Leg exercising device for neurosurgery department

By designing a neurosurgery leg exercise device including a telescopic rod and a support slider, the problem of manual pressure in the prior art is solved, and the patient's independent and convenient leg bending exercise is achieved, and the exercise efficiency is improved.

CN222871258UActive Publication Date: 2025-05-16兴化市人民医院
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Patent Information

Application Number
CN202421069990.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-16
Publication Date
2025-05-16
Estimated Expiration
2034-05-16

AI Technical Summary

Technical Problem

The existing neurosurgery leg exercise device requires manual pressure from medical staff when the legs are bent, which makes exercise more laborious.

Method used

A training device including a fixed base, a fixed platform, a support pad, a connecting slide, a positioning clip, a support slide, a rotary member, a support plate, a telescopic rod and a press plate are designed. Through the cooperation of the telescopic rod and the support slider, patients can perform leg bending exercises on their own, and the spring provides pressure to reduce manual intervention.

Benefits of technology

The patient can independently perform leg bending exercises, reduce the need for manual pressure, improve the convenience and efficiency of exercise, and solve the problem of labor-intensive exercise.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a leg exercising device for neurosurgery, which belongs to the technical field of medical rehabilitation equipment and comprises a fixed base, a fixed platform is arranged on the top of the fixed base, and a supporting pad is arranged on the top of the fixed platform. Two connecting sliding grooves are symmetrically formed in the positions, close to the other end opposite to the supporting pad, of the fixed platform, two positioning clamping strips are symmetrically arranged on the connecting sliding grooves, a supporting sliding block is arranged between the positioning clamping strips, a rotating piece is arranged on the top of the supporting sliding block, and a supporting plate is arranged on the top of the rotating piece; a fixing side plate is arranged at one end of the supporting plate, a protective pad is arranged on the supporting plate, an extension groove is formed in the position, located at one end of the connecting sliding groove, of the fixing platform, and a first spring is arranged between the interior of the extension groove and the supporting sliding block. Through cooperative use of the telescopic rod, the supporting sliding block and other components, pressure exerting exercise can be conveniently conducted on a patient, manual pressure exerting work is not needed, and manpower is saved.
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Description

Technical Field

[0001] This utility model relates to the field of medical rehabilitation equipment technology, specifically a neurosurgical leg exercise device. Background Technology

[0002] Rehabilitation exercises refer to physical activities performed after an injury that are beneficial to the recovery or improvement of function. Except for severe injuries that require rest and treatment, general injuries do not necessarily require a complete cessation of physical exercise. Appropriate and scientific physical exercise plays a positive role in the rapid healing of injuries and the promotion of functional recovery.

[0003] However, existing neurosurgical leg exercise devices have the following problems during use: When exercising the leg during initial recovery, pressure needs to be applied to the leg when bending it; this pressure is typically applied manually by medical staff, making the exercise quite strenuous. Therefore, a corresponding technical solution needs to be designed to address these problems. Utility Model Content

[0004] The purpose of this invention is to provide a neurosurgical leg exercise device that solves the technical problem that when exercising the leg during the initial recovery phase, pressure needs to be applied to the leg when bending it, and the pressure application usually relies on manual application by medical staff, which makes the exercise quite strenuous and meets the actual needs of use.

[0005] To achieve the above objectives, this utility model provides the following technical solution: It includes a fixed base, a fixed platform on the top of the fixed base, a support pad on the top of the fixed platform, two symmetrical connecting grooves on the fixed platform near the opposite end of the support pad, two symmetrical positioning strips on the connecting grooves, a support slider between the positioning strips, a rotating component on the top of the support slider, a support plate on the top of the rotating component, a fixed side plate on one end of the support plate, a protective pad on the support plate, an extension groove on the fixed platform at one end of the connecting groove, a spring between the extension groove and the support slider, connecting grooves on both sides of the fixed platform, support sliding rods on the connecting grooves, moving blocks on the support sliding rods, a support top frame between the ends of the moving blocks, two symmetrical telescopic rods on the support top frame, and a pressure plate on the top of the telescopic rods.

[0006] In a preferred embodiment of this utility model, the fixed base has a hollow structure, the fixed platform and the fixed base are fixedly connected by bolts, one end of the support pad is opposite to the fixed platform, and the support pad and the fixed platform are connected by snap-fit ​​magnetic attraction.

