Artificial Intelligence-Based Dermatological Care Scenario Analysis System and Method

Through the analysis of patient skin damage data and data evaluation during the nursing process, the abnormal analysis of nursing process is solved, and the problem of matching nursing actions and skin lesions is achieved, and the accuracy and safety of nursing actions are achieved.

CN120070424BActive Publication Date: 2025-07-18THE SEVENTH MEDICAL CENTER OF PLA GENERAL HOSPITAL
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Patent Information

Application Number
CN202510530658.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2025-07-18
Estimated Expiration
2045-04-25

AI Technical Summary

Technical Problem

The prior art cannot conduct quantitative analysis of the recovery and damage of the patient's skin damage area, and cannot accurately evaluate the matching of nursing actions with the patient's skin damage, resulting in possible secondary damage during the nursing process.

Method used

Skin vulnerability analysis is performed based on the patient's skin damage location image data and data during the nursing process, damage assessment is performed based on the nursing position and pressure value data, abnormality analysis is performed in the nursing process, and early warning is made based on the abnormal analysis results.

Benefits of technology

The accuracy of the matching analysis of nursing actions with the patient's skin lesions is improved, and the secondary damage of the patient is avoided.

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Abstract

The present invention relates to the field of artificial intelligence technology, and particularly to a dermatological care scenario analysis system and method based on artificial intelligence. The present invention performs skin vulnerability analysis based on image data of the damaged position of the patient's skin and the damaged data of the patient's skin, performs damage assessment during the care process based on the patient's skin data, the movement of the care position, and the care pressure value data, performs abnormal analysis of the care process based on the results of the skin vulnerability analysis and the damage assessment during the care process, and issues a warning for care actions according to the results of the abnormal analysis of the care process. This application comprehensively quantifies the skin abnormalities of the patient based on the recovery and damage conditions of the damaged area of the patient's skin, and at the same time comprehensively considers the influence of care actions and acupoint pressing on the movement of the patient's skin to accurately evaluate the damage caused by care actions, improving the accuracy of the matching analysis between care actions and patient skin damage and avoiding secondary damage to the patient.
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Description

Technical Field

[0001] The present invention relates to the field of artificial intelligence technology, and in particular to a dermatological care scenario analysis system and method based on artificial intelligence. Background Art

[0002] Most dermatological patients have their skin damaged to varying degrees. When performing dermatological treatment, in order to promote blood circulation and remove blood stasis, a nursing method of massaging specified acupoints with specified intensity and actions is usually adopted for the care near the damaged location. However, when performing the nursing actions, the combined effects of the vulnerability of the patient's skin and the abnormality of the nursing process are ignored. It is impossible to comprehensively quantify and analyze the skin abnormalities of the patient based on the recovery and damaged conditions of the damaged area of the patient's skin. At the same time, it is impossible to comprehensively consider the influence of the nursing actions and acupoint pressing on the movement of the patient's skin and then accurately evaluate the damage caused by the nursing actions, resulting in the inability to perform the matching analysis between the nursing actions and the patient's skin damage. Existing technologies, such as the intelligent auxiliary system and method for dermatological rehabilitation nursing disclosed in the Chinese patent with the application publication number CN119049642A, which relates to the field of dermatological rehabilitation nursing technology, includes a symptom recognition module for obtaining image data of the patient's skin through an image acquisition device and multispectral imaging technology; and is also used for identifying dermatological symptoms. This intelligent auxiliary system and method for dermatological rehabilitation nursing, through the processing of the image preprocessing and enhancement unit, improves the quality and authenticity of the images, provides a reliable basis for accurately identifying dermatological symptoms, and combines machine learning algorithms and a dermatological symptom database for comparison and identification, can generate symptom data more accurately; can identify the potential influence of the patient's living habits on skin symptoms at multiple levels, provides a scientific basis for formulating personalized rehabilitation, and can dynamically adjust in combination with the patient's living habit data, improving the pertinence and effectiveness of rehabilitation, but there are the technical problems proposed in this application.

