Dizziness rehabilitation assist device for neurology department
By introducing weight and height measurement components into the vertigo rehabilitation aid, dynamically adjusting the rotation speed is solved, and the problem of increased neck pressure in the prior art for patients with height and weight is achieved, achieving a safer and more comfortable rehabilitation treatment effect.
Patent Information
- Application Number
- CN202510580270.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2025-06-27
AI Technical Summary
When performing rehabilitation treatment, existing vertigo treatment devices are used to treat patients with higher height and larger weight, and there are problems such as differences in center of gravity and increased cervical spine load, resulting in increased neck pressure or discomfort reactions.
A neurology vertigo rehabilitation assistant is designed, using a combined structure of work frame, rotary frame and seat, equipped with weight measurement components and height measurement components. By monitoring the patient's weight and height, the rotation speed of the motor is adjusted to ensure the appropriate rotation speed and avoid excessive neck load.
By dynamically adjusting the rotation speed, the pressure and injury risk of the patient's neck are effectively reduced, ensuring the safety and comfort of rehabilitation treatment, and are suitable for patients of different heights and weights.
Smart Images

Figure CN120203930A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of vertigo rehabilitation, and specifically to a vertigo rehabilitation assistive device for neurology. Background Art
[0002] Vertigo is a subjective symptom, a kind of kinesthetic or motion illusion. It is a patient's disorder of the sense of orientation in space or the sense of balance, caused by lesions of the vestibular nervous system. Peripheral vestibular lesions may cause postural vertigo such as otolithiasis, etc., and a vertigo treatment instrument is needed to treat it.
[0003] A vertigo treatment instrument is an advanced medical device integrating diagnosis and treatment. Taking the common vertigo treatment instrument for otolithiasis as an example, its working principle is to simulate the movement of otoliths under normal physiological conditions of the human body, use specific head and body position changes, and rely on the principles of gravity and centrifugal force to make the detached otoliths return to their original positions, thereby improving the patient's vertigo symptoms. However, patients with higher height and greater weight have problems such as differences in the center of gravity position and increased cervical spine load. When performing vertigo rehabilitation treatment, the continuous high-speed rotation of the vertigo rehabilitation assistive device will increase the neck pressure or induce discomfort reactions. Therefore, we propose a vertigo rehabilitation assistive device for neurology. Summary of the Invention
[0004] The purpose of the present invention is to provide a vertigo rehabilitation assistive device for neurology to solve the above problems.
[0005] To achieve the above purpose, the present invention provides the following technical solution: A vertigo rehabilitation assistive device for neurology, comprising: a working frame, a first rotating frame, a second rotating frame and a seat. The first rotating frame is rotatably connected to the working frame, the second rotating frame is connected to the first rotating frame, the seat is arranged on the second rotating frame, and the second rotating frame is rotatably connected to the first rotating frame. A first motor is connected to the first rotating frame and the first motor is installed on the working frame. The first motor is used to drive the first rotating frame to rotate. A second motor is installed on the first rotating frame, and the output shaft of the second motor is connected to the second rotating frame. The second motor is used to drive the second rotating frame to rotate. A fixing frame is connected to the second rotating frame;
[0006] It further comprises:
[0007] A weight measurement component, which is connected to the seat and is also connected to the support frame. The weight measurement component is used to monitor the patient's weight and control the rotation speeds of the first motor and the second motor according to the patient's weight;
[0008] A height measurement component, which is connected to the seat and is also connected to the second rotating frame. The height measurement component is used to monitor the patient's height and control the rotation speeds of the first motor and the second motor according to the patient's height;
[0009] Adjusting component, the adjusting component is connected to the fixing frame, and the adjusting component is connected to the height measuring component, and the adjusting component adjusts the tightening force of the fixing frame.
[0010] Among them, the weight measuring component includes a first groove, the first groove is opened on the second rotating frame, and the bottom end of the seat is connected with a sliding plate, and the sliding plate is connected with the first groove. A spring is connected in the first groove, and the spring is connected with the sliding plate. A through hole is opened at the bottom end of the second rotating frame, and a first triggering member is connected in the groove.
