Mobile rehabilitation workstation management system for multi-device access

The mobile rehabilitation workstation management system enables unified access and automated processing of rehabilitation equipment, solves the problems of data silos and low report processing efficiency, realizes plug-and-play and paperless operations, and improves the work efficiency of therapists and data sharing capabilities.

CN120636729APending Publication Date: 2025-09-12WEST CHINA HOSPITAL SICHUAN UNIV
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Patent Information

Application Number
CN202510747318.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-05
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

In existing technologies, rehabilitation equipment is isolated from the hospital information system, forming data islands. Therapists need to manually enter patient information on each device, and device data cannot be directly connected to the HIS, resulting in redundant operations and data fragmentation. In addition, report processing efficiency is low, and paper reports are easily lost and difficult to retrieve.

Method used

A mobile rehabilitation workstation management system for multi-device access is provided, including a mobile terminal, a medical order management module and a device interface module, which realizes unified access of multi-source rehabilitation equipment, automatically collects and transmits data, supports plug-and-play compatibility, and realizes fully automatic circulation and electronic signature through the report processing module, reducing manual operations.

Benefits of technology

It achieves plug-and-play compatibility of rehabilitation equipment, reduces manual operation errors, improves report processing efficiency, shortens processing time, enhances data consistency and cross-hospital collaboration, and improves resource utilization.

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Abstract

The invention belongs to the technical field of equipment management, and particularly relates to a multi-equipment access-oriented mobile rehabilitation workstation management system, which comprises a mobile terminal, a doctor advice management module and an equipment interface module, the mobile terminal is deployed on the portable electronic equipment and is used for providing a unified operation interface; the doctor's advice management module is in communication connection with a hospital information system HIS and is used for receiving, executing and cancelling rehabilitation treatment doctor's advice; the equipment interface module provides a standardized equipment access interface, supports access of various rehabilitation equipment at least including an aspirator, a six-minute walking tester, continuous monitoring equipment and a power bicycle, and realizes automatic acquisition and transmission of equipment data. According to the invention, through a standardized device interface module, all devices are forcibly required to follow a unified communication protocol to access the mobile terminal, and new devices can access the system only through an adaptive interface; collecting equipment data in real time during treatment; and the equipment data is communicated with the HIS system, so that the risk of manual operation errors is reduced.
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Description

Technical Field

[0001] The present invention belongs to the technical field of equipment management, and in particular relates to a mobile rehabilitation workstation management system oriented to multi-device access. Background Art

[0002] The mobile rehabilitation workstation is designed to make it more convenient for rehabilitation therapists to provide rehabilitation treatment and management for patients. Currently, the complete execution process of a rehabilitation treatment is that the doctor gives medical orders, the therapist enters the patient information on the device, conducts rehabilitation treatment, copies the report data to the computer, the therapist reviews and analyzes the data on the computer, prints, signs and archives the report.

[0003] In existing technologies, rehabilitation equipment is isolated from the hospital information system, forming a "data island". Therapists need to manually re-enter patient information on each device, such as inhalers, power bicycles, etc., and the device data cannot be directly connected to the HIS and needs to be manually copied to the computer for processing. Summary of the Invention

[0004] In order to solve the above-mentioned problems existing in the prior art, the present invention provides a mobile rehabilitation workstation management system for multi-device access, aiming to solve the technical problem in the prior art that rehabilitation equipment is independent of the hospital information system, forming a "data island". Therapists need to manually re-enter patient information on each device, such as an inhaler, a power bicycle, etc., and the device data cannot be directly connected to the HIS and needs to be manually copied to a computer for processing.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a mobile rehabilitation workstation management system for multi-device access is suitable for the workflow of rehabilitation treatment, coordinating rehabilitation equipment resources, patient management and data interaction of multiple hospital areas, and the mobile rehabilitation workstation management system for multi-device access includes a mobile terminal, a medical order management module and a device interface module; the mobile terminal is deployed on a portable electronic device to provide a unified operation interface; the medical order management module is connected to the hospital information system HIS for receiving, executing and revoking rehabilitation treatment medical orders; the device interface module provides a standardized device access interface, supports access to multiple types of rehabilitation equipment including at least an inhaler, a six-minute walk tester, a continuous monitoring device, and a power bicycle, and realizes automatic collection and transmission of device data;

[0006] In existing technologies, therapists need to enter patient information separately for each device, such as a power bike and an inhaler. This results in redundant operations and the need to repeatedly enter basic information such as name and ID. This also creates data silos, preventing device data from interoperability and linking to the HIS.

