Integrated diagnosis and treatment system and method

By integrating diagnosis and treatment systems with multi-scenario treatment modes and health monitoring data, the portability and multi-machine linkage of low-intensity laser therapy devices have been achieved, solving the problems of portability and multi-scenario applicability in existing technologies. Personalized and intelligent TCM acupoint treatment services are provided, improving the efficiency of diagnosis and treatment.

WO2026085913A1PCT designated stage Publication Date: 2026-04-30GUANGDONG HOSPITAL OF TRADITIONAL CHINESE MEDICINE +1
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Patent Information

Application Number
PCT/CN2024/128710
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-10-24
Filing Date
2024-10-31
Publication Date
2026-04-30

AI Technical Summary

Technical Problem

Existing low-intensity laser therapy devices are not portable, have limited treatment output ports, cannot be used in combination with multiple devices, and cannot be used with health monitoring equipment, making it difficult to achieve multi-scenario or cross-scenario use and failing to meet the flexible adaptation needs of acupuncture point selection in traditional Chinese medicine.

Method used

Design an integrated diagnosis and treatment system, including a laser therapy device, a mobile control terminal, a doctor's terminal, and a management backend. It can realize one-stop recommendation and intelligent treatment plan through multi-scenario diagnosis and treatment mode, support institutional diagnosis and treatment, home diagnosis and treatment, and offline diagnosis and treatment, generate personalized treatment plans using health test data, and interface with test equipment through third-party external interfaces.

Benefits of technology

It enables one-stop recommendation of treatment plans, multi-machine linkage of flexible acupoint selection plans, and cross-scenario platform data management, breaking through application scenario barriers, expanding the scope of application, providing personalized and intelligent TCM acupoint treatment services, and improving treatment efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

An integrated diagnosis and treatment method, relating to a diagnosis and treatment system. Provided is a multi-scenario diagnosis and treatment mode, which mainly comprises diagnosis and treatment modes of three scenarios: an institutional diagnosis and treatment mode, a home-based diagnosis and treatment mode, and an offline diagnosis and treatment mode. Health monitoring data of a patient is acquired, a therapeutic regimen for the patient is acquired on the basis of the health monitoring data, and the therapeutic regimen for the patient is pushed to a mobile control terminal; and when the patient requires treatment, the therapeutic regimen for the patient in the mobile control terminal is sent to a laser treatment instrument to treat the patient. Also disclosed is an integrated diagnosis and treatment system. The integrated diagnosis and treatment system is realized. In addition, on the basis of a specific result from a monitoring device, a therapeutic regimen is intelligently recommended and a treatment module is used for treatment, thereby breaking through application scenario barriers, broadening the application range, bridging "gaps" in holistic health management scenarios, and meeting offline and / or online, personalized and intelligent service requirements of traditional Chinese medicine acupoint therapy.
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Description

A treatment system and method integrating diagnosis and treatment Technical Field

[0001] This invention relates to diagnostic and therapeutic systems, and more specifically, to a treatment system and method that integrates diagnosis and treatment. Background Technology

[0002] Acupoints are the sites on the body surface where the Qi (vital energy) of the internal organs and meridians is transported. They are also the main application sites for therapies such as acupuncture and massage. The main physiological function of acupoints is to transport the Qi and blood of the internal organs and meridians, and to connect the body surface with the internal organs. Clinically, doctors can use the functional characteristics of acupoints to diagnose and treat diseases. Low-intensity laser refers to wavelengths in the red to near-infrared region of the spectrum. Low-intensity laser therapy (photobiological modulation or cold laser therapy) is a therapy that produces therapeutic effects by applying low-intensity lasers and light-emitting diodes (LEDs) with infrared and visible red wavelengths to human tissues. Clinical studies have shown that these low-intensity lasers can penetrate the skin and relieve acute pain by reducing biochemical markers, oxidative stress, and inflammatory factors. It is a relatively mature treatment method used clinically. Laser stimulation of acupoints is a novel therapy that has emerged in the last 20 years. It combines traditional Chinese medicine acupoint theory with modern technology, utilizing the biological effects of lasers, such as thermal, photopressure, photochemical reactions, and electromagnetic effects, to replace traditional invasive acupuncture methods. Treatment is tailored to the specific acupoints selected based on clinical diagnosis and treatment principles. Compared to traditional acupuncture, it offers advantages such as no pain, non-invasiveness, no risk of needle retention, needle breakage, or needle puncture infection. Furthermore, the series of biological effects caused by the physical stimulation of acupoints can enhance the therapeutic effect to some extent.

