Anti-humpback garment

By using posture sensing chips and control components in anti-hunchback clothing, hunchback correction is achieved without forced fixation, solving the problem of internal organ pressure caused by back straps, and providing comfortable and effective posture correction and health reminders.

CN117351677BActive Publication Date: 2026-08-25JIANGXI INST OF FASHION TECH
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Patent Information

Application Number
CN202311506820.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-13
Publication Date
2026-08-25
Estimated Expiration
2043-11-13

AI Technical Summary

Technical Problem

Existing corrective braces compress internal organs, especially the lungs, through forced fixation, affecting the respiratory system and causing damage to other internal organs.

Method used

Design an anti-hunchback garment that includes back and shoulder posture sensing chips to collect three-dimensional motion posture value sequences. It is electrically connected to a control component and an alert component. When the posture is abnormal, it generates vibration or stimulation to remind the user to maintain the correct posture.

Benefits of technology

It corrects hunchback without the need for forced fixation, avoids pressure on internal organs, ensures smooth breathing, and provides multifunctional posture correction and health reminders.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a kind of anti-humpback clothing, back posture sensing chip is arranged on clothing ontology, and back posture sensing chip is suitable for being combined with human back, and back posture sensing chip is used to collect the three-dimensional motion posture value sequence of human back;Shoulder posture sensing chip is arranged on clothing ontology, and shoulder posture sensing chip is suitable for being combined with human shoulder, and shoulder posture sensing chip is used to collect the three-dimensional motion posture value sequence of human shoulder;Prompting part is arranged on clothing ontology;Control part is arranged on clothing ontology, control part is electrically connected with back posture sensing chip, shoulder posture sensing chip and prompting part respectively, and prompting part generates vibration or stimulation when the duration of back three-dimensional motion posture value sequence in first range exceeds preset threshold and / or the duration of shoulder three-dimensional motion posture value sequence in second range exceeds preset threshold.Vibration or stimulation is generated to the user by prompting part, to alert the user to maintain correct posture.
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Description

Technical Field

[0001] This invention relates to the technical field of wearable devices, and more specifically to an anti-hunchback garment. Background Technology

[0002] Kyphosis, a common spinal deformity, is a morphological change caused by kyphosis of the thoracic vertebrae. It is primarily caused by weak and loose back muscles. Kyphosis is an external manifestation of spinal deformity and is often a symptom of certain diseases, such as ankylosing spondylitis, vitamin D deficiency, juvenile kyphosis, and spinal tuberculosis. While corrective braces are commonly used to forcibly fix the body and can achieve good corrective effects, the prolonged tightness of the braces on the upper body can easily cause excessive pressure on internal organs, especially the lungs, leading to breathing difficulties, affecting the respiratory system, and causing damage to other internal organs. Summary of the Invention

[0003] Therefore, the technical problem to be solved by the present invention is that the existing technology uses a corrective strap to forcibly fix the human body. Although the use of such a strap can achieve a good corrective effect, the strap is tight on the upper body for a long time, which can easily cause the internal organs to be under heavy pressure, especially the lungs, resulting in difficulty breathing, affecting the respiratory system, and causing certain damage to other internal organs.

[0004] Therefore, the present invention provides an anti-hunchback garment, comprising:

[0005] Clothing body;

[0006] A back posture sensing chip is disposed on the garment body and is adapted to fit against the back of the human body. The back posture sensing chip is used to collect the three-dimensional motion posture value sequence of the back of the human body.

[0007] A shoulder posture sensing chip is disposed on the garment body and adapted to fit against the human shoulder. The shoulder posture sensing chip is used to collect the three-dimensional motion posture value sequence of the human shoulder.

[0008] The reminder is attached to the garment body.

[0009] A control component is disposed on the garment body and is electrically connected to the back posture sensing chip, the shoulder posture sensing chip and the reminder component respectively.

[0010] When the duration of the three-dimensional motion posture value sequence of the back exceeds a preset threshold in the first range and / or the duration of the three-dimensional motion posture value sequence of the shoulder exceeds the preset threshold in the second range, the reminder device generates vibration or stimulation.

[0011] Optionally, in the aforementioned anti-hunchback clothing, the reminder element includes:

[0012] A back pulse patch is disposed on the garment body and adapted to fit against the back of the human body. The back pulse patch is electrically connected to the control component.