[0003] To solve the technical problems proposed in this application, a dermatological care scenario analysis system and method based on artificial intelligence are designed in this application. Summary of the Invention

[0004] To overcome the defects and deficiencies of the existing technology, the present invention provides an artificial intelligence-based dermatological care scenario analysis system and method, which performs skin vulnerability analysis based on the image data of the damaged position of the patient's skin and the damaged data of the patient's skin, performs injury assessment during the care process based on the patient's skin data, the movement of the care position, and the care pressure value data, performs abnormal analysis of the care process based on the results of the skin vulnerability analysis and the injury assessment during the care process, and issues a warning for the care actions according to the results of the abnormal analysis of the care process. This application comprehensively quantifies the skin abnormalities of the patient based on the recovery and damage conditions of the damaged area of the patient's skin, and at the same time comprehensively considers the impact of the care actions and acupoint pressing on the movement of the patient's skin to accurately evaluate the damage caused by the care actions, improving the accuracy of the matching analysis between the care actions and the patient's skin damage, and avoiding secondary damage to the patient.

[0005] To achieve the above object, the present invention adopts the following technical solutions:

[0006] In the first aspect, the present invention provides an artificial intelligence-based dermatological care scenario analysis method, including the following steps:

[0007] S1. Obtain the image data of the damaged position of the patient's skin and the patient's skin data, and at the same time obtain the care position and the care pressure value data during the care process;

[0008] S2. Perform skin vulnerability analysis based on the image data of the damaged position of the patient's skin and the damaged data of the patient's skin;

[0009] S3. Perform injury assessment during the care process based on the patient's skin data, the movement of the care position, and the care pressure value data;

[0010] S4. Perform abnormal analysis of the care process based on the results of the skin vulnerability analysis and the injury assessment during the care process;

[0011] S5. Issue a warning for the care actions according to the results of the abnormal analysis of the care process.

[0012] In an implementation manner of the present invention, the step of obtaining the image data of the damaged position of the patient's skin and the patient's skin data, and at the same time obtaining the care position and the care pressure value data during the care process includes the following specific steps:

[0013] S101. Obtain the image data of the damaged skin area and the hardness data of the damaged skin area, import the image data of the damaged skin area into image processing software to obtain the hue values of each pixel point in the damaged skin area, and at the same time obtain the elasticity data of the skin near the damaged area;

[0014] S102. Obtain the corresponding contact positions for the care actions to be performed, and at the same time obtain the distance data between the corresponding contact positions of each action and the damaged skin area;

[0015] S103. Obtain the nursing pressure value data of the corresponding contact position where nursing actions need to be performed, and store the obtained data in the storage module.

[0016] In an implementation manner of the present invention, in step S2, skin vulnerability analysis is performed based on the patient's skin damaged position image data and the patient's skin damaged data, including the following specific steps:

[0017] S201. Obtain the hue values of each pixel point in the corresponding skin damaged area and the hardness data of each point in the skin damaged area, and analyze the scabbing degree of each point in the skin damaged area based on the hue values of each pixel point in the skin damaged area and the hardness data of each point in the skin damaged area;

[0018] S202. Analyze the scabbing situation of the corresponding skin damaged area based on the average value and the fluctuation degree of the scabbing degree of each point in the corresponding skin damaged area;

[0019] S203. Perform damage abnormality analysis based on the damaged area and the damage depth of each point in the corresponding skin damaged area. Among them, the damage abnormality analysis method is: Integrate the damage depth of each point in the dimension of the damaged area and then divide by the set standard value to obtain the damage abnormality analysis value after standardization;

[0020] S204. Obtain the scabbing situation of the corresponding skin damaged area, and at the same time obtain the damage abnormality analysis value of the corresponding skin damaged area. Divide the damage abnormality analysis value of the corresponding skin damaged area by the scabbing situation of the corresponding skin damaged area to obtain the skin vulnerability analysis result of the corresponding skin damaged area.