[0003] Devices and therapies utilizing laser stimulation of acupoints have wide applications in cardiovascular and cerebrovascular diseases, sleep improvement, and pain management. However, very few products truly integrate with traditional Chinese medicine theory. Currently, low-intensity laser therapy devices on the market suffer from the following problems: Firstly, most clinically used low-intensity laser therapy products are traditional, large, floor-standing or desktop devices, typically including a main unit, treatment head, frame, processor, frequency modulator, and cooling device. These are bulky and require casters at the four corners of the frame for movement, resulting in extremely low portability. They are mostly limited to use in medical institutions, severely restricting their application scenarios. Secondly, a few portable low-intensity laser therapy devices exist, such as wristband laser therapy devices. These are small and easy to carry, with main components including only the main unit, wristband, and laser module. However, these devices typically only treat a single area through the main unit's 650mm laser window, limiting the treatment output and making it impossible to use multiple devices simultaneously. The available treatment options are also limited. While some portable low-intensity laser therapy devices are equipped with one or two laser guides for multi-point treatment of certain areas, their design limits their applicability to specific diseases or conditions, making them unsuitable for targeted treatment of other ailments. For example, some laser therapy devices for rhinitis consist mainly of a main unit, a laser coupling cable, and a nasal tip. One end of the laser coupling cable connects to the nasal tip, while the other end connects to the device housing via a laser connector. The specially designed nasal tip, conforming to the shape of the nose, fixes the laser head, connected to the main unit, in the nasal cavity to relieve nasal inflammation. These are nasal-specific devices and cannot support flexible, multi-point acupoint treatments common in Traditional Chinese Medicine. Most importantly, these types of devices lack external interfaces for third-party platforms or diagnostic systems, preventing compatibility with other clinical health testing or diagnostic equipment. They cannot achieve one-stop intelligent generation and recommendation of treatment plans from testing to execution. Furthermore, limitations in design and data service platform infrastructure hinder their ability to be used in multiple or cross-scenario applications.

[0004] In summary, current low-intensity laser therapy devices on the market have many shortcomings in terms of flexible adaptation to acupuncture point selection schemes in traditional Chinese medicine. These include inconvenient operation and inability to be used in conjunction with other health monitoring devices. Not only do they fail to meet the basic requirements of traditional Chinese medicine acupuncture for flexible and convenient selection of acupoints on different parts of the body and multi-acupoint combination therapy, but they also limit the widespread application of these devices.

[0005] Summary of the Invention

[0006] The technical problem to be solved by the present invention is to provide an integrated diagnosis and treatment system and method to address the shortcomings of the existing technology, and to meet the offline and / or online, personalized and intelligent service needs of traditional Chinese medicine acupoint therapy.

[0007] The present invention describes an integrated diagnostic and treatment method that sets up multiple scenario-based diagnostic and treatment modes.

[0008] When the institutional treatment mode is selected, the patient's health test data is obtained through the medical institution's equipment, and a treatment plan is obtained based on the health test data. The treatment plan is then pushed to the medical institution's laser therapy device for treatment.

[0009] When the home-based medical treatment mode is selected, the patient's health test data is obtained through the medical institution's equipment, and a treatment plan is obtained based on the health test data. The treatment plan is then pushed to the patient's mobile control device. When the patient needs treatment, the treatment plan in the mobile control device is sent to the patient's personal laser therapy device for treatment.

[0010] When the offline treatment mode is selected, the patient's health test data is obtained through personal health data upload and doctor-patient Q&A mode, and a treatment plan is obtained based on the health test data and pushed to the patient's mobile control terminal; when the patient needs treatment, the patient's treatment plan in the mobile control terminal is sent to the individual laser therapy device to treat the patient.

