5G intelligent rehabilitation medical vehicle
Patent Information
- Application Number
- CN202521389809.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-03
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-07-03
AI Technical Summary
[0003]1、功能局限性与场景适配不足:传统康复医疗车多局限于基础医疗服务(如血压监测、简单理疗),缺乏针对肌骨疼痛、吞咽障碍等老年高发症状的专项康复模块,难以满足多元化、分层级的康复需求;
[0021] 1. This utility model rationally plans and designs the interior space of the medical vehicle, dividing it into five major medical functional areas. This ensures that the interior of the medical vehicle not only has a reasonable layout but also carries many high-quality medical rehabilitation resources, taking into account both the efficiency of medical and nursing operations and the comfort of the examinee. It meets the diverse rehabilitation needs of remote areas and elderly people with limited mobility.
Smart Images

Figure CN224714898U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical examination vehicle technology, specifically to a 5G intelligent rehabilitation medical vehicle. Background Technology
[0002] Population aging has become one of the most serious public health challenges globally. The accelerating pace of aging has led to a surge in demand for healthcare services. Frailty, a core indicator of the aging process, significantly reduces the physical function of the elderly, increases the burden of care, and threatens their quality of life. Rehabilitation therapy, as a core intervention in frailty management, can effectively reverse functional decline and reduce mortality, but current technologies face the following bottlenecks:
[0003] 1. Functional limitations and insufficient scenario adaptation: Traditional rehabilitation medical vehicles are mostly limited to basic medical services (such as blood pressure monitoring and simple physiotherapy), lacking specialized rehabilitation modules for common symptoms in the elderly such as musculoskeletal pain and swallowing disorders, making it difficult to meet diversified and hierarchical rehabilitation needs;
[0004] 2. Lagging level of intelligence: Existing vehicles rely on manual operation and paper records, lacking real-time physiological data collection, AI-assisted diagnosis and virtual reality training systems, resulting in strong subjectivity in rehabilitation assessment and low standardization of the training process, affecting the accessibility and safety of therapeutic effects;
[0005] 3. Outdated communication technology: Traditional rehabilitation medical vehicles have not fully utilized the low latency and high bandwidth performance of advanced 5G networks, and still use relatively outdated communication technologies. This makes it impossible for traditional medical vehicles to achieve remote consultation, real-time image transmission, and data collaboration between hospitals and other institutions, making it difficult for high-quality medical resources to reach communities and homes.
[0006] The uneven distribution of rehabilitation medical resources is particularly pronounced in rural and remote areas. Data shows that approximately 76% of elderly people are unable to access professional rehabilitation services due to mobility limitations or geographical constraints. Existing technologies cannot achieve multi-functionality through modular space design, nor can they build a digital platform for two-way collaboration between doctors and patients, severely restricting the coverage and quality of rehabilitation services.
[0007] Therefore, there is an urgent need for a mobile solution that integrates 5G communication, intelligent monitoring, and multifunctional rehabilitation modules to overcome spatial limitations, improve service accuracy, and ultimately achieve the goal of "proactively bringing rehabilitation resources to homes". Utility Model Content
[0008] In view of the technical problems existing in the prior art, the purpose of this utility model is to provide a 5G intelligent rehabilitation medical vehicle, which is equipped with advanced communication technology and set up multiple functional areas to improve the accuracy and convenience of rehabilitation treatment.
[0009] To achieve the above objectives, the present invention adopts the following technical solution:
[0010] A 5G intelligent rehabilitation medical vehicle is equipped with a driver's cockpit, a rehabilitation management office area, a limb rehabilitation area, a visualized data-driven motor rehabilitation monitoring area, a musculoskeletal swallowing rehabilitation area, and a comprehensive rehabilitation screening area. The driver's cockpit is located at the front of the vehicle. The rehabilitation management office area is located to the right rear of the driver's cockpit. The visualized data-driven motor rehabilitation monitoring area is located behind the rehabilitation management office area. The limb rehabilitation area is located side-by-side with the rehabilitation management office area and the visualized data-driven motor rehabilitation monitoring area to the left rear of the driver's cockpit. The musculoskeletal swallowing rehabilitation area is located behind the visualized data-driven motor rehabilitation monitoring area and the limb rehabilitation area. The comprehensive rehabilitation screening area is located behind the musculoskeletal swallowing rehabilitation area. The medical vehicle is also equipped with an onboard 5G router and a hydraulic support system.
