Interactive medical information system and method

By designing an interactive medical information system, the problem of poor information interaction in the traditional medical treatment model is solved, efficient information interaction and data sharing between doctors and patients is achieved, and the efficiency and quality of medical services are improved.

CN120032919AInactive Publication Date: 2025-05-23DONGGUAN TRADITIONAL CHINESE MEDICINE HOSPITAL
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Patent Information

Application Number
CN202411876069.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-05-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the traditional medical treatment model, it is difficult for patients to provide key information in a timely manner during face-to-face communication, resulting in delays in diagnosis and untimely treatment, and lack of effective information integration and sharing mechanisms, which affects medical staff's comprehensive understanding of the patient's condition and the formulation of long-term treatment plans.

Method used

An interactive medical information system is designed, including an interactive room and system ontology. The interactive room is equipped with touch screen computers, slide rails, shielding curtains, LED lighting and seats. The system body includes user interaction units, data management units, data communication units and resource allocation units. Through these components, patients and medical staff can conduct diversified information interaction and data sharing.

Benefits of technology

The system improves the efficiency of information interaction between doctors and patients, reduces obstacles to information transmission, ensures timely transmission and sharing of medical data, improves the overall efficiency of medical services, shortens diagnosis and treatment time, and improves the medical experience of patients and the work efficiency of medical staff.

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Abstract

The invention discloses an interactive medical information system and method, and belongs to the technical field of medical information. Comprising a main body and a system body, the main body comprises an interaction chamber, a touch screen computer is installed on one side of the interior of the interaction chamber, a sliding rail is installed on one side of the upper end of the interaction chamber, a shielding curtain slidably sleeves the sliding rail, an LED illuminating lamp is installed at the top end of the interior of the interaction chamber, and a seat is installed on the other side of the interior of the interaction chamber; the system body is arranged in the touch screen computer, the system body comprises a user interaction unit, a data management unit, a data communication unit and a resource allocation unit, and the user interaction unit, the data management unit, the data communication unit and the resource allocation unit are in signal transmission connection; according to the invention, the practicability of the interactive medical information system can be effectively improved, and the practical value is high.
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Description

Technical Field

[0001] The present invention relates to the field of medical information technology, and in particular to an interactive medical information system and method. Background Art

[0002] In the modern medical system, effective communication between patients and doctors plays a vital role in accurate diagnosis and formulating appropriate treatment plans. However, the traditional medical model has many drawbacks in this key link. When patients go to the hospital for treatment, they need to inform the doctor of their condition in detail within a limited time. In face-to-face communication scenarios, patients may not be able to provide key information in time due to nervousness, limited expression ability or temporary forgetfulness. In the absence of complete information, doctors may need to arrange more examination items to find out the cause of the disease, which not only increases the financial burden on patients, but also prolongs the diagnosis time and delays the best treatment time. In addition, there is a lack of effective information integration and sharing mechanism in the communication model. When patients visit different departments, they need to repeat their condition, which not only wastes patients' time and energy, but also makes it difficult for doctors to fully understand the patient's medical history and the development of the disease, which is not conducive to formulating long-term and continuous treatment plans. Summary of the invention

[0003] The object of the present invention is to provide an interactive medical information system and method to solve the problems raised in the above background technology.

[0004] By adopting the above technical solution, information exchange between doctors and patients is facilitated and treatment efficiency is improved.

[0005] In view of the above problems, the technical solution proposed by the present invention is: An interactive medical information system includes a main body and a system body, wherein the main body includes an interaction room, a touch screen computer is installed on one side of the interior of the interaction room, a slide rail is installed on one side of the upper end of the interaction room, and a shielding curtain is slidably sleeved on the slide rail, an LED lighting lamp is installed on the top of the interior of the interaction room, and a seat is installed on the other side of the interior of the interaction room. The system body is arranged inside the touch screen computer, and the system body includes a user interaction unit, a data management unit, a data communication unit and a resource allocation unit, and the user interaction unit, the data management unit, the data communication unit and the resource allocation unit are connected for signal transmission.

