Wearable gynecological intelligent physical therapy device and physical therapy method thereof

By designing a wearable intelligent gynecological physiotherapy device, and adopting a multimodal treatment module and intelligent control system, the problems of difficult acupoint location, safety hazards and privacy exposure in the treatment of gynecological diseases by traditional moxibustion therapy have been solved. It has achieved precise, privacy-protected and multimodal collaborative treatment, improving user compliance and treatment effect.

CN120884480APending Publication Date: 2025-11-04SHANGHAI UNIV OF T C M
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Patent Information

Application Number
CN202511277641.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-09
Publication Date
2025-11-04

AI Technical Summary

Technical Problem

Traditional moxibustion therapy for gynecological diseases has problems such as difficulty in locating acupoints, safety risks, privacy exposure, large temperature fluctuations, lack of integration of auxiliary factors, and low equipment compliance. In particular, it lacks precise and privacy-protecting equipment for home use.

Method used

A wearable intelligent gynecological physiotherapy device was designed, which adopts a detachable multimodal treatment module, including a precise thermal stimulation layer, an infrared phototherapy layer, a blue light therapy layer, and a micro-vibration massage layer. Combined with an intelligent control system and software ecosystem, it can achieve precise temperature control, multimodal collaborative treatment, and privacy protection.

Benefits of technology

It improves the precision and privacy of treatment, enhances user compliance, enables multimodal collaborative treatment and intelligent remote management, and is suitable for long-term home use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a wearable gynecological intelligent physical therapy device and a physical therapy method thereof. The wearable gynecological intelligent physical therapy device comprises a wearable base body, a plurality of core treatment modules integrated on the inner side of the wearable base body, an intelligent control system and a matched software ecological system. The high-waist, traceless and ultra-thin physiological underpants made of the medical grade antibacterial elastic fabric can fit the curve of the human body to the maximum extent, the concealment during wearing is ensured, a coat can be completely covered, the privacy of a user is effectively protected, and the psychological burden in a traditional physiotherapy scene is relieved. The flattened treatment module seamlessly embedded in the inner side is in smooth transition with the fabric, discomfort caused by protruding feeling is avoided, the high-elasticity waistline and leg circumference design is matched, it can be guaranteed that the treatment module is tightly attached to the acupoint area, key acupoints of the lower abdomen and the sacrococcygeal region do not move, and the requirement for long-time wearing comfort can be met; the device has the advantages that the treatment accuracy is improved, the privacy of the user is protected, and multi-mode collaborative treatment and intelligent remote management are realized.
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Description

Technical Field

[0001] This invention relates to the field of medical device technology, specifically to a wearable intelligent gynecological physiotherapy device and its physiotherapy method. Background Technology

[0002] Traditional moxibustion therapy has many technical limitations in the treatment of gynecological diseases (such as primary dysmenorrhea, chronic pelvic inflammatory disease, endometriosis, postpartum uterine coldness, etc.).

[0003] First, professional physicians are required to locate deep acupoints such as Guanyuan, Qihai, and Baliao. Patients performing the treatment at home are prone to deviating from the target area, affecting the efficacy. Second, open flame combustion produces smoke and ash, posing risks of burns and fire. Furthermore, each treatment session requires maintaining a fixed position for 20-40 minutes, significantly reducing patient compliance. Third, treatment of the lower abdomen and sacrococcygeal region requires exposure of private areas, and the traditional clinic setting exacerbates the psychological burden on patients. Fourth, the temperature fluctuation range of moxibustion is large; overheating can easily cause tissue damage, while insufficient heat can fail to activate thermosensitive ion channels. Fifth, the lack of integrated application of auxiliary factors such as infrared / blue light makes it difficult to achieve the synergistic effect of anti-inflammatory, analgesic, and circulation improvement. Sixth, existing physiotherapy equipment cannot simultaneously achieve wearable concealment, multimodal physical factor synergistic treatment, and intelligent data management, resulting in low patient compliance and difficulty in quantifying and tracking efficacy. This is especially true for chronic gynecological diseases requiring long-term treatment, where there is a lack of precise, privacy-protecting equipment for home use. Summary of the Invention