[0011] Among them, the first triggering member includes a through groove, the through groove is opened on the sliding plate, a pressing column is connected in the through groove, the bottom end of the pressing column is conical, and an annular frame is arranged at the corresponding position of the through groove, and the diameter of the annular frame is smaller than the diameter of the through groove.
[0012] Among them, a first pressing plate, a second pressing plate and a third pressing plate are connected to the annular frame. A torsion spring is connected between the first pressing plate, the second pressing plate, the third pressing plate and the annular frame. A first pressure switch, a second pressure switch and a third pressure switch are connected to the annular frame, and the first pressure switch, the second pressure switch and the third pressure switch correspond to the first pressing plate, the second pressing plate and the third pressing plate.
[0013] Among them, the height measuring component includes a neck fixing sleeve, the neck fixing sleeve is slidably connected with the seat, a detecting member is connected to the neck fixing sleeve, a moving member is connected to the neck fixing sleeve, and the moving member drives the neck fixing sleeve to move vertically.
[0014] Among them, the detecting member includes a first pressure detector and two second pressure detectors. The first pressure detector is connected to the back of the neck fixing sleeve, and the two second pressure detectors are connected to both sides of the neck fixing sleeve. The position of the neck fixing sleeve is detected by the first pressure detector and the two second pressure detectors.
[0015] Among them, the moving member includes a second groove, the second groove is opened on the second rotating frame, two connecting frames are connected in the second groove, a third motor is installed in the second groove, a rotating shaft is connected to the output shaft of the third motor, and the rotating shaft is connected with the connecting frame, and a turbine is connected to the rotating shaft.
[0016] Among them, a connecting sliding rod is connected in the second groove, a worm is slidably connected to the sliding rod, the turbine is meshed with the worm, a cross plate is connected to the worm, and the cross plate is connected with the neck fixing sleeve.
[0017] Among them, a first starting plate, a second starting plate and a third starting plate are connected in the second groove. A torsion spring is connected between the first starting plate, the second starting plate, the third starting plate and the second groove. A first starting switch, a second starting switch and a third starting switch are connected in the second groove, and the first starting plate, the second starting plate and the third starting plate correspond to the first starting switch, the second starting switch and the third starting switch.
[0018] Among them, the adjusting component includes the first moving plate and the second moving plate. The first moving plate and the second moving plate are connected to the cross plate. Moving grooves are formed on both sides of the second rotating frame, and the second moving plate is slidably connected to the moving grooves. A fourth motor is connected to the first moving plate, the output shaft of the fourth motor is connected to one end of the fixing frame, and the second moving plate is rotatably connected to the fixing frame.
[0019] The present invention has at least the following beneficial effects: By providing a weight measuring component and a height measuring component, the weight measuring component is connected to the seat and is also connected to the support frame. The weight measuring component is used to monitor the weight of the patient, and the rotation speeds of the first motor and the second motor are controlled according to the patient's weight. When the patient's weight is large, the rotation speeds of the first motor and the second motor are slowed down, thereby preventing the rotation speed of the seat from being too fast and increasing the pressure on the patient's neck, resulting in neck injuries to the patient.
[0020] The height measuring component is connected to the seat and is also connected to the second rotating frame. The height measuring component is used to monitor the height of the patient, and the rotation speeds of the first motor and the second motor are controlled according to the patient's height. When the height measuring component measures that the patient's height is relatively high, the rotation speeds of the first motor and the second motor need to be reduced, thereby preventing the occurrence of center of gravity deviation and damaging the patient's cervical vertebra joints. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a schematic diagram of the overall structure of the present invention;
[0022] Figure 2 is a schematic diagram of the structure of the first rotating frame of the present invention;
[0023] Figure 3 is a schematic diagram of the structure of the second rotating frame of the present invention;
[0024] Figure 4 is a schematic diagram of the structure of the weight measuring component of the present invention;
[0025] Figure 5 is a schematic diagram of the structure of the first trigger member of the present invention;
[0026] Figure 6 is Figure 5 an enlarged schematic diagram of area A in
[0027] Figure 7 is a schematic diagram of the structure of the annular frame of the present invention;
[0028] Figure 8 is a schematic diagram of the structure of the height measuring component of the present invention;
[0029] Figure 9 is a schematic diagram of the structure of the moving member of the present invention;
[0030] Figure 10 is a schematic diagram of the structure of the second groove of the present invention;
[0031] Figure 11 For Figure 10 Schematic enlarged view of area B in
[0032] Figure 12 Schematic structural view of the detection piece of the present invention.
