Wearable female hormone level dynamic monitoring and regulation all-in-one machine

The wearable hormone level monitoring and regulation device uses multispectral optical sensors and bioelectric sensors to monitor hormone levels in real time, solving the problem of cumbersome sample collection in existing technologies and achieving the effects of real-time monitoring and personalized recommendations.

CN120899239APending Publication Date: 2025-11-07蒋敏
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Patent Information

Application Number
CN202511026632.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

Existing technologies require the collection of blood, urine, or saliva samples for hormone level monitoring, a cumbersome process that cannot achieve real-time monitoring.

Method used

The device employs a wearable integrated system for dynamic monitoring and regulation of female hormone levels, comprising a hardware system and a software system. The hardware system includes a core sensor module, a data processing module, a wireless communication module, a power and battery management module, and a feedback module. The software system is integrated into a smart ring, utilizing multispectral optical sensors, bioelectric sensors, and miniature gas sensors for real-time monitoring, and providing personalized suggestions in conjunction with cloud services.

Benefits of technology

It enables real-time hormone level monitoring without the need for biological sample collection, provides more accurate health data assessment, extends device battery life, is suitable for long-term wear, and offers personalized health advice and reminders.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a wearable female hormone level dynamic monitoring and regulation all-in-one machine, and relates to the field of dynamic monitoring. The wearable female hormone level dynamic monitoring, regulating and controlling all-in-one machine comprises a hardware system which comprises a core sensor module, a data processing module, a wireless communication module, a power supply and battery management module and a feedback module, and the data processing module is used for processing the detected data and comprises a processor supporting real-time data processing and analysis and a memory which is internally provided with a high-capacity flash memory, supports data storage and caching, supports cloud backup and ensures data security. By arranging the core sensor module, spectral data of multiple wavelengths can be analyzed at the same time by utilizing the multispectral optical sensor, and by arranging the micro gas sensor in the core sensor module and detecting volatile organic compounds in sweat, the equipment can analyze the metabolic state and hormone level change of a user.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of dynamic monitoring, in particular to a wearable female hormone level dynamic monitoring and regulation integrated machine. BACKGROUND

[0002] Female hormones (such as estrogen, progesterone, follicle-stimulating hormone, luteinizing hormone, etc.) play a crucial role in women's reproductive health, menstrual cycle, mood swings, bone health, etc. Abnormal hormone levels can lead to a variety of health problems, including irregular menstruation, infertility, mood disorders, osteoporosis, etc., therefore, real-time monitoring of female hormone levels is very important

[0003] Although the prior art monitors the body condition by monitoring the changes of female hormones, the existing hormone level monitoring usually needs to collect blood, urine or saliva samples, which leads to a relatively cumbersome process and cannot be monitored in real time, therefore, the present application provides a wearable female hormone level dynamic monitoring and regulation integrated machine to solve the problems raised in the background. SUMMARY

[0004] (I) Technical problems solved

[0005] In view of the deficiencies of the prior art, the present application provides a wearable female hormone level dynamic monitoring and regulation integrated machine, which solves the problem that blood, urine or saliva samples need to be collected during the detection process and the samples need to be sent to the laboratory for analysis, resulting in time delay in result feedback and inability to achieve real-time monitoring.

[0006] (II) Technical solutions

[0007] To achieve the above purpose, the present application is implemented by the following technical solutions: a wearable female hormone level dynamic monitoring and regulation integrated machine, comprising:

[0008] Hardware system, including core sensor module, data processing module, wireless communication module, power and battery management module and feedback module, the core sensor module is used for detecting female hormone level, the data processing module is used for processing the data obtained by detection, including processor and built-in large capacity flash memory supporting real-time data processing and analysis, supporting data storage and cache, supporting cloud backup, memory ensuring data security, the wireless communication module is used for transmitting the monitored data, including wireless data transmission supporting high speed and low power consumption, Bluetooth module ensuring stable connection with receiving equipment and NFC module supporting fast pairing, the power and battery management module is used for power supply of the equipment, including rechargeable lithium ion battery and wireless charging, while integrating self-power supply technology, adopting kinetic energy collection device, realizing self-power supply of wearable equipment, prolonging endurance time, the feedback module is used for feeding back the monitoring information to the user in real time, including vibration motor providing tactile feedback, prompting important information and reminding of the user and display screen displaying health data, notification information and the like:

