Correcting device for scoliosis

By applying a restraining force opposite to the direction of spinal curvature on the user's upper limbs and lateral waist, combined with keel support, a correction device for mild scoliosis is designed, which solves the problem of lack of effective correction equipment in the existing technology and achieves a comfortable and efficient correction effect.

CN223299210UActive Publication Date: 2025-09-05ZHONGDIAN YAOMING DATA TECH (CHENGDU) CO LTD
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Patent Information

Application Number
CN202421165511.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-27
Publication Date
2025-09-05
Estimated Expiration
2034-05-27

AI Technical Summary

Technical Problem

The existing technology lacks effective correction equipment for mild scoliosis with a Cobb angle of 20 degrees or less, and mainly relies on patients to actively pay attention to standing and sitting posture correction, which has limited effect.

Method used

A correction device including a first wearable body, a second wearable body and a keel is designed. By applying upward and downward restraining forces opposite to the direction of spinal curvature on the user's upper limbs and lateral waist, combined with the keel to provide support force on the lateral waist, mild scoliosis can be corrected.

Benefits of technology

The device can accurately apply corrective force, improve the user's posture and position, and provide a comfortable wearing experience. It is suitable for the prevention and treatment of mild scoliosis without the assistance of professionals, improving ease of use and correction effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a correcting device for scoliosis, which comprises a first wearing main body (1), a second wearing main body (2) and a keel (3), when scoliosis is prevented or treated, the first wearing main body (1) can be worn on the upper limb of a user; when the first wearing main body (1) is worn on the upper limb of a user, the second wearing main body (2) is arranged on the first wearing main body (1) in a sleeving mode so that binding force which intersects with each other and is opposite to the bending direction of the spine and is obliquely upward and obliquely downward can be formed on the spine, and scoliosis can be prevented or treated. The keel (3) is worn on at least one of the first wearing main body (1) and the second wearing main body (2) so as to generate supporting force and pushing force on the side waist part of the user; the keel (3) is worn on the lateral waist of the user to form a supporting force to correct the scoliosis.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical equipment, in particular to a correction device for scoliosis. Background Art

[0002] Scoliosis, also known as curvature of the spine, is a three-dimensional spinal deformity characterized by lateral curvature of the spine away from the midline. It includes abnormalities in the coronal, sagittal, and axial planes. Scoliosis can be categorized as thoracic, lumbar, and thoracolumbar scoliosis, depending on the site of occurrence. Scoliosis typically occurs in the thoracic and lower lumbar regions, as well as in the lower thoracic and upper lumbar regions. The thoracic region is particularly susceptible to scoliosis.

[0003] Scoliosis is generally diagnosed and assessed by the Cobb angle (the angle of scoliosis) on a standing spinal X-ray. A Cobb angle of 10 degrees or greater is considered a diagnosis of scoliosis. Scoliosis is often accompanied by vertebral rotation. Generally, the greater the degree of scoliosis, the more severe the rotation. The specific criteria are as follows:

[0004] 1. Mild: Cobb angle is less than 20 degrees, mainly for posture correction and exercise training, and regular follow-up;

[0005] 2. Moderate: The Cobb angle is 20-40 degrees, which is mainly corrected by braces and exercises, and is generally useful in children before puberty;

[0006] 3. Severe: The Cobb angle is above 40 degrees, the scoliosis angle is large, the vertebral rotation is severe, and the stiffness is high. At this time, surgical correction is generally required.

[0007] There is currently no corrective device for mild scoliosis with a Cobb angle of 20 degrees or less, and patients mainly rely on their daily active attention to their standing and sitting postures. Utility Model Content

[0008] The purpose of this application is to provide a correction device for scoliosis to solve or alleviate the problems existing in the above-mentioned prior art.

[0009] In order to achieve the above-mentioned purpose, the present application provides the following technical solutions: a device for correcting scoliosis, characterized in that it comprises: a first wearable body (1), a second wearable body (2), and a keel (3); when preventing or treating scoliosis, the first wearable body (1) can be worn on the upper limbs of the user; when the first wearable body (1) is worn on the upper limbs of the user, the second wearable body (2) is put on the first wearable body (1) to form mutually crossed and obliquely upward and obliquely downward restraining forces on the spine in the opposite direction of the curvature of the spine, so as to prevent or treat scoliosis; the keel (3) is worn on the first wearable body (1 ) and at least one of the second wearable body (2) to generate a supporting force and a thrust at the side waist of the user; wherein: the first wearable body (1) is worn in the area of ​​the user's shoulder to form a restraint support point, and the first wearable body (1) is worn in the area of ​​the user's ilium to form a force support point, so that the second wearable body (2) is put on the first wearable body (1) and is connected with the restraint support point and the force support point to form a restraint force on the spine that crosses each other and is obliquely upward and obliquely downward in the opposite direction of the bending direction of the spine; the keel (3) is worn on the side waist of the user to form a support force to correct the mild scoliosis.

[0010] Optionally, the first wearable body (1) is a vest, comprising: a front region (11), a back region (12), a side waist region (13) and a shoulder region (14), so that the second wearable body (2) spans the front region (11) and the back region (12), and is fixed on at least one of the shoulder region (14) and the side waist region (13), so that the second wearable body (2) is put on the first wearable body (1) and is connected with the restraint support point and the force support point to form restraint forces on the spine that cross each other and are obliquely upward and obliquely downward in the opposite direction of the curvature of the spine.

[0011] Optionally, the side waist region (13) includes, from top to bottom, the following: a lower thoracic spine region whose length accounts for 27% of the total length of the side waist, a thoracolumbar spine region whose length accounts for 18% of the total length of the side waist, a lumbar spine region whose length accounts for 27% of the total length of the side waist, and a lumbar-sacral spine region whose length accounts for 27% of the total length of the side waist; the opening of the side waist pocket (131) passes through the lower thoracic spine, the thoracolumbar spine region, the lumbar spine region, and the lumbar-sacral spine region in sequence.

[0012] Optionally, the lower thoracic spine region and the lumbar sacral spine region are provided with second wearable body fixing openings for fixing the upper end and the lower end of the second wearable body (2) to the first wearable body (1) respectively.

[0013] Optionally, the second wearable body (2) is shaped like an "X", comprising: two second wearable body upper arms (21), two second wearable body lower arms (22) and a second wearable body intersection area (23); the two elongated second wearable body upper arms (21) are respectively arranged on both sides above the second wearable body intersection area (23); and the two elongated second wearable body lower arms (22) are respectively arranged on both sides below the second wearable body intersection area (23).

