Embedded physical examination and guide examination real-time linkage method and system

By embedding a guidance system into the physical examination system and establishing a real-time communication link, the problem of data synchronization relying on manual operation caused by the independence of the physical examination and guidance systems was solved. This enabled real-time interaction and efficient physical examination process management, improving the work efficiency of medical staff and the patient experience.

CN120998450APending Publication Date: 2025-11-21BEIJING TIAODING DATA CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202511519479.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-23
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

Existing physical examination and guidance systems are often independent of each other, and data synchronization relies on manual operation or timed synchronization, which cannot achieve real-time interaction. This forces medical staff to switch between different platforms, increasing operational complexity and reducing work efficiency.

Method used

The guidance system function is embedded into the physical examination system. A real-time communication link is established between the physical examination system server and the queuing server. The system exchanges instructions and process data through the real-time communication link, realizes the status management of the guidance queue, and displays the list of people to be examined, retrieves the full file of the target person to be examined, automatically calls the next person to be examined, and updates the queue in the physical examination system.

Benefits of technology

It enables real-time updates of queuing numbers and physical examination progress, reduces repetitive operations and interface switching, significantly improves the work efficiency of medical staff, and enhances the smoothness of the process and the patient experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120998450A_ABST
    Figure CN120998450A_ABST
Patent Text Reader

Abstract

The invention provides an embedded physical examination and examination guiding real-time linkage method and system, and relates to the technical field of management systems.The method comprises the steps that an examination guiding system function is embedded into a physical examination system, and a real-time communication link is established between a physical examination system server and a number calling server; in the inspection guiding process, instruction and process data exchange is carried out between the physical examination system server and the number calling server, and state management is carried out on an inspection guiding queue; when the number calling function control is loaded, pre-filtering the to-be-detected personnel; when a certain target to-be-inspected person in the inspection guiding queue is selected through the number calling function control, a complete file of the target to-be-inspected person is called from the physical examination system; when the target to-be-detected person completes the current detection item, the physical examination system calls the next to-be-detected person according to the detection guiding queue; and when the number calling function control executes the detection delay operation or the detection abandoning operation on the personnel in the queue, the physical examination system updates the detection guiding queue.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of management system technology, and in particular to an embedded physical examination and guided examination real-time linkage method and system. Background Technology

[0002] With the continuous improvement of health awareness among Chinese residents and the rapid development of preventive medicine, regular physical examinations have become an important part of personal health management, and the volume of physical examination services at various physical examination centers and medical institutions continues to grow.

[0003] Currently, health checkup centers and medical institutions largely rely on independent information systems for guidance and information management. The health checkup system primarily manages basic information about examinees, health checkup packages, and the entry and generation of test results. The guidance system, on the other hand, is responsible for queue management, departmental calling, and large-screen display functions.

[0004] In recent years, with the improvement of medical informatization, many institutions have begun to adopt digital examination guidance systems and physical examination management systems. However, these systems are often independent of each other, and data synchronization relies on manual operation or scheduled synchronization, making real-time interaction impossible. In addition, the coexistence of multiple systems requires medical staff to switch between different platforms, increasing operational complexity and reducing work efficiency. Summary of the Invention

[0005] In view of the shortcomings of the prior art, the purpose of this invention is to provide an embedded real-time linkage method for physical examination and guidance, which can solve the technical problems that existing guidance and physical examination systems are often independent of each other, data synchronization depends on manual operation or timed synchronization, cannot achieve real-time interaction, and the coexistence of multiple systems requires medical staff to switch between different platforms, which increases the complexity of operation and reduces work efficiency.

[0006] A first aspect of this invention provides a method for real-time linkage between embedded physical examination and guided examination, comprising: S1: Embed the guidance system function into the physical examination system, deploy the queuing function control entry in the physical examination system, and establish a real-time communication link between the physical examination system server and the queuing server to build an embedded physical examination and guidance real-time linkage system architecture. S2: Through the real-time communication link, during the guided examination process, instructions and process data are exchanged between the physical examination system server and the queuing server, and the status of the guided examination queue is managed. S3: When the call number function control is loaded, the personnel to be examined are pre-filtered based on the process data, and the physical examination system displays the list of personnel to be examined; S4: When a target person to be examined is selected in the inspection queue through the call number function control, the complete file of the target person to be examined is retrieved in the physical examination system. S5: When the target person to be examined completes the current test item, the physical examination system calls the next person to be examined according to the guidance queue; S6: When the call number function control is used to perform a delayed examination or abandonment examination operation on the person in the queue, the physical examination system updates the examination guidance queue.