[0011] Furthermore, the rehabilitation management office area is equipped with office chairs, desks, laptops, and a centralized management workstation. The desk is set against the right side wall of the vehicle, with two office chairs on the left side of the desk, the centralized management workstation behind the desk, and the laptop on the desk.
[0012] Furthermore, the limb rehabilitation area is equipped with a first partition wall, a four-limb linkage rehabilitation training device, an upper and lower limb active and passive training device, a seat, and a wall-mounted water dispenser; among them, the first partition wall separates the cockpit from the limb rehabilitation area, the wall-mounted water dispenser is installed on the first partition wall, and the seat, the four-limb linkage rehabilitation training device, the seat, and the upper and lower limb active and passive training device are arranged in sequence from front to back on the back side of the first partition wall.
[0013] Furthermore, the visualized data sports rehabilitation monitoring area is equipped with sports rehabilitation testing devices and a large visualized data screen; both the sports rehabilitation monitoring devices and the large visualized data screen are located on the right side wall of the vehicle body.
[0014] Furthermore, on the right side of the musculoskeletal swallowing rehabilitation area, from front to back, are arranged a #1 fixed table, a chair, an infrared phototherapy machine, an ultra-shortwave therapy machine, a chair, and a low-temperature shock analgesia device. Above the #1 fixed table, from front to back, are an extracorporeal shockwave therapy device and a swallowing nerve and muscle electrical stimulator. Below the #1 fixed table are a computer-controlled intermediate frequency therapy device and a magnetic resonance thermal therapy device. To the left of the infrared phototherapy machine and the ultra-shortwave therapy machine are chairs. On the left side of the musculoskeletal swallowing rehabilitation area, from front to back, are a chair, a #2 fixed table, a chair, and a laser magnetic field therapy device. Above the #2 fixed table, from front to back, are a three-dimensional dynamic interference electrotherapy device and a myoelectric biofeedback stimulator. Below the #2 fixed table is a neuromuscular low-frequency electrical stimulator.
[0015] Furthermore, the comprehensive rehabilitation screening area is equipped with sleep apnea event and electrocardiogram / blood pressure screening equipment, deep muscle stimulator, examination bed, chair, cabinet, fixed table #3, and partition curtains. The partition curtains separate the comprehensive rehabilitation screening area from the musculoskeletal swallowing rehabilitation area, and the sleep apnea event and electrocardiogram / blood pressure screening equipment and deep muscle stimulator are both placed on fixed table #3.
[0016] Furthermore, the medical vehicle also includes a central door, which is located in the limb rehabilitation area and between the four-limb linkage rehabilitation training device and the upper and lower limb active and passive rehabilitation training device; an auxiliary lifting platform is also installed outside the central door.
[0017] Furthermore, the medical vehicle is equipped with a hydraulic support system to stabilize the vehicle body when medical services are parked.
[0018] Furthermore, the sports rehabilitation testing device and the large visual data screen are connected to the vehicle-mounted 5G router; the vehicle-mounted 5G router transmits data to the cloud platform via the 5G network.
[0019] Furthermore, the medical vehicle is also equipped with a touch screen operating device, a disinfection system, an uninterruptible power supply system, and a video monitoring system to assist medical personnel in operating the medical vehicle.
[0020] This utility model has the following advantages:
[0021] 1. This utility model rationally plans and designs the interior space of the medical vehicle, dividing it into five major medical functional areas. This ensures that the interior of the medical vehicle not only has a reasonable layout but also carries many high-quality medical rehabilitation resources, taking into account both the efficiency of medical and nursing operations and the comfort of the examinee. It meets the diverse rehabilitation needs of remote areas and elderly people with limited mobility.