[0021] In an implementation manner of the present invention, in step S3, nursing process damage assessment is performed based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data, including the following specific steps:

[0022] S301. Obtain the distance between the skin damaged area and the nursing position and the elasticity data of the skin;

[0023] S302. Perform nursing abnormality analysis based on the movement situation of the nursing position, the nursing pressure value data, and the distance between the skin damaged area and the nursing position. Among them, the nursing abnormality analysis formula is: , where n is the number of nursing positions, Li is the movement path of the nursing position during the i-th nursing action, fil is the pressure value when the distance of the movement path l of the nursing position during the i-th nursing action, fm is the standard pressure value, dl is the distance integral constant, and Di is the average value of the shortest distance from the movement path of the nursing position during the i-th nursing action to the skin damaged area;

[0024] S303. Obtain the elastic data of the skin between the nursing anomaly analysis result and the skin damaged area to the nursing position, and obtain the nursing process injury assessment result by dividing the nursing anomaly analysis result by the standardized elastic data of the skin between the skin damaged area and the nursing position.

[0025] In an implementation manner of the present invention, in step S4, the nursing process anomaly analysis based on the skin vulnerability analysis result and the nursing process injury assessment result includes the following specific steps:

[0026] S401. Obtain the skin vulnerability analysis result corresponding to the skin damaged area and the nursing process injury assessment result corresponding to the nursing action;

[0027] S402. Perform weighted summation on the obtained skin vulnerability analysis result corresponding to the skin damaged area and the nursing process injury assessment result corresponding to the nursing action to obtain the nursing process anomaly analysis result.

[0028] In an implementation manner of the present invention, in step S5, the warning of the nursing action according to the nursing process anomaly analysis result includes the following specific content:

[0029] Obtain the corresponding nursing process anomaly analysis result, subtract it from the set nursing process anomaly analysis threshold to obtain a difference. If the obtained difference is greater than or equal to 0, it means that the nursing process anomaly analysis result is greater than or equal to the set nursing process anomaly analysis threshold, that is, the nursing action does not match the skin damaged position, and the nursing action is likely to cause secondary injury to the skin damaged position, and a warning of the nursing action is given. If the obtained difference is less than 0, it means that the nursing process anomaly analysis result is less than the set nursing process anomaly analysis threshold, that is, the nursing action matches the skin damaged position, and the nursing action does not cause secondary injury to the skin damaged position.

[0030] In a second aspect, the present invention also provides a dermatological nursing scenario analysis system based on artificial intelligence, including:

[0031] A data acquisition module, configured to acquire the image data of the patient's skin damaged position and the patient's skin data, and at the same time acquire the nursing position and the nursing pressure value data during the nursing process;

[0032] A skin vulnerability analysis module, which performs skin vulnerability analysis based on the patient's skin damaged position image data and the patient's skin damaged data;

[0033] A nursing process injury assessment module, which performs nursing process injury assessment based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data;

[0034] A nursing process anomaly analysis module, which performs nursing process anomaly analysis based on the skin vulnerability analysis result and the nursing process injury assessment result;

[0035] An action warning module that gives warnings about nursing actions based on the analysis results of abnormal nursing processes.

[0036] In a third aspect, an electronic device provided by the present invention includes: a processor and a memory. Among them, a computer program that can be called by the processor is stored in the memory, and the processor executes a dermatological care scenario analysis method based on artificial intelligence by calling the computer program stored in the memory.

[0037] In a fourth aspect, a computer-readable storage medium provided by the present invention stores instructions that, when run on a computer, cause the computer to execute a dermatological care scenario analysis method based on artificial intelligence.

[0038] Compared with the prior art, the present invention has the following advantages and beneficial effects:

[0039] The present invention conducts skin vulnerability analysis based on the image data of the damaged position of the patient's skin and the damaged data of the patient's skin, conducts damage assessment during the nursing process based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data, conducts abnormal analysis of the nursing process based on the results of the skin vulnerability analysis and the damage assessment results of the nursing process, and gives warnings about nursing actions based on the analysis results of the abnormal nursing process. This application comprehensively quantifies the skin abnormalities of the patient by considering the recovery and damage conditions of the damaged area of the patient's skin, and at the same time comprehensively assesses the damage caused by nursing actions by considering the impact of nursing actions and acupoint pressing on the movement of the patient's skin, thereby improving the accuracy of the matching analysis between nursing actions and patient skin damage and avoiding secondary damage to the patient. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] By reading the detailed description of the non-limiting embodiments with reference to the following drawings, other features, objectives, and advantages of the present invention will become more apparent:

