Auxiliary training device for scoliosis
By designing a scoliosis measuring ruler and an auxiliary training device with an abdominal belt structure, and using an electronic vibrator and a micro camera to monitor spinal curvature in real time, the problem that existing tools require others to hold them is solved, and autonomous adjustment and comfortable training effects are achieved.
Patent Information
- Application Number
- CN202510945694.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2025-09-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing scoliosis training tools require someone to hold a measuring ruler for a long time, which makes it impossible to observe the spinal curvature in time, resulting in poor training results.
An auxiliary training device consisting of a scoliosis measuring ruler, a base and an abdominal belt structure has been designed. It uses an electronic vibrator and a micro camera to monitor spinal curvature in real time, reminds trainees to adjust their posture through vibration, and displays the curvature angle on a mobile phone.
Trainees can adjust their postures by themselves to improve training effects and reduce intervention from others. It also has an abdominal massage function to increase wearing comfort.
Smart Images

Figure CN120617025A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of spinal auxiliary training equipment, and more specifically, to an auxiliary training device for scoliosis. Background Art
[0002] Scoliosis is a spinal deformity characterized by lateral curvature of one or more spinal segments or associated vertebral rotation, resulting in a C- or S-shaped curve in the back. Scoliosis is particularly common during adolescence, affecting not only the adolescent's physical appearance but also potentially leading to serious health problems. Therefore, early identification and intervention are crucial. Early diagnosis and timely intervention with corrective exercises can correct and improve scoliosis. However, the current tool used for scoliosis is a scoliosis measuring ruler. When training teenagers with scoliosis, the teenagers usually use four-point support training, and the patient's spine will be required to be in a neutral position. Then other personnel will put a ruler above the trainer's spine and observe that the bead in the middle of the ruler is at the 0° position, indicating that the trainer's body posture is correct and the spine remains normal. However, for long-term training, one person needs to hold the ruler in hand all the time, so it is extremely inconvenient to use. In addition, the trainer cannot observe or recognize whether he or she has spinal curvature in a timely and effective manner, and the curvature direction and degree cannot be known in time, resulting in a significant reduction in training results. In view of this, we propose an auxiliary training device for scoliosis. Summary of the Invention
[0003] 1. Technical problems to be solved
[0004] The purpose of the present application is to provide an auxiliary training device for scoliosis, which solves the technical problems in the above-mentioned background technology and enables the trainee to intuitively see the spinal curvature angle during scoliosis training. With the combined effect of the vibration effect, it can be determined whether the spine is curved, in which direction it is curved, and the bending angle can be intuitively displayed. The overall structural design is reasonable, easy to wear, comfortable to wear, and has a local abdominal massage effect, which solves the problem of local muscle soreness caused by long-term training. There is no need for others to hold a scoliosis measuring ruler for a long time to assist in training, and the trainee can adjust the movement by himself without being reminded.
[0005] 2. Technical solution
[0006] The technical solution of the present application provides an auxiliary training device for scoliosis, comprising: a scoliosis measuring ruler, a base, and an abdominal belt structure, wherein the scoliosis measuring ruler is fixed to the base via a positioning rod thread, the base is limitedly mounted on the abdominal belt structure, and the abdominal belt structure includes a back restraint belt and an abdominal restraint belt;
[0007] A power supply device and a touch-pressure switch are fixedly provided at both ends of the base, an electronic vibrator is fixedly installed on the power supply device, a T-shaped seat is fixedly provided on the base, a miniature camera is detachably installed on the T-shaped seat, an arc-shaped elastic plate is rotatably installed on the base, two return springs are fixedly connected between the arc-shaped elastic plate and the T-shaped seat, an L-shaped touch-pressure plate is fixedly provided at both ends of the arc-shaped elastic plate, and the switch button of the touch-pressure switch is attached to the surface of the L-shaped touch-pressure plate;
[0008] Three massage columns are detachably mounted on the abdominal restraint belt, and a plurality of massage balls are evenly arranged on the spherical surfaces of the massage columns.