[0004] To address the problems mentioned in the background art, the present invention aims to provide a wearable intelligent gynecological physiotherapy device and its physiotherapy method, which has the advantages of improving treatment accuracy, protecting user privacy, realizing multimodal collaborative treatment and intelligent remote management.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a wearable gynecological intelligent physiotherapy device, comprising a wearable substrate, multiple core treatment modules integrated into the inner side of the wearable substrate, an intelligent control system, and a supporting software ecosystem. The wearable substrate is made of medical-grade antibacterial elastic fabric and is in the form of high-waisted, seamless, and ultra-thin menstrual underwear. Multiple independent flat treatment modules are seamlessly embedded in the inner side of the wearable substrate corresponding to key acupoints in the lower abdomen and the sacrum and coccyx. The treatment modules are smoothly transitioned to the fabric. The treatment modules are designed to be detachable and replaceable. The wearable substrate is fixed by a high-elastic waistband and leg band, providing multiple sizes to fit different body types.

[0006] As a preferred embodiment of the present invention, the treatment module comprises a precise thermal stimulation layer, an infrared phototherapy layer, a blue light therapy layer, and a micro-vibration massage layer. The precise thermal stimulation layer adopts a flexible graphene heating film or an ultra-thin PTC ceramic heating element, integrates a high-precision micro temperature sensor, and achieves multi-level temperature adjustment from 38°C to 58°C through a PID algorithm, with a default safe upper limit of 60°C. It can also be programmed to implement gentle and strong heat modes, and its skin contact surface is made of skin-friendly thermally conductive silicone.

[0007] As a preferred embodiment of the present invention, the infrared phototherapy layer uses medical-grade near-infrared LEDs with wavelengths of 850nm or 810nm, which can be independently switched on and off and adjusted to low, medium, and high intensities, and the irradiation time can be set. The blue phototherapy layer uses medical-grade blue LEDs with wavelengths of 415nm or 420nm, which can be independently switched on and off and adjusted to low and medium intensities, and the irradiation time can be set. The micro-vibration massage layer integrates a micro-vibration motor to provide gentle acupoint massage.

[0008] As a preferred embodiment of the present invention, the intelligent control system includes a main control unit integrated on the side or lower back of the waist. The main control unit includes a microprocessor, a Bluetooth / Wi-Fi module, a multi-channel temperature monitoring circuit, a phototherapy driving circuit, a vibration driving circuit, and a power management unit. The intelligent control system also includes a sensor assembly, which includes 1-2 temperature sensors built into each heating module, a contact sensor for detecting whether the device is worn correctly and fits snugly, and a usage time sensor for recording treatment modes, parameters, and duration.

[0009] As a preferred embodiment of the present invention, the user interaction method of the intelligent control system includes 1-2 multi-functional physical buttons on the side module for power on / off, start / pause, and a mobile APP connected via Bluetooth. The mobile APP can realize device pairing, parameter setting, mode selection, real-time status viewing and historical record storage.

[0010] As a preferred embodiment of the present invention, the wearable base also includes a charging and battery life component. The charging and battery life component adopts magnetic wireless charging. The main control module has magnetic charging contacts and a USB-C backup interface hidden under a waterproof cover on its outer side. It has a built-in high-energy-density lithium polymer battery and can work continuously for more than 60-90 minutes in a moderate-intensity comprehensive treatment mode. It also supports fast charging.

[0011] As a preferred embodiment of the present invention, the supporting software ecosystem includes a user-end APP and a cloud-based backend system. The user-end APP can set periodic treatment plans, record symptom diaries, generate trend reports, and provide reminder functions. The cloud-based backend system can realize encrypted data storage and analysis, patient management, and remote device firmware upgrades, and strictly comply with medical and health data privacy regulations.

[0012] A wearable intelligent gynecological physiotherapy device and its physiotherapy method include the following steps:

[0013] S1: Users select a wearable base of the appropriate size according to their body shape, embed the detachable treatment module into the inner side of the corresponding acupoint area of ​​the base, and ensure a smooth transition between the module and the fabric. Users wear the wearable base and fix it with high elastic waist and leg bands, so that the treatment module fits tightly against the skin of the lower abdomen and sacrum. The device is activated after the contact sensor detects the correct fit. The device is paired with the mobile APP via Bluetooth or turned on using the physical button. In the APP, users can select preset treatment modes, such as dysmenorrhea relief mode, pelvic inflammatory disease auxiliary treatment mode, etc., or customize the parameters, such as the temperature of the warm stimulation layer, the intensity and duration of infrared / blue light, and whether to turn on vibration massage.