[0007] In the present invention, unified access of multi-source rehabilitation equipment is achieved through the equipment interface module, eliminating the fragmentation of equipment operation.

[0008] Furthermore, the system also includes a report processing module for automatically receiving treatment report data generated by rehabilitation equipment, providing report review, analysis, electronic signature and archiving functions, and returning the report signed by the doctor to the HIS system to form a closed-loop data flow;

[0009] In existing technologies, the original process requires therapists to manually copy device data, organize it on a computer, print and sign it, and then physically file it. This creates an efficiency bottleneck, and processing a single report takes more than 30 minutes. In addition, paper reports are easily lost and difficult to retrieve.

[0010] In the present invention, the report processing module is used to realize the fully automatic circulation, collection, electronic signature and archiving of treatment reports, thereby solving the efficiency bottleneck and archiving risks caused by manual copying of data, printing signature and physical archiving.

[0011] Furthermore, the device interface module defines a unified communication protocol specification, requiring connected rehabilitation devices to follow preset data formats and transmission rules, thus achieving plug-and-play compatibility for devices across manufacturers;

[0012] In existing technologies, different brands of equipment, such as Hanya power vehicles and air intakes from other manufacturers, have closed protocols. Private communication protocols prevent unified access and make expansion difficult. Customized development interfaces are required for newly added equipment.

[0013] In the present invention, the communication protocol specification of the device interface module is used to enforce a unified device access standard, thereby solving the system closedness and expansion difficulties caused by the proprietary protocols of devices from different manufacturers.

[0014] Furthermore, the medical order management module supports therapists to batch process continuous medical order tasks for multiple patients on the mobile terminal and automatically associate the patient information configuration of the corresponding rehabilitation equipment;

[0015] In the existing technology, traditional therapists need to repeatedly switch terminals when switching between different devices, and need to re-login to the device system for each patient. This makes configuration errors and manual transcription of medical orders prone to omissions or errors.

[0016] In the present invention, the batch configuration function of the medical order management module is used to realize continuous operation of multiple patients, thereby solving the problem of repeated switching of terminals and manual transcription of medical orders when operating a single patient with a single device.

[0017] Furthermore, the report processing module provides a paperless operation process, including: real-time retrieval of equipment report data based on the hospital's WiFi network; completion of report review and electronic signature on a mobile terminal; and synchronous storage of archived reports in the hospital data center.

[0018] In existing technologies, paper reports rely on printing, handwritten signatures, and storage in file cabinets, forcing therapists to return to fixed workstations to complete reports, and reports cannot be accessed in real time across hospital campuses.

[0019] In the present invention, the electronic signature and archiving functions of the report processing module are used to reduce paper processes, thereby solving the time and space constraints and collaboration failure caused by the dependence of paper reports on fixed workstations.

[0020] Furthermore, the mobile terminal is a detachable tablet computer that enables interconnection of treatment data across multiple hospital campuses through the in-hospital WiFi network, supporting therapists to carry their workstations across regions for operation.

[0021] In existing technologies, the fixed workstation model requires equipment to be deployed in specific rooms. Equipment cannot be shared across wards, resulting in a large amount of idle resources and high service delays, preventing critically ill patients from receiving bedside rehabilitation treatment.

[0022] In the present invention, the detachable mobile terminal is combined with the in-hospital WiFi to achieve free coverage of treatment scenarios, solving the problem of idle resources and service delays for critically ill patients caused by fixed workstations.

