Intelligent treatment process system and method, and storage medium

Through the intelligent medical treatment process system, using technologies such as mini programs and 3D real-life path navigation, the problems of complex medical treatment processes and waste of resources are solved, and a more efficient and convenient medical treatment experience and resource optimization are achieved.

CN120108664AInactive Publication Date: 2025-06-06西安市人民医院(西安市第四医院)

Patent Information

Application Number
CN202510161111.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The traditional medical treatment process has problems such as long wait times for patients, complex processes, unclear routes, and chaotic order of examination items, resulting in poor patient experience and waste of medical resources.

Method used

An intelligent medical treatment process system is adopted, including preprocessing module, 3D real-life path navigation module, health information display module, diagnosis and treatment path optimization module, examination feedback module and follow-up reminder module, and check-in, queue management, path navigation, health information display and diagnosis and treatment path optimization are realized through mini programs.

Benefits of technology

The medical treatment process has been simplified, the waiting time of patients has been reduced, the medical treatment efficiency has been improved, the use of medical resources has been optimized, and the patient experience and health awareness has been improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent treatment process system and method and a storage medium. The intelligent treatment process system comprises a preprocessing module, a 3D live-action path navigation module, a summarized health information display module, a treatment path optimization module, an examination feedback module and a revival reminding module. By adopting the technical scheme of the invention, the treatment path is optimized, the patient is guided to efficiently complete treatment, and the awareness and the treatment experience of the patient are improved through health information display.
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Description

Technical Field

[0001] The present invention belongs to the field of medical service technology, and in particular relates to an intelligent medical consultation process system and method, and a storage medium. Background Art

[0002] As the demand for medical services continues to increase, the number of outpatients in hospitals has surged. The traditional medical process often has many problems, including long waiting times for patients, complicated medical processes, unclear routes, and chaotic order of examination items. This not only leads to a poor patient experience, but also easily causes waste of medical resources and management chaos.

[0003] In recent years, with the development of the Internet of Things, artificial intelligence and mobile Internet technologies, smart healthcare has gradually become a development trend in the medical field. Mini programs, navigation technology and big data analysis technologies have been used in medical services to a certain extent, but there is currently no systematic solution that combines 3D real-life navigation and medical process optimization to improve patients' medical experience and improve medical efficiency. Summary of the invention

[0004] The technical problem to be solved by the present invention is to provide an intelligent medical treatment process system and method, and a storage medium, aiming to optimize the patient's medical treatment experience, reduce the patient's waiting time, improve the efficiency of medical treatment, and help hospitals rationally allocate medical resources.

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

[0006] An intelligent medical consultation process system, comprising:

[0007] The pre-processing module is used to manage the check-in and consultation order of patients after registration and generate patient queuing information;

[0008] 3D real-life path navigation module, which is used to provide real-time medical path navigation based on the patient's current location and guide the patient to the corresponding consulting room or examination room;

[0009] The summary health information display module is used to display the current number of patients, examination precautions, the significance and purpose of the examination, and health science information about related diseases on the screen while patients are waiting for treatment;

[0010] The diagnosis and treatment path optimization module is used to automatically generate the optimal path planning for patients to handle matters according to the diagnosis results after the doctor completes the consultation, including the examination sequence and the corresponding 3D navigation route;

[0011] The examination feedback module is used to feed back the examination completion status to the pretreatment module after the patient completes the examination, and guide the patient to return to the consulting room to view the diagnosis and treatment results;

[0012] The follow-up reminder module is used to provide patients with personalized follow-up time, precautions and health management suggestions after the medical treatment process is completed.

[0013] Preferably, the preprocessing module comprises:

[0014] The code scanning unit is used for patients to start the mini program by scanning the QR code provided by the hospital;

[0015] The queue management unit is used to dynamically allocate the order of consultation and update the patient's queue status in real time.

[0016] Preferably, the 3D real-scene path navigation module includes:

[0017] A position acquisition unit, used to determine the real-time position of the patient through positioning technology;

[0018] A path generation unit is used to dynamically generate the optimal path based on diagnosis and treatment needs and the patient's real-time location;

[0019] The navigation display unit is used to display the path in 3D real-life form to guide the patient to the target location.