[0009] By adopting the above technical solution, the auxiliary training device for scoliosis consists of a scoliosis measuring ruler, a base and an abdominal belt structure. The abdominal belt structure consists of a back restraint belt and an abdominal restraint belt, which can be restrained on the abdomen of the trainee, and three massage columns can be installed using the abdominal restraint belt. The massage ball can be used to assist in massaging the abdomen, thereby improving wearing comfort and alleviating muscle soreness caused by long-term training. The base can be installed in a limited position through the back restraint belt, and the scoliosis measuring ruler can be fixed to the base through a positioning rod thread. During training, the trainee adopts a four-point support method to pre-adjust the horizontal position of the scoliosis measuring ruler so that the trainee's spine is in a normal posture, and the L-shaped touch plates at both ends of the arc-shaped elastic plate elastically resist the trainee's back. When the trainee's spine bends during training, , the bent side will protrude and squeeze the L-shaped touch panel to elastically deform, so that the switch button of the corresponding touch switch is turned on, thereby connecting the circuit to the corresponding power supply device and providing a vibration effect to the electronic vibrator in the corresponding position, thereby reminding the trainees to realize that the spine is bent to that side and to adjust the posture in time, thereby effectively achieving the purpose of spinal posture correction training. A miniature camera is also installed on the T-shaped seat, which can monitor the status of the scoliosis measuring ruler in real time, and the miniature camera can communicate with mobile devices and clearly display the real-time picture on the mobile phone interface, so that the trainees can intuitively see the spinal curvature angle, and thus cooperate with the vibration effect to determine whether the spine is bent. There is no need for others to hold the scoliosis measuring ruler for a long time to assist in training, and the trainees can adjust their movements by themselves without being reminded.
[0010] Optionally, an arc-shaped inner groove is provided in the scoliosis measuring ruler, a ball is movably provided in the arc-shaped inner groove, and the scoliosis measuring ruler is provided with angle scale lines along the arc-shaped inner groove.
[0011] By adopting the above technical solution, the ball can roll freely along the arc-shaped inner groove. When the scoliosis measuring ruler is in a horizontal state, the ball is at the 0° position of the angle scale line, and the micro camera captures the position of the ball in real time, so that the position of the ball can be intuitively viewed through the mobile phone interface.
[0012] Optionally, a positioning hole is provided at both ends of the scoliosis measuring ruler, a strip groove is provided on the base, the scoliosis measuring ruler is movably inserted into the strip groove, and a positioning rod is threadedly fixed between the base and the scoliosis measuring ruler.
[0013] By adopting the above technical solution, the scoliosis measuring ruler is inserted into the strip groove of the base and fixed with two positioning rod threads. After wearing the abdominal belt structure and the trainee maintains a four-point support posture, the scoliosis measuring ruler is adjusted to a horizontal state, that is, the trainee's spine is in a normal state.
[0014] Optionally, the power supply device has a convex structure, and the four corners of the power supply device are connected to the back restraint belt with snap-on buckles. The electronic vibrator is an electromagnetic vibrator device, and is electrically connected to the adjacent touch switch and power supply device through a cable.
[0015] By adopting the above technical solution, the power supply device and the back restraint are limited and fixed by using four snap buckles. An electronic vibrator is installed on the power supply device and is located at both ends of the base. Therefore, when the spine bends to one side of the body, the electronic vibrator on the corresponding bent side will connect the circuit and realize the vibration reminder function.
[0016] Optionally, two circular grooves are provided on the back restraint belt, and the vibrating surface of the electronic vibrator passes through the circular grooves and is arranged to contact the trainee's back.
[0017] By adopting the above technical solution, the vibrating surface of the electronic vibrator is set against the trainee's back. When the electronic vibrator vibrates, it can clearly use the vibration to remind the trainee that the spine is bent to the side and needs to make posture adjustments in time.
[0018] Optionally, the arc-shaped elastic plate is rotatably connected to a rotating shaft between the middle portion and the base, and the two reset springs are symmetrically arranged along the axis of the rotating shaft.