[0041] Figure 1 It is a schematic diagram of the overall process flow of the method embodiment of the present invention;

[0042] Figure 2 It is a work flow diagram of S2 in the method embodiment of the present invention;

[0043] Figure 3 It is a work flow diagram of S3 in the method embodiment of the present invention;

[0044] Figure 4 It is a schematic diagram of the structure of the system embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0045] The technical solution of the present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the embodiments of the present invention and the specific features in the embodiments are detailed descriptions of the technical solution of the present invention, rather than limitations on the technical solution of the present invention. Without conflict, the embodiments of the present invention and the technical features in the embodiments can be combined with each other.

[0046] Embodiment 1

[0047] Embodiment 1 provides a method embodiment of the technical solution.

[0048] As Figures 1 to 3 shown, this embodiment provides a method for analyzing a dermatological care scenario based on artificial intelligence, which specifically includes the following steps:

[0049] S1. Obtain the image data of the damaged position of the patient's skin and the patient's skin data, and at the same time obtain the nursing position and nursing pressure value data during the nursing process;

[0050] In a specific embodiment, the obtaining of the image data of the damaged position of the patient's skin and the patient's skin data, and at the same time obtaining the nursing position and nursing pressure value data during the nursing process includes the following specific steps:

[0051] S101. Obtain the image data of the damaged skin area and the hardness data of the damaged skin area, import the image data of the damaged skin area into image processing software to obtain the hue values of each pixel point in the damaged skin area, and at the same time obtain the elasticity data of the skin near the damaged area. The method for obtaining the elasticity data of the skin is as follows: 1. Non-contact measurement device: Laser scanning: Use laser technology to non-contact measure the deformation of the skin, so as to calculate the hardness and elasticity of the skin; Ultrasonic measurement: Evaluate the hardness and elasticity of the skin through the reflection of ultrasonic signals; Advantages: Non-invasive, suitable for measuring skin damage or sensitive areas; 2. Skin elastometer: A device with a measurement probe, press it gently on the skin surface, measure the rebound time and pressure value of the skin, and can quantify the elasticity and hardness of the skin;

[0052] S102. Obtain the corresponding contact positions that need to perform nursing actions, and at the same time obtain the distance data between the corresponding contact positions of each action and the damaged skin area; In this embodiment, the obtaining methods of the contact position and the distance data are both conventional obtaining means, and the relevant data of the nursing actions are stored in the memory of the nursing actions and can be directly called when in use;

[0053] S103. Obtain the nursing pressure value data of the corresponding contact positions that need to perform nursing actions, and store the obtained data in the storage module;

[0054] S2. Perform skin vulnerability analysis based on the image data of the damaged position of the patient's skin and the patient's damaged skin data;

[0055] In a specific embodiment, in step S2, skin vulnerability analysis is performed based on the image data of the damaged position of the patient's skin and the damaged data of the patient's skin, including the following specific steps:

[0056] S201. Obtain the hue values of each pixel point in the corresponding skin damaged area and the hardness data of each point in the skin damaged area. Analyze the scabbing degree of each point in the skin damaged area based on the hue values of each pixel point in the skin damaged area and the hardness data of each point in the skin damaged area, which can be calculated through the scabbing degree calculation formula. Among them, the scabbing degree calculation formula for the z-th point is: , where xz is the hue value of the z-th point, xm is the average value of the scabbing hue values, exp() represents the exponential power of the natural constant e. If the number in the exp() parentheses is greater than 0, that is, the hue value of the z-th point is greater than or equal to the average value of the scabbing hue values, it means that the color of the z-th point is darker than the scab, indicating a high possibility of scabbing. If the number in the exp() parentheses is less than 0, it means that the color of the z-th point is lighter than the scab, indicating a low possibility of scabbing. Pz is the hardness of the z-th point, and Pm is the average hardness of the scab;