[0009] Software system, software system for integrating data, including mobile application program:

[0010] Cloud service, for providing regulation suggestions to the user according to the data and combining big data, including data storage and backup and remote monitoring and support.

[0011] Preferably, the core sensor module includes:

[0012] Multispectral optical sensor, used for monitoring basic health indicators such as heart rate, blood oxygen level, body temperature and detecting hormone levels such as estrogen, progesterone, follicle stimulating hormone, while adopting new type of multispectral LED and photodiode, improving detection accuracy and sensitivity, supporting multi-wavelength spectral analysis, which can more accurately identify different types of biomarkers, wherein the signal intensity detected during the detection process is used to calculate the concentration of a specific hormone, the following formula is needed:

[0013] Hormone concentration calculation:

[0014]

[0015] Wherein, C is the hormone concentration, I is the detected signal intensity, I0 is the background signal intensity, S is the sensitivity of the sensor

[0016] Hormone level trend analysis:

[0017]

[0018] Wherein, is the current hormone concentration, is the hormone concentration of the previous measurement:

[0019] Bioelectric sensors assess the user's stress and emotional state by detecting skin galvanic response and muscle electrical activity:

[0020] Micro gas sensors detect volatile organic compounds in sweat, analyze hormone levels and metabolic status, and use nanomaterial sensors to improve detection sensitivity and selectivity, support detection of multiple gas components, and provide more comprehensive metabolic analysis:

[0021] Environmental sensors monitor environmental temperature, humidity, and air quality, and assess the impact of the environment on user health.

[0022] Preferably, the software system is integrated into a smart ring with an ergonomic streamlined design, comfortable to wear, suitable for all-day wear. The ring surface uses medical-grade silicone or biocompatible materials to ensure skin contact safety, reaching IP68 or higher standards, supporting swimming and showering while wearing.

[0023] Preferably, the data synchronization and visualization includes data synchronization and visualization and health data analysis and recommendations, including personalized health analysis and recommendations based on collected data, such as hormone level trends, stress level assessment, etc. The health data analysis and recommendations include timely reminders and suggestions based on user health data and preset health goals.

[0024] Preferably, the data storage and backup are used to store user data in the cloud, ensuring data security and accessibility, and the remote monitoring and support allow authorized medical professionals to remotely monitor user health data, providing professional health consultation and support.

[0025] Preferably, heart rate, blood oxygen saturation, and body temperature monitoring are detected during monitoring, which requires the following formulas:

[0026] Heart rate monitoring:

[0027]

[0028] Blood oxygen saturation:

[0029]

[0030] Body temperature monitoring:

[0031]

[0032] Where V out is the sensor output voltage, V0 is the reference voltage, and S is the sensor sensitivity.

[0033] Preferably, the bioelectric sensor integrates high-sensitivity electrodes and signal amplifiers, capable of detecting weak bioelectric signals, providing more accurate emotional and stress analysis, and the environmental sensor integrates a miniature air quality sensor for detecting PM2.5, volatile organic compounds, etc., providing a more comprehensive environmental health assessment.