[0019] By adopting the above technical solution, the arc-shaped elastic plate is rotated on the mounting base through the rotating shaft, and two symmetrically arranged reset springs make the L-shaped touch pressure plates at both ends of the arc-shaped elastic plate elastically press against the trainee's back. When the trainee's posture is adjusted to normal, the arc-shaped elastic plate returns to its normal state under the action of the reset spring.
[0020] Optionally, a rectangular mounting groove is provided on the T-shaped seat, part of the structure of the micro camera is inserted into the rectangular mounting groove, and a screw is threadedly fixed between the micro camera and the T-shaped seat. The micro camera has a built-in radio frequency module, a baseband controller, an antenna, a power management module, a memory and a processor module for connecting to the mobile phone client via Bluetooth.
[0021] By adopting the above technical solution, the micro camera is responsible for wireless signal reception and transmission, data modulation and mediation through the RF module, and cooperates with Bluetooth to achieve communication connection with the mobile phone. The baseband controller handles the Bluetooth protocol and link management to ensure that the device operates according to the protocol specifications and can support data storage functions.
[0022] Optionally, the back restraint is made of nylon cloth and has breathable holes evenly arranged on the surface; the abdominal restraint is made of mesh cloth; connecting rods are provided at both ends of the abdominal restraint, and a through groove is formed by the connecting rod; a Velcro hook surface and a Velcro fleece surface are fixedly provided on the end surface of the back restraint, the end of the back restraint is connected by the through groove, and the Velcro hook surface and the Velcro fleece surface are glued together.
[0023] By adopting the above technical solution, the back restraint is made of nylon cloth with good elasticity. By setting ventilation holes and cooperating with the abdominal restraint with good breathable performance, it is breathable and comfortable to wear. The ends of the back restraint are connected by through-grooves, and the Velcro hook surface and the Velcro fleece surface are glued and connected, so that it can be worn by different people.
[0024] Optionally, the abdominal restraint belt is provided with three circular groove structures, and the abdominal restraint belt is fixed with a clamping ring at the circular groove structure, and the massage column is detachably buckled and installed at the clamping ring.
[0025] By adopting the above technical solution, three massage columns equipped with massage balls are installed on the abdominal restraint, which can massage the local area of the trainee's abdomen, thereby alleviating muscle soreness caused by long-term training.
[0026] 3. Beneficial effects
[0027] One or more technical solutions provided in the technical solution of this application have at least the following technical effects or advantages:
[0028] 1. This training device uses a scoliosis measuring ruler mounted on a base, a belt structure to restrain the trainee's abdomen, and three massage columns to provide auxiliary abdominal massage, improving wearing comfort and relieving muscle soreness caused by long-term training.
[0029] 2. The trainees use the four-point support method for training. By pre-adjusting the horizontal position of the scoliosis measuring ruler, the trainees' spine is in a normal posture. During training, if the spine bends to one side of the body, the bent side protrudes and squeezes the L-shaped touch plate to elastically deform, turning on the corresponding touch switch and realizing the vibration reminder effect of the electronic vibrator in the corresponding position. In addition, a miniature camera installed on the base monitors the status of the scoliosis measuring ruler in real time, and transmits the real-time image to the mobile client for display, so that the trainees can intuitively see the spinal curvature angle. Combined with the combined effect of the vibration effect, it can be determined whether the spine is bent, in which direction it bends, and the bending angle can be intuitively displayed. There is no need for others to hold the scoliosis measuring ruler for a long time to assist in training, and the trainees can adjust their movements by themselves without being reminded. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 This is a schematic diagram of the overall structure of an auxiliary training device for scoliosis disclosed in a preferred embodiment of the present application;
[0031] Figure 2 This is a schematic diagram of the abdominal belt structure of a scoliosis auxiliary training device disclosed in a preferred embodiment of the present application;