[0057] S202. Analyze the scabbing situation of the corresponding skin damaged area based on the average value and the fluctuation degree of the scabbing degree of each point in the corresponding skin damaged area. Among them, the calculation formula for analyzing the scabbing situation of the corresponding skin damaged area is: , where a is the average value proportion weight, Js is the average value of the scabbing degree of each point, and Jr is the variance of the scabbing degree of each point;

[0058] S203. Perform damage abnormality analysis based on the damaged area of the corresponding skin damaged area and the damage depth of each point. Among them, the damage abnormality analysis method is: Integrate the damage depth of each point in the dimension of the damaged area and then divide by the set standard value to obtain the damage abnormality analysis value after standardization;

[0059] S204. Obtain the scabbing situation of the corresponding skin damaged area, and at the same time obtain the damage abnormality analysis value of the corresponding skin damaged area. Divide the damage abnormality analysis value of the corresponding skin damaged area by the scabbing situation of the corresponding skin damaged area to obtain the skin vulnerability analysis result of the corresponding skin damaged area;

[0060] S3. Perform damage assessment during the nursing process based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data;

[0061] In a specific embodiment, in step S3, damage assessment during the nursing process is performed based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data, including the following specific steps:

[0062] S301. Obtain the distance between the skin damaged area and the nursing position, as well as the elasticity data of the skin;

[0063] S302. Conduct nursing abnormality analysis based on the movement of the nursing position, the nursing pressure value data, and the distance between the skin damaged area and the nursing position. Among them, the nursing abnormality analysis formula is: , where n is the number of nursing positions. Taking massage nursing as an example, the number of nursing positions is the number of contacts between the medical staff's fingers and the patient during massage. Li is the movement path of the nursing position during the i-th nursing action. Still taking massage nursing as an example, the movement path of the nursing position is the movement path of the medical staff's fingers when pressing and rubbing on the patient's skin. fil is the pressure value at the distance of the movement path l of the nursing position during the i-th nursing action. fm is the standard pressure value. dl is the distance integral constant. Di is the average value of the shortest distance from the movement path of the nursing position to the skin damaged area during the i-th nursing action;

[0064] S303. Obtain the nursing abnormality analysis result and the elasticity data of the skin between the skin damaged area and the nursing position. Divide the nursing abnormality analysis result by the standardized elasticity data of the skin between the skin damaged area and the nursing position to obtain the nursing process injury assessment result; because if the skin elasticity is large, it will affect the transmission of the pulling force and reduce the injury to the damaged position during rubbing;

[0065] S4. Conduct nursing process abnormality analysis based on the skin vulnerability analysis result and the nursing process injury assessment result;

[0066] In a specific embodiment, the nursing process abnormality analysis based on the skin vulnerability analysis result and the nursing process injury assessment result in step S4 includes the following specific steps:

[0067] S401. Obtain the skin vulnerability analysis result corresponding to the skin damaged area and the nursing process injury assessment result corresponding to the corresponding nursing action;

[0068] S402. Perform weighted summation on the obtained skin vulnerability analysis result corresponding to the skin damaged area and the nursing process injury assessment result corresponding to the corresponding nursing action to obtain the nursing process abnormality analysis result;

[0069] S5. Give a warning for the nursing action according to the nursing process abnormality analysis result;

[0070] In a specific embodiment, the warning for the nursing action according to the nursing process abnormality analysis result in step S5 includes the following specific content:

[0071] Obtain the corresponding abnormal analysis result of the nursing process, subtract it from the set abnormal analysis threshold of the nursing process to obtain a difference. If the obtained difference is greater than or equal to 0, it indicates that the abnormal analysis result of the nursing process is greater than or equal to the set abnormal analysis threshold of the nursing process, that is, the nursing action does not match the skin damage position, and the nursing action is likely to cause secondary damage to the skin damage position, and a warning for the nursing action is carried out. If the obtained difference is less than 0, it indicates that the abnormal analysis result of the nursing process is less than the set abnormal analysis threshold of the nursing process, that is, the nursing action matches the skin damage position, and the nursing action does not cause secondary damage to the skin damage position.

