Medical follow-up visit device and system thereof

Through the persistent module, the custom follow-up form is generated using visual design and image recognition. Combined with automation and reminder modules, the problem of poor adaptability of follow-up system templates in the existing technology is solved, and low-cost and efficient follow-up management and data security are achieved.

CN120299750APending Publication Date: 2025-07-11920TH HOSPITAL OF THE JOINT LOGISTIC SUPPORT FORCE OF THE CHINESE PEOPLES LIBERATION ARMY
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202510182865.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

In the prior art, the follow-up system requires a large number of preset templates, which is difficult to adapt to the differences between different diseases and departments, the learning cost of newly appointed personnel is high, and it is difficult to quickly build a customized follow-up form.

Method used

Persistence module is used to store patient information, use the visual design module to drag web elements to generate custom forms, combine the reminder module to arrange follow-up time, the automation module performs data adjustment, the image recognition module assists in form generation, the search module provides multi-condition retrieval, the data delivery module remotely sends information, and the security management module ensures data security.

Benefits of technology

It realizes the construction of customized follow-up form with low learning costs, improves follow-up efficiency and data security, simplifies the learning process of newcomers, and enhances data analysis capabilities.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120299750A_ABST
    Figure CN120299750A_ABST
Patent Text Reader

Abstract

The invention relates to the field of medical treatment, in particular to a medical follow-up visit device and system, and the device comprises a persistence module which is used for providing data storage; the visual design module is used for providing a form, a working area and a webpage element tag menu are arranged in the visual design module, and the visual design module is used for dragging webpage elements in the webpage element tag menu into the working area to generate a self-defined follow-up visit form; the reminding module is used for arranging follow-up visit starting time based on the patient information, the medical process information corresponding to the patients and the number of the patients and sending prompts to doctors and the patients before the follow-up visit starting time; and the automation module is used for pairing and monitoring patient information, and automatically querying, modifying, sending and sorting data based on patient information changes, preset time nodes and personnel changes. By adopting the technical scheme of the invention, the learning cost of a new person can be reduced, and a self-defined follow-up form can be quickly constructed according to different departments or patients.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the medical field, and particularly to a medical follow-up device and system thereof. Background Art

[0002] Follow-up refers to the method by which a hospital regularly understands the changes in a patient's condition and guides the patient's recovery through means such as communication with patients who have previously visited the hospital. Simply put, it is to continue to track and visit patients after diagnosis and treatment. Through follow-up, the pre-medical and post-medical service levels of the hospital can be improved. At the same time, it is convenient for doctors to track and observe patients, master first-hand information for statistical analysis and experience accumulation. At the same time, it is also conducive to the development of medical scientific research work and the improvement of the professional level of medical workers, so as to better serve patients. By strengthening communication and exchanges with patients, a friendly image of the hospital can be created, the brand value of the hospital can be enhanced, more value can be provided to patients, the patient return visit rate can be increased, and patient loss can be prevented. This is also the core purpose of the hospital's post-discharge follow-up and the provision of continuous medical services outside the hospital to patients. The treatment and recovery of many diseases in medicine require a long process. With the shortening of the average length of hospital stay of patients, the recovery of most patients needs to be spent outside the hospital. This means an increase in the needs of patients and their families in aspects such as post-care, condition observation, and health care. Conducting follow-up on patients after diagnosis can not only meet the patients' needs for health, but also promote the improvement of the medical, scientific research, and service quality of the hospital. Therefore, post-diagnosis follow-up is important and necessary for both patients and hospitals.

[0003] In the prior art, for example, Patent Publication No. CN111169781A discloses a medical system convenient for patient follow-up, which conducts doctor-patient interaction by setting up a remote visit unit. Patent Publication No. CN112768092A discloses a medical follow-up method and follow-up system, which generates a follow-up template by constructing an associated file. Patent Publication No. CN102592200A discloses a patient follow-up system for clinical medicine and scientific research, which realizes computerized network query and management of follow-up work by using computer, network, and multimedia technologies. However, most departments require follow-up, and the follow-up contents of different disease types and departments are different, and the symptoms of patients also vary. This makes it necessary to have a large number of templates for follow-up using preset templates, and it is not convenient to search for and configure. There will be changes in department personnel, and new appointees have a learning cost for using the system. Therefore, it is necessary to reduce the learning cost of new employees, simplify the data collection process, reduce the learning time of new employees, and facilitate the development of follow-up. Summary of the Invention

[0004] To solve the above problems, the present invention provides a medical follow-up device and system thereof, which are used to reduce the learning cost of new employees and can quickly construct customized follow-up forms according to different departments or patients.