[0007] A second aspect of this invention provides an embedded real-time linkage system for physical examination and guided examination, comprising: a processor and a memory; The memory stores programs or instructions that can run on the processor, and when the program or instructions are executed by the processor, they implement the steps of the embedded physical examination and guided examination real-time linkage method as described in the first aspect.

[0008] A third aspect of the present invention provides a readable storage medium on which a program or instructions are stored, wherein when the program or instructions are executed by a processor, the steps of the embedded physical examination and guidance real-time linkage method as described in the first aspect are implemented.

[0009] The beneficial effects of the technical solutions provided in the embodiments of the present invention include at least the following: In this embodiment of the invention, by embedding physical examination and guidance in real time, the physical examination system server and the queuing server interact with instructions and process data in real time, ensuring that the queuing and physical examination progress are updated in real time, improving the smoothness of the process, eliminating the need for manual operation or timed synchronization, reducing repetitive operations and interface switching, and significantly improving the work efficiency of medical staff. Attached Figure Description

[0010] The accompanying drawings are for illustrative purposes only and are not intended to limit the invention. Throughout the drawings, the same reference numerals denote the same parts. Obviously, the drawings described below are merely some embodiments of the present invention, and those skilled in the art can obtain other drawings based on these drawings without any creative effort.

[0011] Figure 1 This is a flowchart illustrating an embedded physical examination and guided real-time linkage method provided in an embodiment of the present invention.

[0012] Figure 2 This is a schematic diagram of the structure of an embedded physical examination and guidance real-time linkage system provided in an embodiment of the present invention. Detailed Implementation

[0013] To enable those skilled in the art to better understand the technical solutions in the embodiments of the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present invention.

[0014] The embedded physical examination and guided real-time linkage method provided by the present invention will be described in detail below with reference to the accompanying drawings, through specific embodiments and application scenarios.

[0015] Reference manual attached Figure 1 The diagram shows a flowchart of an embedded physical examination and guided examination real-time linkage method provided by an embodiment of the present invention.

[0016] This invention provides a method for real-time linkage between embedded physical examination and guided examination, which may include the following steps: S1: Embed the guidance system function into the physical examination system, deploy the call number function control entry in the physical examination system, and establish a real-time communication link between the physical examination system server and the call number server to build an embedded physical examination and guidance real-time linkage system architecture.

[0017] It should be noted that the call number function control is embedded in the operation interface of each department's workstation in the physical examination system through front-end componentization technology (Web Components). When this control loads, it sends a request to the physical examination system's authentication service to obtain the identity token and permission information of the currently operating medical staff. After initialization, the call number function control calls the uniformly configured WebSocket server connection API, establishing a long connection with the obtained identity token. This connection is used to subsequently receive real-time messages such as queue updates and call instructions actively pushed by the server. Simultaneously, the control calls the HTTP API in parallel to retrieve the initial queue data for the current department from the server and performs its initial rendering and display.

[0018] The embedded physical examination and real-time linkage system architecture includes: presentation layer, application service layer, business logic layer, and data access layer.

[0019] Optionally, the presentation layer includes an embedded queuing operation interface and a real-time information display screen.

[0020] The embedded queuing system interface is the primary user interface for medical staff. It retrieves the current department's queue list data from the application service layer's queuing queue management service via an embedded API and renders and displays it. When medical staff perform actions such as "call," "complete," or "delay examination," this module encapsulates these instructions into HTTP or WebSocket messages and sends them to the backend service. Once the physical examination-guidance data linkage engine retrieves the current user's detailed information, it automatically populates the form page of the physical examination system, eliminating the need for medical staff to manually query or switch between pages.

[0021] The real-time information display screen is primarily designed for customers undergoing health checkups. It maintains communication with the application service layer's real-time status synchronization service via a WebSocket connection. Once the server receives new call number information or status updates (such as someone being called), the service immediately pushes the data packet to the display screen. The display screen then parses the data and updates the displayed content, achieving "zero-latency" public information display.