[0072] It should be noted in this embodiment that the acquisition method of the set parameters (such as the weight ratio of each weighted sum, threshold, etc.) in this embodiment is obtained through experiments by those skilled in the art. The specific experimental method is as follows: Obtain several groups of historical patient skin damage position image data and patient skin data, and at the same time obtain the nursing position and nursing pressure value data during the nursing process, substitute them into each step of this embodiment to calculate the abnormal analysis result of the nursing process, and at the same time obtain the judgment result of whether secondary damage is caused to the skin damage position after nursing. Based on the abnormal analysis result of the nursing process and the judgment result of whether secondary damage is caused to the skin damage position, import the data into a fitting software (preferably matlab) for iterative fitting of the data, and output the set parameter value that meets the maximum evaluation sorting accuracy rate.

[0073] It should be noted in this embodiment that this embodiment has the following advantages. Skin vulnerability analysis is carried out based on the patient's skin damage position image data and patient's skin damage data. Nursing process injury assessment is carried out based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data. Abnormal analysis of the nursing process is carried out based on the skin vulnerability analysis result and the nursing process injury assessment result. A warning for the nursing action is carried out according to the abnormal analysis result of the nursing process. Quantitative analysis of the patient's skin abnormality is carried out by comprehensively considering the recovery situation and damage situation of the patient's skin damage area. At the same time, the impact of the nursing action and acupoint pressing on the movement of the patient's skin is comprehensively considered to accurately evaluate the injury of the nursing action, improving the accuracy of the matching analysis between the nursing action and the patient's skin injury and avoiding secondary injury to the patient.

[0074] Embodiment 2

[0075] As Figure 4 shown, this embodiment provides an artificial intelligence-based dermatology nursing scenario analysis system, including:

[0076] A data acquisition module for acquiring image data of the damaged position of the patient's skin, the patient's skin data, and at the same time acquiring the nursing position and nursing pressure value data during the nursing process; a skin vulnerability analysis module for performing skin vulnerability analysis based on the image data of the damaged position of the patient's skin and the patient's skin damage data; a nursing process injury assessment module for performing nursing process injury assessment based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data; a nursing process anomaly analysis module for performing nursing process anomaly analysis based on the skin vulnerability analysis result and the nursing process injury assessment result; an action warning module for warning nursing actions according to the nursing process anomaly analysis result. For the parameters, the steps for each unit module in the above-mentioned artificial intelligence-based dermatology nursing scenario analysis system of the present invention to implement corresponding functions, and the corresponding functions, reference can be made to the parameters and steps in the embodiments of the artificial intelligence-based dermatology nursing scenario analysis method in the above text, which will not be elaborated here.

[0077] Embodiment 3

[0078] An electronic device according to an embodiment of the present invention includes: a processor and a memory. Among them, a computer program that can be called by the processor is stored in the memory, and the processor executes the artificial intelligence-based dermatology nursing scenario analysis method by calling the computer program stored in the memory. It should be noted that: all computer programs of the artificial intelligence-based dermatology nursing scenario analysis method are implemented using the C language. Among them, the data acquisition module, the pollutant intrusion degree analysis module, the damage degree analysis module, the stain diffusion degree analysis module, the stain risk assessment module, the book processing warning module, and the control module are all controlled by a remote server.

[0079] Embodiment 4

[0080] This embodiment proposes a computer-readable storage medium, on which a rewritable computer program is stored;

[0081] When the computer program runs on a computer device, the computer device is enabled to execute the above-mentioned artificial intelligence-based dermatology nursing scenario analysis method.

[0082] Each embodiment in the present invention is described in a progressive manner. The same or similar parts among the embodiments can be referred to each other, and the key points of each embodiment are the differences from other embodiments. In particular, for the embodiments of the Internet of Things devices and media, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can be referred to the partial description of the method embodiments.

[0083] The system, medium, and method provided by the embodiments of the present invention correspond one by one. Therefore, the system and the medium also have beneficial technical effects similar to those of the corresponding method. Since the beneficial technical effects of the method have been described in detail above, the beneficial technical effects of the system and the medium will not be elaborated here.

