Microwave physiotherapy device for rehabilitation treatment

By designing a ring generator and a temperature monitoring system, combined with a directional flow channel and a converging guide, the problems of microwave radiation dispersion and energy loss in existing microwave physiotherapy devices have been solved. This has enabled the concentrated guidance of microwave energy and real-time temperature control, improving the accuracy and safety of treatment and adapting to the treatment needs of different body parts and body types.

CN121197680APending Publication Date: 2025-12-26广州医科大学附属清远医院(清远市人民医院)
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511630181.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-09
Publication Date
2025-12-26

AI Technical Summary

Technical Problem

Existing microwave therapy devices suffer from problems such as scattered microwave radiation, high energy loss, and excessive heat generation, which increases the heat dissipation burden on the device. Furthermore, they have limited adaptability and cannot meet the treatment needs of different body parts and body types.

Method used

The device employs a ring generator design, combined with a directional flow channel and a converging guide to improve the concentration and precision of microwave energy; it is equipped with a temperature sensor and processor for real-time temperature monitoring and dynamic adjustment of microwave output power; it features an adjustable positioning frame and patch to adapt to different body parts and body shapes; and it uses a flexible band to fix the patient's position to ensure treatment stability.

Benefits of technology

It improves the utilization rate of microwave energy, shortens the treatment cycle, enhances the treatment effect and safety, expands the scope of application, enhances the adaptability and comfort of treatment, and ensures the accuracy and stability of treatment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121197680A_ABST
    Figure CN121197680A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of electromagnetic rehabilitation equipment, and particularly discloses a microwave physiotherapy device for rehabilitation therapy, which comprises a controller, a microwave generator is arranged at the center below the controller, a positioning frame is arranged on one side below the controller, the microwave generator comprises a connecting ring, and the connecting ring is arranged at the center below the controller. A plurality of cooling fins are arranged on the outer surface of the end, close to the controller, of the connecting ring in an array mode, an annular generator is arranged on the inner wall of the end, close to the controller, of the connecting ring, a directional flow guide groove is formed in the outer surface of the connecting ring, and a flow cutoff protruding piece is arranged in the directional flow guide groove and penetrates through the connecting ring to be arranged below the annular generator. And the annular generator is matched with the cutoff lug, so that the microwaves can be reasonably cut off and guided, energy waste caused by internal disordered reflection is avoided, and the annular generator can also cooperate with the directional diversion trench, so that the microwaves are accurately transmitted to the emission head along a preset path.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of electromagnetic rehabilitation equipment, and more particularly to a microwave physiotherapy device for rehabilitation treatment. Background Technology

[0002] Microwave therapy is a physical therapy method that uses the thermal and non-thermal effects of microwaves to treat diseased areas of the human body. It is widely used in the rehabilitation treatment of musculoskeletal diseases (such as arthritis and lumbar muscle strain), nervous system diseases (such as neuralgia), and soft tissue injuries.

[0003] Currently, most microwave generators in existing microwave therapy devices use inline generators. However, inline generators often suffer from problems such as excessively dispersed microwave radiation, excessive energy loss, and low utilization rate. Furthermore, inline coils have relatively high resistance, which can easily generate more extra heat during operation, increasing the heat dissipation burden on the device.

[0004] To address the aforementioned issues, we propose a microwave physiotherapy device for rehabilitation treatment. Summary of the Invention

[0005] The purpose of this invention is to provide a microwave physiotherapy device for rehabilitation treatment, aiming to solve the technical problems in the prior art.