[0033] In the figure: 1, working frame; 2, first rotating frame; 3, seat; 4, adjusting assembly; 5, height measuring assembly; 6, first motor; 7, second rotating frame; 8, second motor; 91, detection piece; 911, neck fixing sleeve; 10, weight measuring assembly; 101, first groove; 11, first triggering piece; 111, through groove; 112, pressing column; 12, sliding plate; 13, spring; 14, annular frame; 15, first pressing plate; 16, second pressing plate; 17, third pressing plate; 18, first pressing switch; 19, second pressing switch; 20, third pressing switch; 21, second groove; 22, moving piece; 221, cross plate; 23, fixing frame; 24, first moving plate; 241, fourth motor; 25, second moving plate; 26, worm; 27, sliding rod; 28, third motor; 29, connecting frame; 30, turbine; 31, first pressure detector; 32, second pressure detector; 33, first starting plate; 34, second starting plate; 35, third starting plate; 36, first starting switch; 37, second starting switch; 38, third starting switch. Specific embodiments
[0034] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0035] Embodiment 1
[0036] Please refer to Figures 1 to 12, the present invention provides a technical solution: a vertigo rehabilitation assistive device for neurology department, comprising: a working frame 1, a first rotating frame 2, a second rotating frame 7 and a seat 3. The first rotating frame 2 is rotatably connected to the working frame 1, the second rotating frame 7 is connected to the first rotating frame 2, the seat 3 is arranged on the second rotating frame 7, and the second rotating frame 7 is rotatably connected to the first rotating frame 2. A first motor 6 is connected to the first rotating frame 2 and the first motor 6 is installed on the working frame 1. The first motor 6 is used to drive the first rotating frame 2 to rotate. A second motor 8 is installed on the first rotating frame 2, and the output shaft of the second motor 8 is connected to the second rotating frame 7. The second motor 8 is used to drive the second rotating frame 7 to rotate. A fixed frame 23 is connected to the second rotating frame 7. The first motor 6 drives the first rotating frame 2 to rotate along the z-axis, and the second motor 8 drives the second rotating frame 7 to rotate along the x-axis, so as to treat the patient's vertigo according to the rotation directions of the first rotating frame 2 and the second rotating frame 7;
[0037] It further comprises:
[0038] a weight measurement component 10, the weight measurement component 10 is connected to the seat 3 and is connected to the support frame. The weight measurement component 10 is used to monitor the patient's weight and control the rotation speeds of the first motor 6 and the second motor 8 according to the patient's weight. When the patient's weight is large, the rotation speeds of the first motor 6 and the second motor 8 are slowed down, so as to prevent the rotation speed of the seat 3 from being too fast, resulting in an increase in the patient's neck pressure and causing neck injury to the patient;
[0039] a height measurement component 5, the height measurement component 5 is connected to the seat 3 and is connected to the second rotating frame 7. The height measurement component 5 is used to monitor the patient's height and control the rotation speeds of the first motor 6 and the second motor 8 according to the patient's height. When the height measurement component 5 measures that the patient's height is relatively high, the rotation speeds of the first motor 6 and the second motor 8 need to be reduced, so as to prevent the occurrence of center of gravity deviation and cause damage to the patient's cervical vertebra joints;
[0040] an adjustment component 4, the adjustment component 4 is connected to the fixed frame 23 and is connected to the height measurement component 5. The adjustment component 4 adjusts the tightening force of the fixed frame 23. By setting the adjustment component 4, the position of the fixed frame 23 can be adjusted according to the patient's height, and the adjustment component 4 can adjust the fixed angle of the fixed frame 23 and the tightening force of the fixed frame 23 according to the patient's weight, so as to ensure the safety of the patient during the rotation process.