[0011] As a further improvement, obtaining a patient's treatment plan based on the aforementioned health monitoring data specifically includes:

[0012] The system compares and analyzes preset health data thresholds with health test data to determine whether the patient needs acupoint intervention treatment. If so, the health test data is sent to the health information database in the management backend, and other health information related to the patient is extracted from the health information database. The health test data and other health information are combined according to the set standard health information semantics to form the patient's health information statement. The system traverses the treatment plan information database in the management backend based on the health information statement to extract several target treatment plans that match the health information statement. The several target treatment plans are sent to the doctor's end to determine the patient's treatment plan.

[0013] As a further improvement, in the institutional treatment mode, the patient's treatment plan is pushed to the mobile control terminal of the medical staff, and the mobile control terminal of the medical staff extracts the single treatment time in the patient's treatment plan; when the patient needs to be treated, the patient's treatment plan is sent to the laser therapy device through the mobile control terminal of the medical staff, and after the single treatment time ends, the mobile control terminal of the medical staff automatically generates a reminder message.

[0014] Furthermore, the reminder message includes a question asking whether to retain the patient's treatment plan. If yes is selected, the patient's treatment plan is retained in the laser therapy device. If no is selected or the reminder message is not processed within a set time, the medical staff's mobile control terminal generates a reset message and sends it to the laser therapy device to delete the patient's treatment plan and restore it to its default working state.

[0015] As a further improvement, in the offline diagnosis and treatment mode, the individual's health data is acquired through wearable electronic devices, home medical testing equipment, and third-party testing instruments.

[0016] Furthermore, in the offline diagnosis and treatment mode, the doctor-patient question-and-answer mode includes:

[0017] The diagnostic dialogue between the doctor and the patient is realized through the diagnosis and treatment APP installed on the mobile control terminal and the doctor terminal. After the diagnostic dialogue ends, the doctor terminal summarizes the patient's answer information into the patient's one-time narrative information based on the diagnostic dialogue, and extracts the target health data from the one-time narrative information according to the examination items involved in the acupoint intervention treatment, and uses the target health data as health detection data.

[0018] Furthermore, the doctor-patient question-and-answer model also includes:

[0019] Doctors input the health information of patients obtained from telephone conversations and chat software conversations into the doctor's terminal to form health monitoring data.

[0020] A system for implementing the aforementioned integrated diagnosis and treatment method includes a laser therapy device, a mobile control terminal, a doctor's terminal, and a management backend; the management backend is communicatively interconnected with the doctor's terminal, the doctor's terminal is wirelessly connected to the mobile control terminal, and the mobile control terminal is wirelessly connected to the laser therapy device.

[0021] As a further improvement, the management backend is equipped with a third-party external interface. Beneficial effects

[0022] The advantages of this invention are:

[0023] 1. By applying institutional, home-based, and offline treatment models, a treatment system has been developed that enables one-stop recommendation of treatment plans, multi-machine linkage of flexible acupoint selection schemes, and cross-scenario platform data management, achieving integrated diagnosis and treatment system integration. Simultaneously, based on the results of specific testing equipment, it intelligently recommends treatment plans and uses treatment modules for treatment, breaking through application scenario barriers, expanding the application scope, bridging the "breakpoints" in the big health management scenario, and meeting the offline and / or online, personalized, and intelligent service needs of traditional Chinese medicine acupoint therapy.

[0024] 2. This system provides third-party external interfaces, which can be used to connect and integrate with third-party testing equipment and diagnostic systems. The user mobile terminal operation software of the therapeutic instrument can be embedded into the user mobile terminal software of the third-party diagnostic system as a functional module. After the test or diagnosis is completed, the system can automatically generate acupoint treatment plans corresponding to the test or diagnosis results, thereby realizing the embedding and empowerment of diagnostic and treatment services.

[0025] 3. This invention achieves a one-stop output of intelligent TCM acupoint selection schemes integrating diagnosis and treatment, providing doctors with professional treatment plan references and improving diagnostic and treatment efficiency. The output instruction schemes can be modified by doctors, realizing editability, and while improving diagnostic and treatment efficiency, it also provides patients with more effective personalized treatment plans.

