A multifunctional facial beauty care method system and implementation method
This facial beauty care system, which utilizes multiple modules working in tandem, combines standardized techniques with real-time feedback and dynamic adjustments. It addresses the issues of limited functionality and complex operation found in existing technologies, achieving multi-dimensional, end-to-end care effects and enhancing the safety and stability of the care process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- WENZHOU TECHNICIAN COLLEGE
- Filing Date
- 2026-04-27
- Publication Date
- 2026-07-21
AI Technical Summary
Existing facial beauty care techniques and systems have limited functions and cannot provide multi-dimensional, end-to-end care, making it difficult to meet users' comprehensive beauty needs. Furthermore, their complex operation may cause unnecessary irritation to the skin.
The design employs multiple modules working collaboratively, including modules for skin detection, technique execution, parameter adjustment, feedback, storage, monitoring, and effect evaluation. This enables closed-loop control of the entire nursing process. Through standardized techniques and real-time feedback for dynamic adjustments, the stability and specificity of the nursing effect are ensured.
It achieves precise care throughout the entire process, covering multiple effects such as cleansing, soothing, nourishing, anti-aging, and shaping, avoiding skin damage due to improper operation and improving the safety and stability of the care.
Smart Images

Figure CN122423809A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of facial beauty care technology, specifically to a multifunctional facial beauty care technique system and its implementation method. Background Technology
[0002] With the improvement of residents' living standards and the enhancement of their awareness of beauty and skincare, facial beauty care has become an important part of people's daily skincare and refined lifestyle, giving rise to various facial care products and techniques. At present, most facial care solutions on the market are single-function, with some systems or techniques focusing only on one function among cleansing, massage and soothing, or anti-aging and shaping. Even some treatments that claim to be multi-functional are mostly simple combinations of functions, failing to form an integrated solution covering the entire facial care process. Moreover, they often require changing different care tools or switching between multiple care modes, making the operation cumbersome and unable to meet users' comprehensive beauty needs for cleansing, soothing, nourishing, anti-aging, and shaping.
[0003] In existing technologies, facial beauty care techniques and related systems generally suffer from the core problem of limited functionality. Most care solutions focus only on a single effect and cannot achieve multi-dimensional, full-process facial care. For example, some cleansing care systems can only remove facial dirt and oil, and cannot simultaneously achieve subsequent care steps such as soothing and relaxation, nourishing and moisturizing, and anti-aging and shaping. Some anti-aging care techniques only target fine lines and sagging, lacking precise cleansing and soothing preparation beforehand, resulting in poor care effects. This single-function care solution not only fails to meet users' needs for comprehensive beauty care, but may also increase the complexity of operation due to multiple switching of care methods and changing care tools, and may even cause unnecessary irritation to the skin. Therefore, there is an urgent need for a facial beauty care technique system and implementation method that can integrate multiple core care effects and cover the entire process to solve the above-mentioned defects of existing technologies. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides a multifunctional facial beauty care technique system and implementation method, which solves the problem that it cannot achieve multi-dimensional, full-process facial care and cannot meet the comprehensive beauty needs of users.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a multifunctional facial beauty care technique system, comprising the following modules, The skin detection module detects the basic condition of the user's facial skin, generates a skin detection report and sends it to the parameter adjustment module, while also sending a detection completion signal; The manual execution module includes a cleaning technique unit, a relaxation and soothing unit, a nourishing and infusion unit, an anti-aging and shaping unit, and a finishing relaxation unit. It receives operation instructions from the parameter adjustment module, executes standardized nursing techniques, and provides feedback on the execution status. The parameter adjustment module receives the detection report and detection completion signal from the skin detection module, and adjusts the operating parameters of the technique execution module and transmits instructions based on the feedback information from the feedback module. The feedback module collects skin feedback and user experience feedback in real time during the care process, generates feedback information and sends it to the parameter adjustment module, while also providing feedback on the collection status. The data storage module receives detection data, operating parameters, feedback information and nursing results transmitted from various modules, classifies and archives them, encrypts and stores them, establishes data association indexes and provides retrieval support; The monitoring and adjustment module monitors the working status of the skin detection module, the technique execution module, and the parameter adjustment module in real time, issues abnormal warning signals, and triggers the parameter adjustment module to optimize the operating parameters. The effect evaluation module retrieves related data from the data storage module, compares the skin condition before and after treatment, completes a quantitative evaluation of the treatment effect, outputs an evaluation report, and transmits it.
[0006] By adopting the above technical solution, and through the design of multi-module collaborative work, seven core modules are integrated, including skin detection, technique execution, parameter adjustment, feedback, storage, monitoring, and effect evaluation, to achieve closed-loop control of the entire nursing process. Moreover, the functions of each module are complementary and data are linked. Therefore, the nursing process is standardized, highly targeted, and safe, and the effect of precise nursing throughout the entire process can be achieved, effectively solving the problems of single nursing techniques and disconnected processes in existing technologies.
[0007] Preferably, the skin detection module, in which the basic condition of the user's facial skin is detected and a detection report is generated, includes: Obtain raw detection data on the user's facial skin type, stratum corneum thickness, moisture content, pore condition, and fine line distribution; A data verification algorithm is used to verify the accuracy of the original detection data and remove abnormal data. The validated data is organized and analyzed to generate a visual skin detection report.