[0014] Optionally, the second wearing body (2) includes: a left-side type second wearing body and a right-side type second wearing body; the second wearing body cross section (23) of the left-side type second wearing body is arranged at the left side waist region (13) to cooperate with the keel (3) to prevent or treat the user's left-side mild scoliosis; the second wearing body cross section (23) of the right-side type second wearing body is arranged at the right side waist region (13) to cooperate with the keel (3) to prevent or treat the user's right-side mild scoliosis.

[0015] Optionally, a second wearable body pocket (231) is provided on the second wearable body intersection region (23) to accommodate the keel (3).

[0016] Optionally, the second wearable body (2) includes: a chest section single-curve second wearable body, a chest-lumbar section single-curve second wearable body, and a waist section single-curve second wearable body; the length of the second wearable body upper arm (21) of the chest section single-curve second wearable body is 28-33 cm, the length of the second wearable body lower arm (22) is 40-45 cm, and the second wearable body upper arm (21) and the second wearable body lower arm (22) present an angle of 60°; the second wearable body upper arm of the chest-lumbar section single-curve second wearable body (21) is 35-40 cm long, the lower arm of the second wearable body (22) is 35-40 cm long, and the upper arm of the second wearable body (21) and the lower arm of the second wearable body (22) present a 60° angle; the upper arm of the second wearable body (21) of the waist-section single-bend second wearable body is 40-45 cm long, the lower arm of the second wearable body (22) is 37-42 cm long, and the upper arm of the second wearable body (21) and the lower arm of the second wearable body (22) present a 45° angle.

[0017] Optionally, the keel (3) includes: a long keel (31) and a short keel (32); the long keel (31) is a cylinder with a length of 30-35 cm and is placed in the side waist pocket (131) to form a supporting force to correct the mild scoliosis; the short keel (32) is a cylinder with a length of 8-10 cm and is set in the second wearable body pocket (231) to form a supporting force to correct the mild scoliosis.

[0018] The present application also provides a correction device for scoliosis, comprising: a wearable body and a keel; the wearable body is put on the user's upper limbs to form mutually intersecting and upward and downward restraining forces on the spine that are opposite to the bending direction of the spine, so as to prevent or treat the scoliosis; the keel is put on the wearable body to generate supporting force and thrust on the side waist of the user; wherein: the wearable body is put on the user's upper limbs and connected with the restraint support point and the force support point to form mutually intersecting and upward and downward restraining forces on the spine that are opposite to the bending direction of the spine.

[0019] The utility model provides a correction device for scoliosis, comprising: a first wearable body 1, a second wearable body 2, and a keel 3; when preventing or treating scoliosis, the first wearable body 1 can be worn on the upper limbs of a user; when the first wearable body 1 is worn on the upper limbs of a user, the second wearable body 2 is put on the first wearable body 1 to form a restraining force on the spine that crosses each other and is obliquely upward and obliquely downward in the opposite direction of the curvature of the spine, so as to prevent or treat scoliosis; the keel 3 is worn between the first wearable body 1 and the second wearable body 2 for at least one of the first wearable body 1 and the second wearable body 2. The invention comprises a pair of keels 3 and a pair of keels 3, each of which is configured to generate a support force and a thrust at the user's lateral waist. The first wearable body 1 is worn on the user's shoulder area to form a restraint support point, and the first wearable body 1 is worn on the user's ilium area to form a force application support point. The second wearable body 2 is attached to the first wearable body 1 and connected to the restraint support point and the force application support point to generate cross-direction restraint forces on the spine that are diagonally upward and downward and opposite to the direction of spinal curvature. The keel 3 is worn on the user's lateral waist to provide a support force to correct mild scoliosis. The present invention can precisely apply restraint forces that are diagonally upward and downward and opposite to the direction of spinal curvature by adjusting the position, angle, and tightness of the first wearable body 1 and the second wearable body 2 according to the user's specific situation, thereby achieving a better correction effect. Because the device can generate restraint forces that are diagonally upward and downward and opposite to the direction of spinal curvature, and because the keel 3 provides support and thrust at the lateral waist, scoliosis can be more effectively corrected, improving the user's posture and posture. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The drawings and descriptions that constitute part of this application are intended to provide a further understanding of this application. The exemplary embodiments and descriptions of this application are intended to explain this application and do not constitute an improper limitation on this application. Among them:

[0021] Figure 1 This is an overall structural diagram of a first wearable body of a scoliosis correction device according to an embodiment of the present application;

[0022] Figure 2 This is an overall structural diagram of a second wearable body of a scoliosis correction device according to an embodiment of the present application;

[0023] Figure 3 This is a diagram showing the overall structure of a long keel of a scoliosis correction device according to an embodiment of the present application;

[0024] Figure 4 This is a front structural diagram of a scoliosis correction device according to an embodiment of the present application;

[0025] Figure 5 This is a back structural diagram of a scoliosis correction device according to an embodiment of the present application;

[0026] Figure 6 This is a right side structural diagram of a scoliosis correction device according to an embodiment of the present application;

[0027] Figure 7 This is a left side structural diagram of a scoliosis correction device according to an embodiment of the present application;

[0028] Figure 8 This is a structural diagram of a scoliosis correction device according to an embodiment of the present application. DETAILED DESCRIPTION

[0029] The present application will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments. Each example is provided by way of explanation of the present application and does not limit the present application. In fact, it will be clear to those skilled in the art that modifications and variations can be made in the present application without departing from the scope or spirit of the present application. For example, a feature shown or described as part of one embodiment can be used in another embodiment to produce yet another embodiment. Therefore, it is expected that the present application includes such modifications and variations within the scope of the appended claims and their equivalents.

[0030] In the description of this application, the terms "longitudinal", "transverse", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and do not require that this application must be constructed and operated in a specific orientation. Therefore, they should not be understood as limitations on this application. The terms "connected", "connected", and "set" used in this application should be understood in a broad sense. For example, they can be fixed connections or detachable connections; they can be directly connected or indirectly connected through intermediate components. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.

[0031] In order to achieve the above objectives, this application provides the following technical solutions:

[0032] Figure 1 This is an overall structural diagram of a first wearable body of a scoliosis correction device according to an embodiment of the present application;

[0033] Figure 2 This is an overall structural diagram of a second wearable body of a scoliosis correction device according to an embodiment of the present application;

[0034] Figure 3 This is a diagram showing the overall structure of a long keel of a scoliosis correction device according to an embodiment of the present application;

[0035] Figure 4 This is a front structural diagram of a scoliosis correction device according to an embodiment of the present application;

[0036] Figure 5 This is a back structural diagram of a scoliosis correction device according to an embodiment of the present application;

[0037] Figure 6 This is a right side structural diagram of a scoliosis correction device according to an embodiment of the present application;

[0038] Figure 7 This is a left side structural diagram of a scoliosis correction device according to an embodiment of the present application;

[0039] Figure 8 This is a structural diagram of a scoliosis correction device according to an embodiment of the present application.

