Support of transcranial magnetic stimulation therapeutic apparatus

By designing components such as an anti-tilt bracket, a box-type bracket, and a cable management box, the problems of stability, cable management, and display screen lifting of the transcranial magnetic stimulation therapy instrument bracket were solved. This enabled stable placement of the instrument, orderly cable management, and flexible use of the display screen, thereby improving the safety and operational efficiency of the treatment.

CN224139243UActive Publication Date: 2026-04-17SHANTOU CENT HOSPITAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANTOU CENT HOSPITAL
Filing Date
2025-04-18
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing transcranial magnetic stimulation (TMS) therapy devices suffer from problems such as swaying or tipping over during use, tangled wires, and inflexible height and storage of display components, which affect treatment effectiveness and operational efficiency.

Method used

A support structure was designed, including an anti-tilt bracket, a box-type bracket, a cable management box, and a lifting platform. Through components such as anti-tilt telescopic plates, self-locking wheels, clamping and positioning wheels, and elastic lifting wheels, the instrument can be stably placed, the cables can be managed in an orderly manner, and the display screen can be raised and lowered flexibly.

Benefits of technology

It effectively prevents the stent from shaking and tipping over, ensures the stability of the instrument, reduces the risk of wire tangling and knotting, improves the convenience of operation and space utilization, and ensures the smooth progress and safety of treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a support of a transcranial magnetic stimulation therapeutic apparatus, which comprises an anti-inclination support seat, a box-type support capable of enabling the transcranial magnetic stimulation therapeutic apparatus to rotate in all directions in use is arranged at the end part of the anti-inclination support seat through a rotating shaft rod, and an apparatus main body is fixed at the bottom end in the box-type support. Due to the design of the anti-tilting support seat, the anti-tilting telescopic plate can stretch out through the movable cavities formed in the two side faces of the anti-tilting support seat, and the connected anti-tilting vertical rods and the embedded balls can effectively prevent the support from shaking and tipping over when the ground is uneven or encounters external force. By matching with the self-locking wheels and the stable supporting blocks at the bottom, it is guaranteed that the instrument is stably placed in the treatment process, smooth treatment is greatly guaranteed, accidental injury to a patient due to instability of the support is avoided, and the treatment safety is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of medical equipment technology, specifically relating to a support for a transcranial magnetic stimulation therapy device. Background Technology

[0002] In the field of medical equipment, transcranial magnetic stimulation (TMS) devices play a vital role in the treatment and rehabilitation of neurological diseases. However, existing TMS device supports have revealed numerous problems in practical use. Firstly, if the device shakes or tipps during treatment, it can not only affect the treatment outcome but also potentially cause accidental injury to the patient. For example, traditional supports struggle to maintain stability on uneven surfaces or when subjected to minor impacts, leading to treatment interruptions and delays in patient care. Secondly, existing supports also exhibit significant deficiencies in wire management and display operation. The wires are often tangled and easily become knotted, affecting the normal use of the device and increasing the difficulty and time cost for medical staff. Furthermore, the display components are typically not easily retractable or heightened, occupying excessive space when not in use. Utility Model Content

[0003] The purpose of this invention is to provide a support for a transcranial magnetic stimulation therapy device to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a support for a transcranial magnetic stimulation therapy device, comprising:

[0005] The anti-tilting support base has a box-type support at its end via a pivot rod, which allows the transcranial magnetic stimulation therapy device to rotate in all directions during use. The bottom of the box-type support is fixed with the main body of the device. The upper vertical end of the main body of the device is electrically raised and lowered with a lifting support for raising and lowering the display components of the device. The lifting support is provided with a lifting groove at the position of the top of the inner side of the box-type support.

[0006] The outer side of the box-type bracket is provided with a cable management box for winding and organizing the wires of the instrument body and for extending and retracting the wires. Inside the cable management box are clamping and positioning wheels for clamping and positioning one end of the wire bundle without rotating, elastic lifting wheels for raising and lowering the wires into the cable management box, and clamping guide wheels for positioning and guiding the wires when they are pulled out.

[0007] Preferably, the clamping and positioning wheel includes two vertically arranged wheel bodies, which are fixedly installed on one side wall at the bottom of the inner side of the cable storage box. The two wheel bodies clamp and fix the starting end of the instrument body that leads out and penetrates into the inside of the cable storage box.

[0008] Preferably, guide rods are vertically provided on both the front and rear inner walls of the cable management box, and the guide rods are slidably provided with guide blocks fixed to the two outer sides of the elastic lifting wheel bracket.