[0020] Preferably, the health information display module includes:

[0021] The patient number display unit is used to display the current number of patients waiting and the order of seeing the patient in real time;

[0022] Precautions reminder unit, used to display the precautions, purpose and significance of the inspection;

[0023] The health science unit is used to broadcast health science knowledge related to the patient's disease, including disease prevention, control and treatment knowledge.

[0024] Preferably, the diagnosis and treatment pathway optimization module includes:

[0025] A diagnostic result analysis unit, used to generate follow-up examination items that the patient needs to undergo based on the doctor's consultation results;

[0026] Path optimization unit, used to optimize the sequence of examination items for patients and generate the best examination processing path;

[0027] The examination navigation unit works in conjunction with the 3D real-scene path navigation module to guide patients to the examination room or consulting room.

[0028] Preferably, the inspection feedback module comprises:

[0029] An examination status recording unit is used to record the status of the patient's completed examination;

[0030] The result feedback unit is used to synchronize the examination results to the doctor's side for the doctor to make diagnosis and treatment decisions.

[0031] Preferably, the follow-up visit reminder module includes:

[0032] A time reminder unit is used to generate the patient's next follow-up visit time according to the doctor's advice;

[0033] Precautions reminder unit, used to show patients what they need to pay attention to before their follow-up visit;

[0034] The health advice unit is used to provide patients with personalized health management advice.

[0035] As a preference, it also includes:

[0036] Data storage module, used to store patients' diagnosis and treatment data, medical history and health management records;

[0037] The data analysis module is used to analyze patients' historical data and generate treatment optimization suggestions and health management plans.

[0038] The present invention also provides an intelligent medical consultation process method, comprising:

[0039] Step S1: manage the check-in and consultation order of patients after registration, and generate patient queuing information;

[0040] Step S2: Provide real-time medical treatment route navigation according to the patient's current location, and guide the patient to the corresponding consulting room or examination room;

[0041] Step S3: When patients are waiting for their appointments, the number of patients currently attending the examination, examination precautions, the significance and purpose of the examination, and health science information on related diseases are displayed on the screen;

[0042] Step S4: After the doctor completes the consultation, the optimal path planning for the patient's affairs is automatically generated according to the diagnosis results, including the examination sequence and the corresponding 3D navigation route;

[0043] Step S5: After the patient completes the examination, the examination completion status is fed back to the pre-processing module, and the patient is guided back to the consulting room to view the diagnosis and treatment results;

[0044] Step S6: After the consultation process is completed, provide the patient with personalized follow-up time, precautions and health management suggestions.

[0045] The present invention also provides a storage medium, on which a computer program is stored, and the computer program executes the intelligent medical consultation process method when running.

[0046] Compared with the prior art, the present invention has the following beneficial effects:

[0047] 1. Simplify the medical treatment process: Use mini programs to realize patient check-in, queue management and treatment path planning, reducing patients' waiting time.

[0048] 2. Intuitive path navigation: 3D real-life path navigation technology is used to provide patients with intuitive and clear path guidance, solving the problem of patients being unable to find the consulting room or examination room.

[0049] 3. Health information display: Provide health knowledge and examination purpose display during the waiting period to improve patients' health awareness and cooperation.

[0050] 4. Intelligent path optimization: Based on the doctor's diagnosis results, the system automatically generates the optimal examination path to improve the efficiency of medical resource utilization.

[0051] 5. Personalized follow-up reminders: Provide follow-up time and precautions to improve patients' subsequent health management capabilities.

[0052] 6. Strong system compatibility: This system can be connected with the hospital's existing HIS system to achieve data synchronization and management. BRIEF DESCRIPTION OF THE DRAWINGS

[0053] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying creative work.

[0054] Figure 1 This is a schematic diagram of the structure of the intelligent medical consultation process system according to an embodiment of the present invention;

[0055] Figure 2 This is the workflow diagram of the intelligent medical treatment process system. DETAILED DESCRIPTION

[0056] 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.