[0006] To achieve the above objectives, the present invention employs a microwave physiotherapy device for rehabilitation treatment, comprising a controller, a microwave generator disposed at the lower center of the controller, a positioning frame disposed on one side of the lower part of the controller, and the positioning frame disposed on the microwave generator, the microwave generator comprising a connecting ring disposed at the lower center of the controller, a plurality of heat dissipation fins arrayed on the outer surface of the connecting ring near the controller, a ring generator disposed on the inner wall of the connecting ring near the controller, a directional flow guide groove disposed on the outer surface of the connecting ring, a flow interruption protrusion disposed inside the directional flow guide groove, and the directional flow guide groove being disposed below the heat dissipation fins, the flow interruption protrusion penetrating the connecting ring and disposed below the ring generator, a protective shell disposed at the inner center of the connecting ring, a telescopic seat disposed below the center of the protective shell, and a transmitter head disposed at the lower center of the telescopic seat.

[0007] The microwave generator includes a housing, which is disposed on the inner wall of the connecting ring near the controller. A groove is provided on the side of the housing near the interruption protrusion, and the groove is also disposed on the outer surface of the interruption protrusion. A heat dissipation top hole is provided on the top of the housing. A magnetron is disposed on the inner wall of the housing. A transmission tube is disposed on the side of the housing away from the groove, and a polymerization guide is disposed on the side of the transmission tube away from the housing.

[0008] The controller includes a body positioning device on one side, and the body positioning controller includes a belt body. The belt body is located on one side of the controller, and a locking device is located on the side of the controller away from the belt body. A tension button is located above the locking device, and a buckle is located at the end of the belt body away from the controller. A fixing groove is located inside the buckle.

[0009] The controller includes a motherboard, a display screen is mounted on top of the motherboard, and control buttons are mounted on one side of the top of the motherboard.

[0010] The motherboard has a processor located below it, a power cord located on one side of the processor, a temperature display screen located on the side of the processor away from the power cord, and a warning light located below the temperature display screen.

[0011] An auxiliary patch is provided on one side of the lower part of the controller. The auxiliary patch includes a transmission line, which is located on one side of the positioning frame.

[0012] The transmission line is provided with a fixing frame at the end away from the controller, and a replacement frame is provided on one side of the fixing frame.

[0013] A temperature sensor is located below the replacement frame, and an extension connector is located below the temperature sensor.

[0014] An extension patch is provided below the extension connector.

[0015] The positioning frame includes an extension support rod, a cutting board is provided below the extension support rod, and a cutting and pasting layer is provided below the cutting board.

[0016] Beneficial effects: 1. An invention of a microwave physiotherapy device for rehabilitation treatment, wherein the ring coil of the ring generator is designed to concentrate the generated microwave energy in a more focused direction. Combined with the microwave generator’s aggregator and transmission tube, the microwaves can be precisely guided to the transmitter head, so that more energy can be applied to the affected area. Whether it is for the treatment of arthritis or lumbar muscle strain, the affected area can receive sufficient and effective energy, improve the treatment effect, and shorten the treatment cycle that may be prolonged due to energy loss.

[0017] 2. The present invention provides a microwave physiotherapy device for rehabilitation treatment. The auxiliary patch is equipped with a temperature sensor that can collect the temperature of the treatment area in real time. The data is fed back to the processor in the controller via a transmission line. After rapid analysis based on preset parameters, the processor can dynamically adjust the output power of the microwave generator. When the temperature is too high, the processor can promptly reduce the power to avoid burns; when the temperature is too low, it can increase the power to ensure the therapeutic effect. Furthermore, the temperature display screen can display the data in real time, and the warning light promptly alerts the user when the temperature is abnormal, forming a complete temperature monitoring closed loop. This not only avoids the safety risks caused by temperature runaway but also ensures that the affected area is always within the optimal treatment temperature range, significantly improving the safety and effectiveness of rehabilitation treatment.

[0018] 3. This invention provides a microwave physiotherapy device for rehabilitation treatment. The cutting plate and cutting adhesive layer below the positioning frame can be flexibly cut according to the shape of the treatment area, closely adhering to the skin to ensure precise microwave radiation targeting the affected area. The extended auxiliary patch can be flexibly extended via an extension connector to adapt to treatment areas of different sizes. The replacement frame allows for easy patch replacement, meeting the needs of multiple uses or treatment of different areas. Simultaneously, the telescopic base of the microwave generator allows adjustment of the transmitter head height, and the directional guide groove and flow-interrupting protrusion optimize the microwave transmission direction, further improving radiation accuracy. This allows it to adapt to different areas such as muscles and joints, as well as the treatment needs of patients of different body types, breaking the limitation of traditional devices with limited adaptability and expanding the device's applicability.

