Patient information statistical system and method for emergency department
By introducing biomimetic units and a plane transfer mechanism into the medical platform, the problem of information leakage caused by unauthorized network access was solved, and the secure storage and data protection of patient information were achieved.
Patent Information
- Application Number
- CN202510754252.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-06
- Publication Date
- 2025-11-04
AI Technical Summary
Existing medical platforms are at risk of information leakage when faced with unauthorized network access, and cannot effectively protect highly sensitive patient information.
By employing a bionic unit and a bit-plane transfer mechanism, when unauthorized network access occurs, the storage unit and the bionic unit are transferred to a secure bit plane, with the bionic unit replacing the storage unit until a secure state is reached, thus ensuring data security.
Effectively address unauthorized network access, ensure the security of patient disease information, prevent information leakage, and ensure the security and continuity of data during unauthorized access.
Smart Images

Figure CN120893083A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of information statistics technology, specifically to a patient information statistics system and method for emergency departments. Background Technology
[0002] In today's rapidly developing digital healthcare environment, the importance of medical data is becoming increasingly prominent, and its security is facing unprecedented challenges. Patient information not only includes basic personal information but also highly sensitive medical data such as disease diagnoses, treatment plans, and allergy history. This data plays a crucial role in patients' subsequent treatment, health management, and medical research. Therefore, it is necessary to protect patients' disease-related information. Existing medical platforms mostly rely on firewalls and other technologies to deal with unauthorized network access, but if the defense fails, there is a risk of information leakage. Summary of the Invention
[0003] The purpose of this invention is to provide a patient information statistics system and method for emergency departments to address the shortcomings of the prior art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: an emergency department patient information statistics system, comprising:
[0005] The registration module is used to collect patient identity information, register the patient terminal based on the patient identity information, enable the storage unit based on the patient terminal, and connect the patient terminal to the storage unit.
[0006] The storage module, connected to the registration module, is used to collect patient disease information in real time, store the patient disease information in the corresponding storage unit, and derive a bionic unit based on the storage status of the storage unit, and replace the storage unit with the bionic unit.
[0007] The information management module, connected to the storage module, is used to organize patient disease information to obtain disease categories, bind the corresponding department based on the disease category, and display the patient's disease information to the bound department.
[0008] In a preferred embodiment, the registration module includes:
[0009] The registration unit is used to collect patient identity information and register patients on the medical platform.
[0010] The connection unit is used to connect the patient terminal to the medical platform, enable the storage unit in the medical platform, and connect the patient terminal to the storage unit.
[0011] In a preferred embodiment, the connection unit includes:
[0012] The setup unit is used to set up multiple meta-storage boundaries in the medical platform. The meta-storage boundaries include storage units, multiple bionic units, and multiple dimensions.
[0013] Overlapping units are used when multiple bionic units and storage units are in an overlapping state. The overlapping bionic units and storage units are mapped to bit planes. The number of bit planes is the same as the total number of multiple bionic units and storage units. Multiple bit planes are interconnected.
[0014] The connection unit is used to enable the storage unit in the medical platform, connect the patient terminal to the plane through the medical platform, and connect the patient terminal to the storage unit through the plane.
[0015] In a preferred embodiment, the overlapping unit includes:
[0016] The configuration unit is used to configure multiple bionic units for a corresponding storage unit and determine multiple authorized connection ports for the storage unit;
[0017] The port connection unit is used to set a corresponding number of bionic ports on the bionic unit based on multiple connection ports. The multiple bionic ports are connected one-to-one with the connection ports to obtain multiple bionic units and storage units in an overlapping state. The multiple bionic ports are connected to the bit plane where they are located.
[0018] In a preferred embodiment, the storage module includes:
[0019] Data storage unit, used to collect patient disease information and store it in the corresponding storage unit;
[0020] The transfer unit is used to obtain the storage status of the storage unit, which is whether the storage unit is accessed by an unauthorized network. When it is accessed by an unauthorized network, the storage unit is disconnected from the target bionic unit, the target bionic unit is connected to the unauthorized network, and the storage unit is transferred to another dimension. It is connected to the other dimension through multiple authorized connection ports and continues to be connected to the patient.
[0021] In a preferred embodiment, the transfer unit includes:
[0022] The access unit is used to select a bionic unit as the target bionic unit when the storage unit is accessed by an unauthorized network.