[0007] In a preferred embodiment of this utility model, the support slider has positioning grooves in the middle of both sides for use with the positioning strips. The positioning strips are embedded in the positioning grooves. The rotating component is composed of two connecting plates and a rotating shaft. The two connecting plates are respectively fixed on the top of the support slider and the bottom of the support plate. The rotating shaft is located between the ends of the two connecting plates and is rotatably connected to them.

[0008] In a preferred embodiment of this utility model, the support plate and the fixed side plate form an "L" shape. Two support columns are symmetrically arranged on the bottom of the other end of the support plate opposite to the rotating part. The bottom of the support columns is located at the top of the fixed platform. A fixing strap is provided on the top of the protective pad. One end of the fixing strap is sewn to the protective pad, and the other end is connected by Velcro.

[0009] In a preferred embodiment of this utility model, the top of the protective pad has a concave arc shape in the middle, the end of the first spring is inserted and connected to the support slider, one end of the moving block has a ring shape, the moving block is slidably connected to the support slide rod, the second spring is installed inside the telescopic rod, a sponge layer is provided on the bottom of the pressure plate, and the telescopic rod is threadedly connected to the support top frame.

[0010] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0011] By using components such as the telescopic rod and support slider in combination, patients can easily perform leg flexion exercises. After the patient's lower leg is placed on the protective pad, the patient can flex the leg independently. At this time, the knee will come into contact with the pressure plate, and with the help of spring two, it can apply pressure, requiring the patient to exert force to resist. At the same time, after completing the initial exercise, spring one can be connected to the support slider for intensified exercise without manual pressure, ensuring the exercise effect, effectively saving manpower, and thus solving the problem of the exercise being too strenuous. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall design of this utility model;

[0013] Figure 2 This is a structural diagram of the connecting groove described in this utility model;

[0014] Figure 3 This is a structural diagram of the protective pad described in this utility model;

[0015] Figure 4 This is a structural diagram of the supporting top frame described in this utility model.

[0016] In the diagram: Fixed base-1, connecting groove-2, fixed platform-3, fixed side plate-4, supporting top frame-5, supporting pad-6, connecting slide groove-7, supporting slider-8, spring-9, extension groove-10, rotating part-11, protective pad-12, supporting plate-13, supporting column-14, positioning clip-15, moving block-16, supporting slide rod-17, telescopic rod-18, pressure plate-19, fixing strap-20. Detailed Implementation

[0017] 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.

[0018] Please see Figure 1-4 This utility model provides a technical solution: a neurosurgical leg exercise device, comprising: a fixed base 1, a fixed platform 3 on the top of the fixed base 1, a support pad 6 on the top of the fixed platform 3, two connecting grooves 7 symmetrically arranged on the fixed platform 3 near the opposite end to the support pad 6, two positioning strips 15 symmetrically arranged on the connecting grooves 7, a support slider 8 arranged between the positioning strips 15, a rotating component 11 on the top of the support slider 8, and a support plate 13 on the top of the rotating component 11. A fixed side plate 4 is provided on one end of the support plate 13, and a protective pad 12 is provided on the support plate 13. An extension groove 10 is provided on the fixed platform 3 at one end of the connecting slide groove 7. A spring 9 is provided between the extension groove 10 and the support slider 8. Connecting grooves 2 are provided on both sides of the fixed platform 3. A support slide rod 17 is provided on the connecting groove 2. A moving block 16 is provided on the support slide rod 17. A support top frame 5 is provided between the ends of the moving block 16. Two telescopic rods 18 are symmetrically arranged on the support top frame 5. A pressure plate 19 is provided on the top of the telescopic rod 18.

[0019] Further improvements include a hollow structure for the fixed base 1, a bolt-fixed connection between the fixed platform 3 and the fixed base 1, one end of the support pad 6 being opposite to the fixed platform 3, and a snap-fit ​​magnetic connection between the support pad 6 and the fixed platform 3.

[0020] Further improvements include positioning grooves on the middle of both sides of the support slider 8 for use with positioning clips 15, with the positioning clips 15 embedded in the positioning grooves. The rotating component 11 is composed of two connecting plates and a rotating shaft. The two connecting plates are fixed to the top of the support slider 8 and the bottom of the support plate 13, respectively, and the rotating shaft is located between the ends of the two connecting plates and is rotatably connected to them.

[0021] Further improvements include an "L"-shaped structure between the support plate 13 and the fixed side plate 4, with two symmetrical support columns 14 on the bottom of the support plate 13 opposite to the rotating part 11. The bottom of the support columns 14 is located at the top of the fixed platform 3, and a fixing strap 20 is provided on the top of the protective pad 12. One end of the fixing strap 20 is sewn to the protective pad 12, and the other end is connected by Velcro.