[0019] 4. This invention provides a microwave physiotherapy device for rehabilitation treatment. The body of the postural fixation device engages with a buckle and a locking device to quickly fix the patient's position. A tension button adjusts the tightness of the strap to prevent excessive tightness from compressing the skin or excessive looseness from causing positional shifts. The strap is made of soft material, which will not cause discomfort to the patient. It effectively prevents patient positional shifts during treatment, ensuring treatment stability and allowing the patient to maintain a comfortable position during treatment, reducing discomfort and optimizing the overall rehabilitation treatment experience. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0022] Figure 2 This is a top view of the entire invention.

[0023] Figure 3This is a front view of the entire invention.

[0024] Figure 4 This is a front view of the microwave generator of the present invention.

[0025] Figure 5 This is a bottom view of the microwave generator of the present invention.

[0026] Figure 6 This is a schematic diagram of the structure of the auxiliary patch of the present invention.

[0027] Figure 7 This is a top view of the ring generator of the present invention.

[0028] Figure 8 This is the present invention. Figure 7 A cross-sectional view of the AA line structure.

[0029] 1-Controller, 11-Main board, 12-Display screen, 13-Control button, 14-Processor, 15-Temperature display screen, 16-Warning light, 17-Handle, 18-Power cord, 2-Positioning restraint, 21-Strap body, 22-Snap fastener, 23-Fixing groove, 24-Clamping device, 25-Tightness control, 3-Microwave generator, 31-Connecting ring, 32-Heat sink, 33-Ring generator, 331-Housing shell, 332-Groove, 33 3-Magnetron, 334-Heat dissipation top hole, 335-Transmission pipe, 336-Polymerization guide, 34-Directional guide channel, 35-Flow interruption protrusion, 36-Protective shell, 37-Telescopic seat, 38-Emitter head, 4-Auxiliary patch, 41-Transmission line, 42-Fixing frame, 43-Replacement frame, 44-Temperature sensor, 45-Extension connector, 46-Extended patch, 5-Positioning frame, 51-Extension support rod, 52-Cut patch, 53-Cut adhesive layer. Detailed Implementation

[0030] Please see Figures 1-6 , Figure 1 This is a schematic diagram of the overall structure of the invention. Figure 2 This is a top view of the entire invention. Figure 3 This is a front view of the entire invention. Figure 4 This is a front view of the microwave generator 3 described in this invention. Figure 5 This is a bottom view of the microwave generator 3 described in this invention. Figure 6 This is a schematic diagram of the structure of the auxiliary patch 4 described in this invention. Figure 7 This is a top view of the ring generator 33 described in this invention. Figure 8 This is the present invention. Figure 7The present invention provides a microwave physiotherapy device for rehabilitation treatment, comprising a controller 1, a microwave generator 3 disposed at the lower center of the controller 1, a positioning frame 5 disposed on one side below the controller 1, and the positioning frame 5 disposed on the microwave generator 3. The microwave generator 3 includes a connecting ring 31 disposed at the lower center of the controller 1, and a plurality of heat dissipation fins 32 arrayed on the outer surface of the end of the connecting ring 31 near the controller 1. The inner wall of one end of the device 1 is provided with the annular generator 33, the outer surface of the connecting ring 31 is provided with the directional flow guide groove 34, the inside of the directional flow guide groove 34 is provided with the flow interruption protrusion 35, and the directional flow guide groove 34 is located below the heat dissipation fins 32. The flow interruption protrusion 35 passes through the connecting ring 31 and is located below the annular generator 33. The protective shell 36 is provided at the center of the inside of the connecting ring 31, the telescopic seat 37 is provided below the center of the protective shell 36, and the transmitter head 38 is provided at the center below the telescopic seat 37.