[0022] 2. The rehabilitation medical vehicle in this utility model features mobile rehabilitation medical services, which increases the accessibility of high-quality rehabilitation services and enables high-quality rehabilitation medical resources to be proactively extended to communities and families.
[0023] 3. This utility model is equipped with a digital and intelligent system, which uses advanced technologies such as artificial intelligence and virtual reality to conduct rehabilitation assessment, rehabilitation training and rehabilitation monitoring, making the rehabilitation process more scientific, safe and effective.
[0024] 4. The medical vehicle in this utility model is equipped with an on-board 5G router, which uses advanced communication technology to realize collaboration between doctors and patients: the doctor's end integrates data monitoring, rehabilitation management and remote follow-up functions; the patient's end supports appointment registration and report inquiry services, which improves medical efficiency and service experience in both directions. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of this utility model.
[0026] Figure 2 This is a structural schematic diagram of the cockpit and rehabilitation management office area of this utility model.
[0027] Figure 3 This is a structural schematic diagram of the limb rehabilitation area and the visualized data motion rehabilitation monitoring area of this utility model.
[0028] Figure 4 This is a schematic diagram of the musculoskeletal swallowing rehabilitation area of this utility model.
[0029] Figure 5 This is a schematic diagram of the structure of the comprehensive rehabilitation screening area of this utility model.
[0030] Figure 6 This is a three-dimensional rendering of the present invention.
[0031] in,
[0032] 1 is the cockpit, and 1-1 is the front door;
[0033] 2 is the rehabilitation management office area; 2-1 is the desk; 2-2 is the office chair; 2-3 is the centralized management workstation.
[0034] 3 is the limb rehabilitation area; 3-1 is the first partition wall; 3-2 is the wall-mounted water dispenser; 3-3 is the four-limb linkage rehabilitation training device; 3-4 is the upper and lower limb active and passive training device; 3-5 is the middle door.
[0035] 4 is the visualized data sports rehabilitation monitoring area, 4-1 is the sports rehabilitation testing device, and 4-2 is the visualized data large screen;
[0036] 5 is the musculoskeletal swallowing rehabilitation area; 5-1 is the #1 fixed table; 5-2 is the infrared light moxibustion therapy machine; 5-3 is the ultra-shortwave therapy machine; 5-4 is the low-temperature shock analgesia device; 5-5 is the extracorporeal shock wave therapy device; 5-6 is the swallowing nerve and muscle electrical stimulation device; 5-7 is the #2 fixed table; 5-8 is the laser magnetic field physiotherapy device; 5-9 is the three-dimensional dynamic interference electrotherapy device; 5-10 is the electromyographic biofeedback stimulation device.
[0037] 6 is the comprehensive rehabilitation screening area; 6-1 is the sleep apnea event and ECG / blood pressure screening equipment; 6-2 is the deep muscle stimulator; 6-3 is the examination bed; 6-4 is the cabinet; 6-5 is the #3 fixed table; and 6-6 is the partition curtain.
[0038] 7 is the seat. Detailed Implementation
[0039] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0040] like Figures 1 to 6As shown, a 5G intelligent rehabilitation medical vehicle is equipped with a driver's cockpit, a rehabilitation management office area, a limb rehabilitation area, a visualized data-driven motor rehabilitation monitoring area, a musculoskeletal swallowing rehabilitation area, and a comprehensive rehabilitation screening area. The driver's cockpit is located at the front of the vehicle. The rehabilitation management office area is located to the right rear of the driver's cockpit. The visualized data-driven motor rehabilitation monitoring area is located behind the rehabilitation management office area. The limb rehabilitation area is located side-by-side with the rehabilitation management office area and the visualized data-driven motor rehabilitation monitoring area to the left rear of the driver's cockpit. The musculoskeletal swallowing rehabilitation area is located behind the visualized data-driven motor rehabilitation monitoring area and the limb rehabilitation area. The comprehensive rehabilitation screening area is located behind the musculoskeletal swallowing rehabilitation area. The medical vehicle is also equipped with an onboard 5G router and a hydraulic support system.