[0006] The interactive room is equipped with sliding rails and sliding curtains. When patients use touch-screen computers to perform medical operations, such as entering personal health information and communicating with doctors about their condition, they can draw the curtains to create a relatively private space, effectively protecting patient privacy and allowing patients to participate in the medical interaction process with greater peace of mind. The interactive room is equipped with seats and LED lighting, providing patients with comfortable seating conditions and a good lighting environment, making it convenient for patients to operate touch-screen computers. Whether it is checking medical information, making appointments or communicating with medical staff, it can be done in a comfortable state, improving the overall medical experience. The user interaction unit in the system body makes Patients and medical service providers can achieve diversified information exchange through touch-screen computers, reducing the obstacles to information transmission, allowing patients and medical staff to communicate about their conditions and develop treatment plans more efficiently. The signal transmission connection between the user interaction unit, data management unit, and data communication unit ensures that medical data can be transmitted and shared in real time at all stages. The health data and appointment registration information input by the patient can be transmitted and stored in a timely manner. The medical records written by medical staff and the allocation of medical resources can also be quickly fed back to patients or other relevant medical personnel, greatly improving the timeliness and accuracy of medical information interaction, and helping to improve the overall efficiency of medical services.

[0007] As a preferred technical solution of the present invention, the user interaction unit includes a user interface module, an appointment registration module, a health data collection module, a doctor-patient communication platform module, an electronic medical record writing and editing module and a medical team collaboration platform module.

[0008] Among them, the user interface module provides an intuitive and friendly operating interface for patients and medical service providers, making them easy to use. In the appointment registration module, patients can choose the appropriate department, doctor and consultation time according to their own needs, and complete the appointment registration operation online. The health data collection module allows patients to manually input daily health data such as body temperature, blood pressure, and blood sugar, and can automatically collect relevant data by connecting to smart wearable devices. This allows medical staff to obtain more comprehensive, continuous and real-time patient health information, which helps to more accurately grasp the trend of patients' condition changes, discover potential health problems in advance, and provide treatment for diseases. It provides sufficient and accurate data basis for diagnosis, adjustment of treatment plan and health management, improves the scientificity and effectiveness of diagnosis and treatment, and provides a doctor-patient communication platform module. Patients can consult doctors about their condition and provide feedback on treatment effects in various forms such as text, voice, pictures or videos at any time. Doctors can also reply in time and give professional guidance. The electronic medical record writing and editing module provides medical staff with standardized text editing tools and a rich medical terminology library to ensure the standardization, accuracy and professionalism of medical record writing. The medical team collaboration platform module provides a convenient communication and discussion platform for medical staff from different departments for difficult and complicated cases.

[0009] As a preferred technical solution of the present invention, the user interface module is connected to the display of the touch-screen computer by signal transmission, and the appointment registration module includes a front-end appointment interface and a back-end appointment processing program.

[0010] Among them, through the signal transmission connection with the touch-screen computer monitor, the user interface module can accurately and clearly present various medical information on the screen in a visual way. The front-end appointment interface provides patients with simple and clear operation instructions, enabling them to easily complete various operations of appointment registration. The back-end appointment processing program undertakes the key task of data interaction and processing with the hospital's internal information system.

[0011] As a preferred technical solution of the present invention, the health data collection module includes a data input interface, a Bluetooth module and a data format conversion program, and the doctor-patient communication platform module includes a message sending and receiving program, a message storage database, and a multimedia processing component.

[0012] Among them, the data input interface provides patients with a convenient way to manually input health data, making it convenient for them to enter daily measurements such as body temperature, blood pressure, and blood sugar data into the system in a timely manner. The Bluetooth module can be connected to smart wearable devices with the help of Bluetooth technology to realize automatic collection and transmission of health data. The data format conversion program can uniformly convert data obtained through different channels into a format that the system can recognize, store and analyze easily. The message sending and receiving program breaks the time and space limitations of communication in traditional medical treatment. Patients can send consulting information to doctors through touch-screen computers anytime and anywhere, and doctors can receive and reply in time. The multimedia processing component supports the transmission of information in multiple forms such as text, voice, pictures, and videos, enriching the dimension of communication. The message storage database will completely record the communication history between doctors and patients, making it convenient for both parties to review past communication content at any time.

[0013] As a preferred technical solution of the present invention, the electronic medical record writing and editing module includes text editing software, a medical terminology library and an electronic signature component, and the medical team collaboration platform module includes a case discussion interface, a permission management component and a file sharing component.