[0009] Preferably, the guide block is connected to an elastic element sleeved on the outside of the guide rod, and the top of the elastic element is fixed to the top of the inside of the cable storage box. The elastic lifting wheel allows the cable to move through the two wheels it contains. The clamping guide wheel is set at the end opposite to the clamping positioning wheel to guide the cable during its extension and retraction.

[0010] Preferably, the lifting platform is equipped with a display screen with an operation keyboard at its end, and vertical guide rods are movably inserted through both ends of the lifting platform. The upper ends of the vertical guide rods are fixed to both sides of the top of the box-type bracket, and the lower ends of the vertical guide rods are fixed to the support blocks provided on the two side walls of the bottom of the box-type bracket.

[0011] Preferably, the bottom of the lifting support is provided with lifting cylinders on both sides, and the bottom of the lifting cylinders is fixed to the upper surface of the support block. The top of the display screen at the end of the lifting support is provided with a lifting guard plate that covers the lifting groove at the top of the box bracket.

[0012] Preferably, the anti-tilt bracket has movable cavities on both sides, and anti-tilt telescopic plates are telescopically installed in the movable cavities. One end of the anti-tilt telescopic plate is vertically fixed with an anti-tilt vertical rod that is set on both sides of the outside of the anti-tilt bracket and has movable embedded ball bearings at one end.

[0013] Preferably, the anti-tilt bracket is provided with self-locking wheels on both sides of the bottom, and a stabilizing support block is provided at the lower end of the anti-tilt bracket. A controller is installed on the outer side of the box-type bracket.

[0014] Compared with the prior art, the technical effects and advantages of this utility model are as follows: the support of the transcranial magnetic stimulation therapy device...

[0015] The anti-tilt support design in this utility model features movable cavities on both sides that allow the anti-tilt telescopic plate to extend. The connected anti-tilt vertical rod and embedded ball bearings effectively prevent the support from swaying or tipping over when the ground is uneven or encounters external forces. Combined with the self-locking wheels and stabilizing support blocks at the bottom, this ensures the instrument is stably placed during treatment, greatly guaranteeing the smooth progress of the treatment, avoiding accidental injury to the patient due to support instability, and improving the safety of the treatment.

[0016] The cable management box solves the problem of messy cables. Clamping and positioning wheels secure the starting end of the cable, while elastic lifting wheels move along the guide rod as the cable extends and retracts, automatically raising and lowering the cable for storage. The clamping guide wheels guide the cable when it is pulled out for use, preventing tangling and knots, reducing the difficulty of operation for medical staff, saving operation time, and ensuring the normal use of the instrument.

[0017] The lifting platform at the top of the instrument body is electrically raised and lowered via a lifting cylinder, and its end features a display screen with an operation keyboard that can be flexibly raised and lowered for storage. When not in use, the display screen can be lowered into a box-type bracket and covered by a lifting guard plate within the lifting slot, saving space. When needed, the height can be easily adjusted to adapt to different patients and usage scenarios, improving the instrument's practicality and ease of operation. Attached Figure Description

[0018] Figure 1 This is a front view of the box-type support frame of the transcranial magnetic stimulation therapy instrument of this utility model;

[0019] Figure 2 This is a diagram showing the working state of the box-type support frame of the transcranial magnetic stimulation therapy instrument of this utility model;

[0020] Figure 3 This is a front view of the elastic telescopic wheel of this utility model;

[0021] Figure 4 This is a top view of the cable management box of this utility model;

[0022] Figure 5 This is a bottom view of the stabilizing support block of this utility model.

[0023] In the diagram: 1. Anti-tilt bracket; 2. Rotary shaft; 3. Box-type bracket; 4. Instrument body; 5. Lifting platform; 6. Cable management box; 7. Clamping positioning wheel; 8. Elastic lifting wheel; 9. Clamping guide wheel; 10. Guide rod; 11. Guide block; 12. Elastic component; 13. Display screen; 14. Vertical guide rod; 15. Lifting cylinder; 16. Lifting through slot; 17. Lifting guard plate; 18. Movable cavity; 19. Anti-tilt telescopic plate; 20. Anti-tilt vertical rod; 21. Self-locking wheel; 22. Stabilizing support block. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Please see Figure 1-5 This utility model provides a technical solution: a support for a transcranial magnetic stimulation therapy device, comprising:

[0026] The anti-tilt bracket 1 has self-locking wheels 21 installed on both sides of its bottom for easy movement; a stabilizing support block 22 is provided at the lower end to enhance placement stability. Movable cavities 18 are opened on both sides, and these cavities are slidably connected to the anti-tilt telescopic plate 19. The end is rotatably connected to a box-type bracket 3 via a rotating shaft 2. The end of the anti-tilt bracket 1 is equipped with a box-type bracket 3 via the rotating shaft 2, allowing the transcranial magnetic stimulation therapy device to rotate omnidirectionally during use. The rotating shaft 2 provides the rotation axis for the box-type bracket 3, enabling multi-angle adjustment of the transcranial magnetic stimulation therapy device during use. A lifting slot 16 is provided on the inner top of the box-type bracket 3 corresponding to the position of the lifting platform 5, allowing the lifting platform 5 to move up and down. The outer side is fixedly connected to a cable management box 6; it is rotatably connected to the anti-tilt bracket 1 via the rotating shaft 2, and a controller is also installed on the outer side.