[0014] S2: After treatment is initiated, the precise thermal stimulation layer heats up according to the set mode. The temperature sensor monitors the skin temperature in real time and adjusts it to the set value through a PID algorithm. The infrared and blue light therapy layers emit light of corresponding wavelengths according to the set parameters. The micro-vibration massage layer provides acupoint massage as needed. During treatment, the main control unit records real-time data such as temperature, light intensity, and duration, and synchronizes it to the mobile APP. Users can view the real-time status through the APP, adjust parameters or pause treatment if necessary. After treatment, the device automatically stops working. The user's APP stores the treatment data and generates a treatment record. Users can record symptom diaries in the APP. The cloud-based backend system encrypts, stores, and analyzes the data. Doctors can view the treatment data and symptom records of authorized patients through the cloud-based patient management system, remotely adjust treatment plans, and communicate with patients through a secure messaging system. The device can also be remotely upgraded via the cloud.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] 1. This invention utilizes a high-waisted, seamless, ultra-thin menstrual underwear made of medical-grade antibacterial elastic fabric. It conforms maximally to the body's curves, ensuring privacy during wear. Outer clothing can completely cover the user, effectively protecting privacy and alleviating psychological burden in traditional physiotherapy settings. The seamlessly embedded, flat treatment module smoothly transitions with the fabric, avoiding discomfort from protrusions. Combined with a highly elastic waistband and leg opening design, it ensures the treatment module fits snugly against acupoints, preventing displacement of key acupoints in the lower abdomen and sacrum, while also providing comfort for extended wear. The detachable and replaceable treatment module design facilitates daily cleaning and maintenance, and also allows for future upgrades, extending the overall lifespan of the device. Multiple sizes are available to accommodate different body types, expanding the applicable population and solving the problem of poor versatility in traditional devices. This significantly improves user acceptance and treatment compliance. The device offers advantages such as improved treatment accuracy, protection of user privacy, multimodal collaborative treatment, and intelligent remote management.

[0017] 2. This invention utilizes a flexible graphene heating film or an ultra-thin PTC ceramic heating element, which features uniform heating and rapid temperature rise, quickly reaching the required treatment temperature. Its flexible nature adapts to the curvature of the human body, ensuring uniform heat transfer. An integrated high-precision micro-temperature sensor combined with a PID algorithm achieves precise temperature control across multiple temperature ranges from 38℃ to 58℃. A default safety upper limit of 60℃ effectively prevents tissue damage caused by excessive temperature, while also preventing insufficient temperature from affecting the treatment effect, thus overcoming the drawback of large temperature fluctuations in traditional moxibustion. Programmable "gentle" and "vigorous" modes can simulate the therapeutic effects of different moxibustion methods, meeting diverse treatment needs. The skin-friendly, thermally conductive silicone contact surface enhances wearing comfort and reduces skin irritation, preventing discomfort even during prolonged treatment. This provides reliable assurance for precise temperature control treatment at home, especially suitable for patients with temperature-sensitive gynecological diseases. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of the present invention;

[0019] Figure 2 This is a schematic diagram of the rear side of the structure of the present invention;

[0020] Figure 3 This is a schematic diagram of the overall structure of the present invention;

[0021] Figure 4 This is a schematic diagram of the intelligent control system structure of the present invention;

[0022] Figure 5 This is a schematic diagram of the software ecosystem structure supporting this invention;

[0023] Figure 6 This is a schematic diagram of the structure of the treatment module of the present invention;

[0024] Figure 7 This is a cross-sectional view of the treatment module of the present invention;

[0025] Figure 8 This is a schematic diagram of the intelligent control system structure of the present invention.

[0026] In the diagram: 1. Wearable substrate; 2. Treatment module; 3. Intelligent control system. Detailed Implementation

[0027] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. 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.

[0028] like Figures 1 to 8 As shown, a wearable gynecological intelligent physiotherapy device and its physiotherapy method include a wearable base 1, multiple core treatment modules 2 integrated inside the wearable base 1, an intelligent control system 3, and a supporting software ecosystem. The wearable base 1 is made of medical-grade antibacterial elastic fabric and is in the form of high-waisted, seamless, and ultra-thin menstrual underwear. Multiple independent flat treatment modules 2 are seamlessly embedded inside the wearable base 1 corresponding to key acupoints in the lower abdomen and the sacrum and coccyx. The treatment modules 2 are smoothly transitioned to the fabric. The treatment modules 2 adopt a detachable and replaceable design. The wearable base 1 is fixed by a high-elastic waistband and leg band, providing multiple sizes to fit different body types.