[0014] Among them, the text editing software provides medical staff with convenient and fully functional writing tools, enabling them to clearly and systematically record the patient's condition changes, examination results, diagnosis opinions and key information of treatment plans. The medical terminology library provides a rich and standard medical professional vocabulary, from which medical staff can accurately select appropriate terms to describe symptoms, diagnosis and treatment when writing medical records. The electronic signature component gives the medical records legal validity and authenticity guarantees. The case discussion interface provides medical staff from different departments with a virtual space for communication and discussion on difficult and complex cases. The authority management component ensures that only medical staff related to the case and with corresponding professional qualifications can participate in the discussion and view the patient's detailed information by reasonably setting the access rights of personnel at different levels and departments. The file sharing component allows medical staff participating in the discussion to easily share various medical documents such as patients' medical records, examination images, and test reports, breaking the information barriers between departments.

[0015] As a preferred technical solution of the present invention, the data management unit includes a data storage module, a data processing module and a data analysis and mining module.

[0016] As a preferred technical solution of the present invention, the data storage module includes a solid state drive array and database management system software, the data processing module is a central processing unit, and the data analysis and mining module includes data analysis software, data mining algorithms and visualization tools.

[0017] Among them, the solid-state drive array has high-speed reading and writing performance and large storage capacity, and can quickly store massive amounts of medical data, such as patients' basic information, detailed medical records, and various examination and test results. The database management system software classifies, indexes, and organizes the stored data through a scientific and reasonable architecture and management mechanism, making it clear, easy to find and call. The central processing unit can quickly respond to a large number of data requests from various terminals and perform complex calculations and logical processing. The data analysis software and data mining algorithms can deeply mine and analyze massive amounts of medical data through the use of professional data analysis software and various data mining algorithms to discover valuable information hidden behind the data. The visualization tools present complex data and analysis results in the form of intuitive and easy-to-understand charts and graphs, making it convenient for medical staff, hospital managers, and scientific researchers to quickly understand and grasp key information.

[0018] As a preferred technical solution of the present invention, the data communication unit includes a data transmission module, and the resource allocation unit includes a medical resource allocation module.

[0019] As a preferred technical solution of the present invention, the data transmission module includes an Ethernet network card and a Wi-Fi module, and the medical resource allocation module includes a resource management database, an allocation algorithm program and a notification component.

[0020] Among them, the Ethernet network card provides a high-speed, stable and reliable wired network connection method, and the Wi-Fi module gives the system the convenience of wireless connection, allowing mobile terminal devices to easily access the medical information system. In the mobile scenes of ward rounds and medical visits, medical staff can still obtain the latest information of patients in real time, receive notifications pushed by the system, and can also enter the disease information observed on site into the system in a timely manner without being bound by network cables.

[0021] In another aspect, the present invention provides a method for an interactive medical information system, comprising the following steps: Step 1: Patient information interaction: After entering the interactive room, the patient can sit down in the chair and operate the touch-screen computer. Through the user interface module, the patient can register and log in to enter the system. If he wants to make an appointment, he can use the front-end appointment interface of the appointment registration module to select the appropriate department, doctor and consultation time. After submitting the appointment request, the back-end appointment processing program will transmit the information to the data communication unit, which will interact with the hospital system through the data communication unit to complete the appointment and feedback the results to the patient. The patient uses the health data collection module to manually input body temperature and blood pressure health data through the data input interface, or connect to the smart wearable device with the help of the Bluetooth module to automatically collect health data. The collected data is processed by the data format conversion program and then transmitted to the data management unit for storage through the data communication unit. In the doctor-patient communication platform module, the patient sends text, voice, picture or video information to the doctor through the message sending and receiving program. The message storage database records the communication history, and the doctor receives and replies to the patient's information; Step 2: Medical service provision: When receiving patient consultation or during the diagnosis and treatment process, the doctor uses the electronic medical record writing and editing module to record the patient's condition changes, examination results, diagnosis opinions and treatment plan information through text editing software. The medical terminology library assists in accurate wording. After completing the writing, the electronic signature component is used to confirm the authenticity of the medical record. The medical record information is transmitted to the data management unit for storage through the data communication unit; Step 3: Medical collaboration: For difficult cases, initiate case discussions in the medical team collaboration platform module, describe the case situation through the case discussion interface and invite experts from relevant departments to jointly develop a treatment plan. After the plan is determined, the relevant information is transmitted to the data management unit through the data communication unit for storage and can be obtained by the executing department; Step 4: Resource allocation: Use the medical resource allocation module in the resource allocation unit to query the resource status through the resource management database. The allocation algorithm program allocates resources according to resource conditions and patient needs. The allocation results are notified to the doctor through the notification component. Information exchange during the allocation process is completed through the data communication unit.