[0008] By adopting the above technical solution, the skin detection data is obtained accurately and comprehensively. The report is intuitive and easy to understand, and it can provide reliable data support for subsequent adjustment of nursing parameters. This avoids the problem of poor adaptability of nursing plan due to deviation of detection data.
[0009] Preferably, in the technique execution module, executing standardized facial care techniques and providing feedback on the execution status includes: It includes a built-in cleansing massage unit, a soothing and relaxing unit, a nourishing and infusion unit, an anti-aging and shaping unit, and a finishing soothing unit, each with a pre-set standardized operating procedure. The system receives parameters such as force, frequency, and operation duration from the parameter adjustment module and drives each unit to perform the corresponding nursing techniques. The system collects real-time data on the operation status and skin contact during the technique, generates execution status feedback information, and transmits it to the parameter adjustment module.
[0010] By adopting the above technical solution, due to the modular division of labor design, the built-in five functional units and the preset standardized programs, it can receive parameter adjustment instructions to achieve precise operation, and at the same time provide real-time feedback on the execution status. Therefore, it achieves standardized nursing techniques, precise and controllable operation, avoids differences in operation among different operators, and provides real-time basis for dynamic parameter adjustment, ensuring stable and consistent nursing effects.
[0011] Preferably, in the parameter adjustment module, adjusting the nursing technique parameters based on the detection results and feedback information includes: Receive the detection report from the skin detection module, analyze the core skin condition data, and initially match the basic operating parameters of each technique unit; The system receives feedback information such as skin redness and stinging from the feedback module, and dynamically adjusts the basic parameters based on the feedback of the technique execution status. The adjusted parameters are converted into standardized instructions and sent to the technique execution module, while the parameter adjustment log is recorded.
[0012] By adopting the above technical solution, the dual adjustment mode of initial matching of detection data and dynamic adjustment based on real-time feedback, combined with parameter log recording, achieves the effect of strong adaptability of nursing parameters, which can be optimized in real time according to skin condition and nursing feedback, and the adjustment process is traceable. This solves the problem of fixed nursing parameters and inability to flexibly adapt to different skin conditions in existing technologies.
[0013] Preferably, the feedback module collects skin feedback and user experience feedback during the nursing process, including: The skin condition sensor collects real-time skin feedback data such as skin temperature and redness during the skin care process; The system receives user feedback on sensations such as stinging and discomfort through user interaction components, and categorizes and records the type and severity of the feedback. The standardized feedback information is then transmitted to the parameter adjustment module in real time.
[0014] By adopting the above technical solution, and combining real-time sensor acquisition with user-initiated feedback, the feedback information is standardized and transmitted in real time. Therefore, the feedback information obtained is comprehensive, timely, and standardized, which can accurately reflect the skin condition and user experience during the nursing process, provide a precise basis for parameter adjustment, and improve the safety and comfort of nursing care.
[0015] Preferably, the data storage module stores nursing-related data and establishes associated indexes, including: Collect skin detection data, manipulation parameters, feedback information, nursing results, and timestamp data throughout the entire nursing process; The collected data is classified and archived in a structured format and stored using encryption algorithms to prevent data leakage; Establish a correlation index between the data of each module to realize the linkage retrieval of test data, operation parameters, and nursing effects.
[0016] By adopting the above technical solutions, and through the design of full-process data collection, structured archiving, encrypted storage, and associated indexes, nursing data storage is standardized, secure, and highly interconnected. It enables full-process data traceability and rapid retrieval, providing data support for effect evaluation, solution optimization, and module maintenance, while also protecting user skin privacy.
[0017] Preferably, the monitoring and adjustment module includes the following functions for monitoring the working status of each module and handling anomalies: Real-time monitoring of the detection accuracy of the skin detection module, the operational stability of the manipulation execution module, and the response speed of the parameter adjustment module; When a malfunction is detected in a module, an abnormality warning signal is immediately issued and simultaneously pushed to the human-computer interaction module; In response to abnormal execution of techniques and feedback, the parameter adjustment module is triggered to optimize the operation parameters, while recording the abnormal information and optimization records.
[0018] By adopting the above technical solution, which combines real-time monitoring of all modules, early warning of anomalies, and emergency optimization, and records both anomaly and optimization information, the system achieves high operational stability, can promptly detect and handle module anomalies, avoids skin damage from abnormal operations, and the anomaly handling process is traceable, facilitating the effectiveness of subsequent system optimization and improving the overall reliability of the system.
[0019] Preferably, in the effect evaluation module, completing the quantitative evaluation of nursing effect includes: Retrieve the skin test report before and after treatment from the data storage module, and compare and analyze the changes in key indicators. A pre-set evaluation algorithm is used to quantify and score the nursing effect; A standardized evaluation report is generated, transmitted to the human-computer interaction module for display, and simultaneously archived to the data storage module.
[0020] By adopting the above technical solution, the evaluation of nursing effect can be objective, accurate and intuitive due to the comparison of pre- and post-nursing data, quantitative scoring and standardized report generation, and the archiving and storage of evaluation data. This can clearly present the nursing effect and provide data basis for subsequent nursing plan optimization, thus solving the problems of the inability to quantify nursing effect and the strong subjectivity of evaluation in the existing technology.