[0029] refer to Figure 3 , 6 7. The treatment module 2 includes a precise thermal stimulation layer 21, an infrared phototherapy layer 22 embedded in the inner cavity of the precise thermal stimulation layer 21, a blue light therapy layer 23 embedded on one side of the infrared phototherapy layer 22, and several micro-vibration massage layers 24 embedded on one side of the blue light therapy layer 23. The precise thermal stimulation layer 21 adopts a flexible graphene heating film or an ultra-thin PTC ceramic heating element, integrates a high-precision micro temperature sensor, and achieves multiple temperature adjustments from 38℃ to 58℃ through a PID algorithm. The default safety upper limit is 60℃, and it can be programmed to achieve gentle and strong heat modes. Its contact surface with the skin is made of skin-friendly thermally conductive silicone.

[0030] As a technical optimization of this invention, the flexible graphene heating film or ultra-thin PTC ceramic heating element features uniform heating and rapid temperature rise, quickly reaching the required treatment temperature. Its flexible nature adapts to the curvature of the human body, ensuring uniform heat transfer. An integrated high-precision micro-temperature sensor combined with a PID algorithm achieves precise temperature control across multiple temperature ranges from 38℃ to 58℃. A default safety upper limit of 60℃ effectively prevents tissue damage caused by excessive temperature, while also preventing insufficient temperature from affecting the treatment effect, thus overcoming the drawback of large temperature fluctuations in traditional moxibustion. Programmable "gentle" and "vigorous" modes can simulate the therapeutic effects of different moxibustion methods, meeting diverse treatment needs. The skin-friendly, thermally conductive silicone contact surface enhances wearing comfort and reduces skin irritation, preventing discomfort even during prolonged treatment. This provides reliable assurance for precise temperature control treatment at home, especially suitable for patients with temperature-sensitive gynecological diseases.

[0031] refer to Figure 3 , 67. The infrared phototherapy layer 22 uses medical-grade near-infrared LEDs with wavelengths of 850nm or 810nm, which can be independently switched on and off and adjusted to low, medium, and high intensity, and the irradiation time can be set. The blue phototherapy layer 23 uses medical-grade blue light LEDs with wavelengths of 415nm or 420nm, which can be independently switched on and off and adjusted to low and medium intensity, and the irradiation time can be set. The micro-vibration massage layer 24 integrates a micro-vibration motor to provide gentle acupoint massage.

[0032] As a technical optimization of this invention, medical-grade near-infrared LEDs with wavelengths of 850nm or 810nm have strong penetrating power, allowing them to penetrate deep into tissues to promote blood circulation, accelerate tissue repair, and enhance anti-inflammatory and analgesic effects. Medical-grade blue LEDs with wavelengths of 415nm or 420nm can specifically inhibit superficial bacteria, achieving targeted antibacterial and anti-inflammatory effects. The synergistic effect of the two forms an anti-inflammatory-repair treatment loop, making up for the lack of auxiliary factors in traditional moxibustion. The independent on / off and intensity adjustment functions of the infrared phototherapy layer 22 and the blue phototherapy layer 23 can be flexibly adjusted according to different symptoms, such as dysmenorrhea focusing on infrared warming and analgesia, and pelvic inflammatory disease focusing on blue light antibacterial, improving the targeting of treatment. The micro-vibration massage layer 24's micro-vibration motor can simulate the "sparrow pecking moxibustion" technique, enhancing local stimulation through gentle acupoint massage, promoting blood circulation, and forming a multimodal synergistic treatment with phototherapy and warm stimulation, further improving the efficacy, while alleviating the monotony of the treatment process and improving user compliance.