[0031] In this embodiment, the microwave generator 3 is fixedly installed at the center below the controller 1, with the controller 1 as the base support. A positioning frame 5 is also mounted on one side below the controller 1, and the positioning frame 5 surrounds the microwave generator 3 to provide auxiliary positioning. The microwave generator 3 includes a connecting ring 31, which is fixed to the center below the controller 1 with bolts to ensure stable installation. Several heat dissipation fins 32 are welded in an array on the outer surface of the connecting ring 31 near the controller 1, with uniform spacing between adjacent fins for efficient heat conduction. The annular generator 33 is fixed to the inner wall of the connecting ring 31 near the controller 1 with clips to ensure its stable position. A directional flow guide groove 34 is formed on the outer surface of the connecting ring 31, located below the heat dissipation fins 32, and integrally formed with a flow-blocking protrusion 35. The flow-blocking protrusion 35 extends through the connecting ring 31 to below the annular generator 33, guiding the microwaves. The protective shell 36 is installed at the center of the connecting ring 31. The protective shell 36 is made of high-temperature resistant insulating material. A telescopic seat 37 is connected to its center via a slide rail. The telescopic seat 37 can slide up and down along the slide rail. The transmitter head 38 is threadedly connected to the center of the lower part of the telescopic seat 37. The transmitter head 38 is used to emit microwaves outwards. During operation, the ring generator 33 generates microwaves, which are guided by the directional guide groove 34 and the flow-breaking protrusion 35. The height of the transmitter head 38 is adjusted by the telescopic seat 37, allowing the microwaves to precisely act on the lesion site. The heat dissipation fins 32 simultaneously dissipate the heat generated by the ring generator 33.

[0032] Furthermore, the microwave generator 3 includes a housing 331, which is disposed on the inner wall of the connecting ring 31 near the controller 1. A groove 332 is provided on the side of the housing 331 near the interruption protrusion 35. The groove 332 is also disposed on the outer surface of the interruption protrusion 35. A heat dissipation top hole 334 is provided on the top of the housing 331. A magnetron 333 is disposed on the inner wall of the housing 331. A transmission tube 335 is disposed on the side of the housing 331 away from the groove 332. A polymerization guide 336 is disposed on the side of the transmission tube 335 away from the housing 331.

[0033] In this embodiment, the microwave generator 3 further includes a housing 331. The housing 331 is fixed to the inner wall of the connecting ring 31 near the controller 1 by screws. The housing 331 has a groove 332 on the side near the interruption protrusion 35, and the outer surface of the interruption protrusion 35 also has a corresponding groove 332. The two fit together to enhance connection stability. The magnetron 333 is fixed to the inner wall of the housing 331 by a bracket. The magnetron 333 provides the core energy for microwave generation. The side of the housing 331 away from the groove 332 is connected to the transmission pipe 335 by a flange. The end of the transmission pipe 335 away from the housing 331 is also connected to the aggregation guide 336 by a flange. The aggregation guide 336 adopts a parabolic structure. During operation, the magnetron 333 generates microwave energy, which is transmitted to the converging guide 336 via the transmission tube 335. The converging guide 336 converges the dispersed microwaves and guides them to the transmitting head 38. The groove 332 on the outer shell 331 engages with the interrupting protrusion 35, reducing microwave leakage at the connection between the outer shell 331 and the interrupting protrusion 35. Simultaneously, the outer shell 331 protects the magnetron 333, preventing external factors from affecting its operation. The magnetron 333 serves as... The high-efficiency microwave generating element, in conjunction with the aggregation guide 336, can further enhance the concentration of microwave energy. Compared with traditional inline generators, it can provide more sufficient microwave energy to the lesion site, shortening the treatment time. It is especially suitable for the treatment of diseases such as lumbar muscle strain and arthritis that require strong microwave energy. The protective function of the outer shell 331 and the fitting design of the groove 332 not only protect the core component, the magnetron 333, reducing the probability of failure, but also reduce microwave leakage, improve treatment safety, and avoid microwaves affecting surrounding healthy tissues.