[0026] 4. The mobile control terminal of this invention enables data interaction and communication with the management backend through the doctor's terminal, realizing intelligent real-time recommendation and selection of treatment plans, improving the efficiency of diagnosis and treatment in medical institution scenarios and home life scenarios; at the same time, it can break through the application scenario barriers and connect the cross-scenario application breakpoints between medical institutions and home life. Attached Figure Description

[0027] Figure 1 is a schematic diagram of the integrated diagnosis and treatment method of the present invention;

[0028] Figure 2 is a schematic diagram of the institutional diagnosis and treatment model framework of the present invention;

[0029] Figure 3 is a schematic diagram of the home-based medical treatment model framework of the present invention;

[0030] Figure 4 is a schematic diagram of the offline diagnosis and treatment mode framework of the present invention;

[0031] Figure 5 is a schematic diagram of the integrated diagnosis and treatment system of the present invention. Detailed Implementation

[0032] The present invention will be further described below with reference to embodiments, but this does not constitute any limitation on the present invention. Any limited modifications made by any person within the scope of the claims of the present invention are still within the scope of the claims of the present invention.

[0033] Referring to Figures 1-4, the present invention provides an integrated diagnosis and treatment method, which sets up multiple scenario diagnosis and treatment modes, mainly including three scenario diagnosis and treatment modes: institutional diagnosis and treatment mode, home diagnosis and treatment mode, and offline diagnosis and treatment mode.

[0034] When the institutional treatment model is selected, the patient's examination and treatment are both carried out in the medical institution. In this way, the medical institution obtains the patient's health test data through its equipment, and obtains the patient's treatment plan based on the health test data. The patient's treatment plan is then pushed to the medical institution's laser therapy device for treatment, thereby realizing an integrated diagnosis and treatment service for the patient.

[0035] To better suit the multi-functional use of laser therapy devices in medical institutions, this embodiment, in the institutional treatment mode, first pushes each patient's treatment plan to the medical staff's mobile control terminal, such as a mobile phone or tablet. The medical staff's mobile control terminal extracts the single treatment time from the patient's treatment plan. When treatment is needed, after the patient puts on the laser therapy device, the medical staff sends the patient's treatment plan to the laser therapy device through their mobile control terminal, thus starting the treatment. The medical staff's mobile control terminal simultaneously times the treatment time. When the single treatment time ends, the medical staff's mobile control terminal automatically generates a reminder message, reminding the medical staff that the treatment is over, allowing them to promptly remove the laser therapy device from the patient, providing more efficient and high-quality service.

[0036] In this embodiment, the reminder message includes a prompt asking whether to retain the patient's treatment plan. If yes, the patient's treatment plan is retained in the laser therapy device, so that the patient can directly put on the device and begin treatment for the next session. If no is selected, or if the reminder message is not processed within a set time, the medical staff's mobile control terminal generates a reset message and sends it to the laser therapy device to delete the patient's treatment plan and restore it to its default working state, placing the laser therapy device under a normal treatment plan. Thus, when other users want to experience the laser therapy device, they can directly wear and use it, and the wireless medical staff can then reset it, preventing other users from using the previous patient's plan and avoiding incompatible treatments, thus facilitating the use of the laser therapy device.

[0037] When the home-based treatment mode is selected, the patient undergoes testing at a medical institution and receives a treatment plan before receiving treatment at home. The medical institution's equipment acquires the patient's health data, and based on this data, a treatment plan is generated and sent to the patient's mobile control device. When the patient needs treatment, the treatment plan from the mobile control device is sent to the patient's personal laser therapy device for treatment. This mode is suitable for patients who have a laser therapy device at home, facilitating self-treatment, especially for patients who live far away.

[0038] When the offline treatment mode is selected, both the acquisition of patient health data and treatment can be conducted at home. In this mode, patients can access the management backend through a third-party external interface to directly upload their personal health data as health monitoring data. They can also send their personal health data to the doctor's end and obtain more comprehensive health monitoring data through a doctor-patient Q&A mode. After receiving the health monitoring data, the management backend obtains the patient's treatment plan based on the data and pushes the treatment plan to the patient's mobile control device. When the patient needs treatment, the treatment plan from the mobile control device is sent to the patient's personal laser therapy device for treatment. This mode is mainly aimed at groups with mobility difficulties or those who cannot go to medical institutions due to work or travel reasons.

