Skin state monitoring method, device, handheld detection terminal and system

By obtaining subcutaneous moisture and environmental parameters and using a skin health judgment application to assess skin health status, the existing problem of heavy workload in bedsore prevention is solved, achieving quantitative prevention and cost reduction.

CN120616440APending Publication Date: 2025-09-12FUTURTEC (SUZHOU) MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202510724561.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

Existing methods for preventing bedsores mainly rely on qualitative measures, which results in heavy workload and high costs for medical staff and patient caregivers, and lacks quantitative prevention methods.

Method used

By obtaining subcutaneous moisture, ambient temperature and humidity measured by a handheld detection terminal, the skin health judgment application is used to determine skin health and provide targeted measures to reduce the occurrence of bedsores.

Benefits of technology

It realizes the quantitative evaluation based on subcutaneous moisture and environmental parameters, reduces ineffective labor and medical care costs, and improves the efficiency of bedsore prevention.

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Abstract

The invention relates to a skin state monitoring method, device, handheld detection terminal and system, and belongs to the field of medical instruments. The method comprises the following steps: acquiring subcutaneous moisture of a target part of a target organism measured by a handheld detection terminal; acquiring the environment temperature and the environment humidity when the subcutaneous moisture is measured by the handheld detection terminal; and determining the health condition of the skin of the target part of the target organism according to the subcutaneous moisture, the environment temperature and the environment humidity. According to the technical scheme of the skin state monitoring system, the workload can be reduced, and the medical care cost can be reduced.
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Description

Technical Field

[0001] The present application relates to the field of medical devices, and in particular to a skin condition monitoring method, device, handheld detection terminal and system. Background Art

[0002] Bedsores, also known as pressure ulcers, are caused by prolonged pressure on the skin and subcutaneous tissue, leading to impaired blood circulation, ischemia, hypoxia, and malnutrition, ultimately resulting in localized tissue ulceration or necrosis. They commonly occur over bony prominences such as the sacrum, heels, and hips, and are more common in people who are bedridden, wheelchair-bound, or have limited mobility.

[0003] The formation mechanism of bedsores is relatively complex, and there is no particularly effective treatment for bedsores clinically. Therefore, preventing the formation of bedsores is particularly important. Currently, the main methods for preventing bedsores in clinical practice are to remind medical staff and patient caregivers to regularly check the patient's skin condition, adjust the patient's body position regularly, regularly dry and clean the patient's skin, promptly clean the patient's bedding and clothing, and use assistive devices on certain parts of the patient's body to relieve pressure. These methods, as a summary of clinical practice experience, have certain positive significance in reducing the occurrence of bedsores in patients. However, due to the unclear mechanism of bedsore formation, most existing prevention methods are qualitative rather than quantitative. Although they can prevent patients from developing bedsores, they bring a lot of workload, high work pressure and expensive medical care costs to medical staff and patient caregivers. Summary of the Invention

[0004] In view of this, the present application provides a skin condition monitoring method, device, handheld detection terminal and system to solve at least one problem existing in the background technology.

[0005] To achieve the above objectives, the technical solution of this application is implemented as follows:

[0006] In a first aspect, an embodiment of the present application provides a skin condition monitoring method, the method comprising:

[0007] Obtaining subcutaneous moisture of a target part of a target organism measured by a handheld detection terminal;

[0008] Obtaining the ambient temperature and humidity when the handheld detection terminal measures the subcutaneous moisture;

[0009] The health condition of the skin of the target part of the target organism is determined according to the subcutaneous moisture, the ambient temperature, and the ambient humidity.

[0010] Optionally, determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity includes:

[0011] Inputting the acquired subcutaneous moisture, the ambient temperature, and the ambient humidity into a preset skin health judgment application;

[0012] The skin health condition output from the skin health judgment application is acquired.

[0013] Optionally, before determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity, the method further includes:

[0014] acquiring first training data of a plurality of organisms including the subcutaneous moisture, the ambient temperature, and the ambient humidity;

[0015] Acquire second training data including the health condition that is manually determined based on the first training data;

[0016] The first training data and the second training data are input into a skin health judgment application to be trained for training, so as to obtain the preset skin health judgment application.

[0017] Optionally, the skin condition monitoring system further includes a charging compartment configured to charge the handheld detection terminal, and the method further includes:

[0018] Establishing a wireless communication connection with the handheld detection terminal regularly or irregularly;

[0019] And / or, regularly or irregularly establish a wired communication connection with the charging station

[0020] The subcutaneous moisture, the ambient temperature and the ambient humidity are obtained through the wireless communication connection and / or the wired communication connection.

[0021] Optionally, after determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity, the method further includes:

[0022] The user data including the subcutaneous moisture, the ambient temperature, the ambient humidity and the health condition of the skin is stored in a preset storage space.

[0023] Optionally, the skin condition monitoring system further includes a handheld access terminal, and the method further includes:

[0024] In response to the access request of the handheld access terminal, the access channel to the storage space is opened, and the access rights preset by the handheld access terminal are permitted.

[0025] In a second aspect, an embodiment of the present application provides a skin condition monitoring device, the device comprising:

[0026] A first acquisition module is used to obtain subcutaneous moisture of a target part of a target organism measured by a handheld detection terminal;

[0027] A second acquisition module is used to obtain the ambient temperature and humidity when the handheld detection terminal measures the subcutaneous moisture;

[0028] The determination module is used to determine the health condition of the skin of the target part of the target organism according to the subcutaneous moisture, the ambient temperature and the ambient humidity.