[0057] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0058] Embodiment 1:

[0059] like Figure 1 ,2 As shown, an embodiment of the present invention provides an intelligent medical consultation process system, including:

[0060] The pre-processing module is used to manage the check-in and consultation order of patients after registration and generate patient queuing information;

[0061] 3D real-life path navigation module, which is used to provide real-time medical path navigation based on the patient's current location and guide the patient to the corresponding consulting room or examination room;

[0062] The summary health information display module is used to display the current number of patients, examination precautions, the significance and purpose of the examination, and health science information about related diseases on the screen while patients are waiting for treatment;

[0063] The diagnosis and treatment path optimization module is used to automatically generate the optimal path planning for patients to handle matters according to the diagnosis results after the doctor completes the consultation, including the examination sequence and the corresponding 3D navigation route;

[0064] The examination feedback module is used to feed back the examination completion status to the pretreatment module after the patient completes the examination, and guide the patient to return to the consulting room to view the diagnosis and treatment results;

[0065] The follow-up reminder module is used to provide patients with personalized follow-up time, precautions and health management suggestions after the medical treatment process is completed.

[0066] As an implementation mode of the present invention, the preprocessing module includes:

[0067] The code scanning unit is used for patients to start the mini program by scanning the QR code provided by the hospital;

[0068] The queue management unit is used to dynamically allocate the order of consultation and update the patient's queue status in real time.

[0069] As an implementation mode of the present invention, the 3D real scene path navigation module includes:

[0070] A position acquisition unit, used to determine the real-time position of the patient through positioning technology;

[0071] A path generation unit is used to dynamically generate the optimal path based on diagnosis and treatment needs and the patient's real-time location;

[0072] The navigation display unit is used to display the path in 3D real-life form to guide the patient to the target location.

[0073] As an implementation mode of the present invention, the health information display module includes:

[0074] The patient number display unit is used to display the current number of patients waiting and the order of seeing the patient in real time;

[0075] Precautions reminder unit, used to display the precautions, purpose and significance of the inspection;

[0076] The health science unit is used to broadcast health science knowledge related to the patient's disease, including disease prevention, control and treatment knowledge.

[0077] As an implementation mode of the present invention, the diagnosis and treatment pathway optimization module includes:

[0078] A diagnostic result analysis unit, used to generate follow-up examination items that the patient needs to undergo based on the doctor's consultation results;

[0079] Path optimization unit, used to optimize the sequence of examination items for patients and generate the best examination processing path;

[0080] The examination navigation unit works in conjunction with the 3D real-scene path navigation module to guide patients to the examination room or consulting room.

[0081] As an implementation mode of the present invention, the inspection feedback module includes:

[0082] An examination status recording unit is used to record the status of the patient's completed examination;

[0083] The result feedback unit is used to synchronize the examination results to the doctor's side for the doctor to make diagnosis and treatment decisions.

[0084] Preferably, the follow-up visit reminder module includes:

[0085] A time reminder unit is used to generate the patient's next follow-up visit time according to the doctor's advice;

[0086] Precautions reminder unit, used to show patients what they need to pay attention to before their follow-up visit;

[0087] The health advice unit is used to provide patients with personalized health management advice.

[0088] As an implementation mode of the present invention, it also includes:

[0089] Data storage module, used to store patients' diagnosis and treatment data, medical history and health management records;

[0090] Data analysis module, used to analyze patient historical data and generate treatment optimization suggestions and health management plans

[0091] The workflow of the intelligent medical consultation process system according to the embodiment of the present invention is as follows:

[0092] 1. Start the mini program and sign in. After the patient registers, scan the QR code to enter the mini program. The system will manage the queue and display the order of treatment.

[0093] 2. 3D real-scene path navigation. The mini program provides 3D real-scene path navigation to guide patients to the consulting room or examination room in real time.

[0094] 3. Display of waiting health information. While the patient is waiting, the system displays the following content on the screen: the current number of patients; precautions and purpose of the examination; scientific knowledge of related diseases

[0095] 4. Optimization of diagnosis and treatment path. After the doctor's consultation, the system generates the optimal path for the patient to handle matters based on the diagnosis results, including the order and route of examinations.

[0096] 5. Examination guidance and result feedback: the system guides the patient to complete the examination through 3D path navigation, and the patient returns to the clinic to view the results after the examination.

[0097] 6. Follow-up reminder and summary: the system reminds patients of the next follow-up time and precautions, and provides personalized health management services.