[0034] Furthermore, the body position fixation device 2 is provided on one side of the controller 1. The body position fixation device 2 includes the belt body 21, which is located on one side of the controller 1. The locking device 24 is provided on the side of the controller 1 away from the belt body 21. The tension control 25 is provided above the locking device 24. The buckle 22 is provided at the end of the belt body 21 away from the controller 1. The fixing groove 23 is provided inside the buckle 22.

[0035] In this embodiment, the body positioning device 2 includes a strap 21 made of elastic and breathable material. One end of the strap 21 is sewn to one side of the controller 1. The locking device 24 is welded to the side of the controller 1 away from the strap 21. A tension control 25 is installed above the locking device 24 and is connected to an adjustment mechanism inside the locking device 24. A buckle 22 is sewn to the end of the strap 21 away from the controller 1. The buckle 22 has a fixing groove 23 inside, which matches the protrusion inside the locking device 24. In use, the strap 21 is wrapped around the patient's treatment area, such as the legs or waist. The buckle 22 is inserted into the locking device 24. The protrusion inside the locking device 24 embeds into the fixing groove 23 of the buckle 22 for initial fixation. The tension of the strap 21 is then adjusted by operating the tension control 25 until the patient feels comfortable and the position is stable, solving the problem of easy changes in patient position in traditional treatments. The elastic and breathable band 21 fixes the patient's position without compressing the skin, ensuring comfort during treatment and preventing skin discomfort caused by the band 21 being non-breathable.

[0036] Furthermore, the controller 1 includes the motherboard 11, the display screen 12 is disposed on the top of the motherboard 11, and the control button 13 is disposed on one side of the top of the motherboard 11.

[0037] In this embodiment, pressing the power button on the control button 13 starts the device. Treatment parameters are set using the power adjustment button and time setting button on the control button 13. These parameters are displayed in real-time on the display screen 12, allowing medical staff to intuitively adjust the parameters according to the patient's condition. This convenient operation enhances the device's usability. The touch-screen LCD display screen 12 clearly displays all parameters, enabling medical staff to quickly understand the device's operating status and avoiding operational errors caused by unclear parameter displays. The control buttons 13 are logically laid out and have clearly defined functions, allowing medical staff to operate them proficiently without complex training, thus lowering the barrier to entry.

[0038] Furthermore, the processor 14 is disposed below the motherboard 11, the power cord 18 is disposed on one side of the processor 14, the temperature display screen 15 is disposed on the side of the processor 14 away from the power cord 18, and the warning light 16 is disposed below the temperature display screen 15.

[0039] In this embodiment, during operation, the processor 14 receives temperature data of the treatment site transmitted by the temperature sensor 44, analyzes and processes it, and then sends the temperature information to the temperature display screen 15 for display. When the temperature exceeds a preset safety threshold, the processor 14 controls the warning light 16 to emit a red light alarm; when the temperature is within the normal range, the warning light 16 displays a green light. Simultaneously, the processor 14 can adjust the power of the microwave generator 3 according to the temperature data, thus constructing a comprehensive temperature monitoring and safety early warning system. As the core control unit, the processor 14 can quickly process temperature data, achieving real-time monitoring and dynamic adjustment of the treatment temperature, avoiding skin burns due to excessively high temperatures or adverse treatment effects due to excessively low temperatures. The temperature display screen 15 allows medical staff and patients to intuitively understand the temperature of the treatment site, enhancing the transparency of the treatment process. The dual-color alarm function of the warning light 16 can promptly remind medical staff to take measures when the temperature is abnormal, improving treatment safety, especially suitable for the rehabilitation treatment of elderly patients or children with high skin sensitivity.