[0041] The weight measurement component 10 includes a first groove 101 which is formed on the second rotating frame 7. The bottom end of the seat 3 is connected with a sliding plate 12, and the sliding plate 12 is connected with the first groove 101. A spring 13 is connected in the first groove 101 and is connected with the sliding plate 12. A through hole is formed at the bottom end of the second rotating frame. A first trigger member 11 is connected in the groove. By providing the first groove 101, the spring 13 can be protected, and before the dizziness rehabilitation assistor is started, the service life of the spring 13 can be prolonged. When a patient sits on the seat 3, the seat 3 is squeezed, and then the seat 3 drives the sliding plate 12 to slide in the first groove 101. The sliding plate 12 and the first groove 101 are in fit to form a sealed space. Then when the sliding plate 12 moves, the gas in the first groove 101 is discharged through the through hole to press against the spring 13. According to the different weights of patients, the extrusion force on the spring 13 is different, and then the downward displacement distance of the sliding plate 12 is different. According to the downward displacement distance of the sliding plate 12, the first trigger member 11 can be activated to judge the weight of the patient. When the patient finishes the treatment and leaves the seat 3, the external gas is transported into the first groove 101 through the through hole to make the sliding plate 12 return to its original position, and then the seat 3 returns to its original position.
[0042] The first trigger member 11 includes a through groove 111 which is formed on the sliding plate 12. A pressing column 112 is connected in the through groove 111. The bottom end of the pressing column 112 is conical. An annular frame 14 is arranged at the corresponding position of the through groove 111. The diameter of the annular frame 14 is smaller than that of the through groove 111. By providing the through groove 111, the pressing column 112 can be fixed. When the sliding plate 12 moves downward, it drives the pressing column 112 to move downward and then pass through the annular frame 14.
[0043] A pressure - resisting plate one 15, a pressure - resisting plate two 16 and a pressure - resisting plate three 17 are connected to the annular frame 14. A torsion spring is connected between the pressure - resisting plate one 15, the pressure - resisting plate two 16, the pressure - resisting plate three 17 and the annular frame 14. After the patient's treatment is completed, the torsion spring can be used to make the pressure - resisting plate one 15, the pressure - resisting plate two 16 and the pressure - resisting plate three 17 return to their original positions. A pressure - resisting switch one 18, a pressure - resisting switch two 19 and a pressure - resisting switch three 20 are connected to the annular frame 14, and the pressure - resisting switch one 18, the pressure - resisting switch two 19 and the pressure - resisting switch three 20 correspond to the pressure - resisting plate one 15, the pressure - resisting plate two 16 and the pressure - resisting plate three 17 respectively. According to the different weights of patients, the downward displacement distance of the sliding plate 12 is different. The greater the downward displacement distance of the sliding plate 12, the heavier the patient's weight. Furthermore, the pressure - resisting plate one 15, the pressure - resisting plate two 16 and the pressure - resisting plate three 17 will be pressed respectively. When the pressure - resisting plate one 15, the pressure - resisting plate two 16 and the pressure - resisting plate three 17 are pressed, they will trigger the pressure - resisting switch one 18, the pressure - resisting switch two 19 and the pressure - resisting switch three 20 respectively. The pressure - resisting switch one 18, the pressure - resisting switch two 19 and the pressure - resisting switch three 20 are used to control the rotation speeds of the motor one 6 and the motor two 8. The heavier the patient's weight, the slower the rotation speeds of the motor one 6 and the motor two 8. Furthermore, the rotation speeds of the motor one 6 and the motor two 8 controlled by the pressure - resisting switch one 18, the pressure - resisting switch two 19 and the pressure - resisting switch three 20 gradually slow down.
[0044] The height - measuring component 5 includes a neck fixing sleeve 911. The neck fixing sleeve 911 is slidably connected to the seat 3. A detecting member 91 is connected to the neck fixing sleeve 911. A moving member 22 is connected to the neck fixing sleeve 911. The moving member 22 drives the neck fixing sleeve 911 to move vertically. The head of the patient can be fixed through the neck fixing sleeve 911, thus preventing the patient's neck from being injured during the rotation process. By setting the detecting member 91, the position of the neck fixing sleeve 911 can be detected. Then, according to the position of the neck fixing sleeve 911, the moving member 22 is started, and the moving member 22 drives the neck fixing sleeve 911 to move vertically, so as to ensure that the neck fixing sleeve 911 can fix the patient's neck.