[0029] In a third aspect, an embodiment of the present application provides a handheld detection terminal, including:

[0030] ontology;

[0031] A subcutaneous moisture detection component is provided at one end of the body and protrudes from the body;

[0032] a temperature sensor and a humidity sensor, both disposed on the first side surface of the body;

[0033] The first communication component is arranged on the second side surface of the body and is at least partially exposed.

[0034] Optionally, the subcutaneous moisture detection component is a replaceable disposable item.

[0035] Optionally, the handheld detection terminal further includes:

[0036] The camera is configured to obtain information of the organism to be detected by scanning the electronic tag.

[0037] In a fourth aspect, an embodiment of the present application provides a skin condition monitoring system, comprising:

[0038] Any of the handheld detection terminals mentioned above;

[0039] The server includes the skin condition monitoring device described above.

[0040] Optionally, the skin condition monitoring system further includes:

[0041] A charging compartment, configured to charge the handheld detection terminal;

[0042] The charging compartment includes:

[0043] a charging socket connected to the handheld detection terminal;

[0044] A second communication component communicates with the server.

[0045] Optionally, the charging compartment further includes:

[0046] A disinfection component is configured to disinfect the handheld detection terminal.

[0047] Optionally, the skin condition monitoring system further includes:

[0048] The handheld access terminal is configured to allow a user to access data related to the health condition of the skin of a target part of the target organism.

[0049] The skin condition monitoring method, device, handheld detection terminal and system provided in the embodiments of the present application include: obtaining the subcutaneous moisture of the target part of the target organism measured by the handheld detection terminal; obtaining the ambient temperature and ambient humidity when the subcutaneous moisture is measured by the handheld detection terminal; and determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature and the ambient humidity. It can be seen that the skin condition monitoring method, device, handheld detection terminal and system of the embodiments of the present application can determine the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature and the ambient humidity, so as to take targeted measures, reduce a lot of ineffective labor, and reduce medical care costs. Therefore, the skin condition monitoring method, device, handheld detection terminal and system of the embodiments of the present application can reduce workload and reduce medical care costs.

[0050] Additional aspects and advantages of the present application will be given in part in the description below, and in part will become apparent from the description below, or will be learned through practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0051] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0052] Figure 1 A schematic flow chart of the skin condition monitoring method provided in Example 1 of the present application;

[0053] Figure 2 This is a schematic diagram of the structure of the skin condition monitoring device provided in Example 2 of the present application;

[0054] Figure 3 A schematic diagram of the structure of a computing device provided in Example 3 of the present application;

[0055] Figure 4 This is a front view of the handheld detection terminal provided in Example 5 of the present application;

[0056] Figure 5 A side view of the handheld detection terminal provided in Example 5 of the present application;

[0057] Figure 6A schematic diagram of the workflow of the handheld detection terminal detection provided in Example 5 of the present application;

[0058] Figure 7 This is a schematic diagram of the structure of the skin condition monitoring system provided in Example 6 of the present application;

[0059] Figure 8 A schematic diagram of the workflow of a local fixed terminal in the skin condition monitoring system provided in Example 6 of the present application;

[0060] Figure 9 This is a schematic diagram of the structure of the charging compartment in the skin condition monitoring system provided in Example 6 of the present application;

[0061] Figure 10 This is a schematic diagram of the workflow of the charging compartment in the skin condition monitoring system provided in Example 6 of the present application.

[0062] Description of reference numerals:

[0063] 20. Skin condition monitoring device; 21. First acquisition module; 22. Second acquisition module; 23. Determination module; 30. Computing device; 31. Storage component; 32. Communication bus; 33. Processing component; 34. Input device; 35. Output device; 36. External communication interface; 40. Handheld detection terminal; 41. Main body; 42. Subcutaneous moisture detection component; 43. Temperature sensor; 44. Humidity sensor; 45. First communication component; 46. Camera; 60. Skin condition monitoring system; 61. Local fixed terminal; 62. Cloud; 63. Charging compartment; 631. Base; 632. Charging socket; 633. Second communication component; 634. Disinfection component; 635. Upper cover; 64. Handheld access terminal. DETAILED DESCRIPTION

[0064] The exemplary embodiments disclosed herein will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present application are shown in the accompanying drawings, it should be understood that the present application can be implemented in various forms and should not be limited by the specific embodiments described herein. Rather, these embodiments are provided to enable a more thorough understanding of the present application and to fully convey the scope of the present application to those skilled in the art.

[0065] In the following description, numerous specific details are provided to provide a more thorough understanding of the present application. However, it will be apparent to those skilled in the art that the present application may be practiced without one or more of these details. In other instances, certain technical features known in the art are not described to avoid confusion with the present application; that is, all features of actual embodiments are not described herein, nor are well-known functions and structures described in detail.

[0066] In order to fully understand the present application, detailed steps and detailed structures will be presented in the following description to illustrate the technical solution of the present application. The preferred embodiments of the present application are described in detail below. However, in addition to these detailed descriptions, the present application may also have other implementation methods.