[0022] Optionally, the application service layer includes a queuing queue management service, a real-time status synchronization service, and an intelligent message push service.

[0023] The queuing management service is the system's scheduling hub. It loads the initial queue from the queuing database in the data access layer. When it receives a "call" instruction from the front end, it marks the current customer status as "calling" and records the call time. When it receives a "complete" instruction, it first confirms that the project has been submitted through the physical examination-guidance data linkage, then marks the customer status as "completed," and immediately retrieves the next customer from the queue, automatically executing the call operation.

[0024] The real-time status synchronization service maintains WebSocket connections with all front-ends. When the call queue management service or status flag and synchronization logic completes an operation, it publishes a status change event to this service. The service then immediately pushes this event (e.g., "Customer A's check-up delayed") to all clients subscribed to departmental messages (including medical staff and display screens), ensuring consistent status across all terminals.

[0025] The intelligent message push service is invoked after the status flag and synchronization logic have processed any delayed or abandoned checks. This service generates specific notification content (such as SMS content) based on the template and customer ID, and then sends the notification to the person undergoing the health check via an integrated API from a third-party SMS gateway or messaging platform.

[0026] Optionally, the business logic layer includes a department personnel filtering engine, a physical examination-guidance data linkage engine, and a status marking and synchronization engine.

[0027] The department personnel filtering engine receives the department ID and date parameters from the front end, constructs an SQL query or calls the cache service, filters out the list of all medical examination clients who have booked an appointment with this department on that date from the medical examination system database, and returns the results to the front end for medical staff to preview and prepare.

[0028] The physical examination-guidance data linkage engine is the core of the system integration. When the queuing system needs to display customer details, this engine retrieves the customer's basic information, package items, and completed / pending status from the physical examination system database using the customer ID, and returns the information to the front end. Conversely, when the operation is completed and the physical examination results are submitted on the queuing interface, this engine is responsible for writing the business data into the core business table of the physical examination system to ensure data consistency.

[0029] The status marking and synchronization engine is specifically designed to handle non-standard process operations such as "delayed inspection" and "abandoned inspection". It first updates the customer's status in the inspection queue database, and then immediately calls the physical examination-inspection data linkage engine to mark "delayed inspection" or "abandoned inspection" on the corresponding order or status table in the physical examination system database, completing two-way synchronization and triggering message push.

[0030] Optionally, the data access layer includes the physical examination system database and the guidance and queuing database.

[0031] The physical examination system's database stores all core business data related to physical examinations. It receives query and update requests from the physical examination-guidance data linkage mechanism, ensuring that the queuing system's operation can affect the status of core physical examination business in real time.

[0032] The queue management database stores process-related status data. It receives CRUD operations from the call queue management service and records historical logs of each call and completion for statistical analysis and traceability.

[0033] In one possible implementation, S1 specifically includes sub-steps S101 to S103: S101: Based on the front-end component-based embedding mechanism, using Web Components, the functions of the inspection guidance system are encapsulated as independent components, dynamically injected and rendered in the interface of the physical examination system through a configurable list, and a real-time communication link is established.

[0034] S102: When the queuing function control is loaded, the identity token of the medical staff currently operating is automatically obtained through the real-time communication link. The backend service verifies the identity token and parses the user's permissions through the shared key.

[0035] S103: Dynamically bind the queuing function control to the physical examination form of the physical examination system. When a person is selected in the queuing queue, the system automatically queries their complete information through the real-time communication link and fills it into the physical examination form.

[0036] In this embodiment of the invention, the guidance and screening system is embedded into the physical examination system, and a real-time communication link is established between the two. This enables deep integration of guidance and screening with the physical examination process, breaking down the information silos between the traditional two systems. The advantages of this approach are: medical staff can complete the entire process of calling numbers, viewing queues, accessing files, and submitting results on a single interface without switching systems or logging in repeatedly, significantly reducing repetitive operations and human error; simultaneously, the real-time communication link ensures that the calling status and the examination progress are synchronized within seconds, improving the response speed and smoothness of the process. This not only greatly improves work efficiency but also enhances the patient experience, achieving efficient, intelligent, and integrated management of the physical examination process.