[0040] like Figure 1-8As shown, a device for correcting scoliosis includes: a first wearable body 1, a second wearable body 2, and a keel 3; when preventing or treating scoliosis, the first wearable body 1 can be worn on the upper limbs of the user; when the first wearable body 1 is worn on the upper limbs of the user, the second wearable body 2 is put on the first wearable body 1 to form a restraining force on the spine that crosses each other and is obliquely upward and obliquely downward in the opposite direction of the curvature of the spine, so as to prevent or treat scoliosis; the keel 3 is worn on at least one of the first wearable body 1 and the second wearable body 2. The invention relates to a device for generating support and thrust at the user's lateral waist. The device comprises: a first wearable body 1 formed as a restraint support point in the user's shoulder area, and a first wearable body 1 formed as a force application support point in the user's ilium area. The second wearable body 2, when attached to the first wearable body 1, connects to the restraint support point and the force application support point to generate cross-direction restraint forces on the spine, which are directed upward and downward, opposite to the curvature of the spine. The keel 3 is worn at the user's lateral waist to provide support and correct mild scoliosis. In this embodiment, personalized wear and adjustment can be made based on the user's specific circumstances, such as the degree and location of the scoliosis. By adjusting the position, angle, and tightness of the first wearable body 1 and the second wearable body 2, restraint forces can be precisely applied, which are directed upward and downward, opposite to the curvature of the spine, to achieve a better correction effect. Furthermore, this embodiment is designed to be wearable and can be worn on the user's upper limbs and lateral waist. Compared to traditional fixed braces, this device is more comfortable and reduces discomfort caused by prolonged wear. In addition, since the device can form an upward and downward restraining force that is opposite to the direction of spinal curvature, and provides support and thrust at the lateral waist through the keel 3, it can more effectively correct the scoliosis of the spine and improve the user's body shape and posture. In addition, the design of the device takes into account the comfort and safety of the user. Through reasonable design and material selection, it ensures the comfort and stability of wearing and reduces the occurrence of accidents. Not only that, the correction device is not only suitable for preventing scoliosis, but also for treating mild scoliosis. For users of different age groups and medical conditions, the device can be adjusted to suit their needs. Finally, the device adopts a simple wearing and adjustment method. Users can easily wear and adjust it by themselves without the assistance of professionals, which improves the convenience of use.

[0041] Optionally, the vest includes a front region 11, a back region 12, a lateral waist region 13, and a shoulder region 14, such that the second wearable component 2 spans the front and back regions 11, 12, and is secured to at least one of the shoulder and lateral waist regions 14, 13. The second wearable component 2, when attached to the first wearable component 1, connects with the restraint support points and the force-applying support points to exert restraining forces on the spine that intersect and are directed upward and downward, opposite to the direction of spinal curvature. In this embodiment, the front and back regions 11, 12 of the vest are designed to cover the user's back and chest, providing comprehensive support. This design allows the second wearable component 2 to more effectively apply corrective forces in multiple directions, thereby more comprehensively counteracting spinal curvature. Furthermore, by securing the second wearable component 2 to at least one of the shoulder and lateral waist regions 14, 13, multiple securing methods can be implemented to meet the needs of different users and specific spinal curvature conditions. This versatility ensures that the correction device fits the user's body better, enhancing the correction effect. In addition, since the vest design has clear area divisions, such as the shoulder area 14 and the side waist area 13, the fixing points on these areas can ensure that the corrective force applied by the second wearing body 2 acts more accurately on the curved part of the spine, thereby improving the correction effect. In addition, the vest-style design usually has good fit and breathability, and can provide better wearing comfort. At the same time, through the fixation of the shoulder area 14 and the side waist area 13, the stability of the correction device during wearing can be ensured, reducing the weakening of the correction force due to movement or activity. Finally, the vest-style correction device can be adjusted according to the user's body shape and the specific situation of the spinal curvature to meet the needs of different users. This highly adaptable design makes the correction device more practical and widespread.

[0042] Optionally, the front panel area 11, the back panel area 12 and the side waist area 13 are covered with a lycra fabric layer. In this embodiment, the lycra fabric layer can ensure that the device can still maintain good elasticity and shape after being worn for a long time or after multiple uses, ensuring the continuity and stability of the correction force. In addition, the lycra fabric has excellent fit and can fit the user's body tightly, reducing friction and discomfort between the correction device and the body. This close-fitting design can better transmit the correction force to the spine and improve the correction effect. Finally, the lycra fabric has good breathability, and even when worn for a long time, it can keep the user's body dry and comfortable, reducing the discomfort caused by stuffiness.

[0043] Optionally, the shoulder region 14 is covered with a layer of neoprene fabric. In this embodiment, the neoprene fabric is durable and resilient to damage under various conditions. Using a layer of neoprene fabric in the shoulder region 14 of the orthosis ensures that the region maintains its shape and performance despite pressure and friction, thereby extending the life of the orthosis.

[0044] Optionally, the lower edge of the vest covers the ilium, thereby providing a force application point for the first wearable body 1 based on the ilium. In this embodiment, by designing the lower edge of the vest to cover the ilium, the correction device can precisely provide a force application point based on the ilium, ensuring that the corrective force can directly and effectively act on the spine, thereby more effectively correcting scoliosis. Furthermore, because the force application point acts directly on the ilium, the correction device can more effectively transmit the corrective force to the spine through the ilium. This direct force transmission method can reduce force loss, improve the correction effect, and provide more effective support and correction of the spine in the correct direction. In addition, when the lower edge of the vest covers the ilium, the correction device can be better fixed to the user's body, reducing the weakening or deviation of the corrective force due to movement or activity. This enhanced wearing stability ensures that the correction device remains in the correct position during prolonged use, thereby continuously providing effective corrective force. Furthermore, because the force application point acts directly on the ilium, the correction device can more closely conform to the user's body curves, reducing discomfort caused by improper force application. Additionally, the ilium, as a relatively flat and rigid area, can better withstand the correction forces, further improving user comfort.

[0045] Optionally, the side waist area 13 is provided with a side waist pocket 131 to place the keel 3. In this embodiment, the side waist pocket 131 provides a convenient storage space for the keel 3, so that the user can easily place the keel 3 in the correction device without having to carry or use other auxiliary tools. This not only facilitates the use of the user, but also improves the portability of the correction device. In addition, by providing pockets in the side waist area 13, the user can easily adjust the position and angle of the keel 3 at any time according to their needs and spinal condition. This personalized adjustment can ensure that the correction device better adapts to the body shape and correction needs of different users, thereby improving the correction effect. In addition, as an important component of the correction device, the stability and position of the keel 3 are crucial to the correction effect. By providing pockets in the side waist area 13 to fix the keel 3, it can be ensured that the keel 3 remains stable at all times during the correction process and is not easy to shift or fall off, thereby improving the stability and reliability of the correction device. Finally, the design of the side waist pockets 131 ensures that the position of the keel 3 in the correction device is more closely aligned with the user's body curves, reducing the pressure and discomfort caused by improper positioning of the keel 3. This design further improves the comfort of the correction device, allowing the user to feel comfortable even when wearing it for long periods of time.