[0098] The present invention can provide real-time 3D real-scene path navigation, improve the efficiency of medical treatment, and reduce the time patients get lost and wait. It can display health knowledge and examination precautions while waiting for the doctor to improve the patient's knowledge and health awareness. It can automatically generate the optimal medical treatment path, optimize the process, and improve the patient experience. It can also provide follow-up reminders to facilitate patients to manage their health.

[0099] Embodiment 2:

[0100] like Figure 1 , 2 As shown, an embodiment of the present invention also provides an intelligent medical treatment process system including: a preprocessing module, a 3D real-scene path navigation module, a health information summary display module, a diagnosis and treatment path optimization module, an examination feedback module, a follow-up reminder module, and a data storage and analysis module.

[0101] As an implementation of an embodiment of the present invention, the pre-processing module is used to perform the following process after the patient enters the hospital:

[0102] Scan the QR code to enter the system

[0103] Patients use smart mobile devices to scan the QR code provided by the hospital, enter the mini-program-based medical system, and automatically start the medical process.

[0104] Sign in and queue

[0105] After the patient completes identity verification and signs in, the system automatically generates queuing information, including the current queue order and estimated consultation time.

[0106] Backend function: The system synchronizes the patient's registration information, current queue status, clinic status and other data in real time through the hospital HIS system interface to achieve dynamic update of information.

[0107] Front-end display: Patients can view their queue position, number of people waiting ahead, and estimated consultation time in real time in the mini program

[0108] As an implementation method of the embodiment of the present invention, the real-view path navigation module performs the following process:

[0109] Positioning and Navigation

[0110] The system obtains the patient's current location information and generates the best navigation path based on the hospital's internal 3D real-life map to guide the patient to the corresponding consulting room or examination room.

[0111] Technical support: Obtain the patient's current location through GPS positioning, Bluetooth beacon positioning or Wi-Fi positioning technology;

[0112] Path planning: The system automatically generates the optimal path based on the hospital's 3D map resources and the patient's target location (consulting room or examination room).

[0113] Real-life path display

[0114] The path guidance is displayed on the patient's mobile phone screen in the form of 3D real scene:

[0115] Real-time dynamic guidance: The route navigation is updated synchronously with the patient's current location. The patient can see the dynamic 3D real-life map and arrow guidance on the mobile phone;

[0116] Multi-angle view: Patients can adjust the viewing angle through gestures to view the complete route to their destination. For example, when a patient needs to go to the examination room, the system will automatically plan the route, display the real scene inside the hospital on the screen, and use guide lines to mark the path to the target location.

[0117] As an implementation method of the embodiment of the present invention, the health information display module performs the following process:

[0118] Information display during waiting period

[0119] When patients are waiting for medical consultation or examination, the system will display the following contents simultaneously through the electronic display screen in the hospital waiting area and the patient applet:

[0120] Current treatment progress: including the number of patients currently receiving treatment, queue progress, etc.;

[0121] · Inspection precautions: inform the patient of the precautions for the required inspection items;

[0122] ●Purpose and significance of the examination: explain the importance and diagnostic and therapeutic significance of the examination items;

[0123] Related health science knowledge: Display knowledge related to ophthalmic diseases and preventive health care to improve patients' health awareness.

[0124] Smart Push

[0125] The system can push relevant health science content in a personalized manner based on the patient's age, gender, treatment department and medical history.

[0126] As an implementation method of the embodiment of the present invention, the diagnosis and treatment pathway optimization module performs the following process:

[0127] Doctor consultation and examination planning

[0128] After the doctor completes the initial consultation with the patient, the system automatically imports the examination items prescribed by the doctor into the background and generates the patient's follow-up examination path.

[0129] ●Path optimization principle:

[0130] 1. Minimum walking principle: Plan the shortest path based on the patient’s current location and the geographical distribution of the examination rooms;

[0131] 2. Principle of maximizing resource utilization: Dynamically adjust the inspection order according to the usage status and queuing situation of the hospital's inspection equipment to reduce waiting time.

[0132] Dynamically adjust the path

[0133] If resources in an examination room are tight or equipment fails temporarily, the system automatically replans the route and pushes the updated route information to the patient.

[0134] As an implementation of the embodiment of the present invention, the inspection feedback module performs the following process:

[0135] Status updates and reminders

[0136] After the patient completes each examination, the examination status will be automatically updated through the system background, and the patient can view the examination progress in real time on the mini program.