[0041] Specifically, the layout of each functional area is rationally planned and designed, so that rehabilitation medical resources are allocated reasonably and the flow of movement inside the vehicle is reasonable. This facilitates rehabilitation treatment for medical staff and patients, greatly improves the accuracy and convenience of rehabilitation treatment, and enables high-quality rehabilitation medical resources to be moved down to the community and even families.
[0042] like Figure 2 As shown, the rehabilitation management office area is equipped with office chairs, desks, laptops, and a centralized management workstation. The desk is set against the right side wall of the vehicle, with two office chairs on the left side of the desk, the centralized management workstation behind the desk, and the laptop on the desk.
[0043] In this embodiment, the centralized management workstation is connected to the vehicle-mounted 5G router. The centralized management workstation can integrate the data of the in-vehicle rehabilitation equipment in real time, and realize remote monitoring and electronic medical record synchronization through the 5G network to improve management efficiency. The office area provides flexible working conditions for medical staff and supports mobile medical records.
[0044] like Figure 3 As shown, the limb rehabilitation area is equipped with a first partition wall, a four-limb linkage rehabilitation training device, an upper and lower limb active and passive training device, a seat, and a wall-mounted water dispenser. The first partition wall separates the cockpit from the limb rehabilitation area. The wall-mounted water dispenser is installed on the first partition wall. Behind the first partition wall, from front to back, are a seat, a four-limb linkage rehabilitation training device, a seat, and an upper and lower limb active and passive training device.
[0045] Specifically, the four-limb linkage rehabilitation training device and the upper and lower limb active and passive training device form a complete rehabilitation training system, meeting the needs of different rehabilitation stages.
[0046] The medical vehicle also includes a central door, which is located in the limb rehabilitation area and between the four-limb linkage rehabilitation training device and the upper and lower limb active and passive rehabilitation training device; an auxiliary lifting platform is also installed outside the central door.
[0047] Specifically, the auxiliary lifting platform makes it easier for elderly people with mobility difficulties to get on and off the vehicle safely and conveniently.
[0048] like Figure 3 As shown, the visualized data sports rehabilitation monitoring area is equipped with sports rehabilitation testing devices and a visualized data screen; both the sports rehabilitation monitoring devices and the visualized data screen are located on the right side wall of the vehicle body.
[0049] Specifically, the system features a wall-mounted combination of a sports rehabilitation monitoring device and a large visualization screen. The digital sports rehabilitation monitoring system enables real-time monitoring and centralized display of physiological parameters such as electrocardiogram, heart rate, and blood oxygenation during patient rehabilitation assessment and training. Training data is collected in real-time and dynamically visualized; data is transmitted via 5G to the large visualization screen to generate analytical charts, facilitating real-time evaluation of training effectiveness by medical staff.
[0050] like Figure 4 As shown, the right side of the musculoskeletal swallowing rehabilitation area is arranged from front to back with a #1 fixed table, a chair, an infrared light moxibustion machine, an ultra-shortwave therapy machine, a chair, and a low-temperature shock analgesia device. Above the #1 fixed table, from front to back, are an extracorporeal shock wave therapy device and a swallowing nerve and muscle electrical stimulator. Below the #1 fixed table are a computer-controlled intermediate frequency therapy device and a magnetic resonance thermal therapy device. Chairs are arranged to the left of the infrared light moxibustion machine and the ultra-shortwave therapy machine, respectively.
[0051] On the left side of the musculoskeletal swallowing rehabilitation area, from front to back, there are a chair, a #2 fixed table, a chair, and a laser magnetic field physiotherapy device; above the #2 fixed table, from front to back, there are a three-dimensional dynamic interference electrotherapy device and a myoelectric biofeedback stimulator, and below the #2 fixed table, there is a neuromuscular low-frequency electrical stimulator.