[0067] During research and development, the applicant discovered that the probability of developing a bedsore can be determined by measuring the subcutaneous moisture in specific areas of a patient, combined with the prevailing ambient temperature and humidity. Furthermore, for patients who already have bedsores, the recovery of the bedsore can be more accurately assessed by collecting the subcutaneous moisture around the bedsore and combining it with the prevailing ambient temperature and humidity.

[0068] Therefore, after further research and development, the applicant proposed the following technical solution.

[0069] Example 1

[0070] An embodiment of the present application provides a skin condition monitoring method.

[0071] The method can be implemented by a server, which can be a computer. The computer can be a computing device configured with a processor. The processor can be a general-purpose processor, a digital signal processor (DSP), a field programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.

[0072] refer to Figure 1 , the method comprising:

[0073] Step 101: obtaining subcutaneous moisture of a target part of a target organism measured by a handheld detection terminal;

[0074] Step 102: Obtaining the ambient temperature and humidity when the handheld detection terminal measures subcutaneous moisture;

[0075] Step 103: Determine the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity.

[0076] Here, the skin condition monitoring method is primarily used to monitor the probability of developing pressure sores or the recovery of pressure sores. While the following description primarily uses monitoring the probability of developing pressure sores or the recovery of pressure sores as an example, it is understood that in some cases, the method can also be applied to other skin diseases related to the monitoring content.

[0077] In step 101, the target organism may be a human or other organism similar to a human. The target site may be a site prone to bedsores, such as the sacrum, heel, hip, waist, back, buttocks, etc.

[0078] In step 102, it can be understood that the subcutaneous moisture is also related to the ambient temperature and humidity at that time. Therefore, it is necessary to measure the ambient temperature and humidity at that time to evaluate whether the subcutaneous moisture is normal.

[0079] In step 103, as mentioned above, the health condition of the skin can be the probability of the skin developing bedsores or the recovery condition of the skin after bedsores occur. In some cases, the health condition of the skin can also be other skin diseases related to the monitoring content.

[0080] Furthermore, after obtaining the probability of developing bedsores or the recovery of bedsores, medical staff and patient caregivers can take more targeted measures to reduce the probability of bedsores or accelerate the recovery of bedsores.

[0081] The skin condition monitoring method, device, handheld detection terminal and system of the embodiments of the present application can determine the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature and the ambient humidity, so as to take targeted measures, reduce a large amount of ineffective labor and reduce medical care costs.

[0082] In other embodiments of the present application, determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity includes:

[0083] Inputting the acquired subcutaneous moisture, the ambient temperature, and the ambient humidity into a preset skin health judgment application;

[0084] The skin health condition output from the skin health judgment application is acquired.

[0085] The skin health assessment application includes a mathematical model that uses subcutaneous moisture, ambient temperature, and ambient humidity to determine skin health, specifically the probability of developing pressure sores or the recovery of pressure sores. This mathematical model is commonly used in cosmetic procedures and will not be detailed here.

[0086] Specifically, the skin health judgment application program may be an independent program that is called by the server during operation, or may be bound to the operating system of the server, without limitation.

[0087] In some other embodiments of the present application, before determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity, the method further includes:

[0088] acquiring first training data of a plurality of organisms including the subcutaneous moisture, the ambient temperature, and the ambient humidity;

[0089] Acquire second training data including the health condition that is manually determined based on the first training data;

[0090] The first training data and the second training data are input into a skin health judgment application to be trained for training, so as to obtain the preset skin health judgment application.

[0091] That is, the skin health judgment application, in addition to establishing a mathematical model based on relevant principles to derive the correlation between skin health and the subcutaneous moisture, the ambient temperature and the ambient humidity, is also trained through a large amount of actual data to improve the relevant parameters of the mathematical model and enhance the judgment accuracy of the skin health judgment application.

[0092] Furthermore, in addition to the training process before the product is launched, it can also be trained while in use after launch to further improve accuracy.

[0093] In other embodiments of the present application, the skin condition monitoring method is applied to a skin condition monitoring system, the skin condition monitoring system including the handheld detection terminal, a server, and a charging compartment for charging the handheld detection terminal, and the method further includes:

[0094] Establishing a wireless communication connection with the handheld detection terminal regularly or irregularly;

[0095] And / or, regularly or irregularly establish a wired communication connection with the charging station

[0096] The subcutaneous moisture, the ambient temperature and the ambient humidity are obtained through the wireless communication connection and / or the wired communication connection.

[0097] The wireless communication connection may be a wireless communication connection mode such as Wireless Fidelity (Wi-Fi), Bluetooth (BT), etc.

[0098] Through regular or irregular communication connections, relevant patient data can be obtained in a timely manner to understand the patient's condition in a timely manner. In addition, the communication connection can include wireless communication connections and wired communication connections, which can avoid the situation where one communication connection is unavailable in certain situations, making the communication connection more reliable.

[0099] In some other embodiments of the present application, after determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity, the method further includes:

[0100] The user data including the subcutaneous moisture, the ambient temperature, the ambient humidity and the health condition of the skin is stored in a preset storage space.

[0101] Specifically, the storage space can be set up in the cloud, so that user data can be stored more securely and reliably, and can also be easily accessed by other terminals.

[0102] It can be understood that the storage space can also be set up locally, and a channel for external terminals to access through the network is established, such as setting up the HTTP protocol.