[0027] The instrument body 4 is fixed to the bottom of the box-type bracket 3. The upper vertical end of the instrument body 4 is electrically connected to the lifting platform 5. The lifting platform 5 is used to lift and store the display components. The lead wires are managed by passing through the clamping and positioning wheels 7 and other components in the cable management box 6. The upper vertical end of the instrument body 4 is electrically equipped with the lifting platform 5 for lifting and storing the instrument display components. The two sides of its bottom end are connected to the lifting cylinder 15, which pushes the lifting and lowering. The end is equipped with a display screen 13 with an operation keyboard. The top of the display screen 13 is equipped with a lifting guard plate 17. The lifting platform 5 is vertically aligned with the lifting slot 16 at the top of the inner side of the box-type bracket 3.

[0028] The box-type support 3 has a cable management box 6 on its outer side for winding and managing the cable of the instrument body 4. The internal components work together to ensure orderly cable storage and use, preventing tangled cables from affecting normal instrument operation, extending cable life, and improving the efficiency of medical staff. The cable management box 6 has clamping and positioning wheels 7 inside to hold and position one end of the cable bundle without rotating, fixing the starting end of the cable and preventing loosening of the plug due to shaking or cable pulling during instrument use, ensuring stable instrument operation. The cable is lifted and stored in the cable management box 6 by elastic lifting wheels 8. These wheels are slidably connected to guide rods 10 on the inner front and rear walls of the cable management box 6 via guide blocks 11 on both sides of the support. Elastic elements 12 are connected to the guide blocks 11 and sleeved on the outside of the guide rods 10. The top of the elastic element 12 is fixed to the top of the cable management box 6. The cable moves through the space between the two wheels included in the elastic lifting wheel 8. As the wire is pulled out or retracted, it rises and falls along the guide rod 10 under the action of the elastic element 12, realizing the automatic lifting and storage of the wire, preventing the wire from becoming tangled and making wire management more efficient and orderly.

[0029] The clamping guide wheel 9 is set up to guide the wires when they are pulled out. During the extension and retraction of the wires, the wires are guided to move along the correct path, avoiding the wires from crossing or getting tangled, and further ensuring the efficiency and reliability of wire management.

[0030] The clamping and positioning wheel 7 includes two vertically arranged wheel bodies, which are fixedly installed on one side wall at the bottom of the inner side of the cable storage box 6. The two wheel bodies clamp and fix the starting ends of the instrument body 4 that extend into the cable storage box 6.

[0031] Guide rods 10 are vertically installed on the front and rear inner walls of the cable storage box 6 to guide the lifting of the elastic lifting wheel 8, ensuring that the elastic lifting wheel 8 moves smoothly during the extension and retraction of the cable, thereby realizing the orderly storage and release of the cable. The guide rod 10 is slidably provided with guide blocks 11 fixed to the two outer sides of the support of the elastic lifting wheel 8, connecting the elastic lifting wheel 8 to the guide rod 10. When the cable extends and retracts, it moves the elastic lifting wheel 8, sliding along the guide rod 10, and transmitting elastic force through the elastic element 12 to realize the automatic lifting function of the elastic lifting wheel 8.

[0032] The guide block 11 is connected to an elastic element 12 sleeved on the outside of the guide rod 10. When the wire is pulled out, it stretches and stores elastic potential energy; when the wire is retracted, it contracts and releases elastic potential energy, driving the elastic lifting wheel 8 to rise and fall, realizing the automatic storage and release of the wire, effectively managing the wire. The top of the elastic element 12 is fixed to the top of the inside of the cable storage box 6, and the elastic lifting wheel 8 allows the wire to move through the two wheels it contains. The clamping guide wheel 9 is set at the corresponding end of the clamping positioning wheel 7 to guide the wire during its extension and retraction.