[0052] Specifically, the integrated design provides a one-stop solution for swallowing, musculoskeletal pain treatment, and functional recovery, significantly improving the rehabilitation rate. In this embodiment, the upper layer of the #1 fixed table concentrates high-frequency treatment equipment, while the lower layer integrates mid- and low-frequency instruments, optimizing the operation flow, reducing space occupation, and ensuring equipment stability and treatment convenience; the upper and lower layer design of the #2 fixed table saves space, taking into account the overall space utilization rate, smooth medical staff collaboration, and equipment operation stability.
[0053] like Figure 5 As shown, the comprehensive rehabilitation screening area is equipped with sleep apnea event and electrocardiogram / blood pressure screening equipment, a deep muscle stimulator, an examination bed, a chair, a cabinet, a fixed table #3, and a partition curtain. The partition curtain separates the comprehensive rehabilitation screening area from the musculoskeletal swallowing rehabilitation area. The sleep apnea event and electrocardiogram / blood pressure screening equipment and the deep muscle stimulator are both placed on the fixed table #3.
[0054] In this embodiment, the sleep apnea event and electrocardiogram and blood pressure screening system relies on a cloud-based big data AI server. Medical institutions only need a regular PC and an internet connection to quickly deploy the system. It can automatically generate medical-grade professional sleep, dynamic electrocardiogram and other assessment reports. The examination bed and partition curtains ensure the comfort and safety of the examinee.
[0055] In this embodiment, the hydraulic support system mounted on the medical vehicle is used to stabilize the vehicle body when the medical service vehicle is parked.
[0056] In this embodiment, the sports rehabilitation testing device, the visual data screen, and the vehicle-mounted 5G router are connected; the vehicle-mounted 5G router and the cloud platform transmit data through the 5G network.
[0057] In this embodiment, the medical vehicle is also equipped with a touch screen operating device, a disinfection system, an uninterruptible power supply system, and a video monitoring system to assist medical personnel in operating the medical vehicle.
[0058] In summary, this utility model proposes a 5G intelligent rehabilitation medical vehicle to meet the rehabilitation needs of an aging society. Through scientific zoning and compact layout, it integrates a full-chain service including limb training, musculoskeletal therapy, swallowing rehabilitation, and comprehensive screening within a limited vehicle space. Equipped with advanced 5G communication technology, it enables real-time uploading of rehabilitation data and remote medical collaboration via an onboard 5G router, solving the problem of resource decentralization. This "one vehicle, multiple functions" model promotes the extension of high-quality rehabilitation resources to communities and families, especially benefiting the elderly in rural and remote areas, and combining efficiency, safety, and accessibility.
[0059] The above embodiments are preferred embodiments of the present utility model, but the embodiments of the present utility model are not limited to the above embodiments. Any changes, modifications, substitutions, combinations, or simplifications made without departing from the spirit and principle of the present utility model shall be considered equivalent substitutions and shall be included within the protection scope of the present utility model.
Claims
1. A 5G intelligent rehabilitation medical vehicle, characterized in that: The vehicle is equipped with a driver's cabin, a rehabilitation management office area, a limb rehabilitation area, a visual data-based motor rehabilitation monitoring area, a musculoskeletal swallowing rehabilitation area, and a comprehensive rehabilitation screening area. The driver's cabin is located at the front of the vehicle. The rehabilitation management office area is located to the right rear of the driver's cabin. The visual data-based motor rehabilitation monitoring area is located behind the rehabilitation management office area. The limb rehabilitation area is located side by side with the rehabilitation management office area and the visual data-based motor rehabilitation monitoring area to the left rear of the driver's cabin. The musculoskeletal swallowing rehabilitation area is located behind the visual data-based motor rehabilitation monitoring area and the limb rehabilitation area. The comprehensive rehabilitation screening area is located behind the musculoskeletal swallowing rehabilitation area. The medical vehicle is also equipped with an onboard 5G router and a hydraulic support system.