[0033] refer to Figure 4 and 8 The intelligent control system 3 includes a sensor assembly 31 and a main control unit 32 integrated on the side or back of the waist. The main control unit 32 includes a microprocessor 33. A Bluetooth / Wi-Fi module 34 is electrically connected to one side of the sensor assembly 31. A multi-channel temperature monitoring circuit 35 is electrically connected to one side of the sensor assembly 31. A phototherapy driving circuit 36 ​​is electrically connected to one side of the sensor assembly 31. A vibration driving circuit 37 is electrically connected to one side of the sensor assembly 31. A power management unit 38 is electrically connected to one side of the sensor assembly 31. The sensor assembly 31 includes 1-2 temperature sensors built into each heating module, a contact sensor for detecting whether the device is worn correctly and fits properly, and a usage time sensor for recording treatment mode, WQ parameters, and usage time.

[0034] As a technical optimization of this invention, the main control unit 32, integrated into the side or lower back, integrates core components such as a microprocessor and a Bluetooth / Wi-Fi module 34, enabling intelligent control and data transmission of the device. Its compact size does not compromise wearing comfort. A multi-channel temperature monitoring circuit 35, working in conjunction with 1-2 built-in temperature sensors in each heating module, can accurately monitor the temperature at the skin contact point in real time, ensuring the temperature control accuracy of the thermal stimulation layer 21. Contact sensors detect whether the device is correctly worn and fitted, preventing treatment deviations caused by module displacement and ensuring the accuracy of the treatment target area. A usage duration sensor automatically records the treatment mode, parameters, and duration, providing data support for efficacy tracking and treatment plan optimization. The Bluetooth / Wi-Fi module enables wireless connection between the device and external terminals, laying the foundation for remote monitoring and data management. This solves the problem of traditional devices being unable to quantify and track the treatment process, improving the scientific rigor and controllability of the treatment.

[0035] refer to Figure 3 The user interaction methods of the intelligent control system 3 include 1-2 multi-functional physical buttons on the side module for power on / off, start / pause, and a mobile APP connected via Bluetooth. The mobile APP can perform device pairing, parameter setting, mode selection, real-time status viewing, and historical record storage.

[0036] As a technical optimization of this invention, one or two multi-functional physical buttons on the side module simplify core operations such as power on / off and start / pause. Even users unfamiliar with smart devices, such as middle-aged and elderly patients, can quickly get started, lowering the barrier to entry. The Bluetooth-connected mobile app provides rich interactive functions, allowing users to easily pair the device, set parameters such as temperature and light therapy intensity, select modes, and view real-time status, meeting personalized treatment needs. The app's historical data storage function allows users to review the treatment process and adjust the treatment plan based on symptom changes. This dual interactive design of physical buttons and the mobile app balances ease of operation with comprehensive functionality, adapting to the usage habits of users of different ages while providing the possibility for fine-tuning treatment parameters, effectively improving user experience and treatment adherence.

[0037] refer to Figure 3 The wearable base 1 also includes a charging and battery life component. The charging and battery life component adopts magnetic wireless charging. The main control module has magnetic charging contacts on the outside and a USB-C spare interface hidden under a waterproof cover. It has a built-in high-energy-density lithium polymer battery and can work continuously for more than 60-90 minutes in a moderate-intensity comprehensive treatment mode. It also supports fast charging.

[0038] As a technical optimization of this invention, the magnetic wireless charging design eliminates the need for plugging and unplugging interfaces during charging. Simply place the device on the charging dock to complete the charging process, making it convenient and avoiding interface wear, thus improving the device's durability. A USB-C backup port hidden under the waterproof cover provides backup for emergency charging or firmware upgrades, enhancing the device's versatility. The high-energy-density lithium polymer battery can operate continuously for over 60-90 minutes in a moderate-intensity comprehensive treatment mode, fully meeting the duration requirements of a single gynecological physiotherapy session. Traditional moxibustion sessions typically require 20-40 minutes, eliminating the need for interrupted charging. Fast charging capability further reduces charging time, ensuring the device is always available. The waterproof charging components enhance the device's safety; even accidental contact with small amounts of water during cleaning is not easily damaged, extending the device's lifespan and making it suitable for frequent home use.

[0039] refer to Figure 5 The supporting software ecosystem includes a user-end APP and a cloud-based backend system. The user-end APP can set up periodic treatment plans, record symptom diaries, generate trend reports, and provide reminder functions. The cloud-based backend system can realize encrypted data storage and analysis, patient management, and remote firmware upgrades for devices, while strictly complying with medical and health data privacy regulations.