[0013] A shoulder pulse patch is disposed on the garment body and adapted to fit against the human shoulder. The shoulder pulse patch is electrically connected to the control component.

[0014] Optionally, in the above-mentioned anti-hunchback clothing, the main body of the clothing includes an outer shirt and an inner shirt, the outer shirt and the inner shirt are detachably connected, and the inner shirt is provided with the back posture sensing chip, the shoulder posture sensing chip, the back pulse patch and the shoulder pulse patch on the side away from the outer shirt.

[0015] Optionally, the aforementioned anti-hunchback clothing also includes a power module, which is electrically connected to the control unit.

[0016] Optionally, the aforementioned anti-hunchback clothing also includes a display module, which is electrically connected to the control component and is used to display the number of times the reminder component has been used.

[0017] Optionally, in the aforementioned anti-hunchback clothing, the control components include:

[0018] The main control chip is electrically connected to both the power module and the display module.

[0019] A pulse generation module, which is electrically connected to the main control chip, is used to generate pulse energy;

[0020] A pulse output module is electrically connected to the pulse generation module, and the pulse output module is electrically connected to the back pulse patch and the shoulder pulse patch respectively. The pulse output module outputs pulses to the back pulse patch and / or the shoulder pulse patch.

[0021] A pulse frequency modulation module is electrically connected to both the pulse generation module and the main control chip. The pulse frequency modulation module is used to adjust the power of the pulse generation module.

[0022] Optionally, in the aforementioned anti-hunchback clothing, the control component further includes a signal receiving module, which is electrically connected to the main control chip and also electrically connected to the back posture sensing chip and the shoulder posture sensing chip, respectively. The signal receiving module receives the back three-dimensional motion posture value sequence and the shoulder three-dimensional motion posture value sequence.

[0023] Optionally, in the aforementioned anti-hunchback clothing, the control component further includes:

[0024] An attitude reference module is electrically connected to the main control chip. The attitude reference module generates a standard back three-dimensional motion attitude value sequence, an extreme back three-dimensional motion attitude value sequence, a standard shoulder three-dimensional motion attitude value sequence, and an extreme shoulder three-dimensional motion attitude value sequence.

[0025] The first range is a sequence of back three-dimensional motion posture values ​​that exceeds the standard sequence and is lower than the limit sequence of back three-dimensional motion posture values.

[0026] The second range is the range that exceeds the standard three-dimensional shoulder motion posture value sequence but is lower than the limit three-dimensional shoulder motion posture value sequence;

[0027] The posture span judgment module generates first feedback information on whether the back three-dimensional motion posture value sequence is within the first range, and / or second feedback information on whether the shoulder three-dimensional motion posture value sequence is within the second range;

[0028] The attitude persistence determination module records the duration of the first feedback information and the duration of the second feedback information.

[0029] Optionally, in the aforementioned anti-hunchback clothing, the control component further includes a pulse metering module, which is electrically connected to the main control chip. The pulse metering module records the number of stimulations of the back pulse patch and / or the shoulder pulse patch, respectively.

[0030] Optionally, the modeling module of the aforementioned anti-hunchback clothing generates a model of the number of stimulations within a set period.

[0031] The technical solution provided by this invention has the following advantages:

[0032] 1. The present invention provides an anti-hunchback garment, comprising a garment body, a back posture sensing chip, a shoulder posture sensing chip, a reminder component, and a control component. The back posture sensing chip is disposed on the garment body and is adapted to fit against the back of the human body. The back posture sensing chip is used to collect a three-dimensional motion posture value sequence of the human back. The shoulder posture sensing chip is disposed on the garment body and is adapted to fit against the shoulders of the human body. The shoulder posture sensing chip is used to collect a three-dimensional motion posture value sequence of the human shoulders. The reminder component is disposed on the garment body. The control component is disposed on the garment body and is electrically connected to the back posture sensing chip, the shoulder posture sensing chip, and the reminder component. When the duration of the three-dimensional motion posture value sequence of the back exceeds a preset threshold within a first range and / or the duration of the three-dimensional motion posture value sequence of the shoulders exceeds a preset threshold within a second range, the reminder component generates vibration or stimulation. When a user wearing the anti-hunchback clothing develops a hunched back and slumped shoulders, and the duration exceeds a preset threshold, the control unit vibrates or stimulates the user via a reminder device to alert the user to maintain the correct posture, thereby correcting the user's posture and avoiding the need for forced fixation to correct posture. Attached Figure Description