[0103] In some other embodiments of the present application, the skin condition monitoring system further includes a handheld access terminal, and the method further includes:

[0104] In response to the access request of the handheld access terminal, the access channel to the storage space is opened, and the access rights preset by the handheld access terminal are permitted.

[0105] This will make it easier for medical staff and patient caregivers to access relevant patient data in a timely manner and take targeted measures.

[0106] Specifically, the handheld access terminal can be a mobile phone or a tablet computer. More specifically, accessing data through a mobile phone can be achieved by installing a mobile phone application (APP) or a small program.

[0107] Example 2

[0108] An embodiment of the present application provides a skin condition monitoring device 20 .

[0109] refer to Figure 2 , the skin condition monitoring device 20 includes:

[0110] The first acquisition module 21 is used to obtain the subcutaneous moisture of the target part of the target organism measured by the handheld detection terminal;

[0111] The second acquisition module 22 is used to obtain the ambient temperature and humidity when the handheld detection terminal measures the subcutaneous moisture;

[0112] The determination module 23 is configured to determine the health condition of the skin of the target part of the target organism according to the subcutaneous moisture, the ambient temperature, and the ambient humidity.

[0113] In some other embodiments of the present application, the determining module 23 is further configured to:

[0114] Inputting the acquired subcutaneous moisture, the ambient temperature, and the ambient humidity into a preset skin health judgment application;

[0115] The skin health condition output from the skin health judgment application is acquired.

[0116] The skin health judgment application is provided with a mathematical model to judge the health of the skin, that is, the probability of developing bedsores or the recovery of the skin after bedsores occur, based on the subcutaneous moisture, the ambient temperature, and the ambient humidity.

[0117] Specifically, the skin health judgment application program may be an independent program that is called by the server during operation, or may be bound to the operating system of the server, without limitation.

[0118] In some other embodiments of the present application, the apparatus further includes a training module, wherein the training module is configured to:

[0119] acquiring first training data of a plurality of organisms including the subcutaneous moisture, the ambient temperature, and the ambient humidity;

[0120] Acquire second training data including the health condition that is manually determined based on the first training data;

[0121] The first training data and the second training data are input into a skin health judgment application to be trained for training, so as to obtain the preset skin health judgment application.

[0122] That is, the skin health judgment application, in addition to establishing a mathematical model based on relevant principles to derive the correlation between skin health and the subcutaneous moisture, the ambient temperature and the ambient humidity, is also trained through a large amount of actual data to improve the relevant parameters of the mathematical model and enhance the judgment accuracy of the skin health judgment application.

[0123] Furthermore, in addition to the training process before the product is launched, it can also be trained while in use after launch to further improve accuracy.

[0124] In some other embodiments of the present application, the skin condition monitoring system further includes a charging compartment configured to charge the handheld detection terminal, and the first acquisition module 21 or the second acquisition module 22 is further configured to:

[0125] Establishing a wireless communication connection with the handheld detection terminal 40 regularly or irregularly;

[0126] And / or, regularly or irregularly establish a wired communication connection with the charging station

[0127] The subcutaneous moisture, the ambient temperature and the ambient humidity are obtained through the wireless communication connection and / or the wired communication connection.

[0128] The wireless communication connection may be a wireless communication connection mode such as Wireless Fidelity (Wi-Fi), Bluetooth (BT), etc.

[0129] Through regular or irregular communication connections, relevant patient data can be obtained in a timely manner to understand the patient's condition in a timely manner. In addition, the communication connection can include wireless communication connections and wired communication connections, which can avoid situations where only one communication connection is unavailable in certain situations, making the communication connection more reliable.

[0130] In some other embodiments of the present application, the determining module 23 is further configured to:

[0131] The user data including the subcutaneous moisture, the ambient temperature, the ambient humidity and the health condition of the skin is stored in a preset storage space.

[0132] Specifically, the storage space can be set up in the cloud, so that user data can be stored more securely and reliably, and can also be easily accessed by other terminals.

[0133] It can be understood that the storage space can also be set up locally, and a channel for external terminals to access through the network is established, such as setting up the HTTP protocol.

[0134] In some other embodiments of the present application, the skin condition monitoring system further includes a handheld access terminal, and the device further includes a permission module, wherein the permission module is configured to:

[0135] In response to the access request of the handheld access terminal 64 , the access channel to the storage space is opened, and the access rights preset by the handheld access terminal 64 are permitted.

[0136] This will make it easier for medical staff and patient caregivers to access relevant patient data in a timely manner and take targeted measures.

[0137] Each module included in this embodiment can be implemented by a processor in a computer; of course, it can also be implemented by a logic circuit in the computer. The processor can be a general-purpose processor, a digital signal processor (DSP), a field programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. Among them, the general-purpose processor can be a central processing unit (CPU), a microprocessor (MPU), or any other conventional processor.

[0138] The description of the above device embodiment is similar to the description of the above method embodiment and has similar beneficial effects as the method embodiment. For technical details not disclosed in the device embodiment of this application, please refer to the description of the method embodiment in this application for understanding.