[0137] Examination completion reminder: After the examination results are uploaded to the system, the patient receives a push reminder and goes to the doctor's office to check the examination results.

[0138] Incomplete reminder: If the patient does not complete a certain examination within the specified time, the system will issue a reminder to avoid omissions.

[0139] Inspection report display

[0140] The system is connected to the hospital's HIS system, and the examination results are displayed synchronously in the patient applet to facilitate patient inquiries.

[0141] As an implementation method of the embodiment of the present invention, the follow-up reminder module performs the following process:

[0142] Follow-up consultation information push

[0143] After the doctor completes the diagnosis and treatment, the system generates a follow-up plan based on the patient's condition, including the follow-up time, precautions and related examination contents.

[0144] Patients can check their follow-up appointment time in the mini program and set reminders to avoid missing the follow-up appointment.

[0145] Personalized health management

[0146] The system combines the patient's medical history and doctor's advice to provide patients with daily health management advice, such as:

[0147] ●Lifestyle adjustment (such as eye care, dietary advice);

[0148] ●Home self-monitoring program.

[0149] As an implementation of an embodiment of the present invention, the data storage and analysis module performs the following process:

[0150] Data storage

[0151] The system stores patients' medical information, examination results and historical records, providing data support for the hospital.

[0152] Data analysis

[0153] Hospital managers can optimize the allocation of medical resources and improve hospital operating efficiency through data analysis reports generated by the system.

[0154] Furthermore, the working principle of the intelligent medical consultation process system of the present invention is as follows:

[0155] 1. Mini Program Launch and Patient Identification

[0156] ●After entering the hospital, the patient scans the QR code provided by the hospital to start the medical consultation app.

[0157] The mini program connects with the hospital’s HIS system or electronic medical record system to obtain patients’ registration information and medical records.

[0158] The system identifies the patient’s identity, including the registration department, current number status, examination items, etc.

[0159] ●After the mini program is started, the patient will be automatically signed in and a number sequence will be generated for the patient to ensure that the patient can receive treatment in an orderly manner. Principle support:

[0160] Real-time data synchronization with the hospital HIS system API interface enables dynamic query and update of patient registration information.

[0161] ● Identity verification can be done through mobile phone number, medical card number or ID card number to ensure the information matches.

[0162] 2.3D real-life path navigation

[0163] ●The system combines the hospital’s internal 3D map with the patient’s current location to plan the best route for the patient and guide him or her to the target clinic or examination room.

[0164] During navigation, the system tracks the patient's position in real time and dynamically updates navigation information.

[0165] The navigation path is displayed in the mini-program interface through 3D real-life graphics and guide lines, so that patients can clearly see the internal layout of the hospital and the path to the destination.

[0166] Technical implementation:

[0167] Positioning module: using GPS positioning (outdoor), Bluetooth beacon or Wi-Fi positioning technology (indoor)

[0168] Get the patient's real-time location.

[0169] Path planning module: Based on the Dijkstra shortest path algorithm or A* path planning algorithm, combined with the hospital 3D map, it automatically generates the optimal path.

[0170] ·3D real-scene display module: Through WebGL or other 3D visualization technologies, the 3D map and path information inside the hospital are rendered and displayed in real time.

[0171] Example process:

[0172] 1. The patient launches the mini-program and selects the target location (e.g., consulting room, examination room).

[0173] 2. The system automatically generates a path based on the current location and the target location;

[0174] 3. The path is displayed on the 3D real-life map as a virtual guide line, and arrows dynamically guide the patient to the target location.

[0175] 3. Health information display and patient waiting management

[0176] When patients are waiting in the waiting area, the mini program will work with the electronic display screen in the waiting area to display current waiting information and health knowledge.

[0177] ●Display content includes:

[0178] 1. Current treatment progress: number of people in the queue, current patients, etc.;

[0179] 2. Inspection precautions: such as fasting requirements, movements to cooperate with the inspection, etc.;

[0180] 3. The purpose and significance of the inspection;

[0181] 4. Health science content about ophthalmological diseases.

[0182] principle:

[0183] ·By connecting with the HIS system, patients’ queue information and waiting status can be obtained in real time.

[0184] The system automatically matches the patient’s examination items and pushes corresponding examination precautions and health science content.

