An information storage system for the diagnosis and treatment of diabetes in children
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- RESEARCH INSTITUTE OF TSINGHUA UNIVERSITY IN SHENZHEN
- Filing Date
- 2023-01-13
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]针对现有技术的不足,本发明提供了一种用于儿童糖尿病诊疗的信息储存系统,旨在解决电脑硬盘的存储量有限,影响病理提取与数据丢失的问题
[0015](1)本发明通过设置病理信息纳入模块能够将儿童患者的病理信息输入到存储模块内短暂存储,存储模块能够通过设置的信息传输模块A将信息传输给云端存储模块中存储起来,同时设置家长信息录入模块能够将儿童家长的信息输入到存储模块内,从而与儿童患者的病理信息绑定。云端存储模块能够存储大量的病理信息种子,当需要提取历史病理信息时,可以通过信息传输模块A将云端存储模块中存储的信息提取出来并通过文件下载模块下载,在需要使用的时候调取存储在云端的资料,有效避免计算机硬盘内的存储空间被大量占用,使用方便且不会造成资料的丢失。
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Figure CN116052829B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of information storage for pediatric disease diagnosis and treatment, and particularly relates to an information storage system for the diagnosis and treatment of pediatric diabetes. Background Technology
[0002] Information storage is software that computer equipment must use during operation to store and record information and prevent information loss.
[0003] In current technology, information used for the diagnosis and treatment of pediatric neurological diseases is stored on computer hard drives. However, the information contains a lot of data and has a large storage capacity, which limits the storage capacity of hard drives. When there is a lot of information stored, it is necessary to delete some old cases to free up space or replace the hard drive. However, this hinders the retrieval of records later, affects the extraction of historical pathology, and may affect the current treatment plan. At the same time, information stored on computer hard drives is prone to loss, and the current technology for collecting information on pediatric patients is not perfect, which also affects doctors' ability to retrieve information for diagnosis and treatment later. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides an information storage system for the diagnosis and treatment of childhood diabetes, aiming to solve the problem of limited storage capacity of computer hard drives, which affects pathological extraction and data loss.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] An information storage system for the diagnosis and treatment of childhood diabetes includes a pathology information ingestion module, a parent information input module, a storage module, an information transmission module A, a cloud storage module, and a file download module. The output of the pathology information ingestion module is connected to the input of the storage module, the output of the parent information input module is connected to the input of the storage module, the output of the storage module is connected to the input of the information transmission module A, the information transmission module A is bidirectionally connected to the cloud storage module, and the output of the information transmission module A is connected to the input of the file download module.
[0007] As a preferred embodiment, the cloud storage module includes an information transmission module B, an information classification module, an information classification numbering module, a case information import module, multiple accounts, a case information export module, and a numbering information authentication module. The information transmission module B is bidirectionally connected to the information classification module. The output end of the information classification module is connected to the input end of the information classification numbering module. The output end of the information classification numbering module is connected to the input end of the case information import module. The output end of the case information import module is connected to the input ends of the multiple accounts. The output ends of the multiple accounts are connected to the input end of the case information export module. The output end of the case information export module is connected to the input end of the numbering information authentication module.
[0008] As a preferred embodiment, the multiple accounts include Account A, Account B, and Account C. The information transmission module B is used to transmit the collected case information to the information classification module. The information classification module is used to classify the case information into the child's identity information, medical records, pictures, and video information. The information classification numbering module is used to number the child's identity information, medical records, pictures, and video information. The numbering method can use specific characters for general classification and numerical characters for sub-classification. The information is then imported into Account A, Account B, and Account C respectively through the pathology information import module.
[0009] As a preferred embodiment, the parent information entry module includes a name information entry module, an entry time recording module B, and an ID number information entry module. The name information entry module is used to enter the parent's name information, the ID number information entry module is used to enter the parent's ID number information, and the entry time recording module B is used to record the entry time of the parent's name and ID number.
[0010] As a preferred embodiment, the pathology information inclusion module includes a physician information recording module, a child information input module, a treatment frequency entry module, an entry time recording module A, and an information processing and aggregation module. The output terminals of the physician information recording module, the treatment frequency entry module, the child information input module, and the treatment frequency entry module are all connected to the input terminal of the entry time recording module A, and the output terminal of the entry time recording module A is connected to the input terminal of the information processing and aggregation module.