[0023] Furthermore, the therapist carries an integrated mobile terminal and rehabilitation equipment to form a mobile workstation, and performs the following steps in any WiFi coverage area in the hospital: Step 1 is to receive rehabilitation orders issued by the HIS through the mobile terminal; Step 2 is to automatically configure patient treatment parameters of multiple rehabilitation equipment; Step 3 is to automatically collect equipment report data after treatment; Step 4 is to complete report review and electronic signature on the mobile terminal; Step 5 is to send the signed report back to the HIS and archive it. The transmission of the rehabilitation equipment report data adopts wireless automatic synchronization to eliminate manual copying operations; The therapist completes the entire process operation only through a single mobile terminal;

[0024] In the existing technology, the original process has breakpoint manual intervention, which requires at least four manual data transmissions: equipment, USB flash drive, PC, HIS, and the therapist operates the equipment terminal, PC, and printer at the same time;

[0025] In the present invention, an end-to-end wireless automation process is constructed by chaining the doctor's order management module, the device interface module, and the report processing module in sequence, thereby solving the process fragmentation and tool separation caused by manual breakpoint operation, equipment, USB flash drive, PC, and HIS.

[0026] Furthermore, the device interface module supports dynamic expansion and access to new rehabilitation device types, and the new devices need to adapt to the communication protocol of the standardized interface;

[0027] In existing technologies, hospitals face the risk of system reconstruction when adding new equipment. Each time a new type of equipment is connected, the interface code needs to be rewritten, and the compatibility cost is high. The old system cannot support the new device protocol.

[0028] In the present invention, the standardized interface opening capability of the device interface module supports plug-and-play of new devices, thereby solving the secondary development cost and compatibility risk of customized development interfaces for newly added devices.

[0029] Furthermore, the mobile terminal is deployed as an Android system application, and the intranet backup service communication completes data backup, realizing the backup and cross-terminal access of treatment data.

[0030] In existing technologies, the local storage model results in data asset unavailability. For example, if the pad is damaged, historical data will be lost, and therapists in other hospitals will not be able to obtain the patient's complete rehabilitation records.

[0031] In the present invention, the automatic synchronization mechanism between the mobile terminal and the hospital's internal network communication is used to achieve secure cross-terminal data sharing, thereby solving the single point of failure caused by local storage and the cross-hospital data barrier.

[0032] Compared with the prior art, the present invention has the following beneficial effects:

[0033] 1. Through standardized device interface modules, all devices are required to follow the unified communication protocol to connect to mobile terminals, achieving plug-and-play. New devices only need to adapt the interface to connect to the system; automatic synchronization, real-time collection of device data during treatment, without the need for manual copying; device data is connected to the HIS system to solve the problem of data fragmentation and reduce the risk of manual operation errors.

[0034] 2. Electronic signature is implemented based on the report processing module, and report review and signature are completed on the Pad end. Through automatic archiving, the signed report is sent back to the HIS within seconds and backed up. Through wireless sharing via the hospital's WiFi, reports can be accessed and shared at any time, and the entire treatment process is paperless. The report processing time is shortened from 30 minutes per person to 5 minutes, and the archiving error rate is greatly reduced.

[0035] 3. Through the detachable mobile terminal + in-hospital WiFi coverage, therapists carry a Pad + equipment cart to form a mobile workstation, operate in any WiFi area, synchronize patient data between Wenjiang and the hospital, and collaborate across multiple hospital campuses in real time. The average number of patients handled by a single therapist per day has increased from 8 to 15, greatly improving the utilization rate of hospital resources.

[0036] 4. Build an end-to-end automated process to form a direct medical order channel. HIS medical orders are automatically pushed to the Pad, and multiple patient device parameters are configured at one time. After the report is reviewed, it is automatically written back to the HIS to form a closed-loop feedback. The treatment process is simplified from 6 steps to 3, and data consistency is greatly improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] 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:

[0038] Figure 1 is a schematic diagram of the system of the present invention;

[0039] Figure 2 Flowchart of the present invention.