[0139] Example 3

[0140] The present application embodiment provides a computing device 30, referring to Figure 3 The computing device 30 includes a storage component 31, a communication bus 32, and a processing component 33, wherein:

[0141] The storage component 31 is used to store the skin condition monitoring method program;

[0142] The communication bus 32 is used to realize the connection and communication between the storage component 31 and the processing component 33;

[0143] The processing component 33 is used to execute the skin condition monitoring method program to implement the steps of the method described in the first embodiment.

[0144] The type or structure of the storage component 31 can be found in the storage medium below and will not be described in detail here.

[0145] The processing unit 33 may be a general-purpose processor, a digital signal processor (DSP), a field programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The general-purpose processor may be a central processing unit (CPU), a microprocessor (MPU), or any other conventional processor.

[0146] In some embodiments, the computing device 30 may further include an input device 34 , an output device 35 , and an external communication interface 36 . These components are interconnected via a bus system and / or other connection mechanisms (not shown).

[0147] In some embodiments, the input device 34 may include, for example, a keyboard, a mouse, a microphone, etc. The output device 35 may output various information to the outside, and may include a display, a speaker, a printer, a projector, a communication network and a remote output device connected thereto, etc. The external communication interface 36 may be wired, such as a standard serial port (RS232), a general-purpose interface bus (GPIB) interface, an Ethernet interface, a universal serial bus (USB) interface, or wireless, such as wireless network communication technology (WiFi), Bluetooth, etc.

[0148] The description of the computing device 30 embodiment above is similar to the description of the method embodiment above, and has similar beneficial effects as the method embodiment. For technical details not disclosed in the computing device 30 embodiment of this application, please refer to the description of the method embodiment in this application for understanding.

[0149] Example 4

[0150] An embodiment of the present application provides a computer-readable storage medium having an executable program stored thereon. When the executable program is executed by a processor, the steps of the method described in the first embodiment are implemented.

[0151] Exemplarily, the computer-readable storage medium can adopt any combination of one or more readable media. The readable medium can be a readable signal medium or a readable storage medium. The computer-readable storage medium is a tangible device that can hold and store instructions used by the instruction execution device. The readable storage medium can, for example, include but is not limited to electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems, devices or devices, or any combination of the above. More specific examples (non-exhaustive list) of readable storage media include: portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), flash memory, portable compact disc read-only memory (CD-ROM, Compact Disc Read-Only Memory), digital versatile discs (DVD, Digital Versatile Disc), memory sticks, floppy disks, mechanical encoding devices, such as punch cards or raised structures in grooves on which instructions are stored, and any suitable combination of the above. Wherein:

[0152] The RAM includes: static random access memory (SRAM), synchronous static random access memory (SSRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct rambus random access memory (DRRAM).

[0153] The ROM includes: Programmable Read-Only Memory (PROM), Erasable Programmable Read-Only Memory (EPROM), and Electrically Erasable Programmable Read-Only Memory (EEPROM).

[0154] The description of the computer-readable storage medium embodiment above is similar to the description of the method embodiment above, and has similar beneficial effects as the method embodiment. For technical details not disclosed in the computer-readable storage medium of this embodiment, please refer to the description of the method embodiment in this application for understanding.

[0155] Example 5

[0156] The present application embodiment provides a handheld detection terminal 40, referring to Figure 4 and Figure 5 , the handheld detection terminal 40 includes:

[0157] Ontology 41;

[0158] A subcutaneous moisture detection component 42 is provided at one end of the body 41 and protrudes from the body 41;

[0159] The temperature sensor 43 and the humidity sensor 44 are both arranged on the first side surface of the body 41;

[0160] The first communication component 45 is disposed on the second side surface of the body 41 and is at least partially exposed.

[0161] It can be understood that the subcutaneous moisture detection component 42 protrudes from the body 41, which is conducive to the subcutaneous moisture detection component 42 better contacting the target part to be detected on the human body.

[0162] Specifically, except for one end connected to the subcutaneous moisture detection component 42 , the shape of the main body 41 is roughly a rectangular parallelepiped, similar to a mobile phone, and is convenient for human hand to hold.

[0163] Specifically, the subcutaneous moisture detection component 42 can detect the subcutaneous moisture content of the target part. Specifically, the subcutaneous moisture content can be obtained by means of skin resistance, etc., which will not be described in detail.

[0164] Specifically, the first side surface and the second side surface may be two adjacent side surfaces, so as to facilitate electrical connection between the first communication component 45 and the temperature sensor 43 and the humidity sensor 44 .

[0165] Specifically, a groove may be provided on the first side surface, and the temperature sensor 43 and the humidity sensor 44 are provided in the groove so that the temperature sensor 43 and the humidity sensor 44 do not protrude from the first side surface, thereby protecting the temperature sensor 43 and the humidity sensor 44 .

[0166] Furthermore, the opening of the groove can be provided with a cover plate with grid holes. This does not affect the operation of the temperature sensor 43 and the humidity sensor 44, but can also better protect the temperature sensor 43 and the humidity sensor 44. It should be noted that because the temperature sensor 43 and the humidity sensor 44 are located in the groove and covered by the cover plate, the temperature sensor 43 and the humidity sensor 44 are not visible in the drawings, and only their approximate locations are marked.

[0167] It can be understood that the first communication component 45 is at least partially exposed to facilitate communication.

[0168] In other embodiments of the present application, the subcutaneous moisture detection component 42 is a replaceable disposable item.