[0022] Compared with the prior art, the beneficial effects of the present invention are as follows: the interactive medical information system and method, the interactive room creates a comfortable and privacy-oriented environment for patients, the touch-screen computer is easy to operate, the shielding curtain can ensure privacy, the LED lighting and seats improve comfort, and patients can perform medical interactive operations with peace of mind. The user interface module is well connected with the touch-screen computer display, so that the information presentation is intuitive and clear, the operation is convenient and smooth, and the threshold for patients to use is lowered. The appointment registration module can easily select the medical time, department and doctor through the front-end appointment interface, and the back-end processing program accurately allocates resources, saving time and making the hospital registration process more orderly. In the health data collection module, the data input interface is convenient for patients to manually enter body temperature and blood pressure data, the Bluetooth module can be connected to smart wearable devices for automatic collection, and the data format conversion program ensures unified integration of data, providing rich basis for medical staff to fully grasp the changes in patients' conditions. The doctor-patient communication platform module uses message sending and receiving programs and multimedia processing components to enable patients to communicate with doctors about their conditions in various forms at any time, and doctors can reply and guide in time. The message storage database can also trace communication records, improve communication efficiency and quality, and enhance doctor-patient trust. The text editing software and medical terminology library of the sub-medical record writing and editing module ensure that the medical record is standardized and professional. The electronic signature component confirms the authenticity and legal effect of the medical record, which facilitates medical staff to record and share medical records in real time, and improves the continuity and efficiency of medical work. The case discussion interface, permission management component and file sharing component of the medical team collaboration platform module provide a convenient communication space for medical staff in different departments. Permission management ensures information security. File sharing helps interdisciplinary collaborative decision-making, overcomes difficult diseases, promotes knowledge exchange and team capacity improvement. The solid-state drive array and database management system software cooperate to achieve safe and high-speed storage and effective management of medical data. The data processing module efficiently calculates and processes and coordinates the operation of various modules. The data analysis and mining module uses software, algorithms and visualization tools to deeply mine the value of data, providing strong support for medical research and management. The Ethernet network card and Wi-Fi module of the data communication unit provide stable and flexible network connections to meet the data transmission requirements of different scenarios. The resource management database, allocation algorithm program and notification component of the resource allocation unit optimize resource allocation, improve information communication and service response speed, and improve medical service quality and patient satisfaction. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 Schematic diagram of the three-dimensional structure of the interactive medical information system disclosed in the embodiment of the present invention Figure 1; Figure 2 Schematic diagram of the three-dimensional structure of the interactive medical information system disclosed in the embodiment of the present invention Figure 2 ; Figure 3 A system body block diagram of an interactive medical information system disclosed in an embodiment of the present invention; Figure 4 A block diagram of a user interaction unit of an interactive medical information system disclosed in an embodiment of the present invention; Figure 5 A block diagram of a data management unit of an interactive medical information system disclosed in an embodiment of the present invention; Figure 6 A method block diagram of an interactive medical information system disclosed in an embodiment of the present invention.

[0024] In the figure: 100, main body; 1001, interaction room; 1002, slide rail; 1003, shielding curtain; 1004, touch screen computer; 1005, seat; 1006, LED lighting; 200, system body; 2001, user interaction unit; 2002, data management unit; 2003, data communication unit; 2004, resource allocation unit. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0026] See also Figure 1 - Figure 5 The present invention provides a technical solution: an interactive medical information system, including a main body 100 and a system body 200, the main body 100 includes an interaction room 1001, a touch screen computer 1004 is installed on one side of the interior of the interaction room 1001, a slide rail 1002 is installed on one side of the upper end of the interaction room 1001, and a shielding curtain 1003 is slidably sleeved on the slide rail 1002, an LED lighting lamp 1006 is installed on the top of the interior of the interaction room 1001, and a seat 1005 is installed on the other side of the interior of the interaction room 1001, the system body 200 is arranged inside the touch screen computer 1004, the system body 200 includes a user interaction unit 2001, a data management unit 2002, a data communication unit 2003 and a resource allocation unit 2004, and signal transmission is connected among the user interaction unit 2001, the data management unit 2002, the data communication unit 2003 and the resource allocation unit 2004.

[0027] According to the embodiment of the present invention, the user interaction unit 2001 further includes a user interface module, an appointment registration module, a health data collection module, a doctor-patient communication platform module, an electronic medical record writing and editing module and a medical team collaboration platform module.