[0037] S2: Through a real-time communication link, instructions and process data are exchanged between the physical examination system server and the queuing server during the guidance and inspection process, and the status of the guidance and inspection queue is managed.

[0038] In one possible implementation, S2 specifically includes sub-steps S201 and S202: S201: When the queue for the examination changes (such as new personnel joining or status changing), the physical examination system server broadcasts the latest full queue data or incremental change data packets to all connected department clients through a real-time communication link. After receiving the message, the department clients parse and re-render the queue list on the interface to ensure that the information is consistent in real time.

[0039] The data packet is in JSON format and includes, but is not limited to: { "department_id": "DEP001", "action": "update", "queue_list": [{"queue_id": "Q001", "user_id": "U123", "status": "waiting", ...}, ...]}.

[0040] S202: When medical staff perform a call, redial, completion, or late arrival operation on the interface, the client generates a corresponding operation instruction message through the real-time communication link and sends the operation instruction message to the call server. After receiving the message, the call server verifies the operation permission, updates the status of the person corresponding to the queue ID in the database, and broadcasts this status change event to all relevant clients via WebSocket.

[0041] The operation instruction message structure is as follows: { "action": "call", / / operation type "operator_id":"OP001", / / operator ID "queue_id": "Q001", / / queue ID}.

[0042] In this embodiment of the invention, by establishing a real-time communication link between the physical examination system and the queuing server, and using structured data packets (such as JSON) for bidirectional command and status synchronization, dynamic, accurate, and real-time management of the examination queuing system can be achieved. When the queue status changes, the system can instantly broadcast full or incremental data to all clients, ensuring high consistency of information across various terminals such as medical workstations and large-screen displays. Simultaneously, medical staff's operational instructions can be quickly uploaded to the server and trigger status updates and event broadcasts, avoiding delays and errors inherent in traditional methods. This significantly improves the response speed and collaborative efficiency of examination scheduling, ensures process transparency and data consistency, and provides reliable technical support for achieving efficient and orderly physical examination services.

[0043] S3: When the queuing function control is loaded, the system pre-filters the personnel to be examined based on the process data, and then displays the list of personnel to be examined in the physical examination system.

[0044] It should be noted that the list of people awaiting examination can provide medical staff with a forward-looking view, enabling them to prepare in advance, which is a key link in improving efficiency. Its output can also provide a data source for the guidance and queuing system.

[0045] In one possible implementation, S3 specifically includes sub-steps S301 to S304: S301: When the call number function control is loaded, it automatically obtains the context information of the department in the physical examination system and the current date of the system.

[0046] S302: Generate query conditions based on the department context information of the physical examination system and the current system date.

[0047] S303: The physical examination system server returns the query results based on the query conditions.

[0048] It should be noted that the query here aims to filter out all personnel who were scheduled to undergo physical examinations in this department on that day but have not yet completed all the items from the master physical examination order table.

[0049] Furthermore, the physical examination system server executes a query and returns the result set (person's name, physical examination number, appointment time, etc.) to the queuing function control.

[0050] S304: Based on the query results, display the list of personnel to be inspected.

[0051] Furthermore, the queuing function control renders a list of people awaiting examination in the side area of ​​the interface or a separate tab, allowing medical staff to browse and achieve macro-level control and advance preparation of the day's workload.

[0052] In this embodiment of the invention, by automatically filtering the list of personnel awaiting examination that day based on the department context and the current date when the queuing function control is loaded, a clear and forward-looking view of the day's work can be provided to medical staff. The advantage of this is that medical staff can grasp the workload and personnel order of their department in advance without manually querying or relying on external schedules, facilitating the preparation of examination equipment, retrieval of medical records, or reasonable arrangement of work rhythm. Simultaneously, this list serves as the initial data source for the guidance queue, ensuring the accuracy and completeness of the queuing process, effectively improving the planning, organizational efficiency, and overall service smoothness of the department's work.

[0053] S4: When a target person to be examined is selected in the examination queue through the call number function control, the complete file of the target person to be examined is retrieved in the physical examination system.