[0005] To achieve the above object, the technical solution of the present invention is as follows: A medical follow-up system includes:

[0006] A persistence module: used to provide data storage, and the stored data includes patient information, medical process information, follow-up information, and personnel information;

[0007] A visual design module: used to provide forms. There is a working area and a web element label menu in the visual design module. The visual design module is used to drag the web elements in the web element label menu into the working area to generate a customized follow-up form;

[0008] A reminder module: used to arrange the follow-up start time based on patient information, the corresponding medical process information of the patient, and the number of patients, and send reminders to physicians and patients before the follow-up start time;

[0009] An automation module: used to pair and monitor patient information, and perform automated querying, modification, sending, and sorting of data based on changes in patient information, preset time nodes, and personnel changes.

[0010] Adopting the above solution has the following beneficial effects:

[0011] 1. In this solution, the persistence module is used to provide data storage. The stored data includes various information of patients, including identity, height, weight, medical history, medication history, etc. The medical process information includes diagnosis results, medications taken, medical images, pathological images, etc. The follow-up information is follow-up record information, including mental state, pain perception, condition, comfort, service, suffering, thoughts, and suggestions, etc. The personnel information is the information of medical staff, which is convenient for tracing or adjusting relevant workers.

[0012] 2. In this solution, the form is designed by the visual design module. Physicians can adjust the content of the follow-up form according to their own departments, habits, and the status of patients. Select web elements using the web element label menu, quickly construct the web page for form submission, and send the web page to the patient for the patient to fill in. This makes the decoupling of the form extremely strong. Without a large number of preset templates, a dedicated form can be constructed at any time as desired, and no corresponding professional technology is required, with low learning costs and can be quickly applied.

[0013] 3. In this solution, the reminder module is used to plan follow-up arrangements, schedule follow-ups based on patient information, and remind physicians and patients before the follow-up starts. The automation module is used to automatically execute data adjustment after a specific event is triggered, such as changing the follow-up person in charge of the patient after changing the responsible physician, and pairing the medical process information after the patient's review, etc.

[0014] Furthermore, the visual design module further includes an element design menu, and the element design menu is used to set the parameters of web elements;

[0015] The visual design module also includes an API interface library, which is used to provide server interfaces for data processing. The parameters of web page elements include logical parameters, and the server interfaces perform different logical processes on the data collected and queried by web page elements according to different logical parameters.

[0016] Beneficial effects: Conventional forms can only be used for data collection and have a single function. When designing a form, the parameters of web page elements can be used to finely adjust the web page elements and attach logical parameters, which are used for the server interfaces at the back end to perform logical processing on the collected data, thereby expanding stronger data analysis or data collection capabilities.

[0017] Furthermore, the visual design module is also used to encapsulate business processes. The encapsulated business processes are designed and generated based on the working area, web page element label menu, and element design menu. The automation module performs automated processing of data based on the encapsulated business processes.

[0018] Beneficial effects: Encapsulating business processes can trigger multiple data processing operations in a certain logic, thereby achieving a higher degree of automation or intelligence. In addition to designing follow-up forms, the visual design module can also design encapsulated business processes under a specific framework, and the automation module will perform data processing according to the designed encapsulated business processes.

[0019] Furthermore, the statistics module is used to generate a visual statistics page based on patient information, medical process information, follow-up information, and personnel information;

[0020] The visual design module is also used to provide a visual statistics page, which is designed and generated based on the working area, web page element label menu, and element design menu.

[0021] Beneficial effects: The statistics module can facilitate physicians to understand the status of overall patients. Physicians can customize visual statistics pages based on the working area, web page element label menu, and element design menu, and can adjust the displayed data content through the logical processing parameters of the element design menu.

[0022] Furthermore, an image recognition module is also included. The image recognition module is used to design a form through the visual design module, take a picture of an image, and extract the text information in the image and match it to the designed form.