[0028] In the embodiment of the present invention, further, the user interface module is connected to the display of the touch screen computer 1004 by signal transmission, and the appointment registration module includes a front-end appointment interface and a back-end appointment processing program.

[0029] Among them, the front-end reservation interface can be implemented through HTML web page technology or mobile application development framework, and the back-end reservation processing program runs on the server and is written in Java.

[0030] In the embodiment of the present invention, further, the health data collection module includes a data input interface, a Bluetooth module and a data format conversion program, and the doctor-patient communication platform module includes a message sending and receiving program, a message storage database, and a multimedia processing component.

[0031] Among them, the multimedia processing component is used to process voice, picture and video messages.

[0032] According to the embodiment of the present invention, further, the electronic medical record writing and editing module includes text editing software, a medical terminology library and an electronic signature component, and the medical team collaboration platform module includes a case discussion interface, a permission management component and a file sharing component.

[0033] According to the embodiment of the present invention, further, the data management unit 2002 includes a data storage module, a data processing module and a data analysis and mining module.

[0034] In the embodiment of the present invention, further, the data storage module includes a solid state drive array and a database management system software, the data processing module is a central processing unit, and the data analysis and mining module includes data analysis software, data mining algorithms and visualization tools.

[0035] Among them, the data analysis software is the pandas library, the data mining algorithm is the association rule mining algorithm, and the visualization tool is Tableau.

[0036] According to the embodiment of the present invention, further, the data communication unit 2003 includes a data transmission module, and the resource allocation unit 2004 includes a medical resource allocation module.

[0037] In the embodiment of the present invention, further, the data transmission module includes an Ethernet network card and a Wi-Fi module, and the medical resource allocation module includes a resource management database, an allocation algorithm program and a notification component.

[0038] Among them, the resource management database stores the hospital's examination equipment, inpatient beds, and operating room resource information. The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0039] See also Figure 1 - Figure 6 The embodiment of the present invention further provides a method of an interactive medical information system, comprising the following steps: S1, step one, patient information interaction: after entering the interaction room 1001, the patient can sit in the chair 1005 and operate the touch screen computer 1004. Through the user interface module, the patient can register and log in to enter the system. If an appointment is to be made, the front-end appointment interface of the appointment registration module is used to select the appropriate department, doctor and consultation time. After submitting the appointment request, the back-end appointment processing program will transmit the information to the data communication unit 2003. The data communication unit 2003 interacts with the hospital system to complete the appointment and feedback the result to the patient. The patient uses the health data collection module to manually input the temperature and blood pressure health data through the data input interface, or connects to the smart wearable device with the help of the Bluetooth module to automatically collect health data. The collected data is processed by the data format conversion program and then transmitted to the data management unit 2002 for storage through the data communication unit 2003. In the doctor-patient communication platform module, the patient sends text, voice, picture or video information to the doctor through the message sending and receiving program. The message storage database records the communication history, and the doctor receives and replies to the patient's information; Step 2: Medical service provision: When receiving a patient's consultation or during the diagnosis and treatment process, the doctor uses the electronic medical record writing and editing module to record the patient's condition changes, examination results, diagnosis opinions and treatment plan information through text editing software. The medical terminology library assists in accurate wording. After completing the writing, the electronic signature component is used to confirm the authenticity of the medical record. The medical record information is transmitted to the data management unit 2002 for storage via the data communication unit 2003; Step 3: Medical collaboration: For difficult cases, initiate case discussions in the medical team collaboration platform module, describe the case situation through the case discussion interface and invite experts from relevant departments to jointly develop a treatment plan. After the plan is determined, the relevant information is transmitted to the data management unit 2002 through the data communication unit 2003 for storage and can be obtained by the executing department; Step 4: Resource allocation: Use the medical resource allocation module in the resource allocation unit 2004 to query the resource status through the resource management database. The allocation algorithm program allocates resources according to the resource situation and patient needs. The allocation results are notified to the doctor through the notification component. The information exchange during the allocation process is completed through the data communication unit 2003.