[0021] A method for implementing a multifunctional facial beauty care technique includes the following steps: S1, Pre-operative preparation and skin test: Detects the user's facial skin condition, generates a test report, and determines whether the skin meets the care requirements; S2, layered cleansing technique: Adjust cleansing parameters according to the test report of S1 to complete layered facial cleansing and verify the cleanliness level; S3, a soothing and relaxing technique, is performed based on the skin condition after cleansing in S2, providing a soothing massage. S4, Nourishing Infusion Technique: Select a suitable nourishing product based on the test report of S1, and perform the infusion procedure until the product is fully absorbed. S5, anti-aging and shaping technique, is performed on the fine lines and sagging areas detected by S1. S6, a finishing touch and post-operative care treatment, performs full-face soothing and post-operative skin care, comparing the skin condition before and after the procedure.
[0022] By adopting the above technical solution, a standardized six-step nursing process is used, with clear reference conditions set between each step. Combined with preoperative skin testing, intraoperative parameter adaptation, and postoperative effect comparison, a complete nursing closed loop is formed. Therefore, the nursing process is standardized, the steps are closely connected, and targeted care can be achieved, taking into account the full effects of cleansing, soothing, nourishing, anti-aging, and shaping. It can also ensure the safety and stability of the nursing effect and is suitable for various skin types and scenarios.
[0023] Preferably, in step S5, the anti-aging and shaping techniques performed on the fine lines and sagging areas detected in step S1 include: Extract data on fine line depth and skin laxity from the S1 test report, and match corresponding anti-aging and shaping strength and frequency parameters; Targeted lifting and fascia relaxation techniques are used to treat the jawline, cheekbones, eye area, and forehead. The system receives feedback from the feedback module in real time. If skin stinging is detected, the operation is stopped immediately and the system returns to S3 for secondary soothing before repeating the process.
[0024] By adopting the above technical solutions, and through targeted parameter matching, precise operation in key areas, and real-time feedback for emergency handling, the anti-aging and shaping effects are highly targeted, accurately improving fine lines and sagging. At the same time, it can promptly avoid discomfort such as skin stinging, ensuring the safety of care, preventing skin damage from improper operation, and improving the effectiveness of anti-aging and shaping as well as the user experience.
[0025] This invention provides a multifunctional facial beauty care technique system and its implementation method. It has the following beneficial effects: 1. This invention adopts a multi-functional integrated technology solution that integrates five core functions: cleansing, soothing, nourishing, anti-aging, and shaping. This achieves the technical effect of covering the entire facial care process without having to change multiple care methods. Compared with existing technologies that have relatively simple care methods and focus on a single function, this invention solves the problem that they cannot achieve multi-dimensional, full-process facial care and cannot meet the comprehensive beauty needs of users.
[0026] 2. This invention adopts a technical solution that combines a standardized technique built into the technique execution module with a parameter adjustment module for precise control. This achieves a unified nursing technique intensity, frequency, and operation sequence, ensuring stable nursing effects. Compared with existing technologies where nursing techniques lack standardization and there are significant differences in operation between different operators, this invention solves the problems of unstable nursing effects and damage to facial skin due to improper operation.
[0027] 3. The present invention adopts a technical solution that sets clear reference conditions between each nursing step and combines real-time detection and feedback adjustment of skin condition. This achieves the technical effect of dynamic adaptation of nursing process and improved nursing pertinence. Compared with the existing technology, which lacks organic connection between nursing steps and does not combine real-time detection of skin condition, this invention solves the problems of not being able to adjust the parameters of the next step based on the feedback of the previous step, poor nursing pertinence, and greatly reduced nursing effect. Attached Figure Description
[0028] Figure 1 This is a system block diagram of a multifunctional facial beauty care technique system according to the present invention; Figure 2 This is a flowchart illustrating the implementation method of a multifunctional facial beauty care technique according to the present invention. Detailed Implementation
[0029] 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 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.
[0030] Please see the appendix Figure 1 Example 1: This embodiment of the invention provides a multifunctional facial beauty care technique system, comprising the following modules: The skin detection module detects the basic condition of the user's facial skin, generates a skin detection report and sends it to the parameter adjustment module, while also sending a detection completion signal; Furthermore, the skin detection module detects the user's basic facial skin condition and generates a detection report, including: Obtain raw detection data on the user's facial skin type, stratum corneum thickness, moisture content, pore condition, and fine line distribution; A data verification algorithm is used to verify the accuracy of the original detection data and remove abnormal data. The validated data is organized and analyzed to generate a visual skin detection report; Specifically, the skin detection module uses a high-definition skin detector as the core detection device. Its detection principle is based on spectral imaging technology. By emitting visible and near-infrared light of specific wavelengths, it penetrates the skin surface to the superficial dermis, captures the differences in light absorption and reflection of different skin tissues, and then accurately extracts basic skin condition data. Among them, the stratum corneum thickness detection uses high-frequency ultrasound as an aid, and the moisture content detection is based on the capacitance principle, converting the capacitance value of skin tissue into moisture content data; the data verification algorithm adopts... The core formula of the criterion is: ; in, This is a single set of raw test data. The mean of the same detection index, The standard deviation of the test data for this indicator is used. When the test data meets this formula, it is judged as abnormal data and is removed. The visual skin test report adopts a layered presentation mode, which displays the core indicators such as skin type and stratum corneum thickness in the form of numerical value + color block comparison, which facilitates the subsequent parameter adjustment module to quickly parse the core data. At the same time, the report has built-in data encryption mark to prevent the leakage of users' skin privacy data.