[0185] 4. Optimization of diagnosis and treatment pathways and planning of examination sequences

[0186] After the patient completes the initial consultation, the doctor will prescribe the corresponding examination items in the HIS system.

[0187] The mini program automatically receives the list of examination items prescribed by the doctor and generates the optimal examination path and sequence for the patient based on the internal resources of the hospital (such as the location of the examination room, equipment usage, number of people in line, etc.). Technical implementation:

[0188] Resource scheduling module: real-time monitoring of the usage status (idle / busy) of hospital examination equipment and dynamic allocation of resources.

[0189] Path optimization module: Utilize the shortest path algorithm combined with the examination room queue situation to generate the optimal examination sequence, ensuring that patients move less and wait less.

[0190] 5. Check for feedback and status updates

[0191] During the examination process, the system automatically updates the examination status every time the patient completes an examination, and the patient can view the current progress in the mini program.

[0192] ●The system will push a reminder after the examination is completed, guiding the patient to the doctor's office to view the results or arrange the next step of diagnosis and treatment.

[0193] The examination report is connected to the hospital HIS system and synchronized to the patient's mini-program interface in real time, making it convenient for patients to view.

[0194] principle:

[0195] The equipment in the examination room is connected to the HIS system to upload the examination completion status;

[0196] The mini program receives the examination progress in real time and pushes status updates to the patient.

[0197] 6. Follow-up reminders and personalized health management

[0198] After the doctor completes the diagnosis and treatment, the system automatically generates a follow-up plan and pushes it to the patient through the mini program, including the follow-up time, precautions, and related health management suggestions.

[0199] The system combines the patient's medical history data to provide personalized health management content to help patients maintain their daily eye health.

[0200] principle:

[0201] The system automatically generates follow-up reminders and personalized health advice based on the patient's medical records and doctor's treatment recommendations.

[0202] ●Through data analysis, the system can identify patients’ health trends and push relevant health management content.

[0203] 7. Data Storage and Analysis

[0204] The system stores the patient’s medical data, examination records, treatment history and other information in the database for hospital managers to conduct statistical analysis.

[0205] ●Data analysis results can be used to optimize hospital resource allocation, improve medical treatment processes and enhance the quality of medical services.

[0206] principle:

[0207] Data storage module: using encrypted database to ensure patient data security;

[0208] ●Data analysis module: Analyze patients’ medical treatment process, waiting time, etc. through statistical models to generate hospital management optimization reports.

[0209] The embodiment of the present invention realizes intelligent management of the medical process through mini-programs, 3D real-life navigation, HIS system docking and path optimization technology. The system can not only provide patients with clear path guidance and optimize the diagnosis and treatment sequence, but also provide health science education and inspection precautions during the waiting period. At the same time, the system monitors the patient's examination progress in real time through dynamic data updates and feedback, improves medical efficiency, reduces patients' waiting time, and ultimately realizes two-way efficient management and service between hospitals and patients.

[0210] Embodiment 3:

[0211] The embodiment of the present invention also provides an intelligent medical consultation process method, including:

[0212] Step S1: manage the check-in and consultation order of patients after registration, and generate patient queuing information;

[0213] Step S2: Provide real-time medical treatment route navigation according to the patient's current location, and guide the patient to the corresponding consulting room or examination room;

[0214] Step S3: When patients are waiting for their appointments, the number of patients currently attending the examination, examination precautions, the significance and purpose of the examination, and health science information on related diseases are displayed on the screen;

[0215] Step S4: After the doctor completes the consultation, the optimal path planning for the patient's affairs is automatically generated according to the diagnosis results, including the examination sequence and the corresponding 3D navigation route;

[0216] Step S5: After the patient completes the examination, the examination completion status is fed back to the pre-processing module, and the patient is guided back to the consulting room to view the diagnosis and treatment results;

[0217] Step S6: After the consultation process is completed, provide the patient with personalized follow-up time, precautions and health management suggestions.

[0218] Embodiment 4:

[0219] An embodiment of the present invention further provides a storage medium, on which a computer program is stored, and the computer program executes the intelligent medical consultation process method when running.

[0220] The embodiments described above are only descriptions of the preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Without departing from the design spirit of the present invention, various modifications and improvements made to the technical solutions of the present invention by ordinary technicians in this field should all fall within the protection scope determined by the claims of the present invention.