[0046] Optionally, the lateral waist region 13 includes, from top to bottom, the following: a lower thoracic spine region (27% of the total lateral waist length), a thoracolumbar spine region (18% of the total lateral waist length), a lumbar spine region (27% of the total lateral waist length), and a lumbar-sacral spine region (27% of the total lateral waist length). The lateral waist pockets 131 sequentially extend through the lower thoracic spine, thoracolumbar spine, lumbar spine, and lumbar-sacral spine regions. In this embodiment, by subdividing the lateral waist region 13 and designating zones corresponding to spinal regions, the user can more precisely position and adjust the keel 3. This precise positioning ensures that the corrective force is applied directly to specific areas of the spine, thereby enhancing the corrective effect. Furthermore, since the type and degree of spinal curvature may vary among users, subdividing the lateral waist region 13 and providing multiple pocket openings can accommodate different types of spinal curvature. Users can choose to place the keel 3 in the most appropriate zone based on their individual needs for more effective correction. Furthermore, by subdividing the lateral waist region 13 and providing multiple pocket openings, the correction device of this embodiment offers more personalized options. The user can adjust the position and number of keels 3 according to their needs and preferences to achieve the optimal correction effect and comfort. Furthermore, because the keels 3 precisely target specific areas of the spine, this design ensures the sustainability of the correction effect. Even if the degree of spinal curvature changes over time, the user can maintain the correction effect by adjusting the position of the keels 3, thus achieving long-term and effective correction treatment.

[0047] Optionally, the lower thoracic and lumbar spine regions are provided with second wearable body fixing openings for securing the upper and lower ends of the second wearable body 2 to the first wearable body 1, respectively. In this embodiment, by securing the upper and lower ends of the second wearable body 2 to the fixing openings in the lower thoracic and lumbar spine regions, respectively, the correction device can be more stable during wear, reducing displacement caused by movement or activity, thereby maintaining a sustained correction effect. Furthermore, this fixing method allows the second wearable body 2 to more directly contact the corresponding parts of the spine, reducing losses in the force transmission path and improving the efficiency of the correction force transmission. Therefore, the correction force can be applied more directly and effectively to the spine, improving the correction effect. Furthermore, since the lower thoracic and lumbar spine regions correspond to different parts of the spine, this fixing method can be customized according to the user's spinal condition and needs. The user can adjust the fixing position and tightness of the second wearable body 2 in different regions as needed to meet different correction needs. Finally, by securing the second wearable body 2 to the mounting holes in the lower thoracic and lumbar spine regions, the correction device can be more closely fitted to the user's body curves, reducing unnecessary friction and pressure and improving wearing comfort. This is particularly important for users who need to wear the correction device for extended periods of time, as it can reduce fatigue caused by discomfort.

[0048] Optionally, the second wearable body 2 is shaped like an "X," comprising two second wearable body upper arms 21, two second wearable body lower arms 22, and a second wearable body intersection 23. The two elongated second wearable body upper arms 21 are positioned on either side above the second wearable body intersection 23, and the two elongated second wearable body lower arms 22 are positioned on either side below the second wearable body intersection 23. In this embodiment, the "X"-shaped design enables the second wearable body 2 to generate a cross-tension force that opposes the spinal curvature when worn. This tension effectively corrects the spine, particularly in scoliosis, helping the spine gradually return to its normal physiological curvature. Furthermore, the "X"-shaped design allows the second wearable body 2 to fit more closely to the user's body, particularly in the lateral waist region 13. This design not only improves wear stability but also reduces the loss of correction force due to activity or movement, thereby maintaining a continuous correction effect. Furthermore, the "X"-shaped design allows the second wearable body 2 to be personalized based on the user's spinal condition and needs. Users can adjust the length, angle, and cross-section of the upper and lower arms to suit different correction needs, improving the targetedness and effectiveness of the correction. Finally, because the "X"-shaped design fits the user's body curves more closely, it can reduce unnecessary friction and pressure, improving wearing comfort. This is especially important for users who need to wear correction devices for long periods of time, as it can reduce fatigue and discomfort caused by wearing them poorly.

[0049] Optionally, the second wearable body 2 includes a left-side second wearable body and a right-side second wearable body. The second wearable body cross section 23 of the left-side second wearable body is located in the left lateral waist region 13 to cooperate with the keel 3 to prevent or treat the user's left-side mild scoliosis. The second wearable body cross section 23 of the right-side second wearable body is located in the right lateral waist region 13 to cooperate with the keel 3 to prevent or treat the user's right-side mild scoliosis. In this embodiment, the design of the left-side and right-side second wearable bodies allows for highly customized correction solutions tailored to the user's scoliosis condition. Whether mild scoliosis is left or right, the corresponding second wearable body 2 can provide precise treatment, thereby improving the correction effect. Furthermore, by positioning the cross section of the second wearable body 2 on the side of the scoliotic curve, corrective force can be applied directly to that side of the spine, enhancing the targeted correction. This targeted correction helps to more quickly restore the normal physiological curvature of the spine and reduce correction time. Furthermore, because the second wearable body 2 is designed based on the specific conditions of scoliosis, it can more closely conform to the user's body curves, reducing unnecessary friction and pressure. This design improves wearing comfort, making the user feel more comfortable and at ease during use. Finally, the design of left-sided and right-sided second wearable bodies allows the correction device to adapt to the personalized needs of different users. Whether it is left-sided or right-sided scoliosis, people can find a correction plan that suits them, thereby improving their satisfaction and effectiveness.

[0050] Optionally, a second wearable body pocket 231 is provided on the second wearable body intersection region 23 to accommodate the keel 3. In this embodiment, by providing a pocket in the second wearable body intersection region 23, the user can easily place the keel 3 in the pocket and secure it in place. This design not only simplifies the donning process but also improves the convenience and stability of securing the keel 3. Furthermore, as a core component of the correction device, the stability of the keel 3 is crucial to the correction effect. By placing the keel 3 in the pocket in the second wearable body intersection region 23, it can be ensured that the keel 3 remains stable throughout the correction process and is not easily displaced or dislodged, thereby improving the stability and reliability of the correction device. In addition, since the keel 3 can be adjusted in position in the second wearable body intersection region 23 via the pocket, the user can adjust the position and angle of the keel 3 according to their own spinal scoliosis condition and correction needs to obtain a more personalized correction force. This design makes the correction device more flexible and adaptable. Finally, the keel 3 is secured in the second wearable body intersection region 23 via the pocket, which can reduce the discomfort caused by the keel 3 directly contacting the skin. At the same time, the pocket design ensures that the Keel 3 fits the user's body curves better during wear, improving wearing comfort. This design is especially important for users who need to wear the correction device for a long time.