Claims

1. An interactive medical information system, characterized in that The invention comprises a main body (100) and a system body (200), wherein the main body (100) comprises an interaction room (1001), a touch screen computer (1004) is installed on one side of the interior of the interaction room (1001), a slide rail (1002) is installed on one side of the upper end of the interaction room (1001), and a shielding curtain (1003) is slidably sleeved on the slide rail (1002), an LED lighting lamp (1006) is installed on the top of the interior of the interaction room (1001), and the interior of the interaction room (1001) is A seat (1005) is installed on the other side of the touch screen computer (1004); the system body (200) is arranged inside the touch screen computer (1004); the system body (200) comprises a user interaction unit (2001), a data management unit (2002), a data communication unit (2003) and a resource allocation unit (2004); and signal transmission is connected between the user interaction unit (2001), the data management unit (2002), the data communication unit (2003) and the resource allocation unit (2004).

2. The interactive medical information system according to claim 1, characterized in that: The user interaction unit (2001) comprises a user interface module, an appointment registration module, a health data collection module, a doctor-patient communication platform module, an electronic medical record writing and editing module and a medical team collaboration platform module.

3. The interactive medical information system according to claim 2, characterized in that: The user interface module is connected to the display of the touch screen computer (1004) via signal transmission, and the appointment registration module comprises a front-end appointment interface and a back-end appointment processing program.

4. The interactive medical information system according to claim 3, characterized in that: The health data collection module includes a data input interface, a Bluetooth module and a data format conversion program, and the doctor-patient communication platform module includes a message sending and receiving program, a message storage database, and a multimedia processing component.

5. The interactive medical information system according to claim 4, characterized in that: The electronic medical record writing and editing module includes text editing software, a medical terminology library and an electronic signature component, and the medical team collaboration platform module includes a case discussion interface, a permission management component and a file sharing component.

6. The interactive medical information system according to claim 1, characterized in that: The data management unit (2002) comprises a data storage module, a data processing module and a data analysis and mining module.

7. The interactive medical information system according to claim 6, characterized in that: The data storage module includes a solid state drive array and database management system software, the data processing module is a central processing unit, and the data analysis and mining module includes data analysis software, data mining algorithms and visualization tools.

8. The interactive medical information system according to claim 1, characterized in that: The data communication unit (2003) includes a data transmission module, and the resource allocation unit (2004) includes a medical resource allocation module.

9. The interactive medical information system according to claim 8, characterized in that: The data transmission module includes an Ethernet network card and a Wi-Fi module, and the medical resource allocation module includes a resource management database, an allocation algorithm program and a notification component.

10. A method of an interactive medical information system, characterized in that As applied to the interactive medical information system of claims 1-9, comprising the following steps: Step 1: Patient information interaction: After entering the interaction room (1001), the patient can sit in the chair (1005) and operate the touch screen computer (1004). Through the user interface module, the patient can register and log in to enter the system. If an appointment is to be made, the patient can use the front-end appointment interface of the appointment registration module to select the appropriate department, doctor and consultation time. After submitting the appointment request, the back-end appointment processing program will transmit the information to the data communication unit (2003). The data communication unit (2003) interacts with the hospital system to complete the appointment and feedback the result to the patient. The patient uses the health data collection module to manually input body temperature and blood pressure health data through the data input interface, or connects to the smart wearable device with the help of the Bluetooth module to automatically collect health data. The collected data is processed by the data format conversion program and then transmitted to the data management unit (2002) for storage through the data communication unit (2003). In the doctor-patient communication platform module, the patient sends text, voice, picture or video information to the doctor through the message sending and receiving program. The message storage database records the communication history, and the doctor receives and replies to the patient's information; Step 2: Provision of medical services: When receiving consultation from a patient or during the diagnosis and treatment process, the doctor uses the electronic medical record writing and editing module to record the patient's condition changes, examination results, diagnosis opinions and treatment plan information through text editing software, and the medical terminology library assists in accurate wording. After completing the writing, the electronic signature component is used to confirm the authenticity of the medical record. The medical record information is transmitted to the data management unit (2002) for storage via the data communication unit (2003); Step 3: Medical collaboration: For difficult cases, initiate case discussions in the medical team collaboration platform module, describe the case situation through the case discussion interface and invite experts from relevant departments to jointly develop a treatment plan. After the plan is determined, the relevant information is transmitted to the data management unit (2002) through the data communication unit (2003) for storage and can be obtained by the executing department; Step 4: Resource allocation: Use the medical resource allocation module in the resource allocation unit (2004) to query the resource status through the resource management database. The allocation algorithm program allocates resources according to the resource situation and patient needs. The allocation results are notified to the doctor through the notification component. The information exchange during the allocation process is completed through the data communication unit (2003).