A neurological movement disorder training device
By introducing various components into the training equipment for shoulder and neck movement obstacles to adjust the width, angle, height, and weight of the support frame, the problem of existing equipment being unable to gradually increase training intensity is solved, enabling flexible adjustment and diversification of training intensity and improving training effectiveness.
Patent Information
- Application Number
- CN202311290140.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-08
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2043-10-08
AI Technical Summary
Existing neck and shoulder movement disorder training equipment cannot gradually increase the training intensity according to the patient's needs, resulting in monotonous training and poor training effects.
A training device for motor disorders in neurology has been designed, comprising a training frame, an angle adjustment component, a replacement component, a height adjustment component, a weighting component, and a rotation component. By adjusting the width, angle, height, weight, and structural changes of the support frame, it can adapt to the needs of different patients.
It enables flexible adjustment of training intensity, increases the diversity and effectiveness of training, adapts to the individual needs of different patients, and improves the flexibility and effectiveness of training.
Smart Images

Figure CN117282075B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of obstacle training, in particular to a neurological movement disorder training device. BACKGROUND
[0002] Neurology is a secondary discipline related to the nervous system, mainly including cerebrovascular disease, migraine, sciatica, peripheral neuropathy and myasthenia gravis, etc. Patients need to recover through medication and exercise training after being diagnosed with neurological diseases.
[0003] When patients perform exercise rehabilitation training, they usually need to use a special neurological movement disorder training device for training. When training the shoulder and neck, a shoulder lifting trainer is used, which places the stick at different heights to train the upper limb lifting function. However, the existing shoulder lifting training equipment can only simply train simple movements, and the existing shoulder and neck movement disorder training equipment cannot gradually increase the training intensity according to the needs of patients, resulting in single training and poor training effect.
[0004] In view of the above problems, the present application provides a shoulder and neck neurological movement disorder training device that can adjust the training intensity according to the needs of patients and make the training better. SUMMARY
[0005] In order to overcome the shortcomings of the existing shoulder and neck training equipment that cannot gradually increase the training intensity according to the needs of patients, resulting in single training and poor training effect, the present application provides a shoulder and neck neurological movement disorder training device that can adjust the training intensity according to the needs of patients and make the training better.
[0006] A neurological movement disorder training device, comprising a training frame, a first frame, a support frame, a training rod, a magnetic block, a first clamping block and a first spring, the first frame is symmetrically arranged on the training frame, the magnetic block is movably connected inside the first frame and magnetically attracted to the training frame, the support frame is fixedly connected to the magnetic block for supporting the training rod, the training rod is placed between the support frames, the first clamping block is symmetrically and slidably connected to the magnetic block, the first spring is fixedly connected between the first clamping block and the magnetic block, and the first clamping hole is formed in the first frame and connected with the first clamping block to fix the magnetic block.
[0007] Further, the training frame is provided with an angle adjusting assembly, the angle adjusting assembly comprises a second frame, a second clamping block, a second spring and a sliding block, the second frame is symmetrically fixed to the training frame, the sliding block is slidably connected to the second frame, the second clamping block is symmetrically slidably connected to the sliding block, the second spring is fixed between the second clamping block and the sliding block, and a second clamping hole is formed in the second frame to fix the sliding block.
[0008] Further, the angle adjusting assembly further comprises a knob and a knob rod, the knob is fixed to the sliding block, and a plurality of knob rods corresponding to the support frame are fixed to the knob for adjusting the angle of the support frame.
[0009] Further, the training frame is provided with an angle adjusting assembly, the angle adjusting assembly comprises a second frame, a second clamping block, a second spring and a sliding block, the second frame is symmetrically fixed to the training frame, the sliding block is slidably connected to the second frame, the second clamping block is symmetrically slidably connected to the sliding block, the second spring is fixed between the second clamping block and the sliding block, and a second clamping hole is formed in the second frame to fix the sliding block.