[0051] Optionally, the second wearable body 2 includes: a single-bend second wearable body in the thoracic section, a single-bend second wearable body in the thoracolumbar section, and a single-bend second wearable body in the lumbar section; the length of the second wearable body upper arm 21 of the single-bend second wearable body in the thoracic section is 28-33 cm, the length of the second wearable body lower arm 22 is 40-45 cm, and the second wearable body upper arm 21 and the second wearable body lower arm 22 present a 60° angle; the length of the second wearable body upper arm 21 of the single-bend second wearable body in the thoracolumbar section is 35-40 cm, the length of the second wearable body lower arm 22 is 35-40 cm, and the second wearable body upper arm 21 and the second wearable body lower arm 22 present a 60° angle; the length of the second wearable body upper arm 21 of the single-bend second wearable body in the lumbar section is 0-45 cm, the length of the second wearable body lower arm 22 is 37-42 cm, and the second wearable body upper arm 21 and the second wearable body lower arm 22 present a 45° angle. In this embodiment, by subdividing the second wearable body 2 into three types—thoracic single curve, thoracolumbar single curve, and lumbar single curve—and designing them with specific sizes and angles, it can more precisely adapt to the morphology and correction needs of different spinal regions. This design ensures that the corrective force is more directly and effectively applied to the target spinal region, improving the correction effect. Furthermore, since spinal conditions and needs vary among users, the three types of second wearable bodies 2 provided in this embodiment can provide users with personalized correction solutions. Users can choose the appropriate type of second wearable body 2 based on their scoliosis condition and correction needs, thereby achieving better correction results. Furthermore, the size and angle of the second wearable body 2, designed based on the physiological characteristics of the spinal region, can more closely fit the user's body curves, reducing unnecessary friction and pressure. This design enhances wear stability and improves user comfort, making the user feel more comfortable and at ease during use. Finally, the lengths of the upper and lower arms 21 of the second wearable body, as well as the angle between them, are designed to take into account the mechanical properties and correction needs of different spinal regions. This design enables the correction device to adapt to different correction needs, such as strengthening correction in specific spinal areas, adjusting the size and direction of the correction force, etc., thereby improving the flexibility and effectiveness of the correction.

[0052] Optionally, the shoulder region 14 includes a first shoulder region and a second shoulder region. The first shoulder region is located on the left side of the shoulder region 14 to provide a force support point for the first wearable device 1 on the left side, while the second shoulder region is located on the right side of the shoulder region 14 to provide a force support point for the first wearable device 1 on the right side. In this embodiment, by providing the first and second shoulder regions on the left and right sides of the user, two stable force points are provided for the correction device. This helps ensure that the correction device remains stable during use, preventing it from shaking or shifting, thereby improving the correction effect. Furthermore, the provision of left and right shoulder regions 14 allows for more dispersed and balanced force points. This helps reduce localized pressure concentration caused by uneven force distribution, improving user comfort. Furthermore, balanced force distribution helps reduce shoulder burden and minimizes discomfort caused by prolonged wear. Furthermore, different users may have different shoulder widths and body shapes. By providing two independent shoulder regions 14, the correction device can better adapt to the shoulder widths and body shapes of different users, providing a more personalized wearing experience. Finally, because the orthosis provides a stable support point in the shoulder area 14, the user can more easily maintain the corrective posture. This helps ensure that the orthosis can maintain its corrective effect over a long period of time, improving the durability of the correction effect. Furthermore, the stable support helps prevent damage or deformation of the orthosis due to improper use.

[0053] Optionally, at least two second wearable body fixing openings are symmetrically distributed front and back in a "U" shape, vertically arranged, in the first and second shoulder regions to secure the upper end of the second wearable body 2 to the shoulder region 14. In this embodiment, by providing multiple second wearable body fixing openings in a "U" shape vertically arranged in the shoulder region 14, the upper end of the second wearable body 2 is securely connected to the shoulder region 14 at multiple points. This multi-point fixing design significantly enhances the stability and fixation of the correction device, effectively preventing the second wearable body 2 from shifting or falling off during use. Furthermore, the symmetrical distribution of the fixing openings ensures more uniform force distribution, avoiding the concentrated pressure and discomfort caused by excessive force at a single point. This balanced force design improves wearing comfort and reduces shoulder strain. Furthermore, because the fixing openings are distributed vertically in a "U" shape, the connection position of the second wearable body 2 to the fixing openings can be flexibly adjusted according to the user's shoulder width and body shape. This design makes the correction device highly adaptable and can meet the needs of users of different body types. Finally, the multi-point fixing design makes donning and adjustment much simpler and more convenient. The user simply secures the upper end of the second wearable body 2 to the shoulder area 14 via the fixing holes to easily put it on. Furthermore, to adjust the position or tightness of the second wearable body 2, simply loosen or tighten the corresponding fixing holes, eliminating the need for complex manipulation.

[0054] Optionally, the keel 3 includes: a long keel 31 and a short keel 32; the long keel 31 is a cylinder with a length of 30-35 cm and is placed in the side waist pocket 131 to form a supporting force to correct the mild scoliosis; the short keel 32 is a cylinder with a length of 8-10 cm and is set in the second wearable body pocket 231 to form a supporting force to correct the mild scoliosis. In this embodiment, by using the long keel 31 and the short keel 32 at the same time, the correction device can apply supporting force to the spine at different positions to achieve a multi-level correction effect. The long keel 31 mainly provides stable support for the side waist area 13, while the short keel 32 performs precise correction on specific parts. The combination of the two can more comprehensively improve the scoliosis condition of the spine. In addition, the length and position of the long keel 31 and the short keel 32 can be personalized according to the user's spinal condition and correction needs. This design enables the correction device to adapt to the body shape and condition of different users, providing a more accurate correction solution. In addition, since the keel 3 is cylindrical in shape, it can fit the curve of the human body and reduce friction and pressure on the skin. At the same time, by rationally arranging the position and number of the keels 3, it is possible to reduce unnecessary restraint while ensuring the correction effect and improve the wearing comfort of the user. Finally, the long keel 31 and the short keel 32 play a key role in the correction device, and their stability and durability directly affect the correction effect. Through careful design and manufacturing, these keels 3 can withstand long-term use and frequent adjustments, maintain a stable correction force, and ensure the durability of the correction effect.