[0033] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0034] Figure 1 A schematic diagram of the structure of the anti-hunchback clothing provided by the present invention;

[0035] Figure 2 A schematic diagram showing the anti-hunchback garment provided by the present invention with part of the outer shirt removed;

[0036] Figure 3 An explosion diagram illustrating the anti-hunchback clothing provided by the present invention;

[0037] Figure 4 A block diagram of the control components in the anti-hunchback clothing provided by the present invention.

[0038] Explanation of reference numerals in the attached figures:

[0039] 100. Garment body; 101. Outer shirt; 102. Inner shirt;

[0040] 200. Back posture sensor chip;

[0041] 300. Shoulder posture sensing chip;

[0042] 400. Reminder patch; 401. Back pulse patch; 402. Shoulder pulse patch;

[0043] 501. Main control chip; 502. Pulse generation module; 503. Pulse output module; 504. Pulse frequency modulation module; 505. Signal receiving module; 506. Attitude reference module; 507. Attitude span judgment module; 508. Attitude endurance judgment module; 509. Pulse measurement module; 510. Modeling module;

[0044] 600. Power supply module;

[0045] 700. Display module;

[0046] 800. Casing. Detailed Implementation

[0047] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0048] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0049] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0050] Furthermore, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0051] Example 1

[0052] This embodiment provides a garment to prevent hunchback, such as Figures 1 to 4 As shown, the garment includes a garment body 100, a back posture sensing chip 200, a shoulder posture sensing chip 300, a reminder component 400, and a control component. The back posture sensing chip 200 is disposed on the garment body 100 and is adapted to fit against the back of the human body. The back posture sensing chip 200 is used to collect the three-dimensional motion posture value sequence of the human back. The shoulder posture sensing chip 300 is disposed on the garment body 100 and is adapted to fit against the shoulder of the human body. The shoulder posture sensing chip 300 is used to collect the three-dimensional motion posture value sequence of the human shoulder. The reminder component 400 is disposed on the garment body 100. The control component is disposed on the garment body 100 and is electrically connected to the back posture sensing chip 200, the shoulder posture sensing chip 300, and the reminder component 400. When the duration of the three-dimensional motion posture value sequence of the back exceeds a preset threshold in a first range and / or the duration of the three-dimensional motion posture value sequence of the shoulder exceeds a preset threshold in a second range, the reminder component 400 generates vibration or stimulation. When a user wearing the anti-hunchback clothing develops a hunched back and slumped shoulders, and the duration exceeds a preset threshold, the control unit vibrates or stimulates the user via the reminder unit 400 to alert the user to maintain the correct posture, thereby correcting the user's posture and avoiding the need for forced fixation to correct posture.

[0053] like Figures 1 to 3 As shown, the anti-hunchback clothing provided in this embodiment includes a reminder component 400 comprising a back pulse patch 401 and a shoulder pulse patch 402. The back pulse patch 401 is disposed on the clothing body and, after the user wears the clothing body, fits against the user's back. The back pulse patch 401 is connected to a control component via a cable. The shoulder pulse patch 402 is disposed on the clothing body and, after the user wears the clothing body, fits against the user's shoulders. The shoulder pulse patch 402 is connected to a control component via a cable.