[0023] Beneficial effects: There are paper documents in the medical process. Through the image recognition module, the information in the paper documents can be extracted based on taking pictures. The form to be generated is designed through the visual design module, so that the information can be recognized by taking pictures and paired with the form.

[0024] Further, the image recognition module is also used to assist the visualization design module in designing forms and visualization statistical pages. The image recognition module is used to recognize the text and patterns in the image, pair the web elements according to the patterns and fill in the text to generate the design of forms and visualization statistical pages, where the layouts of the generated web elements are all preset default layouts.

[0025] Beneficial effects: Physicians may design new follow-up forms during the follow-up process, but the design experience using devices such as mobile phones is poor and not convenient to operate. And there are some physicians who are not good at using electronic devices for design. In addition to pairing text, the image recognition module can also recognize web elements such as input boxes and check boxes through simple pattern recognition, so as to generate forms based on the image.

[0026] Further, the image recognition module further includes a semantic recognition interface, and the semantic recognition interface is used to judge whether the text is web element text or form filling text based on the recognized text content.

[0027] Beneficial effects: Physicians can generate follow-up forms by photographing existing forms, but there may be filled-in content in the photographed forms. The semantic recognition interface can distinguish web element text and form filling text, so as to optimize the generation effect.

[0028] Further, the types of text recognized by the image recognition module include handwritten and printed texts. The image recognition module is also used to read the data processing logic represented by the text based on the semantic recognition interface. When judging the web element text, the text marked by preset special characters in the image is recognized semantically and its semantics is used as the data processing logic, and the logical parameters of the web elements are paired and added;

[0029] The element design menu is also used to enter text and convert it into logical parameters using the semantic recognition interface;

[0030] The image recognition module is also used to assist in encapsulating business processes.

[0031] Beneficial effects: Recognizing handwritten texts can support physicians to draw and generate using a pen, which is convenient for temporary creation. In addition, the tables generated by image recognition lack logical parameters, making them only limited to data collection and difficult to process data. The semantic recognition interface can read and recognize the semantics of the text, so as to extract the setting of logical parameters from the recognized text. Users can use statements marked with brackets and greater than and less than signs to represent logical parameters, so as to configure the corresponding logical parameters. This not only simplifies the configuration process of logical parameters, but also enables a more powerful form to be constructed from image recognition.

[0032] Further, it also includes a retrieval module which is used to provide multi-condition joint retrieval of the persistence module. The definition of the entries for multi-condition joint retrieval includes yes, no, and, or, greater than, and less than. The retrieval module includes visual ETL and an API interface for external calls;

[0033] The persistence module is also used to store the entries for multi-condition joint retrieval.

[0034] Beneficial effects: The retrieval module is used to retrieve data. Through multi-condition joint retrieval, it can provide stronger retrieval capabilities, facilitating users to quickly find the data they need.

[0035] Further, it also includes a data delivery module which is used to provide a number of data tags for dragging and selection. The data tags are respectively used to bind one or more of patient information, medical process information, follow-up information, and personnel information. The data delivery module is used to quickly generate text information by selecting or dragging the data tags, and the data delivery module is used to send the text information through remote communication.

[0036] Beneficial effects: In addition to being retrieved through the retrieval module, data can also be sent through social software, email, etc. Users can drag the data tags through the data delivery module to quickly form text information segments for sending. In addition, the design of the data tags also facilitates the automatic construction of text information for remote communication and sending.

[0037] Further, it also includes a document processing module which is used to import documents, identify and extract patient information, medical process information, follow-up information, and personnel information in the documents for storage, and the document processing module supports the conversion between old and new documents;

[0038] The document processing module is also used to print a corresponding identification code on the paper document when an electronic document is printed into a paper document, and the identification code is used to provide access to the electronic document after scanning.

[0039] Beneficial effects: In addition to paper documents and follow-up forms, it may also be necessary to import the collected document information. The document processing module provides a document reading interface to import documents and identify document data. When an electronic document is printed, an identification code is added to the printed paper document, facilitating readers to obtain the electronic document information.

[0040] Further, the persistence module is deployed privately;

[0041] It also includes a security management module which is used to customize password rules, set two-factor authentication options, set interface watermarks, encrypt data fields, display information masks, audit logs, and control RBAC permissions.