[0040] Furthermore, an auxiliary patch 4 is also provided on the lower side of the controller 1. The auxiliary patch 4 includes the transmission line 41, which is disposed on one side of the positioning frame 5.

[0041] In this embodiment, the transmission line 41 connects to the controller 1, enabling supplementary coverage of the treatment area of ​​the microwave generator 3. This is particularly suitable for cases where the lesion area is large or irregularly shaped, such as large-area soft tissue injuries. The transmission line 41 is fixed to one side of the positioning frame 5 to prevent tangling or pulling, ensuring the smoothness of the treatment process. Simultaneously, the stable connection of the transmission line 41 ensures efficient signal and energy transmission, preventing poor auxiliary treatment effects due to connection problems with the transmission line 41, and improving the overall comprehensiveness of the device's treatment.

[0042] Furthermore, the end of the transmission line 41 away from the controller 1 is provided with the fixing frame 42, and the replacement frame 43 is provided on one side of the fixing frame 42.

[0043] In this embodiment, the connection design between the changing frame 43 and the fixing frame 42 allows medical staff to complete patch replacement in a short time, saving treatment interval time and improving treatment efficiency. Simultaneously, appropriate auxiliary patches can be replaced according to different treatment sites or stages of treatment, such as replacing curved patches for joint areas and flat patches for flat areas, improving the device's adaptability. Furthermore, the detachable design of the changing frame 43 facilitates cleaning or disposal of used patches, ensuring treatment hygiene and reducing the risk of cross-infection.

[0044] Furthermore, the temperature sensor 44 is disposed below the replacement rack 43, and the extension joint 45 is disposed below the temperature sensor 44.

[0045] In this embodiment, the temperature sensor 44 provides a direct and accurate data source for monitoring treatment temperature. The contact-type temperature sensor 44 ensures that the collected temperature data matches the actual temperature of the treatment site, avoiding measurement errors caused by distance or environmental factors associated with non-contact sensors. The extension connector 45 protects the wires connecting the temperature sensor 44, preventing damage from bending or pulling and extending their lifespan. Accurate temperature data allows the processor 14 to more precisely adjust the power of the microwave generator 3, ensuring the treatment site is always within the optimal temperature range, thus improving treatment effectiveness and safety.

[0046] Furthermore, the extension patch 46 is provided below the extension connector 45.

[0047] In this embodiment, the extension patch 46 is connected to the lower part of the extension connector 45 via Velcro. The extension patch 46 is made of flexible conductive material and can be cut to fit the size of the treatment area. Its length can be flexibly adjusted as needed. In use, when the treatment area is long (such as leg muscle strain), the extension patch 46 can be attached to the extension connector 45 to extend the coverage length of the auxiliary patch 4 and ensure complete coverage of the lesion area. If the treatment area is short, the extension patch 46 can be cut to a suitable length. The flexibility and cuttable nature of the extension patch 46 allow the auxiliary patch 4 to adapt to treatment areas of different lengths and shapes, breaking the limitation of poor adaptability of traditional fixed-size patches. For example, for patients with large-area muscle injuries from the knee to the calf, full coverage treatment can be achieved through the extension patch 46.

[0048] Furthermore, the positioning frame 5 includes the extension support rod 51, the cutting and pasting plate 52 is disposed below the extension support rod 51, and the cutting and pasting layer 53 is disposed below the cutting and pasting plate 52.

[0049] In this embodiment, the cutting plate 52 is made of a thin, flexible plastic sheet. Medical-grade adhesive is applied to the underside of the cutting plate 52 to form the cutting and pasting layer 53. During use, the cutting plate 52 is cut with scissors according to the shape and size of the patient's treatment area to match the shape of the surrounding skin. The cut cutting and pasting layer 53 is then pasted onto the skin surface to fix the positioning frame 5, thereby fixing the position of the microwave generator 3. The design of the cutting plate 52 and the cutting and pasting layer 53 allows the positioning frame 5 to fit tightly against skin surfaces of different shapes, providing a more stable fixation and preventing displacement of the positioning frame 5 during treatment. The medical-grade adhesive cutting and pasting layer 53 is safe and non-toxic, will not irritate the skin, and the application and removal process is gentle, improving patient comfort. Simultaneously, it ensures that the microwave generator 3 is always aligned with the lesion site, guaranteeing treatment accuracy.