[0054] like Figures 1 to 3As shown, the anti-hunchback garment provided in this embodiment includes an outer shirt 101 and an inner shirt 102. The inner shirt 102 is connected to the inner surface of the outer shirt 101 via a zipper. By unzipping the zipper, the inner shirt 102 can be separated from the outer shirt 101, facilitating independent washing of the inner shirt 102 and the outer shirt 101. A pair of back posture sensing chips 200 are used. This embodiment does not limit the number of back posture sensing chips 200. The pair of back posture sensing chips 200 are spaced apart on the back of the inner surface of the inner shirt 102. The back posture sensing chips 200 can be fixedly connected to the inner surface of the inner shirt 102 by bonding, sewing, embedding, or other common fixing methods. A pair of shoulder posture sensing chips 300 are used. This embodiment does not limit the number of shoulder posture sensing chips 300. One shoulder posture sensing chip 300 is located on the left shoulder area of ​​the inner surface of the inner shirt 102, and the other shoulder posture sensing chip 300 is located on the right shoulder area of ​​the inner surface of the inner shirt 102. Either shoulder posture sensing chip 300 can be fixedly connected to the inner surface of the inner shirt 102 by adhesive bonding, sewing, embedding, or other common fixing methods. A pair of back pulse patches 401 are used. This embodiment does not limit the number of back pulse patches 401. The pair of back pulse patches 401 are spaced apart on the back of the inner surface of the inner shirt 102. The back pulse patches 401 can be fixedly connected to the inner surface of the inner shirt 102 by adhesive bonding, sewing, embedding, or other common fixing methods. A pair of shoulder pulse patches 402 are used. In this embodiment, the number of shoulder pulse patches 402 is not limited. One shoulder pulse patch 402 is located on the left shoulder of the inner surface of the inner shirt 102, and the other shoulder pulse patch 402 is located on the right shoulder of the inner surface of the inner shirt 102. Either shoulder pulse patch 402 can be fixedly connected to the inner surface of the inner shirt 102 by adhesive, sewing, embedding or other common fixing methods.

[0055] The anti-hunchback clothing provided in this embodiment also includes a power module 600 and a protective shell. The power module 600 is a rechargeable battery and is snapped into the protective shell. As an alternative implementation, the power module 600 can be fixedly connected to the inner wall of the shell 800 by adhesive, bolt connection, or other common fixing methods. The power module 600 is connected to a control component via a cable. The control component is located inside the shell 800.

[0056] The anti-hunchback garment provided in this embodiment also includes a display module 700. The housing 800 has an opening, and the display module 700 is covered on the opening. The display module 700 is a display screen, which is connected to the control unit via a cable. The display module 700 is used to display the number of working times of the shoulder pulse patch 402 and the number of working times of the back pulse patch 401, respectively.

[0057] like Figure 4As shown, the anti-hunchback clothing provided in this embodiment includes a main control chip 501, a pulse generation module 502, a pulse output module 503, and a pulse frequency modulation module 504. The main control chip 501 is fixed inside the housing 800 by bolts. The main control chip 501 is a microcontroller or a Raspberry Pi. The main control chip 501 is connected to the power module 600 and the display module 700 via cables. The power module 600 supplies power to the main control chip 501, and the main control chip 501 can supply power to the display screen. The pulse generation module 502 is a TZ-CH100 type. As an alternative implementation, the pulse generation module 502 can use other devices that generate pulse energy. The pulse generation module 502 is connected to the main control chip 501 via cables or a communication interface and can be used to generate pulse energy. The pulse output module 503 is an output terminal. It connects to the pulse generator module 502 via a cable or communication interface. The pulse output module 503 also connects to the shoulder pulse patch 402 and the back pulse patch 401 via corresponding cables. The pulse output module 503 outputs the pulse energy generated by the pulse generator module 502 to the back pulse patch 401 and the shoulder pulse patch 402. The pulse frequency modulation module 504 connects to the main control chip 501 via a cable or communication interface. The pulse frequency modulation module 504 is connected to the pulse generator, and the main control chip 501 can adjust the output power of the pulse generator module 502 through the pulse frequency modulation module 504 to ensure that the pulse stimulation meets the human body's stimulation needs.

[0058] like Figure 4 As shown, the anti-hunchback clothing provided in this embodiment also includes a signal receiving module 505. The signal receiving module 505 is connected to the main control chip 501 via a cable or communication interface. The communication interface supports multiple communication protocols, including but not limited to Modbus, PROFIBUS, and OPC. The signal receiving module 505 is connected to the back posture sensing chip 200 and the shoulder posture sensing chip 300 via corresponding cables. The signal receiving module 505 receives the three-dimensional motion posture value sequence of the back and the three-dimensional motion posture value sequence of the shoulder, and uploads them to the main control chip 501 for recognition and processing.