[0040] As a technical optimization of this invention, the periodic treatment plan function of the user-end APP can automatically remind users of treatment based on doctor's advice or menstrual cycle, avoiding omissions, and is especially suitable for the long-term management of chronic gynecological diseases. The symptom diary module records pain VAS scores, menstrual status, etc., which can intuitively reflect the treatment effect and help users and doctors more accurately assess changes in the condition. The trend report function presents treatment patterns through data visualization, providing a basis for adjusting the plan. The encrypted storage function of the cloud backend system strictly complies with privacy regulations such as HIPAA and GDPR, ensuring the security of users' health data. Doctors can remotely view the treatment data and symptom records of authorized patients through the patient management system, adjust treatment plans in a timely manner, realize remote medical management, and break the limitations of time and space. The firmware remote upgrade function enables the device to continuously receive functional optimization, extend the technology life cycle, solve the problem of fixed functions and inability to iterate in traditional devices, and provide users with long-term reliable intelligent treatment support.

[0041] The working principle and usage process of this invention: When using this wearable gynecological intelligent physiotherapy device, the user first selects a suitable wearable base 1 from various sizes according to their body type. This base is made of medical-grade antibacterial elastic fabric such as silver fiber blend, high-grade medical silicone, or specially treated nylon, in the form of high-waisted, seamless, ultra-thin menstrual underwear. Then, the detachable core treatment module 2 is embedded into the inner side of the base at the corresponding key acupoints in the lower abdomen: Guanyuan, Qihai, Zigung, and the Baliao acupoints in the sacral and coccygeal region, ensuring a smooth transition between the module's exterior and the fabric without any protrusions. When wearing it, the base is first slipped onto the body. The high-elasticity waistband and leg openings tighten the treatment module 2 to ensure it fits snugly against the skin without shifting. At this time, the contact sensor on the inner side of the base detects that the device is correctly fitted and automatically activates the main control unit 3. Users can start the device in two ways: first, by pressing the multi-functional physical button on the main control unit 3 on the side of the waist to turn it on or off, or start / pause it; second, by pairing the device with a mobile phone via Bluetooth, connecting to a dedicated APP, and selecting preset treatment modes such as dysmenorrhea relief mode or pelvic inflammatory disease auxiliary treatment mode in the AP interface, or custom setting parameters, including multiple temperature settings of the precise thermal stimulation layer (38℃-58℃), "gentle" or "vigorous" modes, switching on / off of the infrared phototherapy layer's 850nm or 810nm wavelength and the blue phototherapy layer's 415nm or 420nm wavelength, intensity levels (low, medium, high) or low and medium, irradiation time, and whether to activate the gentle massage function of the micro-vibration massage layer.

[0042] After treatment begins, the flexible graphene heating film or ultra-thin PTC ceramic heating pad in the precise thermal stimulation layer heats up according to the set parameters. The use of flexible graphene heating film or ultra-thin PTC ceramic heating pad offers advantages such as uniform heating, rapid temperature rise, good temperature controllability, flexibility, and high safety. An integrated high-precision temperature sensor monitors the skin surface temperature in real time and uses a PID algorithm to stabilize the temperature at the set value, preventing it from exceeding the 60℃ safety limit. The infrared phototherapy layer and blue phototherapy layer synchronously emit light of corresponding wavelengths, while the micro-vibration massage layer provides acupoint massage as needed. During treatment, the main control unit 3 coordinates the operation of each module through a multi-channel temperature monitoring circuit, phototherapy drive circuit, and vibration drive circuit. It simultaneously records real-time data such as temperature, light intensity, and duration, and synchronizes this data to a mobile app via Bluetooth / Wi-Fi. Users can view the real-time status on the app and adjust parameters or pause treatment if necessary. After each treatment, the device automatically stops working, and the user's app automatically stores the treatment data and generates a treatment record. Users can fill out a symptom diary within the app, including subjective feelings such as pain VAS scores and menstrual status. This data is encrypted and uploaded to the cloud backend system.

[0043] Doctors can view authorized patients' treatment data and symptom records through the patient management system, remotely adjust treatment plans, and communicate with patients via a secure messaging system. When the device's battery is low, users can place it on the accompanying wireless charging dock for wireless charging via the magnetic charging contacts on the outside of the main control module, or open the waterproof cover to use the USB-C backup port for emergency charging. The lithium polymer battery supports fast charging and can support more than 60-90 minutes of continuous use in a moderate-intensity comprehensive treatment mode, meeting the needs of a single complete treatment. After long-term use, if cleaning is required, treatment module 2 can be disassembled for separate cleaning of the base. The device can also be remotely upgraded via a cloud-based backend system to acquire new features and optimize treatment effects.