[0032] Figure 3 An auxiliary training device for scoliosis disclosed in a preferred embodiment of this application Figure 2 A in the middle is an enlarged structural diagram;
[0033] Figure 4 This is a schematic structural diagram of a base, an electronic vibrator, and a micro camera of an auxiliary training device for scoliosis disclosed in a preferred embodiment of the present application;
[0034] Figure 5 An auxiliary training device for scoliosis disclosed in a preferred embodiment of this application Figure 4 The enlarged structural diagram at B in the middle;
[0035] Figure 6 A schematic structural diagram of a scoliosis measuring ruler for a scoliosis auxiliary training device disclosed in a preferred embodiment of the present application;
[0036] Explanation of the numbers in the figure: 1. Scoliosis measuring ruler; 11. Arc-shaped inner groove; 12. Ball; 13. Angle scale line; 14. Positioning hole; 2. Base; 21. Power supply device; 211. Snap buckle; 22. Bar groove; 23. T-shaped seat; 24. Positioning rod; 3. Electronic vibrator; 4. Arc-shaped elastic plate; 41. Rotating shaft; 42. L-shaped touch plate; 43. Touch switch; 44. Reset spring; 5. Mini camera; 51. Screw; 6. Back strap; 61. Ventilation hole; 62. Circular groove; 63. Velcro hook surface; 64. Velcro fleece surface; 8. Abdominal strap; 81. Connecting rod; 82. Snap ring; 83. Threading groove; 9. Massage column; 91. Massage ball. DETAILED DESCRIPTION
[0037] The present application is further described in detail below with reference to the accompanying drawings.
[0038] Reference Figures 1 to 6 A scoliosis auxiliary training device comprises: a scoliosis measuring ruler 1, a base 2 and an abdominal belt structure, wherein the scoliosis measuring ruler 1 is threadedly fixed to the base 2 via a positioning rod 24, and the base 2 is limitedly mounted on the abdominal belt structure, and the abdominal belt structure comprises a back restraint belt 6 and an abdominal restraint belt 8;
[0039] A power supply device 21 and a touch-pressure switch 43 are fixedly provided at both ends of the base 2. An electronic vibrator 3 is fixedly installed on the power supply device 21. A T-shaped seat 23 is fixedly provided on the base 2. A miniature camera 5 is detachably mounted on the T-shaped seat 23. An arc-shaped elastic plate 4 is rotatably mounted on the base 2. Two return springs 44 are fixedly connected between the arc-shaped elastic plate 4 and the T-shaped seat 23. An L-shaped touch-pressure plate 42 is fixedly provided at both ends of the arc-shaped elastic plate 4. The switch button of the touch-pressure switch 43 is attached to the surface of the L-shaped touch-pressure plate 42.
[0040] Three massage columns 9 are detachably mounted on the abdominal strap 8, and a plurality of massage balls 91 are evenly arranged on the spherical surface of the massage columns 9. The auxiliary training device for scoliosis is composed of a scoliosis measuring ruler 1, a base 2 and an abdominal belt structure. The abdominal belt structure is composed of a back strap 6 and an abdominal strap 8, which can be bound to the abdomen of the trainee, and the three massage columns 9 are mounted using the abdominal strap 8. The massage balls 91 can be used to assist in massaging the abdomen, thereby improving wearing comfort and alleviating muscle soreness caused by long-term training. The base 2 can be limitedly mounted through the back strap 6, and the scoliosis measuring ruler 1 can be threadedly fixed to the base 2 through the positioning rod 24. During training, the trainee adopts a four-point support method to pre-adjust the horizontal position of the scoliosis measuring ruler 1 so that the trainee's spine is in a normal posture, and the L-shaped touch plates 42 at both ends of the arc-shaped elastic plate 4 elastically resist the trainee's back. During the training of the trainee, when the spine bends, the bent side will protrude and squeeze the L-shaped touch plate 42 to elastically deform, so that the switch button of the corresponding touch switch 43 is turned on, thereby connecting the circuit of the corresponding power supply device 21 and providing the electronic vibrator 3 at the corresponding position to emit a vibration effect, thereby reminding the trainee to realize that the spine is bent to that side and to adjust the posture in time, thereby effectively achieving the purpose of spinal posture correction training. A miniature camera 5 is also installed on the T-shaped seat 23, which can monitor the status of the scoliosis measuring ruler 1 in real time, and the miniature camera 5 can communicate with the mobile phone mobile device and clearly display the real-time picture on the mobile phone interface, so that the trainee can intuitively see the spinal bending angle, and thus cooperate with the vibration effect to determine whether the spine is bent. There is no need for others to hold the scoliosis measuring ruler 1 for a long time to assist in training, and the trainee can adjust the movement by himself without being reminded.