[0054] In one possible implementation, S4 specifically includes sub-steps S401 to S403: S401: When a target person to be inspected is selected in the inspection queue, an information retrieval event is triggered. The information retrieval event carries the unique identifier of the target person to be inspected.

[0055] S402: Retrieve the complete file of the target examinee from the medical examination system based on the unique identifier of the target examinee.

[0056] S403: Dynamically parse and render the returned full file of the target person to be inspected.

[0057] Furthermore, the complete file includes basic information (name, age, gender) and a detailed list of items from the current physical examination (items already tested, items pending, abnormal items, etc.). The call number function control is located within the same interface, typically in the information panel next to the main operating area, dynamically parsing and rendering this returned data. This allows medical staff to view all relevant information while calling a number, without needing to manually navigate to a different screen.

[0058] In this embodiment of the invention, by automatically retrieving and displaying the complete medical examination records of selected individuals in the queue, seamless linkage between the guidance operation and the medical examination information is achieved. The advantage of this is that medical staff can view the individual's basic information, completed examinations, pending examinations, and historical abnormalities in real time on the same interface without switching systems or manually querying. This facilitates a quick understanding of the patient's overall condition, improves the accuracy of examination preparation and diagnostic efficiency, reduces operational steps and human error, and significantly enhances work convenience and service continuity.

[0059] S5: When the person to be examined completes the current test item, the medical examination system calls the next person to be examined according to the queue of the examination guide.

[0060] In one possible implementation, S5 specifically includes sub-steps S501 to S504: S501: When the target person to be inspected completes the current inspection item, the item submission event is triggered.

[0061] S502: The queuing function control marks the queue status of the target person to be inspected in this department as completed.

[0062] S503: From the queue of people waiting for examination, the physical examination system server sorts them according to priority rules and selects the next person to be examined.

[0063] The priority rules mainly include appointment time, VIP level, and current status.

[0064] S504: The physical examination system server calls the call interface to perform a call operation for the next person to be examined, and informs the target person of the name of the next department to go to through an information prompt box or voice.

[0065] To achieve a closed-loop automated process of "calling upon completion," the core linkage control algorithm includes the following steps: Event Listening and Interception: The queuing component registers an event listener on the submit button of the medical examination form. When submission is triggered, the default submission behavior is intercepted first. Status Synchronization First: The queuing service interface is called to mark the current examinee's status in the queue as "completed." This step is a necessary prerequisite for triggering subsequent processes. Condition Judgment and Queue Update: After a successful status update, the medical examination form data is allowed to be submitted normally. After receiving a successful response, the queuing service automatically removes the completed examinee from the current queue. Intelligent Selection of the Next Customer: Based on preset priority rules, the next examinee is automatically calculated and selected from the updated queue. The rules are configurable, such as: VIP priority > earlier appointment time priority. Automatic Call Execution: The system automatically executes the call operation to the selected next examinee and broadcasts this event to all relevant terminals via a WebSocket channel, thus forming an automated closed-loop process without human intervention.

[0066] In this embodiment of the invention, a mechanism that automatically triggers the call to the next person awaiting examination upon completion of the current test item achieves an intelligent and automated closed-loop process for guiding patients. The advantages of this approach are that the "submission-completion-call" process can be completed without manual intervention, significantly improving inter-departmental workflow efficiency and reducing patient waiting time. Simultaneously, the system can intelligently schedule appointments based on priority rules such as appointment time and VIP level, ensuring fair and orderly queuing. Combined with prompts or voice reminders, this further optimizes the work rhythm of medical staff and the guidance experience for patients, ultimately improving the overall operational efficiency and service quality of the health checkup center.

[0067] S6: When the system performs a delayed examination or abandonment examination operation on the person in the queue through the call number function control, the physical examination system updates the guidance queue.

[0068] In one possible implementation, S6 specifically includes sub-steps S601 to S603: S601: When performing a delayed inspection or abandoned inspection operation on the queuing interface, a corresponding instruction is generated and sent to the queuing server through a real-time communication link.

[0069] Specifically, the instruction can be generated by the client ({ "action": "delay"|"abandon",...}) and sent to the queuing server via HTTP API.

[0070] S602: The queuing server updates the inspection queue and synchronously modifies the status of this item in the physical examination order to delayed inspection or abandoned inspection.