[0059] like Figure 4As shown, the anti-hunchback clothing provided in this embodiment includes a posture reference module 506, a posture span judgment module 507, and a posture endurance judgment module 508. The posture reference module 506 is connected to the main control chip 501 via a cable or communication interface. The posture reference module 506 generates a standard back three-dimensional motion posture value sequence, an extreme back three-dimensional motion posture value sequence, a standard shoulder three-dimensional motion posture value sequence, and an extreme shoulder three-dimensional motion posture value sequence. The posture reference module 506 is used to provide standard data for comparing and measuring the user's sitting posture. The first range is exceeding the standard back three-dimensional motion posture value sequence but below the extreme back three-dimensional motion posture value sequence; the second range is exceeding the standard shoulder three-dimensional motion posture value sequence but below the extreme shoulder three-dimensional motion posture value sequence. The posture span judgment module 507 generates first feedback information based on whether the back three-dimensional motion posture value sequence is within the first range, and the posture span judgment module 507 generates second feedback information based on whether the shoulder three-dimensional motion posture value sequence is within the second range. The posture endurance judgment module 508 records the duration of the first feedback information and the duration of the second feedback information. When a user is hunched over, their back is bent and shoulders are slumped. The back posture sensor chip 200 collects a three-dimensional motion posture value sequence for the back that exceeds the limit for back three-dimensional motion posture value sequence. The shoulder posture sensor chip 300 collects a three-dimensional motion posture value sequence for the shoulders that exceeds the limit for shoulder three-dimensional motion posture value sequence. The first feedback message is "no," and the second feedback message is also "no." At this time, neither the shoulder pulse patch 402 nor the back pulse patch 401 works. When the user is hunched over, the back posture sensor chip 200 collects a three-dimensional motion posture value sequence for the back. The value sequence is within the first range, the first feedback information is yes, the shoulder posture sensor chip 300 collects the shoulder three-dimensional motion posture value sequence within the second range, the second feedback information is yes, and the duration of the first feedback information exceeds the preset threshold, the duration of the second feedback information exceeds the preset threshold, the preset threshold is 4 seconds. As an alternative implementation, the preset threshold can be adjusted as needed. The controller causes the pulse generation module 502 to work, thereby causing the shoulder pulse patch 402 and the back pulse patch 401 to generate pulse stimulation, thereby reminding the user to correct the posture.

[0060] The anti-hunchback clothing provided in this embodiment, such as Figure 4As shown, the control unit also includes a pulse metering module 509 and a modeling module 510. The pulse metering module 509 is connected to the main control chip 501 via a cable or communication interface. The pulse metering module 509 records the number of stimulations from the back pulse patch 401 or the shoulder pulse patch 402. When the back pulse patch 401 provides pulse stimulation to the user's back, or when the shoulder pulse patch 402 provides a warning for the user's shoulder, the pulse number metering module 510 records the number of pulse stimulations. The modeling module 510 is connected to the main control chip 501 via a cable or communication interface. The modeling module 510 generates a model of the number of stimulations within a set period. The set period is one day. The modeling module 510 generates a model of the number of pulse execution commands per day, which is stored and backed up by the storage module on the main control chip 501. The modeling module 510 can establish the number of back and shoulder posture correction reminders per day. By comparing the daily data models, the effectiveness of the anti-hunchback method can be determined. The display module 700 is used to display the data model. By establishing statistical data for limb repair and treatment through modeling, it is easier to trace rehabilitation data in the future, thereby improving the reliability and versatility of anti-hunchback clothing for anti-hunchback rehabilitation and treatment.

[0061] The anti-hunchback clothing provided in this embodiment is suitable for wearing in various occasions, meets the correction needs of the back and shoulders, and reduces the restrictiveness of wearing it because it uses pulse stimulation as a warning signal. In addition, the back pulse patch 401 and the shoulder pulse patch 402 can be used independently as health care and physiotherapy tools, satisfying the multi-functionality of use.

[0062] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the scope of protection of this invention.