[0039] In the offline diagnosis and treatment model, personal health data is obtained through wearable electronic devices, home medical testing equipment, and third-party testing instruments, which facilitates the collection of personal health information and avoids the limitation of information sources.

[0040] In offline diagnosis and treatment mode, the doctor-patient question and answer mode mainly includes the following two types.

[0041] The first method involves using a diagnostic app installed on both the mobile control terminal and the doctor's end to enable a diagnostic dialogue between the doctor and the patient. After the diagnostic dialogue ends, the doctor summarizes the patient's answers into a one-time narrative based on the dialogue. Then, based on the examination items involved in the acupoint intervention treatment, the doctor extracts the target health data from the one-time narrative and uses the target health data as health monitoring data.

[0042] The second method involves doctors inputting the patient's health information obtained from phone conversations and chat software conversations into the doctor's terminal to form health monitoring data.

[0043] Both of these doctor-patient question-and-answer models enable dialogue between patients and doctors, allowing for the acquisition of patients' health information through the "questioning" method in traditional Chinese medicine.

[0044] Furthermore, in the offline diagnosis and treatment mode, we combine electronic medical devices and dialogue between doctors and patients to collect patient health information, realizing the acquisition of information through multiple channels, improving the comprehensiveness of health information, and helping the management backend to provide more reasonable and effective treatment plans.

[0045] The methods for obtaining patient treatment plans in the above three treatment models are as follows:

[0046] The system compares and analyzes preset health data thresholds with health monitoring data to determine if the patient requires acupoint intervention. If so, the health monitoring data is sent to the health information database in the management backend, and other relevant health information is extracted from the database. The health monitoring data and other health information are combined according to predefined standard health information semantics to form the patient's health information statement. Based on the health information statement, the system traverses the treatment plan information database in the management backend to extract several target treatment plans that match the health information statement. These target treatment plans are then sent to the doctor for manual selection. The doctor can modify the selected target treatment plan through the doctor's terminal. After modification and confirmation, the target treatment plan is adopted as the patient's treatment plan, and the target treatment plan is also stored in the management backend.

[0047] In the three treatment modes provided in this embodiment, all laser therapy devices are wearable, and multiple laser therapy devices can be used. During use, multiple laser therapy devices will activate corresponding treatment modules according to the patient's treatment plan. For example, if the treatment plan includes treatment for the hands and feet, the laser therapy device worn on the hands will activate treatment through the hand treatment module in the treatment plan, and the laser therapy device worn on the feet will activate treatment through the foot treatment module in the treatment plan. Through the application of the above three treatment modes, a treatment system with one-stop recommendation of treatment plans, multi-machine linkage of flexible acupoint selection plans, and cross-scenario platform data management functions is realized, achieving integrated diagnosis and treatment system integration. Simultaneously, based on the results of specific testing equipment, intelligent treatment plans are recommended and treatment modules are used for treatment, breaking through application scenario barriers, broadening the application scope, bridging the "breakpoints" in the big health management scenario, and meeting the offline and / or online, personalized, and intelligent service needs of traditional Chinese medicine acupoint therapy.

[0048] As shown in Figure 5, this invention also provides an integrated diagnostic and treatment system, which includes a laser therapy device, a mobile control terminal, a doctor's terminal, and a management backend. The management backend communicates with the doctor's terminal, the doctor's terminal is wirelessly connected to the mobile control terminal, and the mobile control terminal is wirelessly connected to the laser therapy device. This forms a closed-loop diagnostic and treatment process: After the patient completes a health check or diagnosis, if the test results indicate the need for corresponding acupoint intervention treatment, the testing instrument or platform can transmit the patient's health data through a standard interface. The backend can retrieve relevant content from the database based on the patient's health data, generate a corresponding treatment plan, and send it to the doctor's terminal. After modifying or confirming the plan, the doctor can directly push the recommended plan to the mobile control terminal. After receiving the plan, the mobile control terminal controls the laser therapy device via Bluetooth and begins treatment. After one treatment or a phase of treatment, the patient can have their body checked again through the instrument to evaluate the treatment effect. If treatment continues, the corresponding treatment plan will be matched again based on the test results, and this cycle continues until the disease symptoms are significantly relieved or completely cured.