[0042] Beneficial effects: Private deployment can ensure data security and reduce the risk of data leakage. The security management module can enhance the security of data and users, facilitating security prevention and control.

[0043] A medical follow-up device includes a mobile terminal, which is provided with a touch display screen, a camera, a vibration motor, and a buzzer inside. The mobile terminal is signal-connected to a portable vital sign information collector.

[0044] Beneficial effects: The mobile terminal can provide data display and control. The camera can collect images and identify identification codes. The vibration motor and the buzzer can remind the doctor through vibration or buzzing. The doctor can use the portable vital sign information collector at any time to collect patient information, facilitating the acquisition of more vital sign-related information of the patient for analysis, inquiry, and answer.

[0045] The additional aspects and advantages of the present invention will be partly given in the following description, partly will become obvious from the following description, or will be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0046] Figure 1 It is a schematic diagram of the modules of an embodiment of the medical follow-up system of the present invention;

[0047] Figure 2 It is a schematic diagram of the generation of a follow-up form in an embodiment of the medical follow-up system of the present invention;

[0048] Figure 3 It is a schematic diagram of the judgment logic of the image recognition module assisting the visual design module in an embodiment of the medical follow-up system of the present invention;

[0049] Figure 4 It is a schematic diagram of the connection between the mobile terminal and the portable vital sign information collector in an embodiment of the medical follow-up system of the present invention;

[0050] Figure 5 It is a schematic diagram of the follow-up form design in an embodiment of the medical follow-up system of the present invention;

[0051] Figure 6 It is a schematic diagram of the extraction and processing of the image recognition module in an embodiment of the medical follow-up system of the present invention.

[0052] The reference numerals in the accompanying drawings of the specification include: 1. Mobile terminal; 2. Portable vital sign information collector. DETAILED DESCRIPTION OF THE INVENTION

[0053] The technical solution of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0054] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present invention. In addition, the terms "first", "second", and "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0055] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0056] The following will be further described in detail through specific embodiments:

[0057] As shown in the Figures 1-6 accompanying drawings: A medical follow-up system includes:

[0058] A persistence module: used to provide data storage, and the stored data includes patient information, medical process information, follow-up information, and personnel information.

[0059] A visualization design module: used to provide forms. There is a working area, a web element label menu, and an element design menu in the visualization design module. The visualization design module is used to drag the web elements in the web element label menu to the working area to generate a customized follow-up form. The element design menu is used to set the parameters of the web elements, such as length, width, height, color, floating, etc., and to set the data processing logic of the web elements.

[0060] The visualization design module also has an API interface library, which is used to provide server interfaces for data processing. The parameters of web page elements include logical parameters, which can be integers or characters. The server interface performs different logical processes on the data collected and queried by web page elements according to different logical parameters, such as querying, deduplication, format sorting, etc.

[0061] Reminder module: It is used to arrange the follow-up start time based on patient information, the corresponding medical process information of the patient, and the number of patients, and send reminders to doctors and patients before the follow-up start time.

[0062] Automation module: It is used to pair and monitor patient information, and perform automated querying, modification, sending, and sorting of data based on changes in patient information, preset time nodes, and personnel changes. The visualization design module is also used to encapsulate business processes, which are designed and generated based on work areas, web page element label menus, and element design menus. The automation module performs automated processing of data based on the encapsulated business processes.

[0063] Statistics module: The statistics module is used to generate a visualization statistics page based on patient information, medical process information, follow-up information, and personnel information; the visualization design module is also used to provide a visualization statistics page, which is designed and generated based on work areas, web page element label menus, and element design menus.

[0064] Patients log in and bind their own identity information using the APP or mini-program, so as to facilitate patients to receive follow-up reminders and fill in the corresponding follow-up forms. Doctors can search for information or design follow-up forms through computers or mobile terminals.

[0065] The reminder module is used to send reminders to patients and doctors respectively before the follow-up according to the follow-up schedule, so as to ensure that patients stay in places such as wards and consulting rooms, and make preparations for follow-up. At the same time, it reminds doctors to conduct or prepare for follow-up work, so as to mobilize both sides and improve the follow-up efficiency. The reminder can be sent in one or more forms of communication methods such as text messages, WeChat, and emails.