Claims

1. An intelligent medical consultation process system, characterized in that: include: The pre-processing module is used to manage the check-in and consultation order of patients after registration and generate patient queuing information; 3D real-life path navigation module, which is used to provide real-time medical path navigation based on the patient's current location and guide the patient to the corresponding consulting room or examination room; The summary health information display module is used to display the current number of patients, examination precautions, the significance and purpose of the examination, and health science information about related diseases on the screen while patients are waiting for treatment; The diagnosis and treatment path optimization module is used to automatically generate the optimal path planning for patients to handle matters according to the diagnosis results after the doctor completes the consultation, including the examination sequence and the corresponding 3D navigation route; The examination feedback module is used to feed back the examination completion status to the pretreatment module after the patient completes the examination, and guide the patient to return to the consulting room to view the diagnosis and treatment results; The follow-up reminder module is used to provide patients with personalized follow-up time, precautions and health management suggestions after the medical treatment process is completed.

2. The intelligent medical consultation process system according to claim 1, characterized in that: The preprocessing modules include: The code scanning unit is used for patients to start the mini program by scanning the QR code provided by the hospital; The queue management unit is used to dynamically allocate the order of consultation and update the patient's queue status in real time.

3. The intelligent medical consultation process system according to claim 2 is characterized in that: The 3D real-scene path navigation module includes: A position acquisition unit, used to determine the real-time position of the patient through positioning technology; A path generation unit is used to dynamically generate the optimal path based on diagnosis and treatment needs and the patient's real-time location; The navigation display unit is used to display the path in 3D real-life form to guide the patient to the target location.

4. The intelligent medical consultation process system according to claim 3 is characterized in that: The health information display module includes: The patient number display unit is used to display the current number of patients waiting and the order of seeing the patient in real time; Precautions reminder unit, used to display the precautions, purpose and significance of the inspection; The health science unit is used to broadcast health science knowledge related to the patient's disease, including disease prevention, control and treatment knowledge.

5. The intelligent medical consultation process system according to claim 4, characterized in that: The diagnosis and treatment pathway optimization module includes: A diagnostic result analysis unit, used to generate follow-up examination items that the patient needs to undergo based on the doctor's consultation results; Path optimization unit, used to optimize the sequence of examination items for patients and generate the best examination processing path; The examination navigation unit works in conjunction with the 3D real-scene path navigation module to guide patients to the examination room or consulting room.

6. The intelligent medical consultation process system according to claim 5, characterized in that: The inspection feedback module comprises: An examination status recording unit is used to record the status of the patient's completed examination; The result feedback unit is used to synchronize the examination results to the doctor's side for the doctor to make diagnosis and treatment decisions.

7. The intelligent medical consultation process system according to claim 6, characterized in that: The follow-up visit reminder module includes: A time reminder unit is used to generate the patient's next follow-up visit time according to the doctor's advice; Precautions reminder unit, used to show patients what they need to pay attention to before their follow-up visit; The health advice unit is used to provide patients with personalized health management advice.

8. The intelligent medical consultation process system according to claim 7, characterized in that: Also includes: Data storage module, used to store patients' diagnosis and treatment data, medical history and health management records; The data analysis module is used to analyze patients' historical data and generate treatment optimization suggestions and health management plans.

9. An intelligent medical consultation process method, characterized in that: include: Step S1: manage the check-in and consultation order of patients after registration, and generate patient queuing information; Step S2: Provide real-time medical treatment route navigation according to the patient's current location, and guide the patient to the corresponding consulting room or examination room; Step S3: When patients are waiting for their appointments, the number of patients currently attending the examination, examination precautions, the significance and purpose of the examination, and health science information on related diseases are displayed on the screen; Step S4: After the doctor completes the consultation, the optimal path planning for the patient's affairs is automatically generated according to the diagnosis results, including the examination sequence and the corresponding 3D navigation route; Step S5: After the patient completes the examination, the examination completion status is fed back to the pre-processing module, and the patient is guided back to the consulting room to view the diagnosis and treatment results; Step S6: After the consultation process is completed, provide the patient with personalized follow-up time, precautions and health management suggestions.

10. A storage medium, characterized in that: The storage medium stores a computer program, which executes the intelligent medical consultation process method as claimed in claim 9 when running.

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