exercise control instruction to obtain a second rectus abdominis rehabilitation exercise control parameter of a corresponding mode, and controls the operation of the electrode sheet based on the second rectus abdominis rehabilitation exercise control parameter; The MCU collects the new electromyographic value monitored by the electrode sensor in real time, and reports the new electromyographic value to the background server of the rehabilitation center through the wireless communication module, which is then written into the rectus abdominis rehabilitation exercise medical record file of the rectus abdominis rehabilitation patient by the background server of the rehabilitation center.
8. An electronic device, characterized in that: include: processor; a memory for storing processor-executable instructions; Wherein, the processor is configured to implement the application method described in claim 7 when executing the executable instructions.