[0033] The lifting platform 5 has a display screen 13 with an operation keyboard at one end. As a display component of the instrument, it displays treatment data, operation interface and other information, which is convenient for medical staff to operate and for patients to observe. It can be raised and lowered with the lifting platform 5 to meet the height requirements of the display screen in different usage scenarios. Vertical guide rods 14 are movable through both ends of the lifting platform 5 to guide the lifting of the platform 5, ensure the lifting process is stable, prevent the lifting platform 5 from deviating during the lifting process, and ensure that the display screen 13 can be accurately raised and lowered to the designated position. The upper end of the vertical guide rod 14 is fixed to both sides of the top inside the box-type bracket 3, and the lower end of the vertical guide rod 14 is fixed to the support blocks provided on the two side walls of the bottom inside the box-type bracket 3.

[0034] The lifting support platform 5 is equipped with lifting cylinders 15 on both sides of its bottom end, which serve as the power source for lifting the lifting support platform 5. Through telescopic movement, the lifting support platform 5 is pushed up or down to realize the electric lifting function of the display screen 13. The bottom end of the lifting cylinder 15 is fixed to the upper end surface of the support block. The top of the display screen 13 at the end of the lifting support platform 5 is equipped with a lifting guard plate 17 that covers the lifting groove 16 at the top of the box bracket 3. When the display screen 13 is stored in the box bracket 3, it protects the display screen 13 from damage such as dust and collisions, while making the overall appearance of the bracket cleaner.

[0035] The anti-tilt support base 1 has movable cavities 18 on both sides, and anti-tilt telescopic plates 19 are telescopically installed in the movable cavities 18. When the ground is uneven or subjected to external force, they extend from the movable cavities 18, driving the anti-tilt vertical rod 20 downward. The anti-tilt vertical rod 20 and the embedded ball bearings contact the ground, increasing the contact point and support area between the support and the ground, preventing the support from tipping over. The anti-tilt telescopic plate 19 is vertically fixed at one end to the anti-tilt vertical rod 20, which is set on both sides of the outside of the anti-tilt support base 1 and has movable embedded ball bearings at one end. In conjunction with the anti-tilt telescopic plate 19, it extends when needed and contacts the ground through the embedded ball bearings. Utilizing the lever principle and multi-point support, the stability of the support is enhanced, preventing the support from shaking and tipping over, and ensuring the safety of the instrument.

[0036] The anti-tilt bracket 1 has self-locking wheels 21 on both sides of its bottom, and a stabilizing support block 22 at its lower end. A controller is installed on one side of the box-type bracket 3. The anti-tilt bracket 1 serves as the basic support structure for the entire bracket system. The self-locking wheels 21 on both sides of its bottom facilitate movement. In medical settings, medical staff can easily push the bracket to quickly transport the transcranial magnetic stimulation (TMS) device to different wards or treatment areas, greatly improving the flexibility of the equipment. The stabilizing support block 22 enhances stability during placement, ensuring the bracket stands firmly even on slightly uneven ground, preventing the device from shaking and affecting the treatment effect.

[0037] Specifically, during use, the anti-tilt bracket 1 serves as the basic support structure for the entire support system. The self-locking wheels 21 on both sides of the bottom facilitate movement, and the stabilizing support block 22 enhances stability during placement. When in use, if the ground is uneven or subjected to external force, the anti-tilt telescopic plates 19 within the movable cavities 18 on both sides of the anti-tilt bracket 1 will extend, causing the anti-tilt vertical rod 20 to move downwards. The movable ball bearing at one end of the vertical rod contacts the ground. Utilizing the lever principle and multi-point support, this effectively prevents the support from swaying and tipping, ensuring the overall stability of the instrument. The end of the anti-tilt bracket 1 is connected to the box-type support 3 via a rotating shaft 2, allowing the box-type support 3 to rotate omnidirectionally around the rotating shaft 2. When the angle of the transcranial magnetic stimulation therapy instrument needs to be adjusted to adapt to different treatment requirements, the box-type support 3 can be manually rotated, providing multiple angle options for treatment.

[0038] The wire extending from the instrument body 4 first passes through the clamping and positioning wheel 7, which consists of two vertically arranged wheel bodies fixed to one side wall at the bottom of the inner side of the cable storage box 6, clamping and positioning the starting end of the wire. As the wire is pulled out or retracted, the elastic lifting wheel 8 slides on the guide rod 10. The guide block 11 is connected to the bracket of the elastic lifting wheel 8, and the elastic element 12, which is sleeved on the outside of the guide rod 10, stretches when the wire is pulled out and contracts when the wire is retracted, driving the elastic lifting wheel 8 to rise and fall, realizing automatic lifting and storage of the wire. The clamping guide wheel 9 guides the wire at the end corresponding to the clamping and positioning wheel 7 during the extension and retraction of the wire, preventing the wire from getting tangled. The lifting platform 5 is electrically lifted and lowered by the lifting cylinders 15 on both sides of the bottom. When the display component of the instrument needs to be used, the lifting cylinders 15 operate, pushing the lifting platform 5 to rise, causing the display screen 13 with the operation keyboard to rise from the box-type bracket 3. The vertical guide rods 14 that move through both ends of the lifting platform 5 serve as guides, ensuring a smooth lifting and lowering process. When not in use, the lifting cylinder 15 retracts, the display screen 13 descends into the box bracket 3, and the lifting guard plate 17 covers the lifting channel 16, which serves to protect and save space.