[0055] Optionally, the second wearable body cross section 23 of the left-side second wearable body is positioned in the right side waist region 13, cooperating with the long keel 31 placed in the right side waist pocket 131 and the short keel 32 placed in the left second wearable body pocket 231 to prevent or treat mild left-side scoliosis in the user. The second wearable body cross section 23 of the right-side second wearable body is positioned in the right side waist region 13, cooperating with the long keel 31 placed in the left side waist pocket 131 and the short keel 32 placed in the right second wearable body pocket 231 to prevent or treat mild right-side scoliosis in the user. In this embodiment, by positioning the cross section of the second wearable body 2 in the corresponding side waist region 13 and cooperating with the long keel 31 and short keel 32 in the corresponding positions, precise correction of mild scoliosis can be achieved. This design ensures that the corrective force acts directly on the scoliotic area, improving the correction effect. In addition, the design of the left-side second wearing body and the right-side second wearing body takes into account the actual situation of the user's spine, so that the correction device can better adapt to the body shape and condition of different users. By choosing the appropriate type, the user can obtain a more personalized correction plan. In addition, by reasonably arranging the position and length of the keel 3 and optimizing the design of the second wearing body 2, this embodiment can reduce the sense of restraint on the user's body while ensuring the correction effect, thereby improving the comfort of wearing. This allows the user to perform correction treatment more comfortably during use. Finally, as the core components of the correction device, the long keel 31 and the short keel 32 are crucial to the entire correction process in terms of their stability and reliability. By placing them in the side waist pocket 131 and the second wearing body pocket 231, and cooperating with the intersection area of ​​the second wearing body 2, it can be ensured that the correction device remains stable during use and is not prone to displacement or falling off, thereby improving the stability of the correction treatment.

[0056] Optionally, the second wearable body cross section 23 of the right-side second wearable body is positioned in the right lower thoracic spine region, and is combined with the long keel 31 placed in the left side waist pocket 131, the short keel 32 placed in the right second wearable body pocket 231, and the second wearable body fixing opening above the first shoulder region, with the second wearable body lower arm 22 fixed to the left lumbar spine region, to prevent or treat the user's right thoracic scoliosis. In this embodiment, by positioning the second wearable body cross section 23 in the right lower thoracic spine region, combined with the long keel 31 in the left side waist pocket 131 and the short keel 32 in the right second wearable body pocket 231, this embodiment can accurately locate and correct right thoracic scoliosis. This precise positioning ensures that the corrective force is directly applied to the spinal area requiring correction, improving the correction effect. The design of this embodiment fully considers the actual spinal condition and condition of the user. By adjusting the position of the long keel 31 and short keel 32, as well as the fixing position of the second wearable body upper arm 21 and lower arm, a personalized correction solution can be provided for the user. This personalized adaptation enables the correction device to better adapt to the body shape and condition of different users, improving the pertinence and effect of the correction. In addition, by optimizing the design and layout of the second wearing body 2, this embodiment can improve the stability and comfort of wearing while ensuring the correction effect. The stable support of the long keel 31 and the short keel 32, as well as the reasonable fixation of the upper arm 21 and the lower arm of the second wearing body, make the correction device less likely to shift or fall off during use, while also reducing the user's sense of restraint and discomfort. Finally, this embodiment not only focuses on correcting the scoliosis problem of the right thoracic segment, but also provides comprehensive support and protection for the user through the fixation of the second wearing body fixing port above the first shoulder area and the left lumbar sacral spine area. This comprehensive support and protection helps to stabilize the spine, reduce further damage to the spine, and promote healthy recovery of the spine.

[0057] Optionally, the second wearable body cross section 23 of the right-side second wearable body is positioned in the right thoracolumbar spine region. Together with the long keel 31 placed in the left side waist pocket 131, the short keel 32 placed in the right second wearable body pocket 231, and the second wearable body upper arm 21 secured to the second wearable body fixing port below the first shoulder region, the second wearable body lower arm 22 is secured to the left lumbar spine region to prevent or treat the user's right thoracolumbar scoliosis. Positioning the second wearable body cross section 23 in the right thoracolumbar spine region directly provides support and corrective force to the right thoracolumbar spine. This design ensures that the corrective force is directly applied to the area requiring correction, thereby precisely improving right thoracolumbar scoliosis. Furthermore, by adjusting the positions of the long keel 31 and short keel 32, as well as the fixing positions of the second wearable body upper arm 21 and lower arm, this embodiment can provide personalized correction solutions for different users. This personalized design can better adapt to different user body types and medical conditions, improving the targeted and effective correction. In addition, the upper arm 21 of the second wearing body is fixed below the first shoulder area, and the lower arm is fixed to the left lumbar spine area. This design can enhance the stability of the correction device during wearing. At the same time, reasonable layout and material selection can also reduce the user's discomfort and improve wearing comfort. Finally, this embodiment not only focuses on correcting the scoliosis problem of the right thoracolumbar segment, but also provides comprehensive support and protection for the user through the reasonable setting of fixed points. This comprehensive support and protection helps to stabilize the spine, prevent further damage, and promote the healthy recovery of the spine. At the same time, it can also disperse the correction force, reduce the pressure on a single part, and further improve the correction effect and user experience.

[0058] Optionally, the second wearable body cross section 23 of the right-side second wearable body is positioned on the right lumbar spine. The long keel 31 is placed in the left side waist pocket 131, the short keel 32 is placed in the right second wearable body pocket 231, the second wearable body upper arm 21 is fixed to the lower thoracic spine region, and the second wearable body lower arm 22 is fixed to the left lumbar spine region to prevent or treat the user's right lumbar scoliosis. In this embodiment, by positioning the second wearable body cross section 23 on the right lumbar spine, this embodiment can directly support and correct the right lumbar spine. This design ensures that the corrective force can be precisely applied to the lumbar scoliosis area, improving the targetedness and effectiveness of the correction. In addition, by adjusting the position of the long keel 31 and short keel 32, as well as the fixing positions of the second wearable body upper arm 21 and lower arm, this embodiment can provide a personalized correction solution for the user based on their body shape and condition. This personalized adaptation helps better meet the user's needs and improve the comfort and effectiveness of the correction. In addition, the upper arm 21 of the second wearable body is fixed to the lower thoracic spine area, and the lower arm is fixed to the left lumbar sacral spine area. This layout can provide the user with more comprehensive support and stability. This helps to maintain the correct posture of the spine during the correction process, reduces unnecessary pressure, and enhances the overall stability of the correction device. Finally, this embodiment reduces the sense of restraint and discomfort during wearing through reasonable layout and material selection. At the same time, through precise positioning and personalized adaptation, it can ensure that the correction force is evenly distributed, reduce the concentration of pressure at a single point, and thus improve the user's wearing comfort. This improvement in comfort helps users better adhere to correction treatment and improve the correction effect.