[0045] The detection piece 91 includes a first pressure detector 31 and two second pressure detectors 32. The first pressure detector 31 is connected to the back of the neck fixing sleeve 911, and the two second pressure detectors 32 are connected to both sides of the neck fixing sleeve 911. The position of the neck fixing sleeve 911 is detected by the first pressure detector 31 and the two second pressure detectors 32. Before treating the patient, the patient sits on the seat 3. If the pressure values of the first pressure detector 31 and the two second pressure detectors 32 are both within the standard range, the neck fixing sleeve 911 fixes the patient's neck. When the first pressure detector 31 and the two second pressure detectors 32 are not under pressure or the pressure values are less than the standard range, the neck fixing sleeve 911 is at the lower end of the patient's neck. Then, the moving piece 22 is activated to drive the neck fixing sleeve 911 to move upward, so that the neck fixing sleeve 911 fits with the patient's neck. When the pressure values of the first pressure detector 31 and the two second pressure detectors 32 are greater than the standard range, the neck fixing sleeve 911 is at the upper end of the patient's neck. Then, the moving piece 22 is activated to drive the neck fixing sleeve 911 to move downward, so that the neck fixing sleeve 911 fits with the patient's neck, thereby preventing the patient from being too high and causing damage to the patient's neck when the instrument rotates.
[0046] The moving piece 22 includes a second groove 21. The second groove 21 is opened on the second rotating frame 7. Two connecting frames 29 are connected in the second groove 21. A third motor 28 is installed in the second groove 21. A rotating shaft is connected to the output shaft of the third motor 28, and the rotating shaft is connected to the connecting frame 29. A turbine 30 is connected to the rotating shaft. By providing the second groove 21, the third motor 28 can be protected, thereby extending the service life of the third motor 28. When the third motor 28 is activated, it drives the rotating shaft to rotate, and the rotation of the rotating shaft can drive the turbine 30 to rotate.
[0047] A connecting slide rod 27 is connected in the second groove 21. A worm 26 is slidably connected to the slide rod 27, and the turbine 30 meshes with the worm 26. A cross plate 221 is connected to the worm 26, and the cross plate 221 is connected to the neck fixing sleeve 911. The worm 26 can slide vertically on the slide rod 27. When the turbine 30 rotates forward, it can drive the worm 26 to move upward. When the turbine 30 rotates in reverse, it can drive the worm 26 to move downward.
[0048] When the first pressure detector 31 and the two second pressure detectors 32 are not under pressure or the pressure values are less than the standard range, the output shaft of the third motor 28 is rotated forward. The forward rotation of the output shaft of the third motor 28 drives the turbine 30 to rotate forward, which can drive the worm 26 to move upward, and then drive the cross plate 221 to move upward. The upward movement of the cross plate 221 can drive the neck fixing sleeve 911 to rise, so that the neck fixing sleeve 911 fits with the patient's neck. When the first pressure detector 31 and the two second pressure detectors 32 are not under pressure or return to the standard range, the third motor 28 is turned off.
[0049] When the first pressure detector 31 and the two second pressure detectors 32 are not under pressure or the pressure value is greater than the standard range, the output shaft of the third motor 28 rotates in the reverse direction. The reverse rotation of the output shaft of the third motor 28 drives the reverse rotation of the turbine 30, which can drive the worm 26 to move downward, and then drive the cross plate 221 to move downward. The downward movement of the cross plate 221 can drive the neck fixing sleeve 911 to descend, so that the neck fixing sleeve 911 fits with the patient's neck. When the first pressure detector 31 and the two second pressure detectors 32 are not under pressure and return to the standard range, the third motor 28 is turned off.