[0011] As a preferred embodiment, the pathology information incorporation module further includes a key information generation module, a key splitting module, a verification information editing module, an SMS sending and receiving module, an information security verification module, and a participant information import module. The input time recording module A is bidirectionally connected to the key information generation module. The output of the key information generation module is connected to the input of the key splitting module. The output of the key splitting module is connected to the input of the verification information editing module. The output of the verification information editing module is connected to the input of the SMS sending and receiving module. The output of the SMS sending and receiving module is connected to the input of the information security verification module. The output of the information security verification module is connected to the input of the SMS sending and receiving module. The input of the key splitting module is connected to the output of the participant information import module.
[0012] As a preferred embodiment, the system further includes a file information decompression module, an information display module, a related pathology search module, a related pathology recommendation module, and a treatment plan extraction module. The output of the file information decompression module is connected to the input of the information display module. The output of the file information decompression module is connected to the output of the related pathology search module. The output of the related pathology search module is connected to the input of the related pathology recommendation module. The related pathology recommendation module is bidirectionally connected to the storage module. The output of the related pathology recommendation module is connected to the input of the treatment plan extraction module. The treatment plan extraction module is bidirectionally electrically connected to the information transmission module A. The output of the treatment plan extraction module is connected to the input of the information display module.
[0013] As a preferred embodiment, the system further includes a file search module, an information deletion module, a same-name file comparison module, an automatic filtering and deletion module, an automatic folder creation module, a same-name file automatic categorization module, and a file information summary creation module. The information display module is bidirectionally connected to the file search module. The input end of the information display module is connected to the output end of the information deletion module. The file search module is bidirectionally connected to the same-name file comparison module. The output end of the same-name file comparison module is electrically connected to the input end of the automatic filtering and deletion module. The output end of the automatic filtering and deletion module is electrically connected to the input end of the automatic folder creation module. The output end of the automatic folder creation module is electrically connected to the input end of the same-name file automatic categorization module. The same-name file automatic categorization module is bidirectionally connected to the file information summary creation module.
[0014] The information storage system for the diagnosis and treatment of childhood diabetes described in this invention has the following advantages:
[0015] (1) This invention, by setting up a pathology information incorporation module, allows the pathology information of pediatric patients to be temporarily stored in a storage module. The storage module can then transmit the information to a cloud storage module via an information transmission module A. Simultaneously, a parent information input module allows the information of the child's parents to be input into the storage module, thus binding it to the pediatric patient's pathology information. The cloud storage module can store a large number of pathology information seeds. When historical pathology information needs to be retrieved, it can be extracted from the cloud storage module via information transmission module A and downloaded via a file download module. When needed, the data stored in the cloud can be retrieved, effectively avoiding excessive use of computer hard drive storage space. This method is convenient and prevents data loss.
[0016] (2) This invention incorporates a pathology information module, in which the child information input module records the child's pathology information and age information; the treatment frequency input module records the child's historical treatment frequency; the treating physician information recording module records the physician information for each child's treatment, such as the physician's name, work ID number, and treatment duration; the input time recording module A records the input time of the above four pieces of information to avoid time discrepancies affecting subsequent treatment work; the key generation module generates a key for the input information, and when information needs to be extracted later, the corresponding information can be retrieved from the cloud storage module through the key information, without needing to extract information such as the child's name, thus avoiding information duplication that affects accurate information extraction; and the information organization and collection module integrates all information into a file and sends it to the cloud storage module, facilitating the one-time extraction of information later.
[0017] (3) This invention establishes a cloud storage module, in which information transmission module B can decompose and classify the collected case information into children's identity information, medical records, pictures, and video information. An information classification and numbering module assigns numbers to various types of cases. The numbering method can use specific characters for general categorization and numerical characters for subcategorization, such as A-1001, A-1002, and A-1003. This information is then imported into accounts A, B, and C via a pathology information import module. Utilizing multiple different accounts to store different information ensures that information is protected against damage or account disruption. When the system is activated, it will not affect all information, greatly improving storage security. At the same time, the transmission is divided into multiple transmission channels, resulting in higher transmission efficiency. After the information classification and numbering module numbers different files, it transmits the numbering information to the storage module through information transmission modules A and B, making it convenient for medical staff to keep records. The numbering information can be sent to the cloud storage module later. After the numbering information is verified to be correct, the numbering information authentication module extracts the information from accounts A, B, and C through the pathology information export module and transmits the numbering information to the storage module through information transmission modules A and B.