[0031] The manual execution module includes a cleaning technique unit, a relaxation and soothing unit, a nourishing and infusion unit, an anti-aging and shaping unit, and a finishing relaxation unit. It receives operation instructions from the parameter adjustment module, executes standardized nursing techniques, and provides feedback on the execution status. Furthermore, the technique execution module performs standardized facial care techniques and provides feedback on the execution status, including: It includes a built-in cleansing massage unit, a soothing and relaxing unit, a nourishing and infusion unit, an anti-aging and shaping unit, and a finishing soothing unit, each with a pre-set standardized operating procedure. The system receives parameters such as force, frequency, and operation duration from the parameter adjustment module and drives each unit to perform the corresponding nursing techniques. The system collects real-time data on the operation status and skin contact during the technique execution process, generates execution status feedback information, and transmits it to the parameter adjustment module. Specifically, the technique execution module adopts a wearable nursing glove structure. The glove's fingertips have built-in flexible pressure sensors and micro vibration motors. Its core function is to accurately sense the force and skin contact fit during technique execution, ensuring that the technique parameters are consistent with the instructions of the parameter adjustment module. The standardized operating procedures for each manipulation unit are pre-stored in the control chip built into the glove. The program contains the manipulation operation trajectory coordinates. By driving the start and stop of the vibration motor and the force feedback of the pressure sensor, the standardized replication of the manipulation operation is achieved. The force acquisition utilizes the analog signal conversion principle of a pressure sensor, converting the pressure signal into a 0-5V analog voltage signal, which is then converted into a digital signal via an A / D converter. The conversion formula is as follows: ; in, The converted analog voltage signal This is the sensor sensitivity coefficient. For actual technique and force, This refers to the zero-point voltage of the sensor. The execution status feedback information includes the deviation value of the technique force, the frequency fluctuation range, and the skin contact fit data. It is collected every 100ms and transmitted to the parameter adjustment module to provide real-time data support for dynamic parameter adjustment.
[0032] The parameter adjustment module receives the detection report and detection completion signal from the skin detection module, and adjusts the operating parameters of the technique execution module and transmits instructions based on the feedback information from the feedback module. Furthermore, in the parameter adjustment module, the nursing technique parameters are adjusted based on the test results and feedback information, including: Receive the detection report from the skin detection module, analyze the core skin condition data, and initially match the basic operating parameters of each technique unit; The system receives feedback information such as skin redness and stinging from the feedback module, and dynamically adjusts the basic parameters based on the feedback of the technique execution status. The adjusted parameters are converted into standardized instructions and sent to the technique execution module, while the parameter adjustment log is recorded. Specifically, the parameter adjustment module uses a microcontroller as the core control unit. Its adjustment principle is based on fuzzy control algorithm. By establishing a mapping relationship between skin condition data and manipulation parameters, it achieves precise matching and dynamic optimization of parameters. The basic operation parameter matching adopts a preset parameter matrix, which stores the reference values of force and frequency corresponding to different skin types and stratum corneum thicknesses. For example, the reference value of cleansing force for dry skin is 0.1-0.2N, and for oily skin it is 0.3-0.5N. Dynamic adjustment employs feedback closed-loop control, and its core formula is: ; in, To adjust the strength of the technique, Based on the strength of the basic operation, This is the force deviation adjustment coefficient. $ represents the force deviation value in the feedback of the technique execution state. The adjustment coefficient is for feedback information. The skin condition deviation value transmitted by the feedback module; The standardized instructions are transmitted using a serial communication protocol. The instruction format includes four core parameters: technique unit identifier, force, frequency, and operation duration. The parameter adjustment log is stored in timestamp order and includes the adjustment time, parameters before adjustment, parameters after adjustment, and the reason for adjustment, which facilitates subsequent traceability and optimization.
[0033] The feedback module collects skin feedback and user experience feedback in real time during the care process, generates feedback information and sends it to the parameter adjustment module, while also providing feedback on the collection status. Furthermore, the feedback module collects skin feedback and user experience feedback during the care process, including: The skin condition sensor collects real-time skin feedback data such as skin temperature and redness during the skin care process; The system receives user feedback on sensations such as stinging and discomfort through user interaction components, and categorizes and records the type and severity of the feedback. The standardized feedback information is then transmitted to the parameter adjustment module in real time. Specifically, the feedback module consists of a skin condition sensor, a user interaction button, and a data processing unit. The skin condition sensor uses a contact temperature sensor and a skin color sensor. The temperature sensor is used to detect temperature changes during skin care to prevent damage to the stratum corneum caused by excessive skin temperature due to friction. Its detection range is 32-40℃, and its accuracy is ±0.1℃. The skin tone sensor is used to detect the degree of skin redness. It collects the RGB color values of the skin and converts them into a redness quantification value. The conversion formula is as follows: ; in, This is the reddish quantification value. This refers to the R-channel values of the skin during the skincare process. For skin before care Channel baseline values, The higher the value, the more severe the skin redness. The user interaction component uses a waterproof touch button with three levels: mild discomfort, obvious stinging, and no discomfort. Users can trigger it in real time according to their own feelings. The data processing unit associates and integrates the data collected by the sensor with the user feedback level, and converts it into a quantitative feedback value of 0-10, where 0 represents no abnormal feedback and 10 represents severe stinging. This allows the parameter adjustment module to quickly identify the feedback level and adjust the parameters. The collection status feedback is sent once every 50ms to ensure that the collection process is uninterrupted.