[0034] Preferably, a wearable female hormone level dynamic monitoring and regulation integrated machine uses the following method, including the following steps:

[0035] S1, the user first selects a suitable smart ring according to the finger size, ensures comfortable wearing and prevents slipping, wears the smart ring on the finger of the dominant hand or non-dominant hand, and pairs the smart ring with the mobile phone application through Bluetooth or NFC, ensuring that the data can be synchronized in real time;

[0036] S2, the smart ring will monitor the user's heart rate, blood oxygen level, body temperature and other basic health indicators in real time. These data will be transmitted to the mobile phone application in real time through Bluetooth, and displayed on the dashboard of the application. Through the multi-spectral optical sensor and biological sensor, the hormone level of the user is monitored in real time;

[0037] S3, the collected data is synchronized to the cloud server for deep analysis and storage, the user can view historical data and analysis reports at any time, and analyze the hormone level change trend of the user, identify abnormal conditions such as hormone imbalance, cycle abnormalities, etc., and based on the health data and historical records of the user, the application will provide personalized health risk assessment, such as stress level, emotional state, sleep quality, etc.;

[0038] S4, according to the hormone level monitoring result, the application will provide personalized hormone management suggestions, such as diet adjustment, exercise plan, rest suggestion, etc., and also analyze the user's stress level, provide corresponding stress relief suggestions, such as deep breathing exercises, meditation guidance, etc., finally the application will provide timely reminders and suggestions according to the user's health data and preset health goals, such as reminding the user to exercise, adjust work and rest, supplement water, etc.

[0039] (Three) beneficial effects

[0040] The present application provides a wearable female hormone level dynamic monitoring and regulation integrated machine. It has the following beneficial effects:

[0041] 1、By setting the core sensor module, using multi-spectral optical sensors can analyze multiple wavelengths of spectral data simultaneously, thereby more accurately identifying and measuring different biomarkers such as hormone levels, heart rate, blood oxygen, etc. This enables the device to provide more reliable and accurate health data, without the need for blood sampling or other biological sample collection, providing a better user experience, and suitable for long-term continuous monitoring, while monitoring heart rate, blood oxygen, body temperature, etc. Basic health indicators, providing a more comprehensive health assessment in addition to hormone levels.

[0042] 2、By also setting a micro gas sensor in the core sensor module, the device can analyze the user's metabolic state and hormone level changes by detecting volatile organic compounds in sweat, which is of great significance for understanding the user's overall health status and metabolic function. Based on the analysis results of the metabolic state, the device can provide more personalized health recommendations such as diet adjustment, exercise plan, etc.

[0043] 3、By setting self-power supply technology in the power supply and battery management module, by integrating kinetic energy collection devices, the device can achieve self-power supply, significantly extending the battery life, reducing the charging frequency, reducing the dependence on traditional batteries, reducing environmental pollution, and meeting the concept of sustainable development. BRIEF DESCRIPTION OF DRAWINGS

[0044] Fig. 1 is the flowchart of the present application;

[0045] Fig. 2 is the flowchart of the hardware system of the present application;

[0046] Fig. 3 is the flowchart of the core sensor module of the present application;

[0047] Fig. 4 is the flowchart of the software system of the present application;

[0048] Fig. 5 is the flowchart of the cloud service of the present application;

[0049] Fig. 6 is the schematic diagram of the device of the present application. DETAILED DESCRIPTION

[0050] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor are within the scope of protection of the present application.

[0051] Embodiment one:

[0052] As Figs. 1-6 shown, the embodiment of the present application provides a wearable female hormone level dynamic monitoring and regulation integrated machine, comprising:

[0053] A hardware system, including a core sensor module, a data processing module, a wireless communication module, a power supply and battery management module, and a feedback module, the core sensor module is used for detecting female hormone level, the data processing module is used for processing the data obtained by detection, including a processor supporting real-time data processing and analysis and a built-in large-capacity flash memory, supporting data storage and caching, supporting cloud backup, a memory ensuring data security, the wireless communication module is used for transmitting the monitored data, including a Bluetooth module supporting high-speed, low-power wireless data transmission, ensuring stable connection with the receiving device, and an NFC module supporting fast pairing, the power supply and battery management module is used for power supply of the device, including a rechargeable lithium ion battery and wireless charging, while integrating self-power supply technology, using kinetic energy collection device to realize self-power supply of the wearable device, prolonging the endurance time, the feedback module is used for feeding back the monitoring information to the user in real time, including a vibration motor providing tactile feedback, prompting important information and reminding of the user, and a display screen displaying health data, notification information, etc., by setting self-power supply technology in the power supply and battery management module, by integrating kinetic energy collection device, the device can realize self-power supply, significantly prolong the endurance time, reduce the charging frequency, reduce the dependence on traditional batteries, reduce environmental pollution, and meet the concept of sustainable development:

[0054] A software system for integrating data, including a mobile application:

[0055] Cloud service for providing regulation suggestions to users according to data and combining big data, including data storage and backup and remote monitoring and support.

[0056] The core sensor module includes:

[0057] A multi-spectral optical sensor for monitoring basic health indicators such as heart rate, blood oxygen level, body temperature, and detecting hormone levels such as estrogen, progesterone, follicle-stimulating hormone, etc., while using new multi-spectral LED and photodiode to improve detection accuracy and sensitivity, supporting multi-wavelength spectral analysis, which can more accurately identify different types of biomarkers, wherein the signal intensity detected during the detection process is calculated to obtain the concentration of a specific hormone, the following formula is needed:

[0058] Hormone concentration calculation:

[0059]

[0060] Where C is the hormone concentration, I is the detected signal intensity, I0 is the background signal intensity, and S is the sensitivity of the sensor

[0061] Hormone level trend analysis:

[0062]

[0063] Where Hcurrent is the current hormone concentration, Hprevious is the hormone concentration from the previous measurement:

[0064] Bioelectricity sensor, by detecting skin electrical response and muscle electrical activity, assesses the user's stress and emotional state:

[0065] Micro gas sensor, detects volatile organic compounds in sweat, analyzes hormone levels and metabolic status, and uses nanomaterial sensors to improve detection sensitivity and selectivity, supports detection of multiple gas components, and provides more comprehensive metabolic analysis:

[0066] Environmental sensors monitor environmental temperature, humidity and air quality, and assess the impact of the environment on user health.

[0067] By setting the core sensor module, using multi-spectral optical sensors can simultaneously analyze multiple wavelengths of spectral data, thereby more accurately identifying and measuring different biomarkers such as hormone levels, heart rate, blood oxygen, etc. This allows the device to provide more reliable and accurate health data, without the need for blood sampling or other biological sample collection, providing a better user experience and suitable for long-term continuous monitoring. In addition to hormone levels, it can also monitor heart rate, blood oxygen, body temperature and other basic health indicators, providing more comprehensive health assessment.

[0068] The software system is integrated into the smart ring, with an ergonomic streamlined design, comfortable to wear, suitable for all-day wear. The surface of the ring uses medical-grade silicone or biocompatible materials to ensure skin contact safety, reaching IP68 or higher standards, supporting swimming and showering while wearing.

[0069] Data synchronization and visualization includes data synchronization and visualization and health data analysis and recommendations, including personalized health analysis and recommendations based on collected data, such as hormone level trend analysis, stress level assessment, etc. Health data analysis and recommendations include timely reminders and suggestions based on user health data and preset health goals.

[0070] Data storage and backup are used to store user data in the cloud, ensuring data security and accessibility, remote monitoring and support allow authorized medical professionals to remotely monitor user health data, providing professional health consultation and support.

[0071] During the monitoring process, heart rate, blood oxygen saturation and body temperature monitoring will be detected, the following formulas will be used:

[0072] Heart rate monitoring:

[0073]

[0074] Blood oxygen saturation:

[0075]

[0076] Body temperature monitoring:

[0077]

[0078] where V out is the sensor output voltage, V0 is the reference voltage, and S is the sensitivity of the sensor.

[0079] Bioelectricity sensors integrate high-sensitivity electrodes and signal amplifiers, capable of detecting weak bioelectricity signals, providing more accurate emotional and stress analysis. Environmental sensors integrate miniature air quality sensors for detecting PM2.5, volatile organic compounds, etc., providing more comprehensive environmental health assessment.