[0010] Further, the training frame is provided with an angle adjusting assembly, the angle adjusting assembly comprises a second frame, a second clamping block, a second spring and a sliding block, the second frame is symmetrically fixed to the training frame, the sliding block is slidably connected to the second frame, the second clamping block is symmetrically slidably connected to the sliding block, the second spring is fixed between the second clamping block and the sliding block, and a second clamping hole is formed in the second frame to fix the sliding block.
[0011] Further, the height adjusting assembly further comprises a rubber block, the rubber block is fixed to the first frame near the second fixed block to prevent the first frame from being worn.
[0012] Further, the training frame is provided with an angle adjusting assembly, the angle adjusting assembly comprises a second frame, a second clamping block, a second spring and a sliding block, the second frame is symmetrically fixed to the training frame, the sliding block is slidably connected to the second frame, the second clamping block is symmetrically slidably connected to the sliding block, the second spring is fixed between the second clamping block and the sliding block, and a second clamping hole is formed in the second frame to fix the sliding block.
[0013] Further, the height adjusting assembly further comprises a rubber block, the rubber block is fixed to the first frame near the second fixed block to prevent the first frame from being worn.
[0014] Further, the training frame is provided with a rotating assembly, the rotating assembly comprises a fifth fixed block and a rotating shaft, the training frame comprises a horizontal frame and a vertical frame, the fifth fixed block is fixed on the horizontal frame at the connection between the horizontal frame and the vertical frame of the training frame, and the rotating shaft is rotatably connected to the fifth fixed block and fixed to the vertical frame.
[0015] Further, the rotating assembly further comprises a second pulling frame and a sixth spring, the second pulling frame is slidably connected between the vertical frame and the fifth fixed block, the third clamping hole is formed in the fifth fixed block in a circumferential direction and clamped with the second pulling frame, and the sixth spring is fixed between the vertical frame and the second pulling frame.
[0016] Advantages are:
[0017] 1. The width between two adjacent support frames can be adjusted according to the needs of the patient, the training intensity is increased, and the training is more flexible.
[0018] 2. The angle adjusting assembly is arranged, so that the patient can adjust the angle of the support frame according to different angles during training, and the training intensity is increased.
[0019] 3. The replacement assembly is arranged, so that the patient can replace the first frame according to the actual training requirements, and the use of the training frame is more diversified.
[0020] 4. The height adjusting assembly is arranged, the height of the first frame on one side is adjusted, the height of the training rod on one side needs to be increased, and the training rod can be placed only by tilting, and the training intensity is increased.
[0021] 5. The weight increasing assembly is arranged, the weight of the training rod is increased by adding weights to the training rod according to the needs of the patient, and the training intensity of the patient is increased.
[0022] 6. The rotating assembly is arranged, the training frame can be adjusted according to the needs of the patient, the needs of different patients can be met, and the use is more convenient. DETAILED DESCRIPTION
[0023] Figure 1 It is a schematic view of the three-dimensional structure of the present application.
[0024] Figure 2 It is a schematic view of part of the three-dimensional structure of the present application.
[0025] Figure 3 It is a schematic view of the first frame, magnetic block and the like of the present application.
[0026] Figure 4This is a three-dimensional structural diagram of the angle adjustment component of the present invention.
[0027] Figure 5 This is a three-dimensional structural cross-sectional view of the angle adjustment component of the present invention.
[0028] Figure 6 This is a three-dimensional structural diagram of the replacement component of the present invention.
[0029] Figure 7 A three-dimensional cross-sectional view of the replacement component of this invention.
[0030] Figure 8 This is a three-dimensional structural diagram of the height adjustment component of the present invention.
[0031] Figure 9 This is a three-dimensional structural diagram of the weighting component and training rack of the present invention.
[0032] Figure 10 This is a three-dimensional structural diagram of the reinforcement component of the present invention.
[0033] Figure 11 This is a three-dimensional structural diagram of the rotating component and training frame of the present invention.
[0034] Figure 12 This is a three-dimensional sectional view of the covering structure of the rotating component of the present invention.