[0034] The data storage module receives detection data, operating parameters, feedback information and nursing results transmitted from various modules, classifies and archives them, encrypts and stores them, establishes data association indexes and provides retrieval support; Furthermore, the data storage module stores nursing-related data and establishes associated indexes, including: Collect skin detection data, manipulation parameters, feedback information, nursing results, and timestamp data throughout the entire nursing process; The collected data is classified and archived in a structured format and stored using encryption algorithms to prevent data leakage; Establish a correlation index between the data of each module to realize the linkage retrieval of test data, operation parameters, and nursing effects; Specifically, the data storage module uses Flash storage chips as local storage carriers and also supports cloud synchronous storage. Its storage principle is based on partitioned storage technology, which divides the data into four independent partitions: detection data area, operation parameter area, feedback information area, and nursing result area. Each partition establishes a subdirectory according to the timestamp for easy classification and archiving. The encryption algorithm uses AES-128 encryption, and its encryption formula is as follows: ; in, For encrypted data, For AES encryption operations based on key $$k$$, The data is raw; the key is randomly generated by the system and stored in the encryption chip to prevent the data from being illegally cracked. The correlation index uses hash indexing technology. By calculating the hash value of data from each module, it establishes a linkage relationship between skin detection data, manipulation parameters, and feedback information. The hash value calculation formula is as follows: ; in, For hash value, The SHA-256 hash function is used. For data content, related data can be quickly located through hash values, with a retrieval response time of ≤1 second, meeting the real-time retrieval requirements of the effect evaluation module and the human-computer interaction module.
[0035] The monitoring and adjustment module monitors the working status of the skin detection module, the technique execution module, and the parameter adjustment module in real time, issues abnormal warning signals, and triggers the parameter adjustment module to optimize the operating parameters. Furthermore, the monitoring and adjustment module implements the monitoring of the working status of each module and the handling of anomalies, including: Real-time monitoring of the detection accuracy of the skin detection module, the operational stability of the manipulation execution module, and the response speed of the parameter adjustment module; When a malfunction is detected in a module, an abnormality warning signal is immediately issued and simultaneously pushed to the human-computer interaction module; In response to abnormal execution of techniques and feedback, the parameter adjustment module is triggered to optimize the operation parameters, while recording the abnormal information and optimization records. Specifically, the monitoring and adjustment module uses a real-time monitoring chip. Its monitoring principle is based on a threshold comparison method for module operating parameters. Each module has a preset normal operating threshold range. For example, the detection accuracy threshold for the skin detection module is ±5%, the frequency fluctuation threshold for the manipulation execution module is ±5 times / minute, and the response speed threshold for the parameter adjustment module is ≤1 second. The monitoring chip collects the operating parameters of each module every 20ms and compares them with the preset thresholds. When a parameter exceeds the threshold range, it is determined that the module is malfunctioning. The malfunction determination formula is as follows: or ; in, For the module's real-time operating parameters, The maximum normal threshold for the parameter. The minimum normal threshold for the parameter; The abnormal warning signal adopts a combination of audible and visual warnings, and is simultaneously pushed to the display interface of the human-computer interaction module, marking the abnormal module and abnormal parameters. In case of abnormal technique execution, the parameter adjustment module is triggered to start the emergency adjustment program, adjusting the technique parameters to within the safe threshold range. Abnormal information and optimization records are synchronously stored in the data storage module to provide a basis for subsequent module maintenance and parameter optimization.
[0036] The effect evaluation module retrieves related data from the data storage module, compares the skin condition before and after the treatment, completes a quantitative evaluation of the treatment effect, outputs an evaluation report, and transmits it. Furthermore, in the effectiveness evaluation module, completing the quantitative evaluation of nursing effectiveness includes: Retrieve the skin test report before and after treatment from the data storage module, and compare and analyze the changes in key indicators. A pre-set evaluation algorithm is used to quantify and score the nursing effect; A standardized evaluation report is generated, transmitted to the human-computer interaction module for display, and simultaneously archived to the data storage module; Specifically, the evaluation principle of the effect evaluation module is based on the multi-index comprehensive scoring method. It selects four core indicators as evaluation indicators: skin moisture content, stratum corneum thickness, pore diameter, and fine line depth. Each indicator is assigned a score according to its weight, with moisture content having a weight of 0.3, stratum corneum thickness having a weight of 0.2, pore diameter having a weight of 0.25, and fine line depth having a weight of 0.25. The quantitative scoring formula is as follows: ; in, To comprehensively evaluate the score, For the first The weight of each indicator For the first Individual scores for each indicator; Individual scores are calculated based on the rate of change of indicators before and after nursing care. The formula for the rate of change is: ; in, The rate of change of the indicator. These are the post-nursing indicator values. The pre-nursing indicator values are assigned individual scores from 0 to 100 based on the sign and magnitude of the rate of change. For example, when the rate of change in moisture content is ≥20%, the individual score is 90-100. The standardized evaluation report includes the overall score, details of changes in each indicator, scoring criteria, and optimization suggestions. The report is in a standardized PDF format for easy storage, display, and printing.