[0040] Legend:

[0041] 1. Mobile terminal;

[0042] 2. Medical order management module;

[0043] 3. Equipment interface module;

[0044] 4. Report processing module. DETAILED DESCRIPTION

[0045] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0046] Example 1:

[0047] See also Figure 1-Figure 2 , this embodiment provides the following technical solutions: a mobile rehabilitation workstation management system for multi-device access is suitable for the workflow of rehabilitation treatment, coordinating the rehabilitation equipment resources, patient management and data interaction of multiple hospital areas, a mobile rehabilitation workstation management system for multi-device access includes a mobile terminal 1, a medical order management module 2 and a device interface module 3; the mobile terminal 1 is deployed on a portable electronic device to provide a unified operation interface; the medical order management module 2 is connected to the hospital information system HIS for receiving, executing and revoking rehabilitation treatment orders; the device interface module 3 provides a standardized device access interface, supports access to multiple types of rehabilitation equipment including at least an inhaler, a six-minute walk tester, a continuous monitoring device, and a power bicycle, and realizes automatic collection and transmission of device data; in the unified solution, the therapist needs to enter the patient information separately for each device, such as once for a power bicycle and an inhaler, resulting in redundant operations, requiring repeated entry of basic information such as name / ID, and forming data islands, making it impossible for device data to communicate with each other and to be associated with the HIS; the device interface module 3 is used to achieve unified access to multi-source rehabilitation equipment, eliminating the fragmentation of device operations.

[0048] The system also includes a report processing module 4, which is used to automatically receive treatment report data generated by rehabilitation equipment, provide report review, analysis, electronic signature and archiving functions, and return the signed report to the HIS system to form a closed-loop data flow; the original process requires therapists to manually copy equipment data, organize it by computer, print and sign, and physically archive it, which causes efficiency bottlenecks. The processing of a single report exceeds 30 minutes, and paper reports are easy to lose and difficult to retrieve; through the report processing module 4, the treatment report can be fully automatically circulated, collected, electronically signed, and archived, solving the efficiency bottlenecks and archiving risks caused by manual copying of data, printing and signing, and physical archiving.

[0049] The device interface module 3 defines a unified communication protocol specification, requiring the connected rehabilitation equipment to follow the preset data format and transmission rules to achieve plug-and-play compatibility across manufacturers' devices; different brands of equipment, such as Hanya power bikes and inhalers from other manufacturers, have closed protocols, and private communication protocols make unified access impossible and difficult to expand. Once new equipment is added, a customized development interface is required; the communication protocol specification of the device interface module 3 is used to force a unified device access standard, solving the system closedness and expansion difficulties caused by the private protocols of equipment from different manufacturers.

[0050] The medical order management module 2 supports therapists in batch processing continuous medical order tasks for multiple patients on the mobile terminal 1, and automatically associates the patient information configuration of the corresponding rehabilitation equipment; in the traditional mode, therapists need to repeatedly switch terminals when switching operations between different devices, and need to re-login to the device system for each patient they serve, which makes configuration errors easy and manual transcription of medical orders easy to miss or make mistakes; the batch configuration function of the medical order management module 2 can realize continuous operation of multiple patients, solving the problem of repeated switching of terminals and manual transcription of medical orders when operating a single patient on a single device.

[0051] The report processing module 4 provides a paperless operation process, including: real-time retrieval of equipment report data based on the hospital's WiFi network; completion of report review and electronic signature on the mobile terminal 1; and synchronous storage of archived reports in the hospital data center. Paper reports rely on printing, handwritten signatures, and file cabinet storage, which requires therapists to return to fixed workstations for operation, and reports cannot be accessed in real time across hospital campuses. The electronic signature and archiving functions of the report processing module 4 reduce paper processes and solve the time and space constraints and collaboration failures caused by the reliance of paper reports on fixed workstations.

[0052] Mobile terminal 1 is a detachable tablet computer that realizes the interconnection of treatment data in multiple hospital areas through the in-hospital WiFi network, supporting therapists to carry workstations and work across regions; the fixed workstation mode requires that the equipment be deployed in a specific room, and the equipment cannot be shared across wards, resulting in a large amount of idle resources and high service delays, and critically ill patients cannot receive bedside rehabilitation treatment; the detachable mobile terminal 1 is combined with the in-hospital WiFi to achieve free coverage of treatment scenarios, solving the idle resources and service delays for critically ill patients caused by fixed workstations.