[0066] When in use, each department does not have a fixed follow-up template. Each follow-up doctor can set a list of follow-up forms according to his own needs. All the information filled in by patients will be stored, and doctors can obtain the information filled in by patients by retrieving the corresponding fields in the database.

[0067] Taking orthopedics as an example, orthopedics mainly deals with trauma. Doctors can collect a lot of information such as whether fracture patients can take care of themselves, pain, condition description, etc. according to their own needs. Doctors can use the visual design module to mark text, drag the radio button to complete the tab design of whether the patient can take care of himself, drag the drop-down box to complete the design of collecting the patient's pain, drag the input box to complete the design of collecting the patient's condition description, and after completing the follow-up form, send the form to the patient for the patient to fill in the record.

[0068] When the doctor's needs change, for example, if he needs to collect the dietary nutritional status of patients with fractures, he can use the visual design module to drag in a new list input box and ask the patient to fill in the food he has recently eaten to complete the collection of new needs.

[0069] In some cases, the collected data needs to be processed. For example, when filling in the food consumed, if the patient fills in the same food repeatedly, it is necessary to use the element design menu to add deduplication logic. When it is necessary to collect some information for some patients separately, such as using new instruments in fracture surgery, only the effects of the new instruments are collected for patients who used the new instruments, then the element design menu is used to add display logic judgment with filtering conditions.

[0070] The visual design module can use the work area, web element label menu and element design menu to design follow-up forms, visual statistics pages and encapsulated business processes.

[0071] The visual statistics page can use the element design menu to set logical judgments, thereby generating statistical tables with complex retrieval, screening logic, cross-table and cross-content, and calculation processing, and can set the size, color, carousel, etc. of the visual components.

[0072] The encapsulated business process can be designed within a specific framework. For example, in the weekly schedule, by dragging the element in the web element label menu to Monday morning, assigning the search logic through the element design menu, and setting the SMS sending function, the required content can be automatically retrieved and sent to the mobile phone via SMS every Monday morning. The search logic can also be set through the element design menu and brought into another logic interface responsible for value judgment, so that the SMS sending is triggered when the retrieved data exceeds a certain value, reminding the doctor of the change in the corresponding patient status.

[0073] Image Recognition Module: The image recognition module is used to design forms through the visual design module, capture images, extract text information from the images and match it to the designed forms. The image recognition module is also used to assist the visual design module in designing forms and visual statistical pages. The image recognition module is used to recognize text and patterns in images, pair web elements according to the patterns and fill in the text to generate designs for forms and visual statistical pages, where the layouts of the generated web elements are all preset default layouts. The image recognition module is equipped with a semantic recognition interface, which is used to judge whether the text is web element text or form filling text based on the recognized text content. The text types recognized by the image recognition module include handwritten and printed texts. The image recognition module is also used to read the data processing logic represented by the text based on the semantic recognition interface. When judging web element text, it recognizes the semantics of the text marked by preset special characters in the image and uses its semantics as the data processing logic, and pairs and adds the logical parameters of the web elements;

[0074] The element design menu also supports entering text and converting it into logical parameters using the semantic recognition interface.

[0075] The image recognition module is also used to assist in encapsulating business processes.

[0076] In the prior art, in addition to electronic data records, hospitals also widely use paper for data recording. The image recognition module can extract information from paper documents through image recognition technology. The visual design module can design forms for extracting data from paper documents. Taking a paper document of preoperative physical examination as an example, the user constructs several input boxes through the visual design module and indicates the meaning of the content in the input boxes, such as indicating that the content in the input box is the preoperative white blood cell count. The image recognition module automatically extracts the corresponding content in the paper document and generates an electronic form.

[0077] In addition to converting paper documents into electronic forms, it is also possible to generate electronic forms based on existing paper forms. By recognizing patterns such as underlines, boxes, and check boxes, corresponding web elements are automatically paired to conveniently form an electronic form.

[0078] When following up in the ward or outside the hospital, there may also be a need to construct new follow-up forms. Since the portable devices are small in size, it is not convenient to use the visual design module to design follow-up forms. At this time, the image recognition module can be used to assist in generating follow-up forms. The user can simply draw using paper and pen, and the image recognition module will pair web elements according to the handwritten font and patterns and generate an electronic form in the default layout for temporary use. At the same time, this function is convenient for doctors with poor system operation ability to use and also convenient for new users to get started quickly.