[0037] Please see the appendix Figure 2 Example 2: A method for implementing a multifunctional facial beauty care technique, comprising the following steps: S1, Pre-operative preparation and skin test: Detects the user's facial skin condition, generates a test report, and determines whether the skin meets the care requirements; Furthermore, preoperative preparation includes cleaning the user's facial surface to remove surface dust, ensuring the user's face is relaxed, and the operator cleaning their hands and wearing sterile gloves. Simultaneously, the operation status of each module is checked to ensure that core modules such as the skin detection module and parameter adjustment module are functioning normally. The criteria for determining whether the skin meets the care requirements are: no skin damage, no severe redness, no acute inflammation, and core detection indicators, such as stratum corneum thickness and moisture content, are within the normal range. If the requirements are not met, subsequent care steps are stopped, and only basic soothing treatment is performed. Specifically, during the preoperative preparation process, the user's face is cleaned with sterile cotton swabs and saline solution to gently wipe away surface dust, avoiding the use of irritating cleansing products to prevent affecting the accuracy of skin test data; Users should remain seated with their head fixed on the headrest of the beauty chair and their face relaxed to avoid facial muscle tension that could stretch the skin in the detection area and affect the accuracy of detection indicators such as fine lines and pores. The operator wears disposable medical-grade sterile gloves. Hands are disinfected before wearing to prevent bacterial contamination of the user's facial skin. The module's working status is checked using a self-test program. Each module sends a self-test signal in sequence. If the self-test signal is normal, the skin detection stage begins. If any module's self-test is abnormal, an early warning is issued and operation stops immediately. The specific criteria for determining whether the skin meets the care requirements are: stratum corneum thickness 0.02-0.1mm, moisture content 10%-80%, no visible damage, redness area ≤5% of the total facial area, and no obvious inflammatory papules. If the skin exceeds these standards, basic soothing treatment is performed. Basic soothing uses a light pressing technique with a force of 0.1-0.15N and a frequency of 20-30 times / minute, applied only to non-abnormal areas of the face.
[0038] S2, layered cleansing technique: Adjust cleansing parameters according to the test report of S1 to complete layered facial cleansing and verify the cleanliness level; Furthermore, the layered cleansing is divided into two levels: surface cleansing and deep cleansing. Surface cleansing targets facial dust and oil, while deep cleansing targets residual dirt and dead skin cells in the pores. The cleansing parameters need to be adjusted according to the skin type detected by S1, and the intensity, frequency and duration of the massage should be set differently. After the cleansing is completed, the cleanliness is verified by collecting pore cleansing data with a skin condition sensor and comparing it with the preset cleanliness threshold to ensure that the cleansing meets the standard. Specifically, for surface cleansing, use the corresponding basic cleansing techniques: use circular rubbing motions for oily and combination skin, and use gentle wiping and pressing motions for dry and sensitive skin. The surface cleansing time is 30-40 seconds. Deep cleansing targets areas with high oil secretion or easily clogged pores, such as the T-zone and the sides of the nose, using a targeted cleansing technique. The cleansing time for key areas is 10-15 seconds longer than for ordinary areas. Cleansing parameters should be adjusted strictly according to the skin type data in the S1 test report. For example, for oily skin, the intensity should be adjusted to 0.3-0.5N and the frequency to 60-80 times / minute, while for dry skin, the intensity should be 0.1-0.2N and the frequency to 40-50 times / minute. The preset threshold for cleanliness verification is that the area of residual dirt inside the pores is ≤5% of the total pore area. Pore images are collected using a skin condition sensor, and the percentage of residual area is calculated using an image recognition algorithm. The calculation formula is as follows: ; in, The percentage of the remaining area. This represents the area of residual dirt within the pores. The total area of pores, if If the condition persists, repeat the cleaning process once until the target is met. After the target is met, rinse with warm water at 38±2℃ and gently pat dry with a sterile towel to avoid friction damage to the skin.
[0039] S3, a soothing and relaxing technique, is performed based on the skin condition after cleansing in S2, providing a soothing massage. Furthermore, the core function of the soothing and relaxing technique is to relieve facial muscle tension, open up the skin's absorption channels, and prepare for subsequent nourishing steps. The technique should be performed in conjunction with the skin's moisture level after S2 cleansing. After cleansing, the stratum corneum of the skin is in a moist state, so the pressure of the technique can be appropriately reduced to avoid excessive pulling. Specifically, the soothing and relaxing technique combines gentle pressing and lifting with acupressure massage. The acupressure massage selects 7 core facial acupoints, such as Yintang and Zanzhu. Each acupoint is gently pressed for 3-5 seconds, and the cycle is repeated 2-3 times. The acupoints are located using standardized acupoint coordinates to ensure accurate massage positions. The coordinates are based on facial anatomy and a planar coordinate system is established with the center of the eyebrows as the origin. The coordinates of each acupoint are preset in the program of the technique execution module. The overall facial lifting technique involves gently pulling from the chin towards the back of the ear and from the cheek towards the temple. The pressure should be even when lifting to avoid excessive force in certain areas that could stretch the skin. The pressure should be adjusted according to the skin's moisture level after S2 cleansing. When the skin's moisture level is high, use the lower limit of the pressure corresponding to the skin type; when the skin's moisture level is low, use the middle value. During the operation, the feedback module collects the skin condition in real time. If redness is detected, the intensity is immediately reduced by 30%, and the operation continues until the soothing is completed. After the soothing is completed, the skin should be in a state without redness or tightness.