[0018] (4) In this invention, a parent information entry module is set up, in which the name information entry module and the ID number information entry module can record the parent's name and ID number and bind them with the information of the child seeking medical treatment. The entry time recording module B records the entry time of the parent's information. If the entry time recording module A records the child's information similarly, the time comparison can avoid errors in the binding information. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the system structure of an information storage method for the diagnosis and treatment of childhood diabetes proposed in this invention;
[0020] Figure 2 This is a schematic diagram of the submodule system structure of the pathological information inclusion module in the information storage method for the diagnosis and treatment of childhood diabetes proposed in this invention;
[0021] Figure 3 This is a schematic diagram of the sub-module system structure of the cloud storage module in the information storage method for the diagnosis and treatment of childhood diabetes proposed in this invention;
[0022] Figure 4 This is a schematic diagram of the submodule system structure of the parent information entry module in an information storage method for the diagnosis and treatment of childhood diabetes proposed in this invention. Detailed Implementation
[0023] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0024] Reference Figures 1 to 4 As shown, this invention provides an information storage system for the diagnosis and treatment of childhood diabetes, including a pathology information incorporation module, a parent information input module, a storage module, an information transmission module A, a cloud storage module, and a file download module. The output end of the pathology information incorporation module is connected to the input end of the storage module, the output end of the parent information input module is connected to the input end of the storage module, the output end of the storage module is connected to the input end of the information transmission module A, the information transmission module A is bidirectionally connected to the cloud storage module, and the output end of the information transmission module A is connected to the input end of the file download module.
[0025] This invention, by incorporating a pathology information module, allows for the temporary storage of pediatric patients' pathology information in a storage module. This storage module, via an information transmission module A, transmits the information to a cloud storage module for further storage. Simultaneously, a parent information entry module allows for the input of the child's parents' information into the storage module, thus linking it to the child's pathology information. The cloud storage module can store a large number of pathology information seeds. When historical pathology information needs to be retrieved, it can be extracted from the cloud storage module via information transmission module A and downloaded via a file download module. This allows for convenient retrieval of data stored in the cloud when needed, effectively avoiding excessive use of computer hard drive storage space and preventing data loss.
[0026] Specifically, the cloud storage module includes an information transmission module B, an information classification module, an information classification numbering module, a case information import module, multiple accounts, a case information export module, and a numbering information authentication module. The information transmission module B is bidirectionally connected to the information classification module. The output of the information classification module is connected to the input of the information classification numbering module. The output of the information classification numbering module is connected to the input of the case information import module. The output of the case information import module is connected to the input of the multiple accounts. The output of the multiple accounts is connected to the input of the case information export module. The output of the case information export module is connected to the input of the numbering information authentication module.
[0027] Specifically, there are multiple accounts, including Account A, Account B, and Account C. The information transmission module B is used to transmit the collected case information to the information classification module. The information classification module is used to classify the case information into the child's identity information, medical records, pictures, and video information. The information classification numbering module is used to number the child's identity information, medical records, pictures, and video information. The numbering method can use specific characters for general classification and numerical characters for sub-classification. The information is then imported into Account A, Account B, and Account C respectively through the pathology information import module.
[0028] This invention incorporates a cloud storage module, where the information transmission module B can decompose and classify collected case information into categories such as children's identity information, medical records, images, and videos. An information classification and numbering module assigns numbers to various types of cases. The numbering can be based on specific characters for general categorization and numerical characters for subcategorization, such as A-1001, A-1002, and A-1003. Specific characters can be replaced with the patient's initials, facilitating searches for the patient's pathology. Numerical characters can be represented by the year, month, and day, with the last digit indicating the number of patient visits. This allows for quick and convenient retrieval of simple but necessary data when searching for patients, which can then be imported separately via the pathology information import module. By storing different information in accounts A, B, and C, the system ensures that information corruption or account disruptions do not affect all information, significantly improving storage security. Furthermore, multiple transmission channels enhance transmission efficiency. The information classification and numbering module assigns numbers to different files, which are then transmitted to the storage module via information transmission modules A and B. This facilitates record-keeping by medical staff, who can later send the numbered information to the cloud storage module. The numbering authentication module carefully verifies the accuracy of the numbered information before extracting the information from accounts A, B, and C via the pathology information export module, and then transmitting the numbered information to the storage module via information transmission modules A and B.
[0029] Specifically, the parent information entry module includes a name information entry module, an entry time recording module B, and an ID number information entry module. The name information entry module is used to enter the parent's name information, the ID number information entry module is used to enter the parent's ID number information, and the entry time recording module B is used to record the entry time of the parent's name and ID number.
[0030] In this invention, a parent information entry module is set up, in which the name information entry module and the ID number information entry module can record the parent's name and ID number and bind them with the information of the child seeking medical treatment. The entry time recording module B records the entry time of the parent's information. If the entry time recording module A records the child's information similarly, the time comparison can avoid errors in the binding information.