[0044] Treatment module 2 is equipped with a miniature impedance sensor and a humidity sensor on its contact surface to monitor skin moisture content with an accuracy of ±5% and changes in stratum corneum impedance in real time. When skin humidity is detected to be >60%, such as when sweating or secretions are present, the intensity of the thermal stimulation is automatically reduced by 10%-15%, and the power of the blue light therapy layer is increased to a medium level to avoid the risk of heat burns in humid environments. If skin dryness and humidity are detected to be <30%, the app will remind the user to apply medical moisturizing gel to prevent skin barrier damage caused by long-term treatment. This function works in conjunction with contact sensors to form a closed-loop control system of "treatment-skin condition-parameter adjustment." By linking the user's menstrual cycle records via the app, it automatically identifies the menstrual period, premenstrual phase, and postmenstrual phase and switches preset parameters accordingly: During days 1-5 of menstruation, it automatically lowers the temperature of the warm stimulation to 38-42℃, turns off the blue light therapy layer to avoid stimulating sensitive areas, and increases the micro-vibration massage frequency to 50-60Hz to relieve abdominal distension; 7 days before menstruation, it automatically increases the intensity of infrared light therapy to a high level, switching the warm mode to "high heat" with intermittent stimulation of 5 minutes of high temperature followed by 3 minutes of normal temperature circulation to promote pelvic blood circulation; 7 days after menstruation, it activates "repair mode," simultaneously activating the synergistic effect of infrared and blue light to accelerate inflammation resolution. The main control unit 3 features a physical emergency button independent of the multi-function button; a 2-second long press triggers a full-area pause, and simultaneously pushes a help request containing the current location and requiring user authorization to preset contacts such as family members or attending physicians via the app. This function is particularly suitable for users living alone in situations where sudden pain intensifies during treatment or equipment malfunction occurs, and it is compatible with the "emergency response" requirements in safety certification.

[0045] This device offers advantages such as improved treatment efficiency and safety for gynecological diseases, optimized patient compliance, and reduced incidence of long-term complications. It provides female patients with an intelligent, precise, and private non-invasive treatment solution that can be used at home. Its application in gynecological clinics, postpartum rehabilitation centers, and family health management settings has significant clinical value and broad market prospects.

[0046] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0047] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A wearable intelligent gynecological physiotherapy device, comprising a wearable substrate (1), multiple core treatment modules (2) integrated inside the wearable substrate (1), an intelligent control system (3), and a supporting software ecosystem, characterized in that: The wearable base (1) is made of medical-grade antibacterial elastic fabric and is in the form of high-waisted, seamless, and ultra-thin physiological underwear. The inner side of the wearable base (1) is seamlessly embedded with multiple independent flat treatment modules (2) corresponding to key acupoints in the lower abdomen and the sacrum and coccyx. The treatment modules (2) are smoothly transitioned to the fabric on the outside. The treatment modules (2) are designed to be detachable and replaceable. The wearable base (1) is fixed by a high-elastic waistband and legband, providing multiple sizes to fit different body types.

2. The wearable intelligent gynecological physiotherapy device according to claim 1, characterized in that: The treatment module (2) includes a precision thermal stimulation layer (21), an infrared phototherapy layer (22) embedded in the inner cavity of the precision thermal stimulation layer (21), a blue light therapy layer (23) embedded on one side of the infrared phototherapy layer (22), and several micro-vibration massage layers (24) embedded on one side of the blue light therapy layer (23). The precision thermal stimulation layer (21) uses a flexible graphene heating film or an ultra-thin PTC ceramic heating element, integrates a high-precision micro temperature sensor, and achieves multiple temperature adjustments from 38℃ to 58℃ through a PID algorithm. The default safety upper limit is 60℃, and it can be programmed to achieve gentle and strong heat modes. Its contact surface with the skin is made of skin-friendly thermally conductive silicone.