[0084] Those skilled in the art should understand that the embodiments of the present invention can be provided as a method, a system, or a computer program product. Therefore, the present invention can take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware aspects. Moreover, the present invention can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0085] The present invention is described with reference to the flowcharts and / or block diagrams of methods, apparatuses (systems), and computer program products according to the embodiments of the present invention. It should be understood that each flow and / or block in the flowchart and / or block diagram, as well as the combination of flows and / or blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to the processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing devices to generate a machine, so that the instructions executed by the processor of the computer or other programmable data processing devices generate means for implementing the specified functions in Figure 1 one flow or multiple flows and / or blocks Figure 1 one block or multiple blocks.

[0086] These computer program instructions can also be stored in a computer-readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer-readable memory generate a manufactured article including instruction means, and the instruction means implements the specified functions in Figure 1 one flow or multiple flows and / or blocks Figure 1 one block or multiple blocks.

[0087] In a typical configuration, a computing device includes one or more processors (CPUs), an input / output interface, a network interface, and a memory.

[0088] The memory may include non-permanent memory in the computer-readable medium, random access memory (RAM), and / or non-volatile memory such as read-only memory (ROM) or flash RAM. The memory is an example of a computer-readable medium.

[0089] A computer-readable medium includes both permanent and non-permanent, removable and non-removable media that can store information by any method or technology. The information can be computer-readable instructions, data structures, program modules, or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassettes, magnetic tape magnetic disk storage or other magnetic storage devices, or any other non-transitory medium that can be used to store information that can be accessed by a computing device. As defined herein, a computer-readable medium does not include transitory computer-readable media such as modulated data signals and carrier waves.

[0090] It should also be noted that the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, such that a process, method, article or apparatus comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or apparatus. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or apparatus comprising the element.

[0091] The above are only embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the scope of the claims of the present invention.

Claims

1. An artificial intelligence-based method for analyzing dermatological care scenarios, characterized in that, It includes the following steps: S1. Obtain the image data of the damaged skin area of the patient and the damaged skin data of the patient, and at the same time obtain the nursing position and nursing pressure value data during the nursing process; S2. Conduct skin vulnerability analysis based on the image data of the damaged skin area of the patient and the damaged skin data of the patient; It includes the following specific steps: Obtain the hue values of each pixel point in the corresponding skin damaged area and the hardness data of each point in the skin damaged area, and analyze the scabbing degree of each point in the skin damaged area based on the hue values of each pixel point in the skin damaged area and the hardness data of each point in the skin damaged area. Among them, the calculation formula for the scabbing degree of the z-th point is: , where xz is the hue value of the z-th point, xm is the average value of the scabbing hue values, exp() represents the exponential power of the natural constant e, Pz is the hardness of the z-th point, and Pm is the average hardness of the scabbing; Analyze the scabbing situation of the corresponding damaged skin area based on the average value and fluctuation degree of the scabbing degree of each point in the corresponding damaged skin area; It also includes the following specific steps: Conduct damage abnormality analysis based on the damaged area and the damage depth of each point in the corresponding damaged skin area. Among them, the damage abnormality analysis method is: Integrate the damage depth of each point in the dimension of the damaged area and then divide by the set standard value to obtain the damage abnormality analysis value after standardization; Obtain the scabbing situation of the corresponding damaged skin area, and at the same time obtain the damage abnormality analysis value of the corresponding damaged skin area. Divide the damage abnormality analysis value of the corresponding damaged skin area by the scabbing situation of the corresponding damaged skin area to obtain the skin vulnerability analysis result of the corresponding damaged skin area; S3. Conduct damage assessment during the nursing process based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data; S4. Conduct abnormality analysis during the nursing process based on the skin vulnerability analysis result and the damage assessment result during the nursing process; S5. Give a warning for the nursing action according to the abnormality analysis during the nursing process.