[0035] In the attached diagram, the following labels are used: 1-training frame, 2-first frame, 3-support frame, 4-magnetic block, 5-first locking block, 6-first spring, 7-first locking hole, 8-second frame, 9-second locking hole, 10-second locking block, 11-second spring, 12-sliding block, 13-toggle frame, 1301-toggle rod, 14-first fixing block, 15-locking block, 16-first pulling frame, 17-third spring, 18-second fixing block, 19-bolt, 20-rubber block, 21-training rod, 22-third fixing block, 23-fourth fixing block, 24-sliding frame, 25-fourth spring, 26-sliding column, 27-fifth spring, 28-fifth fixing block, 29-third locking hole, 30-rotating shaft, 31-second pulling frame, 32-sixth spring. Detailed Implementation
[0036] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0037] Example 1
[0038] A neurological movement disorder training device, such as Figures 1-3As shown, the device includes a training frame 1, a first frame 2, a support frame 3, a training rod 21, a magnetic block 4, a first locking block 5, and a first spring 6. The first frame 2 is symmetrically arranged on the left and right sides of the front of the training frame 1. Multiple magnetic blocks 4 are movably connected from top to bottom inside the first frame 2. The magnetic blocks 4 are magnetically attracted to the training frame 1. The support frame 3 for supporting the training rod 21 is fixedly connected to the middle of the magnetic block 4. The training rod 21 is placed between two adjacent support frames 3 on the same horizontal line. The first locking blocks 5 are symmetrically slidably connected to the left and right sides of the magnetic blocks 4. The first spring 6 is fixedly connected between the first locking block 5 and the magnetic block 4. Multiple first locking holes 7 are opened from top to bottom on the left and right sides inside the first frame 2. The first locking blocks 5 engage with the first locking holes 7 to fix the magnetic blocks 4.
[0039] When a patient uses this device for training and needs to adjust the width between the support frames 3, they can manually push the magnetic block 4 inside the first frame 2. The movement of the magnetic block 4 causes the support frame 3 to move. When the magnetic block 4 moves, it presses against the first frame 2, causing the first locking block 5 to slide inward. The first locking block 5 disengages from the first locking hole 7, and the first spring 6 is compressed, causing the magnetic block 4 to move. When the magnetic block 4 moves to the position of the next first locking hole 7, the first spring 6 resets, causing the first locking block 5 to move outward and reset, engaging with the first locking hole 7 to fix the magnetic block 4. This allows the width between two adjacent support frames 3 to be adjusted according to the patient's needs, increasing the training intensity and making the training more flexible.
[0040] Example 2
[0041] Based on Example 1, such as Figure 4 and Figure 5 As shown, it also includes an angle adjustment component. The angle adjustment component is provided on the outer front part of the training frame 1. The angle adjustment component includes a second frame 8, a second locking block 10, a second spring 11, a sliding block 12, a toggle frame 13, and a toggle rod 1301. The second frame 8 is symmetrically fixed to the left and right sides of the lower part of the training frame 1. The sliding block 12 is slidably connected inside the second frame 8. The second locking block 10 is symmetrically slidably connected to the front and rear parts of the inner side of the sliding block 12. The second spring 11 is fixed between the second locking block 10 and the sliding block 12. Multiple second locking holes 9 are opened from top to bottom on the front and rear sides of the inner side of the second frame 8. The second locking block 10 engages with the second locking holes 9 to fix the sliding block 12. The toggle frame 13 is fixed to the outer side of the sliding block 12. Multiple sets of toggle rods 1301 corresponding to the support frame 3 are fixed to the inner side of the toggle frame 13 for adjusting the angle of the support frame 3.
[0042] When the patient needs to adjust the angle of the support frame 3, they manually push the sliding block 12 inside the second frame 8. The movement of the sliding block 12 causes the second locking block 10 to move. When the second locking block 10 moves and contacts the second frame 8, it is pressed inward, causing the second locking block 10 to move inward. The second spring 11 is compressed. When the sliding block 12 moves to the position of the next second locking hole 9, the second spring 11 resets, causing the second locking block 10 to move outward and reset, engaging with the second locking hole 9, thus realizing the movement of the sliding block 12. When the sliding block 12 moves, it will drive the actuating frame 13 to move, thereby driving the actuating rod 1301 to move, which in turn actuates the support frame 3, causing the support frame 3 to rotate inside the first frame 2, thereby realizing the adjustment of the angle of the support frame 3. This allows the patient to adjust the angle of the support frame 3 according to different angles during training, increasing the training intensity.