[0169] In this way, cross infection caused by the unsanitary nature of the subcutaneous moisture detection component 42 is reduced. In addition, the material and process requirements of the disposable product can be relatively low, the cost is relatively low, and the detection cost can be reduced.

[0170] In some other embodiments of the present application, the handheld detection terminal 40 further includes:

[0171] The camera 46 is configured to obtain information of the organism to be detected by scanning the electronic tag.

[0172] Specifically, the electronic tag can be a QR code or barcode to facilitate input of information about the organism being tested. For example, inpatients in a hospital may be given a paper wristband with an electronic tag, such as a QR code, to facilitate doctor verification of patient information. Thus, the handheld testing terminal 40 can quickly obtain user information by scanning the electronic tag with the camera 46 and save subsequent measured data to the user's account.

[0173] In order to more clearly understand the handheld detection terminal 40 provided in the embodiment of the present application, the execution process of the handheld detection terminal 40 provided in the embodiment of the present application will be introduced below. Figure 6 This is a flow chart of the execution process of the handheld detection terminal 40 provided in the embodiment of the present application, refer to Figure 6 As shown, the execution process may include:

[0174] Step 501: Turn on the computer.

[0175] Step 502: Check whether the subcutaneous moisture detection component 42 is correctly installed. If it is correctly installed, proceed to step 504; otherwise, proceed to step 503.

[0176] Step 503: Acquire confirmation information of installing the subcutaneous moisture detection component 42.

[0177] Step 504: Display the interface for obtaining patient information.

[0178] Step 505: Acquire the patient information obtained after scanning by the camera 46.

[0179] Step 506: Obtain confirmation information after manual verification. If yes, proceed to step 507; if no, return to step 504.

[0180] Step 507: Acquire the manually selected target part.

[0181] Step 508: Display the detection interface.

[0182] Step 509: Acquire the detection result of the subcutaneous moisture detection component 42.

[0183] Step 510: Obtain manual confirmation that the detection of a point is complete.

[0184] Step 511: Check whether multiple detection points are complete. If yes, proceed to step 512; otherwise, return to step 509.

[0185] Step 512: Determine whether there are other target parts. If not, proceed to step 513; if yes, return to step 507.

[0186] Step 513: Display the detection completion interface.

[0187] Example 6

[0188] The present application embodiment provides a skin condition monitoring system 60, referring to Figure 7 , the skin condition monitoring system 60 includes:

[0189] The handheld detection terminal 40 described in the fifth embodiment;

[0190] The server includes the skin condition monitoring device 20 described in the second embodiment.

[0191] In some other embodiments of the present application, the skin condition monitoring system 60 further includes a local fixed terminal 61 .

[0192] Specifically, the server can be located in a local fixed terminal 61. Data processed by the server before and after processing can also be stored in local memory. To facilitate access by external terminals, a network channel accessible to external terminals can be established, such as by setting up the HTTP protocol. It is understood that the server can also be located elsewhere, with the local fixed terminal 61 serving merely as a network connection node for transmitting or downloading data.

[0193] More specifically, whether acting as a server or a node connected to the network, the process of the local fixed terminal 61 receiving or sending data can be called data synchronization, that is, the data of the handheld detection terminal 40 can be synchronized to the server and storage space.

[0194] In order to more clearly understand the local fixed terminal 61 provided in the embodiment of the present application, the data synchronization process of the local fixed terminal 61 provided in the embodiment of the present application will be introduced below. Figure 8 This is a flow chart of data synchronization of the local fixed terminal 61 in the skin condition monitoring system 60 provided in the sixth embodiment of the present application, with reference to Figure 8 As shown, the data synchronization process may include:

[0195] Step 801: Turn on the computer.

[0196] Step 802: Obtain an instruction to enter data synchronization.

[0197] Step 803: Acquire the handheld detection terminal 40 that needs to be synchronized.

[0198] Step 804: The handheld detection terminal 40 is in the charging compartment 63. If it is in the charging compartment 63, the process proceeds to step 805; otherwise, the process proceeds to step 806.

[0199] Step 805 : Start the wired communication module to connect to the handheld detection terminal 40 .

[0200] Step 806 : Start the wireless communication module to connect to the handheld detection terminal 40 .

[0201] Step 807: Send a request for data synchronization.

[0202] Step 808: Confirm whether the feedback information is agreed. If the feedback information is agreed, go to step 809, otherwise go to step 810.

[0203] Step 809: Execute data synchronization.

[0204] Step 810: Display the synchronization end interface.

[0205] In other embodiments of the present application, the skin condition monitoring system 60 further includes a cloud 62 .

[0206] Specifically, the server can be located in the cloud 62. Data processed by the server before and after processing can also be stored in the cloud 62. This allows external terminals, such as mobile phones of medical staff and patient caregivers, to easily access the test data. It is understood that the server may not be located in the cloud 62, and the cloud 62 may simply serve as a data storage node.

[0207] In some other embodiments of the present application, the skin condition monitoring system 60 further includes:

[0208] A charging compartment 63 is configured to charge the handheld detection terminal 40;

[0209] refer to Figure 9 , the charging compartment 63 includes:

[0210] A charging socket 632 connected to the handheld detection terminal 40;

[0211] A second communication component 633 for communicating with the server.