[0022] Further improvements include a concave top structure for the protective pad 12, an insert connection between the end of the spring 9 and the support slider 8, an annular structure at one end of the moving block 16, a sliding connection between the moving block 16 and the support slide rod 17, a second spring installed inside the telescopic rod 18, a sponge layer on the bottom of the pressure plate 19, and a threaded connection between the telescopic rod 18 and the support top frame 5.

[0023] In use: The patient lies on the support pad 6, and then the patient's feet and lower legs are placed on the fixed side plate 4 and the protective pad 12. The legs are then secured with the fixing strap 20. After that, the support top frame 5 is moved according to the position of the knee when the patient's leg is bent, and the height of the two telescopic rods 18 is adjusted. The patient can then bend the leg repeatedly. When bending, the knee will come into contact with the pressure plate 19, and the spring 2 inside the telescopic rod 18 can apply pressure. The patient needs to exert force to resist this, which plays a role in the initial rehabilitation exercise. After the initial exercise, the spring 9 can be connected to the support slider 8 to provide double resistance and tension, which can also be used for exercise. No manual pressure exercise is required, which effectively saves manpower.

[0024] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the 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 this utility model should be included within the protection scope of this utility model.

Claims

1. A neurosurgery leg exercise device, characterized in that: The invention comprises a fixed base (1), a fixed platform (3) is arranged on the top of the fixed base (1), a support pad (6) is arranged on the top of the fixed platform (3), two connecting grooves (7) are symmetrically arranged at a position close to the other end of the fixed platform (3) opposite to the support pad (6), two positioning clips (15) are symmetrically arranged on the connecting grooves (7), a supporting slider (8) is arranged between the positioning clips (15), a rotating member (11) is arranged on the top of the supporting slider (8), a supporting plate (13) is arranged on the top of the rotating member (11), a fixed side plate (4) is arranged on one end of the supporting plate (13), and the A protective pad (12) is provided on the support plate (13); an extension groove (10) is provided on the fixed platform (3) at a position located at one end of the connecting slide groove (7); a spring (9) is provided in the extension groove (10) and between the supporting slide block (8); connecting grooves (2) are provided on both sides of the fixed platform (3); a supporting slide bar (17) is provided on the connecting groove (2); a moving block (16) is provided on the supporting slide bar (17); a supporting top frame (5) is provided between the ends of the moving block (16); two telescopic rods (18) are symmetrically provided on the supporting top frame (5); and a pressing plate (19) is provided on the top of the telescopic rod (18).

2. A neurosurgery leg exercise device according to claim 1, characterized in that: The fixed base (1) is of a hollow structure, the fixed platform (3) and the fixed base (1) are fixedly connected by bolts, one end of the support pad (6) is opposite to the fixed platform (3), and the support pad (6) and the fixed platform (3) are connected by a snap-on magnetic connection.

3. A neurosurgery leg exercise device according to claim 1, characterized in that: Positioning grooves for use with the positioning clips (15) are provided in the middle of both sides of the support slider (8), and the positioning clips (15) are embedded in the positioning grooves. The rotating member (11) is composed of two connecting plates and a rotating shaft. The two connecting plates are respectively fixed to the top of the support slider (8) and the bottom of the support plate (13). The rotating shaft is located between the ends of the two connecting plates and is rotatably connected to each other.

4. The neurosurgery leg exercise device according to claim 1, characterized in that: The support plate (13) and the fixed side plate (4) form an "L"-shaped structure. Two support columns (14) are symmetrically arranged on the bottom of the other end of the support plate (13) opposite to the rotating member (11). The bottom of the support column (14) is located on the top of the fixed platform (3). A fixing belt (20) is arranged on the top of the protective pad (12). One end of the fixing belt (20) is sutured to the protective pad (12), and the other end is connected to the protective pad (12) by Velcro.

5. The neurosurgery leg exercise device according to claim 1, characterized in that: The top middle of the protective pad (12) is in an arc-shaped concave structure, the end of the spring 1 (9) is plug-connected with the support slider (8), one end of the moving block (16) is in an annular structure, the moving block (16) is slidably connected with the support slider (17), a spring 2 is installed inside the telescopic rod (18), a sponge layer is provided on the bottom of the pressure plate (19), and the telescopic rod (18) is threadedly connected with the support top frame (5).