[0043] like Figure 6 and Figure 7 As shown, it also includes a replacement component. The replacement component is provided at the rear of the first frame 2. The replacement component includes a first fixing block 14, a locking block 15, a first pulling frame 16, and a third spring 17. The first fixing block 14 is fixedly connected to the middle of the rear side of the first frame 2. The locking block 15 is slidably connected to the left and right sides of the first fixing block 14. The first pulling frame 16, which is engaged with the first fixing block 14, is slidably connected to the rear of the locking block 15. The third spring 17 is fixedly connected between the first pulling frame 16 and the locking block 15.
[0044] When the patient needs to perform other training and the first frame 2 needs to be replaced, the first pull frame 16 on one side is manually pulled backward. The first pull frame 16 moves backward, causing the third spring 17 to be stretched. The inner side of the first pull frame 16 disengages from the first fixing block 14. Then, the first frame 2 is pushed to the same side, causing the first frame 2 to disengage from the training frame 1. The first pull frame 16 is released, and the third spring 17 drives the first pull frame 16 to return to its original position, completing the replacement of the first frame 2. This component allows the patient to replace the first frame 2 according to the actual training requirements, making the use of the training frame 1 more versatile.
[0045] like Figure 8 As shown, it also includes a height adjustment component. The height adjustment component is provided between the training frame 1 and the first frame 2. The height adjustment component includes a second fixing block 18, bolts 19 and rubber blocks 20. The second fixing blocks 18 are symmetrically fixed to the left and right sides of the lower front part of the training frame 1. The bolts 19 for adjusting the height of the first frame 2 are threaded onto the second fixing blocks 18. The rubber blocks 20 that play a buffering role are fixed to the bottom of the first frame 2. The rubber blocks 20 can prevent the first frame 2 from being worn.
[0046] When the patient needs to increase the training intensity, and tilts the training rod 21 onto the support frame 3, the bolt 19 on one side is manually rotated. The bolt 19 rotates upward relative to the second fixing block 18, thereby pushing the rubber block 20 upward, and then pushing the first frame 2 upward. The tilt is adjusted according to the patient's required tilt. After the adjustment is completed, the bolt 19 is stopped from being rotated. This component increases the training intensity by adjusting the height of one side of the first frame 2, so that the patient needs to raise the height of one side of the training rod 21 to put it in.
[0047] like Figure 9 and Figure 10 As shown, it also includes a weighting component. The weighting component is provided on the training rod 21. The weighting component includes a third fixing block 22, a fourth fixing block 23, a sliding frame 24, a fourth spring 25, a sliding column 26, and a fifth spring 27. The fourth fixing block 23 is symmetrically fixed to the left and right sides of the training rod 21. The sliding frame 24 is slidably connected to the fourth fixing block 23. The fourth spring 25 is fixed to both the front and rear sides of the sliding frame 24 and the fourth fixing block 23. The sliding column 26 is fixed to the lower outer side of the fourth fixing block 23 and the upper outer side of the sliding frame 24. The third fixing block 22 is slidably connected to the sliding column 26. The fifth spring 27 is fixed to both the third fixing block 22 and the sliding frame 24 and the fourth fixing block 23.