[0059] Optionally, the second wearable body cross section 23 of the left-side second wearable body is positioned in the left lower thoracic spine region, with the long keel 31 positioned in the right side waist pocket 131, the short keel 32 positioned in the left second wearable body pocket 231, the second wearable body upper arm 21 secured above the second shoulder region, and the second wearable body lower arm 22 secured in the right lumbar spine region to prevent or treat the user's left thoracic scoliosis. In this embodiment, by positioning the second wearable body cross section 23 in the left lower thoracic spine region, this design enables precise correction directly targeting the left thoracic spine. This precision ensures that the corrective force is directly applied to the area requiring improvement, significantly improving the correction effect. Furthermore, the long keel 31, short keel 32, and the second wearable body upper arm 21 and lower arm fixing positions in this embodiment can be individually adjusted based on the user's body shape and condition. This personalized adaptation can better meet the user's specific needs, providing a more comfortable and effective correction experience. Furthermore, by fixing the upper arm 21 of the second wearable body above the second shoulder area and the lower arm to the right lumbar spine area, this design provides additional support and stability for the user. This helps maintain the correct posture of the spine during the correction process, reduces unnecessary pressure, and enhances the stability of the overall correction device. Finally, through reasonable layout and material selection, this embodiment aims to improve the user's wearing comfort. The design that reduces the sense of restraint and discomfort helps users better adhere to the correction treatment, thereby further improving the correction effect. At the same time, a comfortable correction experience also helps to enhance user satisfaction and confidence.

[0060] Optionally, the second wearable body cross section 23 of the left-side second wearable body is positioned in the left thoracolumbar spine region, with the long keel 31 positioned in the right side waist pocket 131, the short keel 32 positioned in the left second wearable body pocket 231, the second wearable body upper arm 21 secured to the second wearable body fixing port below the second shoulder region, and the second wearable body lower arm 22 secured to the right lumbar spine region, to prevent or treat the user's left thoracolumbar scoliosis. In this embodiment, positioning the second wearable body cross section 23 in the left thoracolumbar spine region ensures that the corrective force can be applied directly to this area, accurately correcting the left thoracolumbar spine. This design improves the targetedness and effectiveness of the correction, helping to more effectively improve the user's spinal health. Furthermore, by adjusting the positions of the long keel 31 and short keel 32, as well as the fixing positions of the second wearable body upper arm 21 and lower arm, this embodiment can provide users with a personalized correction solution. This personalized adaptation can better meet the user's body shape and medical needs, improving the comfort and effectiveness of the correction. In addition, the upper arm 21 of the second wearing body is fixed below the second shoulder area, and the lower arm is fixed to the right lumbar sacral spine area. This layout provides additional support and stability for the user. During the correction process, this design helps to maintain the correct posture of the spine, reduce unnecessary pressure, and enhance the stability of the overall correction device. Finally, this embodiment focuses on improving the wearing comfort of the user. Through reasonable layout and material selection, the sense of restraint and discomfort during wearing is reduced. At the same time, personalized adaptation and precise distribution of correction force enable users to feel less pressure and discomfort during the correction process, making it easier to adhere to treatment and improve the correction effect.

[0061] Optionally, the second wearable body cross section 23 of the left-side second wearable body is positioned on the left lumbar spine. This cooperates with the long keel 31 placed in the right side waist pocket 131, the short keel 32 placed in the left second wearable body pocket 231, and the second wearable body fixing port secured to the lower thoracic spine region by the second wearable body upper arm 21. The second wearable body lower arm 22 is secured to the right lumbar spine region to prevent or treat the user's left lumbar scoliosis. By positioning the second wearable body cross section 23 on the left lumbar spine, this embodiment enables precise correction directly on the left lumbar spine. This design ensures that the corrective force is concentrated on the area requiring improvement, effectively improving the correction effect. Furthermore, the positions of the long keel 31 and short keel 32, as well as the fixing ports of the second wearable body upper arm 21 and lower arm, can be individually adjusted based on the user's body shape and condition. This design allows the correction device to better adapt to the needs of different users, providing a more comfortable and effective correction experience. Furthermore, the upper arm 21 of the second wearable body is fixed to the lower thoracic spine region, and the lower arm is fixed to the right lumbar sacral spine region. This layout provides comprehensive support and stability for the user. This helps maintain the correct spinal posture during the correction process, reduces unnecessary pressure, and enhances the overall stability of the correction device. Finally, while focusing on the correction effect, this embodiment also fully considers the user's comfort. Through reasonable layout and material selection, the feeling of restraint and discomfort during wearing is reduced. This design allows users to experience a higher level of comfort when receiving correction treatment, thereby being more willing to persist in treatment and improving the correction effect.

[0062] Optionally, the short keel 32 is a "C"-shaped cylindrical body to reduce the contact area with the body, increase the pressure, and thus enhance the treatment effect. In this embodiment, due to the "C"-shaped cylindrical design, the contact area of ​​the short keel 32 with the body is reduced, thereby increasing the pressure on the body under the same corrective force. This locally increased pressure can act more directly on specific areas of the spine, thereby enhancing the correction and treatment effects. Moreover, although the pressure is increased, because the "C"-shaped design can accurately fit the body curve, it avoids unnecessary pressure concentration, thereby reducing discomfort during wearing. This design allows users to wear the corrective device comfortably for longer periods of time, improving the sustainability of corrective treatment. In addition, the "C"-shaped cylindrical short keel 32 can better fit the physiological curve of the spine, ensuring that the corrective force can accurately act on the area of ​​the spine that needs correction. This design improves the accuracy of correction and helps to more effectively improve spinal problems. Finally, due to its C-shaped, cylindrical design, the short keel 32 is better secured to the body during wear, reducing the possibility of displacement or slipping. This stability helps maintain the consistency and durability of the correction force, thereby improving treatment effectiveness.

[0063] Optionally, the inner surface of the second wearable cross section 23 is provided with a Velcro surface, and the side waist region 13 is provided with a Velcro surface, so that the second wearable cross section 23 can be fixed to the side waist region 13 by adhesive bonding. In this embodiment, the Velcro surface and the Velcro surface cooperate to allow the user to quickly secure the second wearable cross section 23 to the side waist region 13 without complicated steps or tools. Furthermore, this design allows the user to quickly and conveniently adjust the fixing position when needed, for better comfort and correction effect. Furthermore, the Velcro design provides strong adhesion, ensuring that the second wearable cross section 23 fits tightly to the side waist region 13 and is not easily dislodged or slipped. This stability is crucial for ensuring correction effect, especially during daily activities or exercise. Furthermore, the Velcro's adjustability allows this design to accommodate users of different body shapes and waist circumferences. Users can adjust the Velcro's position and fit according to their needs to achieve the best wearing effect and comfort. Finally, Velcro is a durable material that is easy to clean. If the Velcro becomes worn or dirty, users can easily replace it with a new one without having to replace the entire wearable body. This design not only extends the life of the product but also reduces maintenance costs for users.