[0053] The method includes a therapist carrying an integrated mobile terminal 1 and rehabilitation equipment to form a mobile workstation, and performing the following steps in any WiFi coverage area in the hospital: step 1 is to receive rehabilitation medical orders issued by the HIS through the mobile terminal 1; step 2 is to automatically configure patient treatment parameters of multiple rehabilitation equipment; step 3 is to automatically collect equipment report data after treatment; step 4 is to complete report review and electronic signature on the mobile terminal 1; step 5 is to return the signed report to the HIS and archive it. The transmission of rehabilitation equipment report data adopts wireless automatic synchronization to eliminate manual copying operations; the therapist completes the entire process operation only through a single mobile terminal 1; the original process has breakpoint manual intervention, requiring at least 4 manual data transmissions, equipment, U disk, PC, HIS, and the therapist operates the equipment terminal, PC, and printer at the same time; an end-to-end wireless automation process is constructed by chaining the medical order management module 2, the equipment interface module 3, and the report processing module 4 in sequence to solve the process fragmentation and tool separation caused by manual breakpoint operations, equipment, U disk, PC, and HIS.

[0054] Device interface module 3 supports dynamic expansion and access to new types of rehabilitation equipment. New equipment must adapt to the communication protocol of the standardized interface. When adding new equipment, the hospital faces the risk of system reconstruction. The interface code needs to be rewritten for each new type of equipment connected, and the compatibility cost is high. The old system cannot support the new device protocol. The standardized interface opening capability of device interface module 3 supports plug-and-play for new equipment, solving the secondary development cost and compatibility risk of customized development interfaces for new equipment.

[0055] Mobile Terminal 1 is deployed as an Android application and transmits data via intranet communication, enabling backup and cross-terminal access to treatment data. Local storage can render data assets unavailable. For example, if the device is damaged, historical data is lost, and therapists at other hospitals are unable to access the patient's complete recovery record. By connecting Mobile Terminal 1 to the intranet, data can be securely shared across terminals, eliminating single points of failure and cross-hospital data barriers caused by local storage.

[0056] Example 2:

[0057] See also Figure 1-Figure 2In this embodiment, staff used the system disclosed in the present invention in the cardiopulmonary rehabilitation department of West China Hospital. The cardiopulmonary rehabilitation department is equipped with a Hanya HY-3000 power bicycle and a Seke inspiratory muscle training machine. The therapist used a mobile workstation equipped with a Huawei tablet to receive medical instructions for five patients pushed by the HIS through the hospital's WiFi:

[0058] Patient A (Bed 3, Department of Respiratory Medicine): Inspiratory muscle training (parameters: resistance 30 cmH2O, duration 10 minutes)

[0059] Patient BD (rehabilitation hall): Power bicycle training (target power 50W, duration 15 minutes)

[0060] On Tab S9, click on Patient A's medical order. The medical order management module 2 generates a standardized JSON instruction containing the patient ID, device type, and parameters, which is sent to the V60 inspirator via the Bluetooth 5.0 protocol of the device interface module 3. The device automatically loads the parameters and starts. After the training is completed, the V60 encrypts the respiratory waveform, tidal volume and other data and transmits them back to the Tab S9. The report processing module 4 immediately generates a PDF report with a trend chart. The therapist writes his signature on the Tab S9 touch screen, and the system automatically attaches a timestamp and digital certificate. The signed report is encrypted with AES-256 and directly transmitted to the HIS for archiving. At the same time, the data is backed up to the application server via the hospital intranet communication. The therapist then goes to the rehabilitation hall and uses the same Tab S9 to batch configure the HY-3000 parameters for the patient's BD. All device reports are automatically collected in the local SQLite database, and no paper documents are used throughout the process.