[0071] S603: After the physical examination system updates the database, it triggers the message notification service to send status change notification messages to personnel.

[0072] Specifically, based on the contact information (mobile phone number, APP registration ID) provided by the customer, a status change notification message can be sent to the customer through an integrated SMS gateway or message push platform (such as JPush or Getui).

[0073] In this embodiment of the invention, by automatically synchronizing the status and triggering notifications after a delayed or abandoned examination is performed on the queuing interface, efficient closed-loop management of abnormal processes is achieved. The advantages of this approach are that medical staff can complete status marking with a single click, and the system automatically synchronizes the changes to the main physical examination system, ensuring data consistency and preventing information omissions. Simultaneously, it automatically pushes SMS or APP notifications to patients, promptly informing them of process adjustments, reducing unnecessary waiting and on-site disputes, improving service response speed and customer satisfaction, and enhancing the flexibility and intelligent management level of the physical examination process.

[0074] Furthermore, through collaborative operation, this invention achieves deep embedded integration and real-time data linkage between the queuing and guidance system and the physical examination system, forming a complete logical closed loop from information preparation, call operation, information linkage to automated process advancement and anomaly handling, significantly improving the operational efficiency and customer experience of the physical examination center.

[0075] In this embodiment of the invention, by embedding physical examination and guidance in real time, the physical examination system server and the queuing server interact with instructions and process data in real time, ensuring that the queuing and physical examination progress are updated in real time, improving the smoothness of the process, eliminating the need for manual operation or timed synchronization, reducing repetitive operations and interface switching, and significantly improving the work efficiency of medical staff.

[0076] Furthermore, through system integration and functional linkage, repetitive operations and interface switching are reduced, significantly improving the work efficiency of medical staff. The system resolves data latency issues between the two systems, ensuring real-time updates of queuing numbers and examination progress, thus improving process smoothness. It pre-filters patients waiting for examination in departments, helping medical staff prepare and allocate resources rationally. Examinees receive timely status notifications, clarifying the next steps and reducing waiting and confusion. The system eliminates the need to install and maintain multiple clients and accounts, simplifying deployment and usage costs.

[0077] Reference manual attached Figure 2 The diagram shows a schematic of the structure of an embedded physical examination and guided real-time linkage system provided by an embodiment of the present invention.

[0078] This invention provides an embedded physical examination and guided examination real-time linkage system 20, including: a processor 201 and a memory 202; the memory 202 stores programs or instructions that can run on the processor 201. When the program or instructions are executed by the processor 201, they implement the steps of the above-mentioned embedded physical examination and guided examination real-time linkage method and achieve the same technical effect. To avoid repetition, this invention will not repeat the above description.

[0079] This invention provides a readable storage medium comprising: storing a program or instructions on the readable storage medium, wherein when the program or instructions are executed by a processor, the program or instructions implement the steps of the above-described embedded physical examination and guidance real-time linkage method, and can achieve the same technical effect. To avoid repetition, this invention will not elaborate further.

[0080] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of the present invention, and are not intended to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention. Any changes or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in the present invention should be included within the protection scope of the present invention.

Claims

1. A method for real-time linkage between embedded physical examination and guided examination, characterized in that, include: S1: Embed the guidance system function into the physical examination system, deploy the queuing function control entry in the physical examination system, and establish a real-time communication link between the physical examination system server and the queuing server to build an embedded physical examination and guidance real-time linkage system architecture. S2: Through the real-time communication link, during the guided examination process, instructions and process data are exchanged between the physical examination system server and the queuing server, and the status of the guided examination queue is managed. S3: When the call number function control is loaded, the personnel to be examined are pre-filtered based on the process data, and the physical examination system displays the list of personnel to be examined; S4: When a target person to be examined is selected in the inspection queue through the call number function control, the complete file of the target person to be examined is retrieved in the physical examination system. S5: When the target person to be examined completes the current test item, the physical examination system calls the next person to be examined according to the guidance queue; S6: When the call number function control is used to perform a delayed examination or abandonment examination operation on the person in the queue, the physical examination system updates the examination guidance queue.

2. The embedded physical examination and guided real-time linkage method according to claim 1, characterized in that, The embedded physical examination and real-time linkage system architecture includes: presentation layer, application service layer, business logic layer, and data access layer.