[0050] The above description discloses only one preferred embodiment of the present invention, and should not be construed as limiting the scope of the present invention. Those skilled in the art will understand that all or part of the processes of the above embodiments can be implemented, and equivalent changes made in accordance with the claims of the present invention are still within the scope of the invention.

Claims

1. A microwave physiotherapy device for rehabilitation treatment, characterized in that it comprises a controller, a microwave generator arranged below the center of the controller, a positioning frame arranged below one side of the controller and the positioning frame is arranged below the microwave generator, the microwave generator comprises a connecting ring arranged below the center of the controller, a plurality of heat dissipation fins arranged on the outer surface of one end of the connecting ring close to the controller, a ring-shaped generator arranged on the inner wall of one end of the connecting ring close to the controller, a directional flow guide groove arranged on the outer surface of the connecting ring, a flow interruption tab arranged inside the directional flow guide groove, the directional flow guide groove is arranged below the heat dissipation fins, the flow interruption tab penetrates through the connecting ring and is arranged below the ring-shaped generator, a protective shell arranged in the inner center of the connecting ring, a telescopic seat arranged below the center of the protective shell, and a transmitting head arranged in the lower center of the telescopic seat.

2. The microwave physiotherapy device for rehabilitation treatment according to claim 1, characterized in that the microwave generator comprises a shell arranged on the inner wall of one end of the connecting ring close to the controller, a groove arranged on one side of the shell close to the flow interruption tab, the groove is also arranged on the outer surface of the flow interruption tab, a heat dissipation top hole arranged above the shell, a magnetron arranged on the inner wall of the shell, a transmission tube arranged on one side of the shell away from the groove, and a polymer guide arranged on one side of the transmission tube away from the shell.

3. The microwave physiotherapy device for rehabilitation treatment according to claim 1, characterized in that one side of the controller is provided with a body position fixer, the body position controller comprises a belt arranged on one side of the controller, a clasp arranged on one side of the controller away from the belt, a loose button arranged above the clasp, a buckle arranged on one end of the belt away from the controller, and a fixing groove arranged in the inner part of the buckle.

4. The microwave physiotherapy device for rehabilitation treatment according to claim 3, characterized in that the controller comprises a mainboard, a display screen arranged above the mainboard, and a control button arranged on one side of the mainboard above.

5. The microwave physiotherapy device for rehabilitation treatment according to claim 4, characterized in that a processor is arranged below the mainboard, a power line is arranged on one side of the processor, a temperature display screen is arranged on one side of the processor away from the power line, and a warning light is arranged below the temperature display screen.

6. The microwave physiotherapy device for rehabilitation treatment according to claim 1, characterized in that one side below the controller is further provided with an auxiliary patch, the auxiliary patch comprises a transmission line arranged on one side of the positioning frame.

7. The microwave physiotherapy device for rehabilitation treatment according to claim 6, characterized in that the transmission line is provided with a fixing frame on one end away from the controller, and the fixing frame is provided with a replacement frame on one side.

8. The microwave physiotherapy device for rehabilitation treatment according to claim 7, characterized in that ​ ​ ​ ​ ​ ​ ​ The lower part of the replacement frame is provided with a temperature sensor, and the lower part of the temperature sensor is provided with an extension joint.

9. The microwave physiotherapy device for rehabilitation treatment according to claim 8, wherein, The lower part of the extension joint is provided with an extended patch.

10. The microwave physiotherapy device for rehabilitation treatment according to claim 1, wherein, The positioning frame comprises an extension support rod, the lower part of the extension support rod is provided with a cutting patch, and the lower part of the cutting patch is provided with a cutting and sticking layer.