[0039] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A support for a transcranial magnetic stimulation (TMS) therapy device, characterized in that, include: Anti-tilt bracket (1), the end of the anti-tilt bracket (1) is provided with a box-type bracket (3) that allows the transcranial magnetic stimulation therapy instrument to rotate in all directions during use via a rotating shaft rod (2), the bottom of the box-type bracket (3) is fixed with the instrument body (4), the upper vertical end of the instrument body (4) is provided with an electric lifting platform (5) for lifting and storing the instrument display components, and the lifting platform (5) is provided with a lifting through groove (16) at the position of the top of the inner side of the box-type bracket (3) perpendicular to the position of the top of the box-type bracket (3); The box-type bracket (3) has a cable management box (6) on one side outside for winding and organizing the wires of the instrument body (4) and for extending and retracting the wires. The cable management box (6) is equipped with a clamping and positioning wheel (7) for clamping and positioning one end of the wire bundle without rotating, an elastic lifting wheel (8) for lifting and storing the wires into the cable management box (6), and a clamping guide wheel (9) for pulling out the wires for positioning and guidance.

2. The support of a transcranial magnetic stimulation therapeutic apparatus according to claim 1, characterized in that: The clamping and positioning wheel (7) includes two vertically arranged wheel bodies, which are fixedly set on one side wall of the bottom of the inner side of the cable storage box (6). The two wheel bodies clamp and fix the starting end of the instrument body (4) that leads through to the inside of the cable storage box (6).

3. The support of the transcranial magnetic stimulation therapeutic instrument according to claim 1, characterized in that: The cable management box (6) has guide rods (10) vertically installed on the front and rear inner walls, and the guide rods (10) are slidably provided with guide blocks (11) fixed to the two outer sides of the elastic lifting wheel (8) bracket.

4. The support of a transcranial magnetic stimulation therapeutic apparatus according to claim 3, characterized in that: The guide block (11) is connected to an elastic element (12) sleeved on the outside of the guide rod (10), and the top of the elastic element (12) is fixed inside the top of the cable storage box (6). The elastic lifting wheel (8) allows the wire to move through the two wheels it contains. The clamping guide wheel (9) is set at the corresponding end of the clamping positioning wheel (7) to guide the wire during its extension and retraction.

5. The support of a transcranial magnetic stimulation therapeutic apparatus according to claim 1, characterized in that: The lifting platform (5) is equipped with a display screen (13) with an operation keyboard at its end, and vertical guide rods (14) are movably passed through both ends of the lifting platform (5). The upper end of the vertical guide rod (14) is fixed to both sides of the top of the box-type bracket (3), and the lower end of the vertical guide rod (14) is fixed to the support blocks provided on the bottom side walls of the box-type bracket (3).

6. The support of a transcranial magnetic stimulation therapeutic apparatus according to claim 1, characterized in that: The lifting support (5) is provided with lifting cylinders (15) on both sides of the bottom end, and the bottom end of the lifting cylinders (15) is fixed to the upper end face of the support block. The top of the display screen (13) provided at the end of the lifting support (5) is provided with a lifting guard plate (17) that covers the top lifting channel (16) of the box bracket (3).

7. The support of a transcranial magnetic stimulation therapeutic apparatus according to claim 1, characterized in that: The anti-tilt bracket (1) has movable cavities (18) on both sides, and an anti-tilt telescopic plate (19) is telescopically installed in the movable cavity (18). One end of the anti-tilt telescopic plate (19) is vertically fixed with an anti-tilt vertical rod (20) that is set on both sides of the outside of the anti-tilt bracket (1) and has movable embedded ball bearings at one end.

8. The support of a transcranial magnetic stimulation therapeutic apparatus according to claim 1, characterized in that: The anti-tilt bracket (1) has self-locking wheels (21) on both sides of its bottom, and a stabilizing support block (22) is provided at the lower end of the anti-tilt bracket (1). A controller is installed on one side of the box-type bracket (3).