[0048] When it is necessary to add weight to the training rod 21, manually pull the sliding frame 24 upward. The sliding frame 24 moves upward, causing the upper sliding column 26 to move upward, which in turn moves the upper third fixing block 22 upward. The fourth spring 25 is stretched, and the weight to be added is placed on the training rod 21. Pull the upper and lower third fixing blocks 22 outward, causing the third fixing blocks 22 to slide outward on the sliding column 26. The fifth spring 27 is stretched, so that the weight is located between the third fixing block 22 and the sliding frame 24. Release the third fixing block 22, and the fifth spring 27 returns to its original position, causing the third fixing block 22 to slide inward. Then release the sliding frame 24, and the fourth spring 25 returns to its original position, causing the sliding frame 24 to move downward and return to its original position, clamping the weight between the third fixing block 22, the fourth fixing block 23, and the sliding frame 24, thereby increasing the weight of the training rod 21. This component increases the weight of the training rod 21 by adding weight according to the patient's needs, thus increasing the patient's training intensity.
[0049] like Figure 11 and Figure 12As shown, it also includes a rotating assembly. The training frame 1 is equipped with the rotating assembly, which includes a fifth fixing block 28, a rotating shaft 30, a second pulling frame 31, and a sixth spring 32. The training frame 1 includes a horizontal frame and a vertical frame. The fifth fixing block 28 is provided at the connection between the horizontal frame and the vertical frame on both the left and right sides of the training frame 1. The fifth fixing block 28 is fixed to the horizontal frame. The rotating shaft 30, which is fixed to the vertical frame, is rotatably connected to the fifth fixing block 28. The second pulling frame 31 is slidably connected between the vertical frame and the fifth fixing block 28. The fifth fixing block 28 has multiple third locking holes 29 circumferentially opened to engage with the second pulling frame 31. The sixth spring 32 is fixed between the vertical frame and the second pulling frame 31.
[0050] When the patient cannot stand upright and needs to perform training in a supine position, the angle between the horizontal and vertical frames of the training frame 1 needs to be adjusted. The second pull brackets 31 on both sides are manually pulled outwards, stretching the sixth spring 32. The second pull brackets 31 disengage from the third locking hole 29 on the fifth fixing block 28. The rotating shaft 30 is manually rotated according to the required angle. The rotation of the shaft 30 causes the vertical frame to rotate. After the angle of the vertical frame is adjusted, the second pull brackets 31 are released, and the sixth spring 32 moves the second pull brackets 31 inwards to reset. The second pull brackets 31 engage with the third locking hole 29, fixing the vertical frame of the training frame 1. This component allows the training frame 1 to be adjusted according to the patient's needs, adapting to different patients and making it more convenient to use.
[0051] The above embodiments are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Therefore, all equivalent changes made to the content described in the claims of the present invention should be included within the scope of the claims of the present invention.
Claims
1. A training device for motor disorders in neurology, characterized in that, The device includes a training frame (1), a first frame (2), a support frame (3), a training rod (21), a magnetic block (4), a first locking block (5), and a first spring (6). The first frame (2) is symmetrically arranged on the training frame (1). Multiple magnetic blocks (4) are movably connected from top to bottom inside the first frame (2). The magnetic blocks (4) are magnetically attracted to the training frame (1). The support frame (3) for supporting the training rod (21) is fixedly connected to the magnetic blocks (4). The training rod (21) is placed between the support frames (3). The first locking block (5) is symmetrically slidably connected to the magnetic blocks (4). The first spring (6) is fixedly connected between the first locking block (5) and the magnetic blocks (4). The first locking hole (7) is opened on the first frame (2) to engage with the first locking block (5) and fix the magnetic blocks (4). When a patient uses this device for training and needs to adjust the width between the support frames (3), the patient manually pushes the magnetic block (4) inside the first frame (2). The magnetic block (4) moves, causing the support frame (3) to move. When the magnetic block (4) moves, it presses against the first frame (2), causing the first locking block (5) to slide inward. The first locking block (5) disengages from the first locking hole (7), and the first spring (6) is compressed, causing the magnetic block (4) to move. When the magnetic block (4) moves to the position of the next first locking hole (7), the first spring (6) resets, causing the first locking block (5) to move outward and reset, locking with the first locking hole (7) to fix the magnetic block (4). The width between two adjacent support frames (3) can be adjusted according to the patient's needs.