[0031] Specifically, the pathology information inclusion module includes a physician information recording module, a child information input module, a treatment frequency entry module, an entry time recording module A, and an information processing and aggregation module. The outputs of the physician information recording module, the treatment frequency entry module, the child information input module, and the treatment frequency entry module are all connected to the input of the entry time recording module A, and the output of the entry time recording module A is connected to the input of the information processing and aggregation module.
[0032] Specifically, the pathology information incorporation module also includes a key information generation module, a key splitting module, a verification information editing module, an SMS sending and receiving module, an information security verification module, and a module for importing information on participants in diagnosis and treatment. The entry time recording module A is bidirectionally connected to the key information generation module. The output of the key information generation module is connected to the input of the key splitting module. The output of the key splitting module is connected to the input of the verification information editing module. The output of the verification information editing module is connected to the input of the SMS sending and receiving module. The output of the SMS sending and receiving module is connected to the input of the information security verification module. The output of the information security verification module is connected to the input of the SMS sending and receiving module. The input of the key splitting module is connected to the output of the module for importing information on participants in diagnosis and treatment.
[0033] This invention incorporates a pathology information input module, which temporarily stores the pathology information of pediatric patients into a storage module. The pediatric information input module records the child's pathology information and age. The treatment frequency input module records the child's historical treatment frequency. The treating physician information recording module records the physician information for each treatment, such as the physician's name, work ID number, and treatment duration. The input time recording module A records the input time of the above four pieces of information, preventing discrepancies from affecting subsequent treatment. The key generation module generates a key based on the input information. When information needs to be retrieved later, the corresponding information can be retrieved from the cloud storage module using the key information, eliminating the need to extract information by shrinking the child's name, thus avoiding duplicate information that could affect accurate retrieval. The information organization and aggregation module integrates all information into a single file and sends it to the cloud storage module for convenient one-time retrieval of all information later.
[0034] After generating the key, the key information generation module sends it to the key splitting module. The patient information import module imports the information of the doctors and the number of patients involved into the key splitting module. The key splitting module splits the key into several smaller keys based on the number of patients and sends these smaller keys to the verification information editing module. The verification information editing module edits the verification information and sends it to the SMS receiving module. The SMS receiving module receives the verification information from each doctor's mobile phone, and the doctor sends it to the information receiving module. The information receiving module then sends the verification information to the information security verification module. After successful verification, the information receiving module sends a signal to the SMS receiving module. Finally, the SMS receiving module sends the smaller keys stored in the verification information editing module to the doctor. When a doctor needs to retrieve pathology information, all doctors must use the keys together to retrieve it effectively, greatly improving the confidentiality of pathology information.
[0035] Specifically, it also includes a file information decompression module, an information display module, a related pathology search module, a related pathology recommendation module, and a treatment plan extraction module. The output end of the file information decompression module is connected to the input end of the information display module, the output end of the file information decompression module is connected to the output end of the related pathology search module, the output end of the related pathology search module is connected to the input end of the related pathology recommendation module, the related pathology recommendation module is bidirectionally connected to the storage module, the output end of the related pathology recommendation module is connected to the input end of the treatment plan extraction module, the treatment plan extraction module is bidirectionally electrically connected to the information transmission module A, and the output end of the treatment plan extraction module is connected to the input end of the information display module.
[0036] The information display module can show the information that needs to be stored. The related pathology search module can search for historical related pathologies based on file information. The related pathology recommendation module can retrieve pathology records from the storage module, and the retrieved pathology records can be passed to the whole material extraction module. The diagnosis and treatment plan extraction module retrieves information from the cloud storage module through information transmission module A, and passes the retrieved information to the information display module, making it convenient for doctors to view the diagnosis and treatment records of similar historical pathologies.
[0037] Specifically, it also includes a file search module, an information deletion module, a same-name file comparison module, an automatic filtering and deletion module, an automatic folder creation module, a same-name file automatic classification module, and a file information summary creation module. The information display module and the file search module are bidirectionally connected. The input end of the information display module is connected to the output end of the information deletion module. The file search module and the same-name file comparison module are bidirectionally connected. The output end of the same-name file comparison module is electrically connected to the input end of the automatic filtering and deletion module. The output end of the automatic filtering and deletion module is electrically connected to the input end of the automatic folder creation module. The output end of the automatic folder creation module is electrically connected to the input end of the automatic same-name file classification module. The same-name file automatic classification module and the file information summary creation module are bidirectionally connected.