[0212] In this way, in addition to providing charging services for the handheld detection terminal 40, the charging compartment 63 also provides data transmission services, that is, uploading the detection data of the handheld detection terminal 40 to the server, or downloading the server's instructions to the handheld detection terminal 40, or updating the software version of the handheld detection terminal 40, etc.

[0213] Among them, in addition to charging, the charging socket 632 is also a wired communication channel, that is, the data of the handheld detection terminal 40 is first transmitted to the charging compartment 63, and then uploaded to the server through the second communication component 633 of the charging compartment 63.

[0214] Specifically, the charging compartment 63 may further include a base 631 for carrying a charging socket 632 and a second communication component 633 .

[0215] Specifically, the charging socket 632 can be designed as a charging seat, so that the handheld detection terminal 40 can be placed directly on it and a charging connection can be naturally established through the action of gravity.

[0216] Specifically, the second communication component 633 may be a wireless communication device.

[0217] In some other embodiments of the present application, the charging compartment 63 further includes:

[0218] The disinfection component 634 is configured to disinfect the handheld detection terminal 40 .

[0219] In this way, the risk of pathogens contaminated by the handheld detection terminal 40 infecting patients or cross-infection can be reduced.

[0220] Specifically, the disinfection component 634 can be an ultraviolet disinfection lamp.

[0221] In other embodiments of the present application, the charging compartment 63 further includes an upper cover 635 , which is covered when the handheld detection terminal 40 is charging for protection.

[0222] In some other embodiments of the present application, the skin condition monitoring system 60 further includes:

[0223] The handheld access terminal 64 is configured to allow a user to access data related to the health condition of the skin of a target part of the target organism.

[0224] Specifically, the handheld access terminal 64 can be a mobile phone or a tablet computer. More specifically, accessing data via a mobile phone can be achieved by installing a mobile phone APP or a small program.

[0225] In order to more clearly understand the charging compartment 63 provided in the embodiment of the present application, the process of providing charging services by the charging compartment 63 provided in the embodiment of the present application will be introduced below. Figure 10 This is a schematic diagram of the working process of the charging compartment 63 in the skin condition monitoring system 60 provided in Example 6 of the present application, with reference to Figure 10 As shown, the workflow of the charging compartment 63 may include:

[0226] Step 901: Turn on the computer.

[0227] Step 902: Detect the charging port.

[0228] Step 903: Is the charging port connected to the handheld detection terminal 40? If yes, proceed to step 904; otherwise, return to step 902.

[0229] Step 904: Start charging.

[0230] Step 905: Start the second communication component 633.

[0231] Step 906: Start data synchronization.

[0232] Step 907: Start the ultraviolet disinfection lamp.

[0233] Step 908: Turn off the UV disinfection lamp and start the completion indicator light.

[0234] The description of the above embodiment of the skin condition monitoring system 60 is similar to the description of the above method embodiment, and has similar beneficial effects as the method embodiment. For technical details not disclosed in the embodiment of the skin condition monitoring system 60 of this application, please refer to the description of the method embodiment in this application for understanding.

[0235] It should be noted that the various embodiments provided in the embodiments of the present application belong to the same concept; the various technical features in the technical solutions recorded in the various embodiments can be arbitrarily combined to form new embodiments without conflict.

[0236] In the above description, the terms "first\second\..." are only used to distinguish similar objects and do not represent a specific order of the objects. It can be understood that "first\second\third" can be interchanged with a specific order or sequence when permitted.

[0237] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass 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 explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or apparatus comprising the element.

[0238] In the embodiments of this application, unless otherwise specified and limited, the term "connection" should be understood in a broad sense. For example, it can be an electrical connection, or it can be a connection between two components. It can be a direct connection or an indirect connection through an intermediate medium. For ordinary technicians in this field, the specific meaning of the above terms can be understood according to the specific circumstances.

[0239] The purpose of the terms used herein is only to describe specific embodiments and is not intended to limit the present application. When used herein, the singular forms "a", "an", and "the" are intended to include the plural forms, unless the context clearly indicates otherwise. It should also be understood that the terms "comprising" and / or "including", when used in this specification, determine the presence of the features, integers, steps, operations, elements and / or parts, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, parts and / or groups. When used herein, the term "and / or" includes any and all combinations of the relevant listed items.

[0240] It should be understood that references to "one embodiment" or "some embodiments" throughout this specification mean that a particular feature, structure, or characteristic associated with the embodiment is included in at least one embodiment of the present application. Therefore, the appearance of "in one embodiment" or "in some embodiments" throughout this specification does not necessarily refer to the same embodiment. Furthermore, these particular features, structures, or characteristics may be combined in any suitable manner in one or more embodiments. It should be understood that, in the various embodiments of this application, the embodiment numbers are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.

[0241] It should be understood that the size of the serial numbers of the above processes does not mean the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of the present application.

[0242] In the several embodiments provided in this application, it should be understood that the disclosed devices and methods can be implemented in other ways. The device embodiments described above are merely schematic. For example, the division of the modules is merely a logical function division. In actual implementation, there may be other division methods, such as: multiple modules or components can be combined, or can be integrated into another system, or some features can be ignored or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, and the indirect coupling or communication connection of the devices or modules can be electrical, mechanical or other forms.

[0243] The modules described above as separate components may or may not be physically separated, and the components displayed as modules may or may not be physical modules; they may be located in one place or distributed on multiple network modules; some or all of the modules may be selected according to actual needs to achieve the purpose of this embodiment.