3. The wearable intelligent gynecological physiotherapy device according to claim 2, characterized in that: The infrared phototherapy layer (22) uses medical-grade near-infrared LEDs with wavelengths of 850nm or 810nm, which can be independently switched on and off and adjusted to low, medium, and high intensity, and the irradiation time can be set. The blue phototherapy layer (23) uses medical-grade blue light LEDs with wavelengths of 415nm or 420nm, which can be independently switched on and off and adjusted to low and medium intensity, and the irradiation time can be set. The micro-vibration massage layer (24) integrates a micro-vibration motor to provide gentle acupoint massage.

4. The wearable intelligent gynecological physiotherapy device according to claim 3, characterized in that: The intelligent control system (3) includes a sensor assembly (31) and a main control unit (32) integrated on the side or back of the waist. The main control unit (32) includes a microprocessor (33). A Bluetooth / Wi-Fi module (34) is electrically connected to one side of the sensor assembly (31). A multi-channel temperature monitoring circuit (35) is electrically connected to one side of the sensor assembly (31). A phototherapy driving circuit (36) is electrically connected to one side of the sensor assembly (31). A vibration driving circuit (37) is electrically connected to one side of the sensor assembly (31). A power management unit (38) is electrically connected to one side of the sensor assembly (31). The sensor assembly (31) includes 1-2 temperature sensors built into each heating module, a contact sensor for detecting whether the device is worn correctly and fits snugly, and a usage time sensor for recording treatment mode, WQ parameters, and usage time.

5. A wearable intelligent gynecological physiotherapy device according to claim 4, characterized in that: The user interaction methods of the intelligent control system (3) include 1-2 multi-functional physical buttons on the side module for power on / off, start / pause, and a mobile APP connected via Bluetooth. The mobile APP can realize device pairing, parameter setting, mode selection, real-time status viewing and historical record storage.

6. The wearable intelligent gynecological physiotherapy device according to claim 5, characterized in that: The wearable base (1) also includes a charging and battery life component. The charging and battery life component adopts magnetic wireless charging. The main control module has magnetic charging contacts and a USB-C backup interface hidden under a waterproof cover. It has a built-in high-energy-density lithium polymer battery and can work continuously for more than 60-90 minutes in a moderate-intensity comprehensive treatment mode. It supports fast charging.

7. A wearable intelligent gynecological physiotherapy device according to claim 6, characterized in that: The supporting software ecosystem includes a user-end APP and a cloud-based backend system. The user-end APP can set up periodic treatment plans, record symptom diaries, generate trend reports, and provide reminder functions. The cloud-based backend system can realize encrypted data storage and analysis, patient management, and remote device firmware upgrades, and strictly comply with medical and health data privacy regulations.

8. The physiotherapy method of a wearable gynecological intelligent physiotherapy device according to claim 7, characterized in that: Includes the following steps: S1: The user selects a wearable base (1) of the appropriate size according to body shape, and embeds the detachable treatment module (2) into the inner side of the corresponding acupoint area of ​​the base to ensure a smooth transition between the module and the fabric. The user wears the wearable base (1) and fixes it with a high elastic waistband and leg band so that the treatment module (2) fits tightly against the skin of the lower abdomen and sacrum. After the contact sensor detects the correct fit, the device is activated. The user can pair the device with the mobile APP via Bluetooth or turn it on using the physical button. In the APP, the user can select a preset treatment mode, such as the dysmenorrhea relief mode, the pelvic inflammatory disease auxiliary treatment mode, etc., or customize the parameters, such as the temperature of the warm stimulation layer, the intensity and duration of infrared / blue light, and whether to turn on vibration massage. S2: After treatment is started, the precise thermal stimulation layer (31) heats up according to the set mode. The temperature sensor monitors the skin temperature in real time and adjusts it to the set value through the PID algorithm. The infrared phototherapy layer (22) and the blue phototherapy layer (23) emit light of the corresponding wavelength according to the set parameters. The micro-vibration massage layer (24) provides acupoint massage as needed. During the treatment, the main control unit (32) records real-time data such as temperature, light intensity, and duration, and synchronizes it to the mobile APP. Users can view the real-time status through the APP and adjust the parameters or pause the treatment if necessary. After the treatment is completed, the device automatically stops working. The user's APP stores the treatment data and generates a treatment record. Users can record a symptom diary in the APP. The cloud background system encrypts and stores and analyzes the data. Doctors can view the treatment data and symptom records of authorized patients through the cloud patient management system, remotely adjust the treatment plan, and communicate with patients through the secure message system. The device can be remotely upgraded via the cloud firmware.