[0040] S4, Nourishing Infusion Technique: Select a suitable nourishing product based on the test report of S1, and perform the infusion procedure until the product is fully absorbed. Furthermore, the selection of nourishing products must be strictly matched with the skin type detected by S1. Dry skin should use moisturizing serums, oily skin should use oil-controlling serums, and sensitive skin should use soothing serums. The strength and frequency of the application technique must be adapted to the viscosity of the nourishing product. For serums with higher viscosity, the frequency should be reduced and the application time should be extended to ensure that the product is fully absorbed. Specifically, the nourishing product should be applied evenly using a sterile cotton swab. The amount applied depends on the skin area and dryness. The standard amount is 0.5-1ml, and an additional 0.2ml can be applied to key areas such as the eye area and nasolabial folds. The application technique involves pressing and circular motions to promote absorption. The pressure should be controlled at 0.15-0.25N, and the frequency should be 50-60 times per minute. The application order should be consistent with the S2 cleansing order to ensure even application to the entire face. For key areas such as the eye area and nasolabial folds, add an extra 10-15 seconds of application time. Use the pad of your ring finger during application to avoid damaging the delicate skin around the eyes. The standard for determining complete product absorption is that there is no sticky feeling on the skin surface. The skin condition sensor of the feedback module collects data on the oil and essence residue on the skin surface. If the residue is ≤0.01g / cm², it is considered completely absorbed. If it is not completely absorbed, reduce the application frequency by 10-20 times / minute and extend the application time until it is completely absorbed.
[0041] S5, anti-aging and shaping technique, is performed on the fine lines and sagging areas detected by S1. Furthermore, in S5, anti-aging and shaping techniques are applied to the fine lines and sagging areas detected in S1, including: Extract data on fine line depth and skin laxity from the S1 test report, and match corresponding anti-aging and shaping strength and frequency parameters; Targeted lifting and fascia relaxation techniques are used to treat the jawline, cheekbones, eye area, and forehead. The system receives feedback from the feedback module in real time. If skin stinging is detected, the operation is stopped immediately and the system returns to S3 for secondary soothing before repeating the process. Specifically, the data on fine line depth and skin laxity are extracted from the S1 test report. Fine line depth is divided into two levels: shallow and medium, and skin laxity is divided into two levels: mild and moderate. Different levels are matched with different technique parameters. The point lifting technique targets fine lines and laxity areas, using the steps of pressing, lifting, and pausing. Each point is held for 2 seconds, and the cycle is repeated 3-4 times. The lifting direction is consistent with the skin texture to avoid pulling against the texture. The fascia relaxation technique uses gentle circular motions to act on the facial fascia layer, promoting fascia contraction and improving skin laxity. The radius of the circular motion is 1-2cm, and the frequency is the same as that of the lifting technique. The anti-aging treatment around the eyes is performed using the pad of the ring finger, with the pressure reduced to 80% of the corresponding parameters to avoid pulling on the skin around the eyes and causing new fine lines. The second soothing technique parameters are the same as S3, but the soothing time is half that of S3. After the soothing is completed, the skin condition data is re-extracted, and the remaining operations of S5 are performed only after confirming that there are no abnormalities.
[0042] S6, the final soothing and post-operative care, performs full-face calming and post-operative skin care, comparing the skin condition before and after the procedure; Furthermore, the core function of the finishing touch is to relieve facial muscle tension during the treatment and stabilize the skin condition. Post-treatment skincare requires choosing a cream or lotion suitable for S1 skin type and gently pressing it until absorbed. The skin condition before and after the procedure is compared again using a skin detection module to collect core indicator data and compare it with the S1 detection data. Specifically, the finishing soothing treatment uses a gentle pressing and stroking technique, with the pressure controlled at 0.1-0.15N and a frequency of 20-30 times per minute. The order of operation is neck, chin, cheeks, eye area, and forehead, stroking each area for 10-15 seconds. The stroking technique uses a one-way gentle pressing to avoid back-and-forth rubbing and ensure the skin condition is stable. The face cream or lotion used for post-treatment skincare is the same type as the S4 nourishing products. Dry skin uses a moisturizing face cream, and oily skin uses an oil-controlling lotion. The amount applied is 0.3-0.5ml, gently stroking until fully absorbed. The core indicators for comparing the skin condition before and after the procedure are consistent with the evaluation indicators of the effect evaluation module, including moisture content, stratum corneum thickness, pore diameter, and fine line depth. The comparison data is transmitted to the data storage module in real time for subsequent effect evaluation and optimization of the care plan. After the comparison is completed, a care completion prompt is generated, informing the user of post-treatment precautions.
[0043] 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 multifunctional facial beauty care technique system, characterized in that, Includes the following modules, The skin detection module detects the basic condition of the user's facial skin, generates a skin detection report and sends it to the parameter adjustment module, while also sending a detection completion signal; The technique execution module includes a cleaning technique unit, a relaxation and soothing unit, a nourishing and infusion unit, an anti-aging and shaping unit, and a finishing relaxation unit. It receives operation instructions from the parameter adjustment module, executes standardized nursing techniques, and provides feedback on the execution status. The parameter adjustment module receives the detection report and detection completion signal from the skin detection module, and adjusts the operating parameters of the technique execution module and transmits instructions based on the feedback information from the feedback module. The feedback module collects skin feedback and user experience feedback in real time during the care process, generates feedback information and sends it to the parameter adjustment module, while also providing feedback on the collection status. The data storage module receives detection data, operating parameters, feedback information and nursing results transmitted from various modules, classifies and archives them, encrypts and stores them, establishes data association indexes and provides retrieval support; The monitoring and adjustment module monitors the working status of the skin detection module, the technique execution module, and the parameter adjustment module in real time, issues abnormal warning signals, and triggers the parameter adjustment module to optimize the operating parameters. The effect evaluation module retrieves related data from the data storage module, compares the skin condition before and after treatment, completes a quantitative evaluation of the treatment effect, outputs an evaluation report, and transmits it.