2. The 5G intelligent rehabilitation medical vehicle according to claim 1, characterized in that: The rehabilitation management office area is equipped with office chairs, desks, laptops, and a centralized management workstation. The desk is positioned close to the right side wall of the vehicle, with two office chairs on the left side of the desk. The centralized management workstation is located behind the desk, and the laptop is placed on the desk.
3. The 5G intelligent rehabilitation medical vehicle according to claim 1, characterized in that: The limb rehabilitation area is equipped with a first partition wall, a four-limb linkage rehabilitation training device, an upper and lower limb active and passive training device, a chair, and a wall-mounted water dispenser. The first partition wall separates the cockpit from the limb rehabilitation area. A wall-mounted water dispenser is installed on the first partition wall. Behind the first partition wall, from front to back, are a seat, a four-limb linkage rehabilitation training device, a seat, and an upper and lower limb active and passive training device.
4. A 5G intelligent rehabilitation medical vehicle according to claim 1, characterized in that: The visualized data sports rehabilitation monitoring area is equipped with sports rehabilitation testing devices and a large visualized data screen; both the sports rehabilitation monitoring devices and the large visualized data screen are located on the right side wall of the vehicle body.
5. A 5G intelligent rehabilitation medical vehicle according to claim 1, characterized in that: On the right side of the musculoskeletal swallowing rehabilitation area, from front to back, there is a #1 fixed table, a chair, an infrared light moxibustion machine, an ultra-shortwave therapy machine, a chair, and a low-temperature shock analgesia device. Above the #1 fixed table, from front to back, there is an extracorporeal shock wave therapy device and a swallowing nerve and muscle electrical stimulator. Below the #1 fixed table, there is a computer-controlled intermediate frequency therapy device and a magnetic resonance thermal therapy device. Chairs are located to the left of the infrared light moxibustion machine and the ultra-shortwave therapy machine, respectively. On the left side of the musculoskeletal swallowing rehabilitation area, from front to back, there are a chair, a #2 fixed table, a chair, and a laser magnetic field physiotherapy device; above the #2 fixed table, from front to back, there are a three-dimensional dynamic interference electrotherapy device and a myoelectric biofeedback stimulator, and below the #2 fixed table, there is a neuromuscular low-frequency electrical stimulator.
6. A 5G intelligent rehabilitation medical vehicle according to claim 1, characterized in that: The comprehensive rehabilitation screening area is equipped with sleep apnea event and electrocardiogram and blood pressure screening equipment, deep muscle stimulator, examination bed, chair, cabinet, fixed table #3, and partition curtains; The partition curtains separate the comprehensive rehabilitation screening area from the musculoskeletal swallowing rehabilitation area. The sleep breathing event and electrocardiogram and blood pressure screening equipment, as well as the deep muscle stimulator, are all set on the fixed table in No.
3.
7. A 5G intelligent rehabilitation medical vehicle according to claim 3, characterized in that: The medical vehicle also includes a central door, which is located in the limb rehabilitation area and between the four-limb linkage rehabilitation training device and the upper and lower limb active and passive rehabilitation training device; an auxiliary lifting platform is also installed outside the central door.
8. A 5G intelligent rehabilitation medical vehicle according to claim 1, characterized in that: The medical vehicle is equipped with a hydraulic support system to stabilize the vehicle body when medical services are parked.
9. A 5G intelligent rehabilitation medical vehicle according to claim 4, characterized in that: The sports rehabilitation testing device and the large visual data screen are connected to the vehicle's 5G router; The vehicle-mounted 5G router transmits data to the cloud platform via the 5G network.
10. A 5G intelligent rehabilitation medical vehicle according to claim 1, characterized in that: The medical vehicle is also equipped with a touch screen operating device, a disinfection system, an uninterruptible power supply system, and a video monitoring system to assist medical personnel in operating the medical vehicle.