[0038] The information deletion module removes duplicate information from the storage module to prevent unnecessary storage space usage. The file search module searches for various files stored on the hard drive, selecting all files with the same name and comparing their file format and size. If files with the same format and size are found, the automatic filtering and deletion module automatically identifies and deletes them, except for those with the most recent dates, effectively reducing the space occupied by redundant files and improving hard drive space utilization. The automatic folder creation module automatically creates a master folder for files with the same name. The automatic file categorization module gathers all files with the same name but different formats and sizes into the master folder. The file information summary creation module generates a simple table based on the collected file information, marking the format, creation date, closing date, number of modifications, and file size of each file, greatly facilitating the work of diagnosing and treating patients.
[0039] The above description is merely a preferred embodiment of the present invention and does not constitute any limitation on the technical scope of the present invention. Therefore, any minor modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present invention shall still fall within the scope of the technical solution of the present invention.
Claims
1. An information storage system for the diagnosis and treatment of childhood diabetes, characterized in that, The system includes a pathology information inclusion module, a parent information entry module, a storage module, an information transmission module A, a cloud storage module, and a file download module. The output of the pathology information inclusion module is connected to the input of the storage module, the output of the parent information entry module is connected to the input of the storage module, the output of the storage module is connected to the input of the information transmission module A, the information transmission module A is bidirectionally connected to the cloud storage module, and the output of the information transmission module A is connected to the input of the file download module. The cloud storage module includes an information transmission module B, an information classification module, an information classification numbering module, a case information import module, multiple accounts, a case information export module, and a numbering information authentication module. The information transmission module B is bidirectionally connected to the information classification module. The output end of the information classification module is connected to the input end of the information classification numbering module. The output end of the information classification numbering module is connected to the input end of the case information import module. The output end of the case information import module is connected to the input ends of the multiple accounts. The output ends of the multiple accounts are connected to the input end of the case information export module. The output end of the case information export module is connected to the input end of the numbering information authentication module. Multiple accounts include account A, account B, and account C. The information transmission module B is used to transmit the collected case information to the information classification module. The information classification module is used to classify the case information into the child's identity information, medical records, pictures, and video information. The information classification numbering module is used to number the child's identity information, medical records, pictures, and video information. The numbering method uses specific characters for general classification and numerical characters for sub-classification. The information is then imported into account A, account B, and account C respectively through the pathology information import module. The pathology information incorporation module includes a key information generation module, a key splitting module, a verification information editing module, an SMS sending and receiving module, an information security verification module, a patient information import module, a physician information recording module, a child information input module, a treatment frequency entry module, an entry time recording module A, and an information processing and aggregation module. The entry time recording module A is bidirectionally connected to the key information generation module. The output of the key information generation module is connected to the input of the key splitting module. The output of the key splitting module is connected to the input of the verification information editing module. The output of the verification information editing module is connected to the input of the SMS sending and receiving module. The output of the SMS sending and receiving module is connected to the input of the information security verification module. The output of the information security verification module is connected to the SMS sending and receiving module. The input end of the message sending and receiving module is connected, and the input end of the key splitting module is connected to the output end of the participant information import module. The key splitting module is used to split the key into multiple smaller keys according to the number of participants. When pathological information needs to be retrieved, all participants need to use the key together to retrieve it effectively. The output ends of the doctor information recording module, the child information input module, and the number of treatments entry module are all connected to the input end of the entry time recording module A. The output end of the entry time recording module A is connected to the input end of the information processing and collection module. The entry time recording module A can record the entry time of the doctor information recording module, the child information input module, and the number of treatments entry module, and integrate all the information into a single file through the information processing and collection module. It also includes a file information decompression module, an information display module, a related pathology search module, a related pathology recommendation module, and a treatment plan extraction module. The output end of the file information decompression module is connected to the input end of the information display module, the output end of the file information decompression module is connected to the output end of the related pathology search module, the output end of the related pathology search module is connected to the input end of the related pathology recommendation module, the related pathology recommendation module is bidirectionally connected to the storage module, the output end of the related pathology recommendation module is connected to the input end of the treatment plan extraction module, the treatment plan extraction module is bidirectionally electrically connected to the information transmission module A, and the output end of the treatment plan extraction module is connected to the input end of the information display module. It also includes a file search module, a file comparison module with the same name module, an automatic filtering and deletion module, an automatic folder creation module, an automatic file classification module with the same name module, and a file information summary table creation module. These modules constitute an automated clinical file management workflow. The automatic filtering and deletion module is used to delete files with the same name and size after comparison, except for those with the most recent date.
2. The information storage system for the diagnosis and treatment of childhood diabetes according to claim 1, characterized in that, The parent information entry module includes a name information entry module, an entry time recording module B, and an ID number information entry module. The name information entry module is used to enter the parent's name information, the ID number information entry module is used to enter the parent's ID number information, and the entry time recording module B is used to record the entry time of the parent's name and ID number.
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