2. The multifunctional facial beauty care technique system according to claim 1, characterized in that, The skin detection module detects the basic condition of the user's facial skin and generates a detection report, including: Obtain raw detection data on the user's facial skin type, stratum corneum thickness, moisture content, pore condition, and fine line distribution; A data verification algorithm is used to verify the accuracy of the original detection data and remove abnormal data. The validated data is organized and analyzed to generate a visual skin detection report.
3. The multifunctional facial beauty care technique system according to claim 1, characterized in that, The technique execution module performs standardized facial care techniques and provides feedback on the execution status, including: It includes a built-in cleansing massage unit, a soothing and relaxing unit, a nourishing and infusion unit, an anti-aging and shaping unit, and a finishing soothing unit, each with a pre-set standardized operating procedure. The system receives parameters such as force, frequency, and operation duration from the parameter adjustment module and drives each unit to perform the corresponding nursing techniques. The system collects real-time data on the operation status and skin contact during the technique, generates execution status feedback information, and transmits it to the parameter adjustment module.
4. The multifunctional facial beauty care technique system according to claim 1, characterized in that, The parameter adjustment module adjusts the nursing technique parameters based on the detection results and feedback information, including: Receive the detection report from the skin detection module, analyze the core skin condition data, and initially match the basic operating parameters of each technique unit; The system receives feedback information such as skin redness and stinging from the feedback module, and dynamically adjusts the basic parameters based on the feedback of the technique execution status. The adjusted parameters are converted into standardized instructions and sent to the technique execution module, while the parameter adjustment log is recorded.
5. The multifunctional facial beauty care technique system according to claim 1, characterized in that, The feedback module collects skin feedback and user experience feedback during the nursing process, including: The skin condition sensor collects real-time skin feedback data such as skin temperature and redness during the skin care process; The system receives user feedback on sensations such as stinging and discomfort through user interaction components, and categorizes and records the type and severity of the feedback. The standardized feedback information is then transmitted to the parameter adjustment module in real time.
6. The multifunctional facial beauty care technique system according to claim 1, characterized in that, The data storage module stores nursing-related data and establishes associated indexes, including: Collect skin detection data, manipulation parameters, feedback information, nursing results, and timestamp data throughout the entire nursing process; The collected data is classified and archived in a structured format and stored using encryption algorithms to prevent data leakage; Establish a correlation index between the data of each module to realize the linkage retrieval of test data, operation parameters, and nursing effects.
7. The multifunctional facial beauty care technique system according to claim 1, characterized in that, The monitoring and adjustment module includes the following functions for monitoring the working status of each module and handling anomalies: Real-time monitoring of the detection accuracy of the skin detection module, the operational stability of the manipulation execution module, and the response speed of the parameter adjustment module; When a malfunction is detected in a module, an abnormality warning signal is immediately issued and simultaneously pushed to the human-computer interaction module; In response to abnormal execution of techniques and feedback, the parameter adjustment module is triggered to optimize the operation parameters, while recording the abnormal information and optimization records.
8. The multifunctional facial beauty care technique system according to claim 1, characterized in that, The effectiveness evaluation module includes the following steps to quantitatively evaluate nursing effectiveness: Retrieve the skin test report before and after treatment from the data storage module, and compare and analyze the changes in key indicators. A pre-set evaluation algorithm is used to quantify and score the nursing effect; A standardized evaluation report is generated, transmitted to the human-computer interaction module for display, and simultaneously archived to the data storage module.
9. A method for implementing a multifunctional facial beauty care technique, characterized in that, The multifunctional facial beauty care technique system according to any one of claims 1-8 includes the following steps: S1, Pre-operative preparation and skin test: Detects the user's facial skin condition, generates a test report, and determines whether the skin meets the care requirements; S2, layered cleansing technique: Adjust cleansing parameters according to the test report of S1 to complete layered facial cleansing and verify the cleanliness level; S3, a soothing and relaxing technique, is performed based on the skin condition after cleansing in S2, providing a soothing massage. S4, Nourishing Infusion Technique: Select a suitable nourishing product based on the test report of S1, and perform the infusion procedure until the product is fully absorbed. S5, anti-aging and shaping technique, is performed on the fine lines and sagging areas detected by S1. S6, a finishing touch and post-operative care treatment, performs full-face soothing and post-operative skin care, comparing the skin condition before and after the procedure.
10. The method for implementing a multifunctional facial beauty care technique according to claim 9, characterized in that, In step S5, the anti-aging and shaping techniques performed on the fine lines and sagging areas detected in S1 include: Extract data on fine line depth and skin laxity from the S1 test report, and match corresponding anti-aging and shaping strength and frequency parameters; Targeted lifting and fascia relaxation techniques are used to treat the jawline, cheekbones, eye area, and forehead. The system receives feedback from the feedback module in real time. If skin stinging is detected, the operation is stopped immediately and the system returns to S3 for secondary soothing before repeating the process.