2. The method for analyzing a dermatological care scenario based on artificial intelligence according to claim 1, wherein The damage assessment during the nursing process based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data includes the following specific steps: Obtain the distance between the damaged skin area and the nursing position and the elasticity data of the skin; Conduct nursing abnormality analysis based on the movement of the nursing position, the nursing pressure value data, and the distance between the damaged skin area and the nursing position; Obtain the nursing abnormality analysis result and the elasticity data of the skin between the damaged skin area and the nursing position. Divide the nursing abnormality analysis result by the standardized elasticity data of the skin between the damaged skin area and the nursing position to obtain the damage assessment result during the nursing process.

3. The method for analyzing dermatological care scenarios based on artificial intelligence according to claim 2, wherein The abnormality analysis during the nursing process based on the skin vulnerability analysis result and the damage assessment result during the nursing process includes the following specific steps: Obtain the skin vulnerability analysis result of the corresponding damaged skin area and the damage assessment result during the nursing process of the corresponding nursing action; Perform weighted summation on the obtained skin vulnerability analysis result of the corresponding damaged skin area and the damage assessment result during the nursing process of the corresponding nursing action to obtain the abnormality analysis result during the nursing process.

4. The method for analyzing dermatological care scenarios based on artificial intelligence according to claim 3, wherein The warning for the nursing action according to the abnormality analysis during the nursing process includes the following specific content: Obtain the corresponding abnormality analysis result during the nursing process, subtract it from the set nursing process abnormality analysis threshold to obtain a difference value. If the obtained difference value is greater than or equal to 0, the nursing action does not match the damaged skin position, and the nursing action is likely to cause secondary damage to the damaged skin position, and give a warning for the nursing action. If the obtained difference value is less than 0, the nursing action matches the damaged skin position, and the nursing action does not cause secondary damage to the damaged skin position.

5. The method for analyzing dermatological care scenarios based on artificial intelligence according to claim 4, wherein, The obtaining of the image data of the damaged position of the patient's skin and the patient's skin data, and simultaneously obtaining the nursing position and the nursing pressure value data during the nursing process includes the following specific steps: Obtain the image data of the skin damaged area and the hardness data of the skin damaged area, import the image data of the skin damaged area into an image processing software to obtain the hue values of each pixel point in the skin damaged area, and simultaneously obtain the elasticity data of the skin near the damaged area; Obtain the corresponding contact positions where nursing actions need to be performed, and simultaneously obtain the distance data between the corresponding contact positions of each action and the skin damaged area; Obtain the nursing pressure value data of the corresponding contact positions where nursing actions need to be performed, and store the obtained data in a storage module with a confidentiality function.

6. The method for analyzing a dermatological care scenario based on artificial intelligence according to claim 5, wherein The abnormal analysis formula for the nursing process is as follows: , where n is the number of nursing positions, Li is the movement path of the nursing position during the i-th nursing action, fil is the pressure value at the distance l of the movement path of the nursing position during the i-th nursing action, fm is the standard pressure value, dl is the distance integral constant, and Di is the average value of the shortest distance from the movement path of the nursing position during the i-th nursing action to the skin damaged area.

7. An artificial intelligence-based dermatological care scenario analysis system, which is implemented based on the method described in any one of claims 1-6, characterized in that, The system includes: A data acquisition module, configured to acquire the image data of the damaged position of the patient's skin and the patient's skin damaged data, and simultaneously acquire the nursing position and the nursing pressure value data during the nursing process; A skin vulnerability analysis module, which performs skin vulnerability analysis based on the image data of the damaged position of the patient's skin and the patient's skin damaged data; A nursing process injury assessment module, which performs nursing process injury assessment based on the patient's skin data, the movement of the nursing position, and the nursing pressure value data; A nursing process abnormality analysis module, which performs nursing process abnormality analysis based on the skin vulnerability analysis result and the nursing process injury assessment result; An action warning module, which gives warnings for nursing actions according to the nursing process abnormality analysis.

8. An electronic device, comprising: A processor and a memory, wherein the memory stores a computer program that can be called by the processor; it is characterized in that the processor executes the method according to any one of claims 1-6 by calling the computer program stored in the memory.

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