[0050] A first starting plate 33, a second starting plate 34 and a third starting plate 35 are internally connected to the second groove 21. Torsion springs are connected between the first starting plate 33, the second starting plate 34, the third starting plate 35 and the second groove 21. A first starting switch 36, a second starting switch 37 and a third starting switch 38 are connected to the second groove 21, and the first starting plate 33, the second starting plate 34, the third starting plate 35 correspond to the first starting switch 36, the second starting switch 37 and the third starting switch 38 respectively. By setting the first starting plate 33, the second starting plate 34 and the third starting plate 35, the first starting switch 36, the second starting switch 37 and the third starting switch 38 can be triggered respectively. The first starting switch 36, the second starting switch 37 and the third starting switch 38 are used to control the rotation speeds of the first motor 6 and the second motor 8. The higher the patient's height, the slower the rotation speeds of the first motor 6 and the second motor 8. Therefore, the rotation speeds of the first motor 6 and the second motor 8 controlled by the first starting switch 36, the second starting switch 37 and the third starting switch 38 gradually decrease.
[0051] Embodiment 2
[0052] The adjusting assembly 4 includes a first moving plate 24 and a second moving plate 25. The first moving plate 24 and the second moving plate 25 are connected to the cross plate 221. Moving grooves are formed on both sides of the second rotating frame 7, and the second moving plate 25 is slidably connected to the moving grooves. By setting the moving grooves, the second moving plate 25 and the fixing frame 23 can slide in the sliding grooves. The first moving plate 24 and the second moving plate 25 are connected to the cross plate 221. Therefore, the position of the fixing frame 23 can be adjusted along with the position of the neck fixing sleeve 911. Thus, the fixing frame 23 can be adjusted for patients of different heights to ensure that the fixing frame 23 can fix the patient.
[0053] A fourth motor 241 is connected to the first moving plate 24. The output shaft of the fourth motor 241 is connected to one end of the fixing frame 23. The second moving plate 25 is rotatably connected to the fixing frame 23. The fourth motor 241 drives the fixing frame 23 to rotate. The first pressing switch 18, the second pressing switch 19 and the third pressing switch 20 can start the fourth motor 241 and control the number of rotation turns of the fourth motor 241. Thus, the fixing angle of the fixing frame 23 is adjusted. Therefore, it is ensured that patients of different weights can be fixed comfortably, preventing the fixing frame 23 from being too tight or too loose, resulting in secondary injuries to the patient during the rotation treatment process.
[0054] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
[0055] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A neurology vertigo rehabilitation aid, comprising: A working frame (1), a rotating frame 1 (2), a rotating frame 2 (7) and a seat (3), wherein the rotating frame 1 (2) is rotatably connected to the working frame (1), the rotating frame 2 (7) is connected to the rotating frame 1 (2), the seat (3) is arranged on the rotating frame 2 (7), and the rotating frame 2 (7) is rotatably connected to the rotating frame 1 (2), the rotating frame 1 (2) is connected with a motor 1 (6), and the motor 1 (6) is installed on the working frame (1), the motor 1 (6) is used to drive the rotating frame 1 (2) to rotate, the rotating frame 1 (2) is installed with a motor 2 (8), and the output shaft of the motor 2 (8) is connected to the rotating frame 2 (7), the motor 2 (8) is used to drive the rotating frame 2 (7) to rotate, and the rotating frame 2 (7) is connected with a fixed frame (23); It is characterized by: also including: A weight measuring assembly (10), the weight measuring assembly (10) being connected to the seat (3) and the weight measuring assembly (10) being connected to the support frame, the weight measuring assembly (10) being used to monitor the weight of the patient and to control the rotation speed of the motor 1 (6) and the motor 2 (8) according to the weight of the patient; A height measuring assembly (5), the height measuring assembly (5) being connected to the seat (3) and the height measuring assembly (5) being connected to the second rotating frame (7), the height measuring assembly (5) being used to monitor the height of the patient and to control the rotation speeds of the first motor (6) and the second motor (8) according to the height of the patient; An adjusting component (4), the adjusting component (4) is connected to the fixing frame (23), and the adjusting component (4) is connected to the height measuring component (5), and the adjusting component (4) adjusts the tightness of the fixing frame (23).
2. The neurology vertigo rehabilitation aid according to claim 1, characterized in that: The weight measuring assembly (10) comprises a groove one (101), wherein the groove one (101) is provided on the rotating frame two (7), and the bottom end of the seat (3) is connected with a sliding plate (12), and the sliding plate (12) is connected with the groove one (101), a spring (13) is connected inside the groove one (101), and the spring (13) is connected with the sliding plate (12), a through hole is provided at the bottom end of the rotating frame two (7), and a trigger member one (11) is connected inside the groove.