[0080] Example two:

[0081] As Figs. 1-6 shown, the application provides a use method of a wearable female hormone level dynamic monitoring and regulation all-in-one machine, including the following steps:

[0082] S1, the user first selects a suitable smart ring according to the finger size, ensures comfortable wearing and not easy to slip off, wears the smart ring on the finger of the dominant hand or non-dominant hand, pairs the smart ring with the mobile phone application through Bluetooth or NFC, and ensures that the data can be synchronized in real time;

[0083] S2, the smart ring will monitor the user's heart rate, blood oxygen level, body temperature and other basic health indicators in real time. These data will be transmitted to the mobile phone application in real time through Bluetooth, and displayed on the dashboard of the application. Through the multi-spectral optical sensor and the biosensor, the hormone level of the user is monitored in real time;

[0084] S3, synchronize the collected data to the cloud server for deep analysis and storage, the user can view historical data and analysis report at any time, and analyze the hormone level change trend of the user, identify abnormal conditions such as hormone imbalance, cycle anomaly, etc., at the same time, based on the health data and historical records of the user, the application will provide personalized health risk assessment, such as stress level, emotional state, sleep quality, etc.

[0085] S4, according to the hormone level monitoring result, the application program will provide personalized hormone management suggestions such as diet adjustment, exercise plan, rest suggestion, etc., and also analyze the user's stress level and provide corresponding stress relief suggestions such as deep breathing exercises, meditation guidance, etc., finally the application program will provide timely reminders and suggestions according to the user's health data and preset health goals, such as reminding the user to exercise, adjust work and rest, supplement water, etc.

[0086] While embodiments of the present application have been shown and described with reference to particular embodiments thereof, it will be understood by those skilled in the art that various changes in form and details can be made therein without departing from the spirit and scope of the application. The scope of the application is defined by the appended claims and their equivalents.