[0041] Reference Figure 1 and Figure 6 An arc-shaped inner groove 11 is provided in the scoliosis measuring ruler 1, and a ball 12 is movably provided in the arc-shaped inner groove 11. The scoliosis measuring ruler 1 is provided with an angle scale line 13 along the arc-shaped inner groove 11. The ball 12 can roll freely along the arc-shaped inner groove 11. When the scoliosis measuring ruler 1 is in a horizontal state, the ball 12 is at the 0° position of the angle scale line 13, and the micro camera 5 captures the position of the ball 12 in real time, so that the position of the ball 12 can be intuitively viewed through the mobile phone interface.
[0042] Reference Figure 4 and Figure 6A positioning hole 14 is provided at both ends of the scoliosis measuring ruler 1, and a strip groove 22 is provided on the base 2. The scoliosis measuring ruler 1 is movably inserted into the strip groove 22, and a positioning rod 24 is threadedly fixed between the base 2 and the scoliosis measuring ruler 1. The scoliosis measuring ruler 1 is inserted into the strip groove 22 of the base 2 and is threadedly fixed using two positioning rods 24. After wearing the abdominal belt structure and the trainee maintaining a four-point support posture, the scoliosis measuring ruler 1 is adjusted to a horizontal state, that is, the trainee's spine is in a normal state.
[0043] Reference Figure 1 and Figure 4 The power supply device 21 has a convex structure, and the four corners of the power supply device 21 are connected to the back restraint belt 6 with a snap-on connection 211. The electronic vibrator 3 is an electromagnetic vibrator device, and is electrically connected to the adjacent touch switch 43 and the power supply device 21 through a cable. The power supply device 21 and the back restraint belt 6 are fixed and limited by four snap-on connection 211. An electronic vibrator 3 is installed on each power supply device 21 and is arranged at both ends of the base 2. When the spine bends to one side of the body, the electronic vibrator 3 on the corresponding bent side will connect the circuit and realize the vibration reminder function.
[0044] Reference Figure 1 and Figure 2 Two circular grooves 62 are provided on the back restraint belt 6. The vibrating surface of the electronic vibrator 3 passes through the circular grooves 62 and is set against the trainee's back. When the electronic vibrator 3 vibrates, it can clearly use the vibration to remind the trainee that the spine is bent to that side and that posture adjustment actions need to be made in time.
[0045] Reference Figure 4 and Figure 5 The arc-shaped elastic plate 4 is located between the middle part and the base 2 and is rotatably connected to a rotating shaft 41. Two return springs 44 are symmetrically arranged along the axis of the rotating shaft 41. The arc-shaped elastic plate 4 is rotatably mounted on the base 2 through the rotating shaft 41, and the two symmetrically arranged return springs 44 make the L-shaped touch plates 42 at both ends of the arc-shaped elastic plate 4 elastically press against the back of the trainee. When the trainee's posture is adjusted to normal, the arc-shaped elastic plate 4 returns to its normal state under the action of the return springs 44.
[0046] Reference Figure 4 and Figure 5A rectangular mounting groove is provided on the T-shaped seat 23, and part of the structure of the micro camera 5 is inserted into the rectangular mounting groove, and a screw 51 is threadedly fixed between the micro camera 5 and the T-shaped seat 23. The micro camera 5 has a built-in radio frequency module, a baseband controller, an antenna, a power management module, a memory and a processor module for connecting to the mobile phone client via Bluetooth. The micro camera 5 is responsible for wireless signal transmission and reception, data modulation and mediation through the radio frequency module, and cooperates with Bluetooth to realize communication connection with the mobile phone. The baseband controller handles the Bluetooth protocol and link management to ensure that the device operates according to the protocol specifications and can support data storage function.