3. The neurology vertigo rehabilitation aid according to claim 2, characterized in that: The trigger member 1 (11) comprises a through slot (111), wherein the through slot (111) is provided on the sliding plate (12), a pressing column (112) is connected in the through slot (111), the bottom end of the pressing column (112) is conical, and an annular frame (14) is provided at a position corresponding to the through slot (111), wherein the diameter of the annular frame (14) is smaller than the diameter of the through slot (111).
4. The neurology vertigo rehabilitation aid according to claim 3, characterized in that: The annular frame (14) is connected with a pressure plate 1 (15), a pressure plate 2 (16) and a pressure plate 3 (17), and a torsion spring is connected between the pressure plate 1 (15), the pressure plate 2 (16) and the pressure plate 3 (17) and the annular frame (14). The annular frame (14) is connected with a pressure switch 1 (18), a pressure switch 2 (19) and a pressure switch 3 (20), and the pressure switch 1 (18), the pressure switch 2 (19) and the pressure switch 3 (20) correspond to the pressure plate 1 (15), the pressure plate 2 (16) and the pressure plate 3 (17).
5. The neurology vertigo rehabilitation aid according to claim 1, characterized in that: The height measuring assembly (5) comprises a neck fixing sleeve (911), the neck fixing sleeve (911) is slidably connected to the seat (3), a detection member (91) is connected to the neck fixing sleeve (911), a moving member (22) is connected to the neck fixing sleeve (911), and the moving member (22) drives the neck fixing sleeve (911) to move vertically.
6. The neurology vertigo rehabilitation aid according to claim 5, characterized in that: The detection element (91) comprises a pressure detector one (31) and two pressure detectors two (32); the pressure detector one (31) is connected to the back of the neck fixing sleeve (911); the two pressure detectors two (32) are connected to both sides of the neck fixing sleeve (911); the position of the neck fixing sleeve (911) is detected by the pressure detector one (31) and the two pressure detectors two (32).
7. The neurology vertigo rehabilitation aid according to claim 6, characterized in that: The moving part (22) comprises a second groove (21), wherein the second groove (21) is provided on the second rotating frame (7), wherein two connecting frames (29) are connected in the second groove (21), wherein a third motor (28) is installed in the second groove (21), wherein a rotating shaft is connected to the output shaft of the third motor (28), and the rotating shaft is connected to the connecting frame (29), and wherein a turbine (30) is connected to the rotating shaft.
8. The neurology vertigo rehabilitation aid according to claim 7, characterized in that: A connecting slide rod (27) is connected inside the second groove (21), a worm (26) is slidably connected to the slide rod (27), and the turbine (30) is meshed with the worm (26), a transverse plate (221) is connected to the worm (26), and the transverse plate (221) is connected to the neck fixing sleeve (911).
9. The neurology vertigo rehabilitation aid according to claim 8, characterized in that: The groove 2 (21) is internally connected with a start plate 1 (33), a start plate 2 (34) and a start plate 3 (35); a torsion spring is connected between the start plate 1 (33), the start plate 2 (34) and the start plate 3 (35) and the groove 2 (21); the groove 2 (21) is internally connected with a start switch 1 (36), a start switch 2 (37) and a start switch 3 (38); and the start plate 1 (33), the start plate 2 (34) and the start plate 3 (35) correspond to the start switch 1 (36), the start switch 2 (37) and the start switch 3 (38).
10. The neurology vertigo rehabilitation aid according to claim 1, characterized in that: The adjustment assembly (4) comprises a movable plate 1 (24) and a movable plate 2 (25), wherein the movable plate 1 (24) and the movable plate 2 (25) are connected to the horizontal plate (221), movable grooves are provided on both sides of the rotating frame 2 (7), and the movable plate 2 (25) is slidably connected to the movable grooves, the movable plate 1 (24) is connected to a motor 4 (241), the output shaft of the motor 4 (241) is connected to one end of the fixed frame (23), and the movable plate 2 (25) is rotatably connected to the fixed frame (23).