Claims

1. A wearable device for dynamic monitoring and regulating female hormone levels, characterized in that it comprises: Comprise: Hardware system, including core sensor module, data processing module, wireless communication module, power and battery management module and feedback module, the core sensor module is used for detecting female hormone level, the data processing module is used for processing the data obtained by detection, including the processor and built-in large capacity flash memory supporting real-time data processing and analysis, supporting data storage and cache, supporting cloud backup, memory ensuring data security, the wireless communication module is used for transmitting the monitored data, including supporting high-speed, low-power wireless data transmission, ensuring stable connection with the receiving device of bluetooth module and supporting fast pairing of NFC module, the power and battery management module is used for power supply of the device, including rechargeable lithium ion battery and using wireless charging, while integrating self-power supply technology, using kinetic energy collection device, realizing self-power supply of wearable device, prolonging the endurance time, the feedback module is used for feeding back the monitoring information to the user in real time, including vibration motor providing tactile feedback, prompting important information and reminding of the user and display screen displaying health data, notification information and the like: Software system, software system for integrating data, including mobile application program: Cloud service, for providing regulation suggestions to users according to data and combining big data, including data storage and backup and remote monitoring and support. 2.The wearable female hormone level dynamic monitoring and regulating all-in-one machine according to claim 1, characterized in that: The core sensor module comprises: Multispectral optical sensor, used for monitoring basic health indicators such as heart rate, blood oxygen level, body temperature, and detecting hormone levels such as estrogen, progesterone, follicle-stimulating hormone, while using new multispectral LED and photodiode to improve detection accuracy and sensitivity, supporting multi-wavelength spectral analysis, which can more accurately identify different types of biomarkers, wherein the signal intensity detected during the detection process is used to calculate the concentration of a specific hormone, the following formula is needed: Hormone concentration calculation: Where C is the hormone concentration, I is the detected signal intensity, I0 is the background signal intensity, and S is the sensitivity of the sensor Hormone level trend analysis: Where C is the current hormone concentration, C is the previous hormone concentration: Bioelectricity sensor, by detecting skin electrical response and muscle electrical activity, evaluating the stress and emotional state of the user: Micro gas sensor, detecting volatile organic compounds in sweat, analyzing hormone levels and metabolic status, and using nanomaterial sensors to improve detection sensitivity and selectivity, supporting detection of multiple gas components, providing more comprehensive metabolic analysis: Environmental sensor, monitoring environmental temperature, humidity and air quality, evaluating the impact of the environment on the user's health. 3.The wearable female hormone level dynamic monitoring and regulating all-in-one machine of claim 1, wherein: The software system is integrated in the intelligent ring, adopts a streamlined design conforming to human engineering, is comfortable to wear, and is suitable for all-day wear. The surface of the ring uses medical-grade silicone or biocompatible materials to ensure skin contact safety, reaches IP68 or higher standards, and supports wearing during swimming and bathing. 4.The wearable female hormone level dynamic monitoring and regulating all-in-one machine of claim 1, wherein: The data synchronization and visualization includes data synchronization and visualization and health data analysis and recommendations, including personalized health analysis and recommendations based on collected data, such as hormone level trend, stress level assessment, etc., and the health data analysis and recommendations include timely reminders and suggestions based on user's health data and preset health goals. 5.The wearable female hormone level dynamic monitoring and regulating all-in-one machine according to claim 1, characterized in that: The data storage and backup is used to store user data in the cloud, ensuring data security and accessibility, and the remote monitoring and support allows authorized medical professionals to remotely monitor user's health data, providing professional health consultation and support. 6.The wearable female hormone level dynamic monitoring and regulating all-in-one machine according to claim 2, characterized in that: During the monitoring process, heart rate, blood oxygen saturation and body temperature monitoring will be detected, and the following formulas will be used: Heart rate monitoring: Blood oxygen saturation: Body temperature monitoring: where V out is the sensor output voltage, V0is the reference voltage, and S is the sensor sensitivity. 7.The wearable machine for dynamically monitoring and regulating female hormone level according to claim 2, characterized in that: The bioelectricity sensor integrates high-sensitivity electrodes and signal amplifiers, which can detect weak bioelectricity signals and provide more accurate emotional and stress analysis, and the environmental sensor integrates a miniature air quality sensor to detect PM2.5, volatile organic compounds, etc., providing more comprehensive environmental health assessment. 8.The method of claim 1 to 8, wherein the wearable device for dynamic monitoring and regulating female hormone level is characterized in that: The steps include: S1, the user first selects the appropriate smart ring according to the finger size, ensures comfortable wearing and not easy to slip off, wears the smart ring on the finger of the dominant hand or non-dominant hand, and pairs the smart ring with the mobile phone application through Bluetooth or NFC, ensuring that the data can be synchronized in real time; S2, the smart ring will monitor the user's heart rate, blood oxygen level, body temperature and other basic health indicators in real time. These data will be transmitted to the mobile phone application in real time through Bluetooth, and displayed on the dashboard of the application. Through multi-spectral optical sensors and biosensors, the user's hormone level is monitored in real time; S3, the collected data is synchronized to the cloud server for deep analysis and storage, and the user can view historical data and analysis reports at any time, and analyze the user's hormone level trend, identify abnormal conditions such as hormone imbalance, cycle abnormalities, etc., and based on the user's health data and historical records, the application will provide personalized health risk assessment, such as stress level, emotional state, sleep quality, etc. S4, according to the hormone level monitoring results, the application will provide personalized hormone management suggestions, such as diet adjustment, exercise plan, rest suggestion, etc., and also analyze the user's stress level and provide corresponding stress relief suggestions, such as deep breathing exercises, meditation guidance, etc., and finally the application will provide timely reminders and suggestions based on the user's health data and preset health goals, such as reminding the user to exercise, adjust work and rest, supplement water, etc.