[0047] Reference Figure 2 and Figure 3 The back restraint belt 6 is made of nylon cloth, and the surface is evenly provided with ventilation holes 61. The abdominal restraint belt 8 is made of mesh cloth. Both ends of the abdominal restraint belt 8 are provided with connecting rods 81, and a through groove 83 is formed by the connecting rod 81. The end surface of the back restraint belt 6 is fixedly provided with a Velcro hook surface 63 and a Velcro fleece surface 64. The end of the back restraint belt 6 is connected by the through groove 83, and the Velcro hook surface 63 and the Velcro fleece surface 64 are glued together. The back restraint belt 6 is made of nylon cloth and has good elasticity. By setting the ventilation holes 61, it is combined with the abdominal restraint belt 8 with good breathable performance to make it breathable and comfortable when worn. The end of the back restraint belt 6 is connected by the through groove 83, and the Velcro hook surface 63 and the Velcro fleece surface 64 are glued together, so that it can be worn and used by different people.
[0048] Reference Figure 2 and Figure 3 The abdominal restraint 8 is provided with three circular groove structures, and the abdominal restraint 8 is fixed with a clamping ring 82 at the circular groove structure. The massage column 9 is detachably buckled and installed at the clamping ring 82. By installing three massage columns 9 with massage balls 91 on the abdominal restraint 8, the local position of the trainee's abdomen can be massaged, thereby alleviating muscle soreness caused by long-term training.
[0049] The embodiment of the present application provides an auxiliary training device for scoliosis, and its working principle is as follows: the auxiliary training device for scoliosis consists of a scoliosis measuring ruler 1, a base 2 and an abdominal belt structure. When in use, the two ends of the back restraint 6 are respectively connected by the through grooves 83 at the two ends of the abdominal restraint 8, and the Velcro hook surface 63 and the Velcro fleece surface 64 are glued and connected, so that it can be restrained to the abdomen of the trainee. The abdominal restraint 8 is equipped with three massage columns 9, and the massage ball 91 can be used to assist in massaging the local position of the abdomen, thereby improving wearing comfort and relieving muscle soreness caused by long-term training. The back restraint 6 is installed on the base 2 through a limiter, and the scoliosis measuring ruler 1 is fixedly installed on the base 2 by a positioning rod 24. Before training, the trainee adopts a four-point support method and needs to pre-adjust the horizontal position of the scoliosis measuring ruler 1 so that the trainee's spine is in a normal posture. The L-shaped touch plates 42 at both ends of the arc-shaped elastic plate 4 elastically press against the trainee's back. During the training process, if the trainee's spine bends to one side of the body, the bent side will protrude and squeeze the L-shaped touch plate 42 to elastically deform, so that the switch button of the corresponding touch switch 43 is turned on, thereby connecting the circuit of the corresponding power supply device 21 and providing the electronic vibrator 3 at the corresponding position to emit a vibration effect, and the micro camera 5 monitors the status of the ball 12 on the scoliosis measuring ruler 1 in real time, and the micro camera 5 can communicate with the mobile phone mobile device and clearly display the real-time picture on the mobile phone interface, so that the trainee can intuitively see the spinal curvature angle, and thus cooperate with the vibration effect to determine whether the spine is curved. There is no need for others to hold the scoliosis measuring ruler 1 for a long time to assist in training, and the trainee can adjust the movement by himself without being reminded, effectively achieving the purpose of spinal posture correction training.