[0049] The laser therapy device can treat patients according to corresponding acupoint treatment plans. Current laser therapy devices mainly consist of a main unit, a 1-to-1 external treatment beam, a 1-to-3 external treatment beam, a charging socket (multiple charging sockets can be combined to form a charging array chassis), wearable accessories, and a charging power supply. The main unit itself consists of a plastic casing, a PCB motherboard, a laser module, a button module, a display module, a power module, a Bluetooth module, and an output module. The key technical parameters and requirements of the laser therapy device we use are as follows:

[0050] A. Battery life: Based on the main unit (single wavelength lamp 650nm) + 1 to 3 single-point sticker (a total of 4 laser lamps) working simultaneously, 30 minutes / use, 1 use per day; it is required that a single charge can last for more than 10 days.

[0051] B. Display content on the main unit screen: wavelength, battery level, current treatment time, serial number, self-number, Bluetooth status.

[0052] Regarding mobile control terminals, these mainly include those for patients and those for medical staff, such as mobile phones or tablets, which can communicate with the laser therapy device via Bluetooth. For example, on the mobile tablet terminal software used by medical staff, a target patient is selected, a treatment plan for that patient is chosen, and the plan is sent to the laser therapy device. Simultaneously, the laser therapy device is started through the mobile tablet terminal software. During treatment, the mobile tablet terminal software can also receive and display status information from the therapy device, enabling flexible acupoint prescriptions according to the treatment plan and monitoring the treatment process. Another example is a WeChat mini-program for individual users. Users can receive system-recommended treatment plans through the mini-program, send them to the laser therapy device, start the device, and receive and display status information from the device, enabling flexible acupoint prescriptions according to the treatment plan and monitoring the treatment process.

[0053] The doctor's terminal is usually an office computer, which makes it convenient for doctors to issue and modify treatment prescriptions.

[0054] The management backend is the backend server. Its main functions include:

[0055] A. Provides management of individual users' treatment records, treatment equipment information, treatment plans, and user information;

[0056] B. Connect to third-party testing equipment via external interfaces or to equipment within medical institutions via standard interfaces, and receive the test results transmitted from them to provide intelligent and targeted recommendations for patient treatment plans;

[0057] C. Doctors can view the test results of individual users / patients, the intelligent treatment plans recommended by the system, and treatment records. They can also modify and save the treatment plans recommended by the system.

[0058] The pre-stored treatment plans in the management backend are mainly based on AI-generated acupuncture point selection schemes, as detailed below:

[0059] A. Database Establishment. Through data preprocessing steps such as collecting, cleaning, standardizing, and tagging text, images, videos, and knowledge graphs from past patient equipment test results and traditional Chinese medicine medical records, a structured and unstructured database containing clinical case data, classic TCM literature, and expert knowledge is constructed.

[0060] B. Training the AI ​​Model. Through steps such as data partitioning, feature extraction, model selection, training, and evaluation, an intelligent AI recommendation model is constructed using a combination of deep learning models, traditional machine learning models, and expert knowledge graphs. The trained multimodal fusion model is then integrated into the acupuncture point selection generation system, enabling automated and intelligent acupuncture point recommendation. Furthermore, based on the expert dataset collected and updated during use, the multimodal model is automatically updated at a certain frequency, making it increasingly accurate as the amount of data increases.

[0061] C. The system acquires the patient's test data, performs intelligent analysis through an AI model, and generates preliminary acupoint selection plans, treatment durations, and other personalized treatment plans for medical staff to assist in treatment. The plans can also be modified, confirmed, and saved.

[0062] The management backend includes a data backend and a cloud backend. The data backend primarily provides and stores data during the diagnosis and treatment process; while the cloud backend enables communication between the data backend and external devices. The system's management backend also has a third-party external interface for connecting with third-party diagnosis and treatment systems. This allows the user's mobile terminal software for the treatment device to be embedded into the user's mobile terminal software of the third-party system as a functional module, enabling the integration and empowerment of diagnosis and treatment services.