[0244] In addition, all functional modules in the embodiments of the present application can be integrated into one processing module, or each functional module can be a separate module, or two or more functional modules can be integrated into one module; the above-mentioned integrated modules can be implemented in the form of hardware or in the form of hardware plus software functional modules.

[0245] Those skilled in the art will understand that all or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions, and the aforementioned program can be stored in a computer-readable storage medium. When the program is executed, it executes the steps including the above method embodiments.

[0246] Alternatively, if the above-mentioned integrated module of the present application is implemented in the form of a software function module and sold or used as an independent product, it can also be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the embodiment of the present application, or the part that contributes to the prior art, can be embodied in the form of a software product, which is stored in a storage medium and includes several instructions for causing an electronic device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the methods described in each embodiment of the present application. In this way, the embodiment of the present application is not limited to any specific combination of hardware and software. It should be understood that the above embodiments are exemplary and are not intended to include all possible implementation methods included in the technical solution of the present application. Without departing from the scope disclosed in the present application, various deformations and changes can also be made on the basis of the above embodiments. Similarly, the various technical features of the above embodiments can also be arbitrarily combined to form other embodiments of the present application that may not be clearly described. Therefore, the above embodiments only express several implementation methods of the present application and do not limit the scope of protection of the patent of this application.

Claims

1. A skin condition monitoring method, characterized in that: The method comprises: Obtaining subcutaneous moisture of a target part of a target organism measured by a handheld detection terminal; Obtaining the ambient temperature and humidity when the handheld detection terminal measures the subcutaneous moisture; The health condition of the skin of the target part of the target organism is determined according to the subcutaneous moisture, the ambient temperature, and the ambient humidity.

2. The skin condition monitoring method according to claim 1, characterized in that: The determining of the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity includes: Inputting the acquired subcutaneous moisture, the ambient temperature, and the ambient humidity into a preset skin health judgment application; The skin health condition output from the skin health judgment application is acquired.

3. The skin condition monitoring method according to claim 2, characterized in that: Before determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity, the method further includes: acquiring first training data of a plurality of organisms including the subcutaneous moisture, the ambient temperature, and the ambient humidity; Acquire second training data including the health condition that is manually determined based on the first training data; The first training data and the second training data are input into a skin health judgment application to be trained for training, so as to obtain the preset skin health judgment application.

4. The skin condition monitoring method according to claim 3, characterized in that: The skin condition monitoring method is applied to a skin condition monitoring system, which includes the handheld detection terminal, a server, and a charging compartment for charging the handheld detection terminal. The method further includes: Establishing a wireless communication connection with the handheld detection terminal regularly or irregularly; And / or, regularly or irregularly establish a wired communication connection with the charging station The subcutaneous moisture, the ambient temperature and the ambient humidity are obtained through the wireless communication connection and / or the wired communication connection.

5. The skin condition monitoring method according to claim 1, characterized in that: After determining the health condition of the skin of the target part of the target organism based on the subcutaneous moisture, the ambient temperature, and the ambient humidity, the method further includes: The user data including the subcutaneous moisture, the ambient temperature, the ambient humidity and the health condition of the skin is stored in a preset storage space.

6. The skin condition monitoring method according to claim 5, characterized in that: The skin condition monitoring system further includes a handheld access terminal, and the method further includes: In response to the access request of the handheld access terminal, the access channel to the storage space is opened, and the access rights preset by the handheld access terminal are permitted.

7. A skin condition monitoring device, characterized in that: The device comprises: A first acquisition module is used to obtain subcutaneous moisture of a target part of a target organism measured by a handheld detection terminal; A second acquisition module is used to obtain the ambient temperature and humidity when the handheld detection terminal measures the subcutaneous moisture; The determination module is used to determine the health condition of the skin of the target part of the target organism according to the subcutaneous moisture, the ambient temperature and the ambient humidity.

8. A handheld detection terminal, characterized in that: include: ontology; A subcutaneous moisture detection component is provided at one end of the body and protrudes from the body; a temperature sensor and a humidity sensor, both disposed on the first side surface of the body; The first communication component is arranged on the second side surface of the body and is at least partially exposed.

9. The handheld detection terminal according to claim 8, characterized in that: The subcutaneous moisture detection component is a replaceable disposable item.

10. The handheld detection terminal according to claim 8, characterized in that: The handheld detection terminal also includes: The camera is configured to obtain information of the organism to be detected by scanning the electronic tag.

11. A skin condition monitoring system, characterized in that: include: The handheld detection terminal according to any one of claims 8 to 10; A server comprising the skin condition monitoring device according to claim 7.

12. The skin condition monitoring system according to claim 11, characterized in that: The skin condition monitoring system further includes: A charging compartment, configured to charge the handheld detection terminal; The charging compartment includes: a charging socket connected to the handheld detection terminal; A second communication component communicates with the server.

13. The skin condition monitoring system according to claim 12, characterized in that: The charging compartment further includes: A disinfection component is configured to disinfect the handheld detection terminal.

14. The skin condition monitoring system according to claim 11, characterized in that: The skin condition monitoring system further includes: The handheld access terminal is configured to allow a user to access data related to the health condition of the skin of a target part of the target organism.