[0079] The table generated by image recognition lacks logical parameters, making it limited to data collection and difficult to process data. The semantic recognition interface can read and recognize the semantics of the text segment, so as to extract the setting of logical parameters from the recognized text. Users can use brackets, greater than and less than signs to mark the statements representing logical parameters, so as to configure the corresponding logical parameters, such as deduplication, removing decimals, calculation, etc. This not only simplifies the configuration process of logical parameters, but also enables a more powerful form to be constructed from image recognition.

[0080] Retrieval module: The retrieval module is used to provide multi-condition joint retrieval of the persistence module. The definition of multi-condition joint retrieval terms includes yes, no, and, or, greater than, and less than. The retrieval module is equipped with a visual ETL, and the retrieval module is equipped with an API interface for external calls;

[0081] The persistence module is also used to store multi-condition joint retrieval terms.

[0082] The retrieval module is used to retrieve data. Through multi-condition joint retrieval, it can provide stronger retrieval capabilities, facilitating users to quickly find the data they need. The ETL is used to provide data extraction, cleaning, and transformation, and integrate the scattered, messy, and non-uniform standard data.

[0083] Data delivery module: The data delivery module is provided with several data tags for dragging and selecting. The data tags are all used to bind one or more of patient information, medical process information, follow-up information, and personnel information. The data delivery module is used to quickly generate text information by selecting or dragging data tags, and the data delivery module is used to send the text information through remote communication.

[0084] In addition to being obtained through retrieval, data can also be sent through social software, email, text messages, etc. Users can drag data tags through the data delivery module to quickly form text information segments for sending. In addition, the design of data tags also facilitates the automated construction of text information for remote communication sending. It can quickly complete the information docking of relevant medical staff or external personnel, improving communication convenience.

[0085] Document processing module: The document processing module is used to import documents, and identify and extract patient information, medical process information, follow-up information, and personnel information in the documents for storage. The document processing module supports the conversion between old and new documents;

[0086] The document processing module is also used to print an electronic document as a paper document, and print a corresponding identification code on the paper document. The identification code is used to provide electronic document viewing after scanning.

[0087] In addition to paper documents and follow-up forms, it may also be necessary to import the collected document information. The document processing module provides a document reading interface to import documents and identify document data. When printing an electronic document, an identification code is added to the printed paper document to facilitate the reader to obtain the electronic document information.

[0088] Security management module: The security management module is used to customize password rules, set two-factor authentication options, set interface watermarks, encrypt data fields, display information masks, conduct log audits, and perform RBAC permission control. The persistence module is privately deployed and clustered when there are multiple research centers.

[0089] Private deployment can ensure the security of data and reduce the risk of data leakage. The security management module can enhance the security of data and users, facilitating security prevention and control. By customizing password rules, setting two-factor authentication options, setting interface watermarks, encrypting data fields, displaying information masks, conducting log audits, and performing RBAC permission control, the control over the storage, transmission, and access of data is enhanced.

[0090] A medical follow-up device includes a mobile terminal 1. The mobile terminal 1 is provided with a touch display screen, a camera, a vibration motor, and a buzzer. The mobile terminal 1 can be a mobile phone. The mobile terminal 1 is signal-connected to a portable vital sign information collector 2, and the portable vital sign information collector 2 is a vital sign monitoring bracelet.

[0091] The mobile terminal 1 can provide the display and control of data. The camera can collect images and identify identification codes. The vibration motor and the buzzer can remind the doctor by vibration or beeping. The doctor can use the portable vital sign information collector 2 at any time to collect patient information, facilitating the acquisition of more vital sign-related information of the patient for analysis, inquiry, and answer.

[0092] Obviously, the above embodiments are merely examples given for clear illustration and are not limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to enumerate all the implementation manners here. And the obvious changes or modifications derived therefrom are still within the protection scope of the present invention.

Claims

1. A medical follow-up system, characterized in that, Including: Persistence module: used to provide data storage, and the stored data includes patient information, medical process information, follow-up information, and personnel information; Visual design module: used to provide forms. There is a working area and a web element label menu in the visual design module. The visual design module is used to drag the web elements in the web element label menu to the working area to generate a customized follow-up form; Reminder module: used to arrange the follow-up start time based on patient information, the corresponding medical process information of the patient, and the number of patients, and send reminders to physicians and patients before the follow-up start time; Automation module: used to pair and monitor patient information, and perform automated querying, modification, sending, and sorting of data based on changes in patient information, preset time nodes, and personnel changes.