[0063] The above description is only a preferred embodiment of the present invention. It should be noted that those skilled in the art can make several modifications and improvements without departing from the structure of the present invention, and these will not affect the effectiveness of the implementation of the present invention or the practicality of the patent.

Claims

1. A treatment method integrating diagnosis and treatment, characterized in that, Set up multi-scenario diagnosis and treatment modes When the institutional treatment mode is selected, the patient's health test data is obtained through the medical institution's equipment, and a treatment plan is obtained based on the health test data. The treatment plan is then pushed to the medical institution's laser therapy device for treatment. When the home-based medical treatment mode is selected, the patient's health test data is obtained through the medical institution's equipment, and a treatment plan is obtained based on the health test data. The treatment plan is then pushed to the patient's mobile control device. When the patient needs treatment, the treatment plan in the mobile control device is sent to the patient's personal laser therapy device for treatment. When the offline treatment mode is selected, the patient's health test data is obtained through personal health data upload and doctor-patient Q&A mode, and a treatment plan is obtained based on the health test data and pushed to the patient's mobile control terminal; when the patient needs treatment, the patient's treatment plan in the mobile control terminal is sent to the individual laser therapy device to treat the patient.

2. The integrated diagnostic and therapeutic treatment method according to claim 1, characterized in that, Obtaining a patient's treatment plan based on the aforementioned health monitoring data specifically includes: The system compares and analyzes preset health data thresholds with health test data to determine whether the patient needs acupoint intervention treatment. If so, the health test data is sent to the health information database in the management backend, and other health information related to the patient is extracted from the health information database. The health test data and other health information are combined according to the set standard health information semantics to form the patient's health information statement. The system traverses the treatment plan information database in the management backend based on the health information statement to extract several target treatment plans that match the health information statement. The several target treatment plans are sent to the doctor's end to determine the patient's treatment plan.

3. A treatment method integrating diagnosis and treatment according to claim 1 or 2, characterized in that, In the institutional treatment mode, the patient's treatment plan is pushed to the mobile control terminal of the medical staff, and the mobile control terminal of the medical staff extracts the single treatment time in the patient's treatment plan; when the patient needs to be treated, the patient's treatment plan is sent to the laser therapy device through the mobile control terminal of the medical staff, and after the single treatment time ends, the mobile control terminal of the medical staff automatically generates a reminder message.

4. The integrated diagnostic and therapeutic treatment method according to claim 3, characterized in that, The reminder message includes a question asking whether to retain the patient's treatment plan. If yes is selected, the patient's treatment plan will be retained in the laser therapy device. If no is selected or the reminder message is not processed within a set time, the medical staff's mobile control terminal will generate a reset message and send it to the laser therapy device to delete the patient's treatment plan and restore it to the default working state.

5. The integrated diagnostic and therapeutic treatment method according to claim 1, characterized in that, In the offline diagnosis and treatment mode, the individual's health data is acquired through wearable electronic devices, home medical testing equipment, and third-party testing instruments.

6. The integrated diagnostic and therapeutic treatment method according to claim 5, characterized in that, In the offline diagnosis and treatment mode, the doctor-patient question-and-answer mode includes: The diagnostic dialogue between the doctor and the patient is realized through the diagnosis and treatment APP installed on the mobile control terminal and the doctor terminal. After the diagnostic dialogue ends, the doctor terminal summarizes the patient's answer information into the patient's one-time narrative information based on the diagnostic dialogue, and extracts the target health data from the one-time narrative information according to the examination items involved in the acupoint intervention treatment, and uses the target health data as health detection data.

7. The integrated diagnostic and therapeutic treatment method according to claim 6, characterized in that, The doctor-patient question-and-answer model also includes: Doctors input the health information of patients obtained from telephone conversations and chat software conversations into the doctor's terminal to form health monitoring data.

8. A system for implementing the therapeutic method of any one of claims 1-7, characterized in that, It includes a laser therapy device, a mobile control terminal, a doctor's terminal, and a management backend; the management backend is interconnected with the doctor's terminal, the doctor's terminal is wirelessly connected to the mobile control terminal, and the mobile control terminal is wirelessly connected to the laser therapy device.

9. The integrated diagnostic and therapeutic treatment system according to claim 8, characterized in that, The management backend has a third-party external interface.

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