2. The neurological motor disorder training device as described in claim 1, characterized in that, It also includes an angle adjustment component. The angle adjustment component is symmetrically provided on the training frame (1). The angle adjustment component includes a second frame (8), a second locking block (10), a second spring (11), and a sliding block (12). The second frame (8) is symmetrically fixed on the training frame (1). The sliding block (12) is slidably connected inside the second frame (8). The second locking block (10) is symmetrically slidably connected inside the sliding block (12). The second spring (11) is fixed between the second locking block (10) and the sliding block (12). The second frame (8) has a second locking hole (9) that engages with the second locking block (10) to fix the sliding block (12).
3. The neurological motor disorder training device as described in claim 2, characterized in that, The angle adjustment assembly also includes a toggle frame (13) and a toggle lever (1301). The toggle frame (13) is fixedly connected to the sliding block (12). The toggle frame (13) has multiple sets of toggle levers (1301) corresponding to the support frame (3) and used to adjust the angle of the support frame (3).
4. The neurological motor disorder training device as described in claim 3, characterized in that, It also includes a replacement component, which is provided on the first frame (2). The replacement component includes a first fixing block (14), a locking block (15), a first pulling frame (16), and a third spring (17). The first fixing block (14) is fixedly connected to the first frame (2). The locking blocks (15) are slidably connected to both sides of the first fixing block (14). The first pulling frame (16) is slidably connected to the locking block (15) and engages with the first fixing block (14). The third spring (17) is fixedly connected between the first pulling frame (16) and the locking block (15).
5. A training device for motor disorders in neurology as described in claim 4, characterized in that, It also includes a height adjustment component, which is provided between the training frame (1) and the first frame (2). The height adjustment component includes a second fixing block (18) and a bolt (19). The training frame (1) is symmetrically fixed to the second fixing block (18) on the side close to the first frame (2). The bolt (19) for adjusting the height of the first frame (2) is threaded onto the second fixing block (18).
6. The neurological motor disorder training device as described in claim 5, characterized in that, The height adjustment assembly also includes a rubber block (20), and the rubber block (20) is fixed to the side of the first frame (2) near the second fixing block (18) to provide a buffering effect. The rubber block (20) can prevent the first frame (2) from being worn.
7. A neurological movement disorder training device as described in claim 6, characterized in that, It also includes a weighting component. The training rod (21) is provided with the weighting component. The weighting component includes a third fixing block (22), a fourth fixing block (23), a sliding frame (24), a sliding column (26), and a fifth spring (27). The fourth fixing block (23) is symmetrically fixed to the training rod (21). The sliding frame (24) is slidably connected to the fourth fixing block (23). The sliding column (26) is fixed to both the fourth fixing block (23) and the sliding frame (24). The third fixing block (22) is slidably connected to the sliding column (26). The fifth spring (27) is fixed between the third fixing block (22), the sliding frame (24), and the fourth fixing block (23).
8. A training device for motor disorders in neurology as described in claim 7, characterized in that, The weighting component also includes a fourth spring (25), and the fourth spring (25) is fixed between the sliding frame (24) and the fourth fixing block (23).
9. A training device for motor disorders in neurology as described in claim 8, characterized in that, It also includes a rotating component. The training frame (1) is provided with the rotating component. The rotating component includes a fifth fixing block (28) and a rotating shaft (30). The training frame (1) includes a horizontal frame and a vertical frame. The fifth fixing block (28) is fixed to the horizontal frame at the connection between the horizontal frame and the vertical frame of the training frame (1). The rotating shaft (30) is rotatably connected to the fifth fixing block (28) and fixed to the vertical frame.
10. A neurological movement disorder training device as described in claim 9, characterized in that, The rotating assembly also includes a second pull frame (31) and a sixth spring (32). The second pull frame (31) is slidably connected between the vertical frame and the fifth fixing block (28). The fifth fixing block (28) has a third locking hole (29) on its circumferential side that engages with the second pull frame (31). The sixth spring (32) is fixedly connected between the vertical frame and the second pull frame (31).
Citation Information
Patent Citations
Multifunctional fitness training stool
CN111760250A
Deep squat frame with dynamic self-adaptive counterweight adjustment function
CN113101608A