2. The medical follow-up system according to claim 1, wherein The visual design module also includes an element design menu, which is used to set the parameters of web elements; The visual design module also includes an API interface library, which is used to provide server interfaces for data processing. The parameters of web elements include logical parameters, and the server interfaces perform different logical processing on the data collected and queried by web elements according to different logical parameters.

3. The medical follow-up system according to claim 2, wherein, The visual design module is also used to encapsulate business processes. The encapsulated business processes are designed and generated based on the working area, the web element label menu, and the element design menu. The automation module performs automated processing of data based on the encapsulated business processes.

4. The medical follow-up system according to claim 3, characterized in that, It also includes a statistics module, which is used to generate a visual statistics page based on patient information, medical process information, follow-up information, and personnel information; The visual design module is also used to provide a visual statistics page, and the visual statistics page is designed and generated based on the working area, the web element label menu, and the element design menu.

5. The medical follow-up system according to claim 4, characterized in that, It also includes an image recognition module, which is used to design a form through the visual design module, take pictures, and extract the text information in the pictures and match it to the designed form.

6. The medical follow-up system according to claim 5, wherein The image recognition module is also used to assist the visual design module in designing forms and visual statistics pages. The image recognition module is used to recognize the text and patterns in the images, pair web elements according to the patterns and fill in the text to generate the design of forms and visual statistics pages, where the generated layouts of web elements are all preset default layouts.

7. The medical follow-up system according to claim 6, wherein The image recognition module also includes a semantic recognition interface, which is used to judge whether the text is web element text or form filling text based on the recognized text content.

8. The medical follow-up system according to claim 7, characterized in that, The text types recognized by the image recognition module include handwritten and printed texts. The image recognition module is also used to read the data processing logic represented by the text based on the semantic recognition interface. When judging web element text, it recognizes the semantics of the text marked by preset special characters in the image and uses the semantics as the data processing logic to pair and add the logical parameters of web elements; The element design menu is also used to input text and convert it into logical parameters using the semantic recognition interface; The image recognition module is also used to assist in encapsulating business processes.

9. The medical follow-up system according to claim 8, characterized in that, It further includes a retrieval module which is used to provide multi-condition joint retrieval of the persistence module. The definition of the multi-condition joint retrieval terms includes yes, no, and, or, greater than, and less than. The retrieval module includes visual ETL and an API interface for external calls; The persistence module is also used to store multi-condition joint retrieval terms.

10. The medical follow-up system according to claim 9, characterized in that, It further includes a data delivery module which is used to provide a number of data tags for dragging and selection. The data tags are respectively used to bind one or more of patient information, medical process information, follow-up information, and personnel information. The data delivery module is also used to quickly generate text information by selecting or dragging the data tags, and the data delivery module is used to send the text information through remote communication.

11. The medical follow-up system according to claim 10, characterized in that, It further includes a document processing module which is used to import documents, identify and extract patient information, medical process information, follow-up information, and personnel information in the documents for storage, and the document processing module supports the conversion between new and old documents; The document processing module is also used to print a corresponding identification code on the paper document when the electronic document is printed into a paper document, and the identification code is used to provide access to the electronic document after scanning.

12. The medical follow-up system according to claim 11, wherein, The persistence module is deployed privately; It further includes a security management module which is used for customizing password rules, setting two-factor authentication options, setting interface watermarks, encrypting data fields, displaying information masks, auditing logs, and RBAC permission control.

13. A medical follow-up device, a device based on the medical follow-up system according to any one of claims 1-12, characterized in that, It includes a mobile terminal (1) which is internally provided with a touch display screen, a camera, a vibration motor, and a buzzer. The mobile terminal (1) is signal-connected to a portable vital sign information collector (2).

Citation Information

Patent Citations

  • Patient follow-up system for clinical medicine and scientific research

    CN102592200A

  • Medical system facilitating follow-up visit to patients

    CN111169781A

  • Medical follow-up visit method and follow-up visit system

    CN112768092A