3. The embedded physical examination and guided real-time linkage method according to claim 2, characterized in that, The presentation layer includes an embedded queuing operation interface and a real-time information display screen; The application service layer includes a queuing queue management service, a real-time status synchronization service, and an intelligent message push service. The business logic layer includes a department personnel filtering engine, a physical examination-guidance data linkage engine, and a status marking and synchronization engine. The data access layer includes the physical examination system database and the examination guidance and queuing database.

4. The embedded physical examination and guided real-time linkage method according to claim 1, characterized in that, S1 specifically includes: S101: Based on the front-end component-based embedding mechanism, using Web Components, the functions of the guidance system are encapsulated as independent components, dynamically injected and rendered in the interface of the physical examination system through a configurable list, and a real-time communication link is established. S102: When the queuing function control is loaded, the identity token of the currently operating medical staff issued by the physical examination system is automatically obtained through the real-time communication link. The backend service verifies the identity token and parses the user permissions through the shared key. S103: Dynamically bind the queuing function control to the physical examination form of the physical examination system. When a person is selected in the queuing queue, the system automatically queries their complete information through the real-time communication link and fills it into the physical examination form.

5. The embedded physical examination and guided real-time linkage method according to claim 1, characterized in that, S2 specifically includes: S201: When the queue for the examination changes, the physical examination system server broadcasts the latest full queue data or incremental change data packet to all connected department clients through the real-time communication link. After receiving the message, the department client parses and re-renders the queue list on the interface to ensure that the information is consistent in real time. S202: When medical staff perform a call, redial, completion, or late arrival operation on the interface, the client generates a corresponding operation instruction message through the real-time communication link and sends the operation instruction message to the queuing server. After receiving the message, the queuing server verifies the operation permission, updates the status of the person corresponding to the queue ID in the database, and broadcasts this status change event to all relevant clients via WebSocket.

6. The embedded physical examination and guided real-time linkage method according to claim 1, characterized in that, S3 specifically includes: S301: When the queuing function control is loaded, it automatically obtains the context information of the department in the physical examination system and the current date of the system. S302: Generate query conditions based on the department context information of the physical examination system and the current date of the system; S303: The physical examination system server returns the query results based on the query conditions; S304: Based on the query results, display the list of personnel to be inspected.

7. The embedded physical examination and guided real-time linkage method according to claim 1, characterized in that, S4 specifically includes: S401: When a target person to be inspected is selected in the inspection queue, an information retrieval event is triggered, and the information retrieval event carries the unique identifier of the target person to be inspected. S402: Based on the unique identifier of the target examinee, retrieve the complete file of the target examinee from the medical examination system; S403: Dynamically parse and render the returned full file of the target person to be inspected.

8. The embedded physical examination and guided real-time linkage method according to claim 1, characterized in that, S5 specifically includes: S501: When the target person to be inspected completes the current inspection item, the item submission event is triggered; S502: The call number function control marks the queue status of the target person to be inspected in this department as completed; S503: From the queue of people waiting for examination, the physical examination system server sorts them according to priority rules and selects the next person to be examined. S504: The physical examination system server calls the call interface to perform a call operation for the next person to be examined, and informs the target person to be examined of the name of the next department to go to through an information prompt box or voice.

9. The embedded physical examination and guided real-time linkage method according to claim 1, characterized in that, S6 specifically includes: S601: When performing a delayed inspection or abandoned inspection operation on the queuing interface for a person in the queue, a corresponding instruction is generated and sent to the queuing server through the real-time communication link; S602: The queuing server updates the inspection queue and synchronously modifies the status of this item in the physical examination order to delayed inspection or abandoned inspection. S603: After the physical examination system updates the database, it triggers the message notification service to send a status change notification message to the personnel.

10. An embedded real-time linkage system for physical examination and guidance, characterized in that, include: Processor and memory; The memory stores programs or instructions that can run on the processor, and when the program or instructions are executed by the processor, they implement the steps of the embedded physical examination and guided examination real-time linkage method as described in any one of claims 1 to 9.

Citation Information

Patent Citations

  • Reinforcement learning prediction sorting physical examination queuing system based on data circulation

    CN116994733A