Claims
1. An auxiliary training device for scoliosis, characterized by: The invention comprises: a scoliosis measuring ruler (1), a base (2) and an abdominal belt structure, wherein the scoliosis measuring ruler (1) is threadedly fixed to the base (2) via a positioning rod (24), and the base (2) is positionally mounted on the abdominal belt structure, and the abdominal belt structure comprises a back restraint belt (6) and an abdominal restraint belt (8); A power supply device (21) and a touch-pressure switch (43) are fixedly provided at both ends of the base (2), an electronic vibrator (3) is fixedly installed on the power supply device (21), a T-shaped seat (23) is fixedly provided on the base (2), a miniature camera (5) is detachably installed on the T-shaped seat (23), an arc-shaped elastic plate (4) is rotatably installed on the base (2), two return springs (44) are fixedly connected between the arc-shaped elastic plate (4) and the T-shaped seat (23), an L-shaped touch-pressure plate (42) is fixedly provided at both ends of the arc-shaped elastic plate (4), and a switch button of the touch-pressure switch (43) is attached to the surface of the L-shaped touch-pressure plate (42); Three massage columns (9) are detachably mounted on the abdominal restraint belt (8), and a plurality of massage balls (91) are evenly arranged on the spherical surface of the massage columns (9).
2. The auxiliary training device for scoliosis according to claim 1, characterized in that: The scoliosis measuring ruler (1) is provided with an arc-shaped inner groove (11), a ball (12) is movably provided in the arc-shaped inner groove (11), and the scoliosis measuring ruler (1) is provided with angle scale lines (13) along the arc-shaped inner groove (11).
3. The auxiliary training device for scoliosis according to claim 1, characterized in that: A positioning hole (14) is provided at each end of the scoliosis measuring ruler (1), a strip groove (22) is provided on the base (2), the scoliosis measuring ruler (1) is movably inserted into the strip groove (22), and a positioning rod (24) is threadedly fixedly installed between the base (2) and the scoliosis measuring ruler (1).
4. The auxiliary training device for scoliosis according to claim 1, characterized in that: The power supply device (21) is a convex structure, and the four corners of the power supply device (21) are connected to the back restraint belt (6) by snap-on buckles (211). The electronic vibrator (3) is an electromagnetic vibrator device and is electrically connected to the adjacent touch-pressure switch (43) and the power supply device (21) through a cable.
5. The auxiliary training device for scoliosis according to claim 4, characterized in that: The back restraint belt (6) is provided with two circular grooves (62), and the vibration surface of the electronic vibrator (3) passes through the circular grooves (62) and is arranged to contact the back of the trainee.
6. The auxiliary training device for scoliosis according to claim 1, characterized in that: The arc-shaped elastic plate (4) is rotatably connected to a rotating shaft (41) between the middle portion and the base (2), and the two reset springs (44) are symmetrically arranged along the axis of the rotating shaft (41).
7. The auxiliary training device for scoliosis according to claim 1, characterized in that: The T-shaped seat (23) is provided with a rectangular mounting groove, a part of the structure of the micro camera (5) is inserted into the rectangular mounting groove, and a screw (51) is threadedly fixed between the micro camera (5) and the T-shaped seat (23), and the micro camera (5) is built-in with a radio frequency module, a baseband controller, an antenna, a power management module, a memory and a processor module, and is used for connecting to a mobile phone client through Bluetooth.
8. The auxiliary training device for scoliosis according to claim 1, characterized in that: The back restraint (6) is made of nylon cloth and has ventilation holes (61) evenly arranged on its surface. The abdominal restraint (8) is made of mesh cloth. Connecting rods (81) are provided at both ends of the abdominal restraint (8), and a through groove (83) is formed through the connecting rod (81). The end surface of the back restraint (6) is fixedly provided with a Velcro hook surface (63) and a Velcro fleece surface (64). The end of the back restraint (6) is connected by the through groove (83), and the Velcro hook surface (63) and the Velcro fleece surface (64) are glued together.
9. The auxiliary training device for scoliosis according to claim 1, characterized in that: The abdominal restraint belt (8) is provided with three circular groove structures, and the abdominal restraint belt (8) is fixedly provided with a clamping ring (82) at each of the circular groove structures, and the massage column (9) is detachably buckled and installed at the clamping ring (82).