Claims

1. A garment for preventing hunchback, characterized in that, include: Clothing body (100); A back posture sensor chip (200) is disposed on the garment body (100) and is adapted to fit against the back of the human body. The back posture sensor chip (200) is used to collect the three-dimensional motion posture value sequence of the back of the human body. A shoulder posture sensing chip (300) is disposed on the garment body (100) and is adapted to fit against the human shoulder. The shoulder posture sensing chip (300) is used to collect the three-dimensional motion posture value sequence of the human shoulder. A reminder element (400) is disposed on the garment body (100); The control component is disposed on the garment body (100) and is electrically connected to the back posture sensing chip (200), the shoulder posture sensing chip (300) and the reminder component (400) respectively. When the duration of the back three-dimensional motion posture value sequence in the first range exceeds a preset threshold and / or the duration of the shoulder three-dimensional motion posture value sequence in the second range exceeds the preset threshold, the reminder (400) generates vibration or stimulation. The first range is exceeding the standard back three-dimensional motion posture value sequence and below the limit back three-dimensional motion posture value sequence; the second range is exceeding the standard shoulder three-dimensional motion posture value sequence and below the limit shoulder three-dimensional motion posture value sequence. When the sequence of three-dimensional back motion posture values ​​exceeds the limit sequence of three-dimensional back motion posture values ​​and / or when the sequence of three-dimensional shoulder motion posture values ​​exceeds the limit sequence of three-dimensional shoulder motion posture values, the reminder (400) will not work.

2. The anti-hunchback clothing according to claim 1, characterized in that, The reminder (400) includes: A back pulse patch (401) is disposed on the garment body and adapted to fit against the back of the human body. The back pulse patch (401) is electrically connected to the control component. A shoulder pulse patch (402) is disposed on the garment body and is adapted to fit against the human shoulder. The shoulder pulse patch (402) is electrically connected to the control component.

3. The anti-hunchback garment according to claim 2, characterized in that, The garment body includes an outer shirt (101) and an inner shirt (102). The outer shirt (101) and the inner shirt (102) are detachably connected. The inner shirt (102) is provided with the back posture sensing chip (200), the shoulder posture sensing chip (300), the back pulse patch (401), and the shoulder pulse patch (402) on the side away from the outer shirt (101).

4. The anti-hunchback clothing according to claim 2 or 3, characterized in that, It also includes a power module (600) which is electrically connected to the control unit.

5. The anti-hunchback garment according to claim 4, characterized in that, It also includes a display module (700), which is electrically connected to the control unit and is used to display the number of times the reminder unit (400) has been used.

6. The anti-hunchback garment according to claim 5, characterized in that, The control component includes: The main control chip (501) is electrically connected to the power module (600) and the display module (700) respectively; A pulse generation module (502) is electrically connected to the main control chip (501) and is used to generate pulse energy. A pulse output module (503) is electrically connected to the pulse generation module (502), and the pulse output module (503) is electrically connected to the back pulse patch (401) and the shoulder pulse patch (402) respectively. The pulse output module (503) outputs pulses to the back pulse patch (401) and / or the shoulder pulse patch (402). A pulse frequency modulation module (504) is electrically connected to the pulse generation module (502) and the main control chip (501) respectively. The pulse frequency modulation module (504) is used to adjust the power of the pulse generation module (502).

7. The anti-hunchback garment according to claim 6, characterized in that, The control unit further includes a signal receiving module (505), which is electrically connected to the main control chip (501) and electrically connected to the back posture sensing chip (200) and the shoulder posture sensing chip (300) respectively. The signal receiving module (505) receives the back three-dimensional motion posture value sequence and the shoulder three-dimensional motion posture value sequence.

8. The anti-hunchback clothing according to claim 6 or 7, characterized in that, The control component also includes: An attitude reference module (506) is electrically connected to the main control chip (501). The attitude reference module (506) generates the standard back three-dimensional motion attitude value sequence, the extreme back three-dimensional motion attitude value sequence, the standard shoulder three-dimensional motion attitude value sequence, and the extreme shoulder three-dimensional motion attitude value sequence. The posture span judgment module (507) generates first feedback information on whether the back three-dimensional motion posture value sequence is within the first range, and / or second feedback information on whether the shoulder three-dimensional motion posture value sequence is within the second range; The attitude persistence determination module (508) records the duration of the first feedback information and the duration of the second feedback information.

9. The anti-hunchback garment according to claim 8, characterized in that, The control unit also includes a pulse metering module (509), which is electrically connected to the main control chip (501). The pulse metering module (509) records the number of stimulations of the back pulse patch (401) and / or the shoulder pulse patch (402).

10. The anti-hunchback garment according to claim 9, characterized in that, The control unit also includes a modeling module (510), which is electrically connected to the main control chip (501). The modeling module (510) generates a model of the number of stimulations within a set period.

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