[0061] The working principle of the present invention is as follows: the HIS system pushes rehabilitation orders to the order management module 2 deployed on the Android tablet through the HL7 protocol. After the therapist selects the order on the tablet, the device interface module 3 converts the order parameters into the target device protocol, such as Modbus-RTU for the power bicycle and Bluetooth GATT for the inhaler, and drives the device to perform the treatment. The monitoring data generated during the treatment, such as the heart rate and mileage of the power bike, are transmitted back to the report processing module 4 via WiFi 6. The module integrates the data to generate a structured report. The therapist completes the electronic signature on the tablet, and the signed report is transmitted back to the HIS after being certified by the hospital CA, and at the same time triggers the synchronization mechanism to back up the data to the intranet service. New devices need to register the communication protocol with the device interface module to achieve plug-and-play access.

[0062] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A mobile rehabilitation workstation management system for multi-device access, suitable for the workflow of rehabilitation treatment, coordinating rehabilitation equipment resources, patient management, and data interaction across multiple hospital campuses, characterized by: The mobile rehabilitation workstation management system for multi-device access comprises a mobile terminal (1), a medical order management module (2) and a device interface module (3); The mobile terminal (1) is deployed on a portable electronic device and is used to provide a unified operation interface; The medical order management module (2) is connected to the hospital information system (HIS) for receiving, executing and revoking rehabilitation treatment medical orders; The device interface module (3) provides a standardized device access interface, supports access to multiple types of rehabilitation equipment including at least an inhaler, a six-minute walk tester, a continuous monitoring device, and a power bicycle, and realizes automatic collection and transmission of device data.

2. The mobile rehabilitation workstation management system for multi-device access according to claim 1, characterized in that: The system also includes a report processing module (4) for automatically receiving treatment report data generated by the rehabilitation equipment, providing report review, analysis, electronic signature and archiving functions, and returning the signed report to the HIS system to form a closed-loop data flow.

3. The mobile rehabilitation workstation management system for multi-device access according to claim 1, characterized in that: The device interface module (3) defines a unified communication protocol specification, requiring the connected rehabilitation equipment to follow preset data formats and transmission rules, thereby achieving plug-and-play compatibility of devices across manufacturers.

4. The mobile rehabilitation workstation management system for multi-device access according to claim 1, characterized in that: The medical order management module (2) supports the therapist to batch process the continuous medical order tasks of multiple patients on the mobile terminal (1), and automatically associates the patient information configuration of the corresponding rehabilitation equipment.

5. The mobile rehabilitation workstation management system for multi-device access according to claim 2, characterized in that: The report processing module (4) provides a paperless operation process, including: Real-time retrieval of equipment report data based on the hospital's WiFi network; Complete report review and electronic signature in the mobile terminal (1); Synchronize and store archived reports in the hospital data center.

6. The mobile rehabilitation workstation management system for multi-device access according to claim 1, characterized in that: The mobile terminal (1) is a detachable tablet computer that realizes the interconnection and intercommunication of treatment data in multiple hospital areas through the in-hospital WiFi network, and supports therapists to carry workstations and work across regions.

7. The mobile rehabilitation working method of any one of claims 1 to 6 for a mobile rehabilitation workstation management system with multi-device access, characterized in that: The therapist carries an integrated mobile terminal (1) and rehabilitation equipment to form a mobile workstation, and performs the following steps in any WiFi coverage area in the hospital: Step 1: Receive rehabilitation medical advice issued by HIS via mobile terminal (1); Step 2: Automatically configure patient treatment parameters for multiple rehabilitation devices; Step 3: Automatically collect device report data after treatment is performed; Step 4: Complete the report review and electronic signature on the mobile terminal (1); Step 5: Send the signed report back to HIS and archive it.

8. The mobile rehabilitation working method according to claim 7, characterized in that: The transmission of the rehabilitation equipment report data adopts a wireless automatic synchronization method, eliminating manual copying operations; the therapist only needs to complete the entire process operation through a single mobile terminal (1).

9. The mobile rehabilitation workstation management system for multi-device access according to claim 1, characterized in that: The device interface module (3) supports dynamic expansion and access to newly added rehabilitation device types, and the newly added devices need to adapt to the communication protocol of the standardized interface.

10. The mobile rehabilitation workstation management system for multi-device access according to claim 1, characterized in that: The mobile terminal (1) is deployed as an Android system application and performs data synchronization with an intranet data backup service, thereby realizing backup and cross-terminal access of treatment data.