[0064] The present application also provides a scoliosis correction device, comprising: a wearable body and a keel 3; the wearable body is placed on the user's upper limb to generate intersecting, upward and downward restraining forces on the spine that are opposite to the curvature of the spine, thereby preventing or treating scoliosis; the keel 3 is placed on the wearable body to generate support and thrust at the user's lateral waist; wherein the wearable body is placed on the user's upper limb and connected to the restraint support point and the force application support point to generate intersecting, upward and downward restraining forces on the spine that are opposite to the curvature of the spine. In this embodiment, the wearable body, when placed on the user's upper limb, generates intersecting, upward and downward restraining forces that are opposite to the curvature of the spine. This design ensures that the corrective force is precisely applied to the curved part of the spine, helping to improve spinal curvature and prevent or treat scoliosis. In addition, the design of the wearable body and keel 3 allows for personalized adjustment based on the user's body shape, condition, and correction needs. By adjusting the position and strength of the restraint support points and the force support points, it is possible to ensure that the correction force is more in line with the user's actual situation and improve the correction effect. In addition, the keel 3 is worn on the wearable body and can generate support and thrust on the user's side waist. This support and thrust help to enhance the stability of the spine and reduce the pressure on the spine during the correction process, thereby protecting the health of the spine. Finally, the wearable body is made of soft and breathable materials to ensure the comfort of the user when wearing it for a long time. At the same time, the design of the wearable body is simple and convenient, and the user can easily wear and adjust it. This design improves the user experience and makes the correction process more comfortable and convenient.

Claims

1. A scoliosis correction device, characterized in that: include: A first wearable body (1), a second wearable body (2), and a keel (3); when preventing or treating scoliosis, the first wearable body (1) can be worn on the upper limbs of a user; when the first wearable body (1) is worn on the upper limbs of a user, the second wearable body (2) is put on the first wearable body (1) to form mutually crossed restraining forces on the spine that are obliquely upward and obliquely downward and opposite to the curvature direction of the spine, so as to prevent or treat scoliosis; the keel (3) is worn on at least one of the first wearable body (1) and the second wearable body (2) to generate a supporting force and a thrust on the side waist of the user; wherein, The first wearable body (1) is worn in the area of ​​the user's shoulders to form a restraint support point, and the first wearable body (1) is worn in the area of ​​the user's ilium to form a force support point, so that the second wearable body (2) is put on the first wearable body (1) and connected with the restraint support point and the force support point to form restraint forces on the spine that cross each other and are obliquely upward and obliquely downward in the opposite direction of the curvature of the spine; The keel (3) is worn on the side of the user's waist to form a supporting force and correct the scoliosis.

2. The scoliosis correction device according to claim 1, characterized in that: The first wearable body (1) is a vest, comprising: a front region (11), a back region (12), a side waist region (13) and a shoulder region (14), so that the second wearable body (2) spans the front region (11) and the back region (12), and is fixed on at least one of the shoulder region (14) and the side waist region (13), so that the second wearable body (2) is put on the first wearable body (1) and is connected with the restraint support point and the force support point to form restraint forces on the spine that cross each other and are obliquely upward and obliquely downward in the opposite direction of the curvature of the spine.

3. The scoliosis correction device according to claim 2, characterized in that: The lateral waist region (13) includes, from top to bottom, the lower thoracic spine region, which accounts for 27% of the total length of the lateral waist; the thoracolumbar spine region, which accounts for 18% of the total length of the lateral waist; the lumbar spine region, which accounts for 27% of the total length of the lateral waist; and the lumbar sacral spine region, which accounts for 27% of the total length of the lateral waist. The opening of the side waist pocket (131) passes through the lower thoracic spine region, the thoracolumbar spine region, the lumbar spine region, and the lumbar sacral spine region in sequence.

4. The scoliosis correction device according to claim 3, characterized in that: The second wearable body fixing openings are provided on the lower thoracic spine region and the lumbar sacral spine region, so as to fix the upper end and the lower end of the second wearable body (2) on the first wearable body (1) respectively.

5. The scoliosis correction device according to claim 4, characterized in that: The second wearable body (2) is in an "X" shape, comprising: two second wearable body upper arms (21), two second wearable body lower arms (22) and a second wearable body cross section (23); Two long strips of the second wearable body upper arms (21) are respectively arranged on both sides above the second wearable body intersection area (23); and two long strips of the second wearable body lower arms (22) are respectively arranged on both sides below the second wearable body intersection area (23).

6. The scoliosis correction device according to claim 5, characterized in that: The second wearable body (2) comprises: a left-side second wearable body and a right-side second wearable body; The second wearing body cross section (23) of the left-side type second wearing body is arranged on the left side waist region (13) to cooperate with the keel (3) to prevent or treat the user's left mild scoliosis; The second wearing body cross section (23) of the right-side type second wearing body is arranged in the side waist area (13) on the right side to cooperate with the keel (3) to prevent or treat the user's right mild scoliosis.

7. The scoliosis correction device according to claim 6, characterized in that: A second wearable body pocket (231) is provided on the second wearable body intersection area (23) for accommodating the keel (3).

8. The scoliosis correction device according to claim 7, characterized in that: The second wearable body (2) comprises: a second wearable body with a single curve in the chest section, a second wearable body with a single curve in the thoracolumbar section, and a second wearable body with a single curve in the waist section; The length of the second wearable body upper arm (21) of the second wearable body with a single bend in the chest section is 28-33 cm, the length of the second wearable body lower arm (22) is 40-45 cm, and the second wearable body upper arm (21) and the second wearable body lower arm (22) present an angle of 60°; The length of the second wearable body upper arm (21) of the second wearable body with a single bend in the thoracolumbar section is 35-40 cm, the length of the second wearable body lower arm (22) is 35-40 cm, and the second wearable body upper arm (21) and the second wearable body lower arm (22) present an angle of 60°; The length of the second wearable body upper arm (21) of the waist-section single-bend second wearable body is 40-45 cm, the length of the second wearable body lower arm (22) is 37-42 cm, and the second wearable body upper arm (21) and the second wearable body lower arm (22) present an angle of 45°.

9. The scoliosis correction device according to claim 7, characterized in that: The keel (3) comprises a long keel (31) and a short keel (32); The long keel (31) is a cylinder with a length of 30-35 cm and is placed in the side waist pocket (131) to form a supporting force to correct the scoliosis; The short keel (32) is a cylinder with a length of 8-10 cm and is arranged in the second wearable body pocket (231) to form a supporting force to correct the scoliosis.