[0023] An access unit is used to allow unauthorized networks to access the target bionic unit through the storage unit, while simultaneously disconnecting the connection port of the storage unit from the bionic port of the target bionic unit.
[0024] The transfer connection unit is used to transfer the storage unit and other bionic units (excluding the target bionic unit) to another plane, establish a connection between the storage unit and other bionic units (excluding the target bionic unit) and the other plane, and continue to connect the patient end and the storage unit through the other plane.
[0025] In a preferred embodiment, the information management module includes:
[0026] Obtain the department corresponding to the patient's disease information and bind the patient's end to the corresponding department end through the medical platform;
[0027] The medical platform will send the patient's disease information to the corresponding department.
[0028] This invention also provides a method for patient information statistics in the emergency department, comprising:
[0029] Collect patient identity information, register the patient terminal based on the patient identity information, enable the storage unit based on the patient terminal, and connect the patient terminal to the storage unit;
[0030] The system collects patient disease information in real time, stores the information in corresponding storage units, and derives bionic units based on the storage status of the storage units, replacing the storage units with these bionic units.
[0031] The patient's disease information is organized to obtain disease categories, and the corresponding department is linked according to the disease category. The patient's disease information is then displayed to the linked department.
[0032] The technical effects and advantages provided by the present invention in the above technical solution are as follows:
[0033] When unauthorized network access occurs, this invention activates a bionic unit, and the storage unit and other bionic units are transferred to another dimension. If unauthorized network access still occurs after the transfer to another dimension, then another bionic unit is activated, and the storage unit and the remaining bionic units are transferred again until the storage unit reaches a safe dimension. This ensures the security of the storage unit for patient disease information, has the ability to cope with unauthorized network access, and guarantees data security. Attached Figure Description
[0034] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this invention. For those skilled in the art, other drawings can be obtained based on these drawings.
[0035] Figure 1 This is a system block diagram of the present invention.
[0036] Figure 2 This is a flowchart of the method of the present invention. Detailed Implementation
[0037] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments 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. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0038] Example 1, please refer to Figure 1 As shown in this embodiment, an emergency department patient information statistics system includes:
[0039] The registration module is used to collect patient identity information, register the patient terminal based on the patient identity information, enable the storage unit based on the patient terminal, and connect the patient terminal to the storage unit.
[0040] The storage module, connected to the registration module, is used to collect patient disease information in real time, store the patient disease information in the corresponding storage unit, and derive a bionic unit based on the storage status of the storage unit, and replace the storage unit with the bionic unit.
[0041] The information management module, connected to the storage module, is used to organize patient disease information to obtain disease categories, bind the corresponding department based on the disease category, and display the patient's disease information to the bound department.
[0042] It is important to note that in today's rapidly developing digital healthcare environment, the importance of medical data is increasingly prominent, and its security faces unprecedented challenges. Patient information not only includes basic personal data but also highly sensitive medical data such as disease diagnoses, treatment plans, and allergy history. This data plays a crucial role in patients' subsequent treatment, health management, and medical research. Therefore, it is necessary to protect patients' disease-related information. Existing medical platforms mostly rely on firewalls and other technologies to deal with unauthorized network access. However, if the defense fails, there is a risk of information leakage. When unauthorized network access occurs, a bionic unit is activated, and the storage unit and other bionic units are moved to another dimension. If unauthorized network access still occurs after moving to another dimension, another bionic unit is activated, and the storage unit and other bionic units are moved again until the storage unit reaches a secure dimension. This ensures the security of the storage unit's storage of patient disease information, has the ability to cope with unauthorized network access, and guarantees data security.
[0043] In one embodiment, the registration module includes:
[0044] The registration unit is used to collect patient identity information and register patients on the medical platform.
[0045] The connection unit is used to connect the patient terminal to the medical platform, enable the storage unit in the medical platform, and connect the patient terminal to the storage unit.
[0046] It should be noted that after the emergency department receives a patient, the patient's identity information is collected and registered to obtain the patient terminal. The patient identity information includes basic information such as the patient's name, age, and gender. The patient terminal is registered through the medical platform, thus enabling the use of storage units within the medical platform. These storage units are virtual machines (used to store information) within the medical platform. There is a one-to-one connection between the patient terminal and the storage unit. There are multiple storage units within the medical platform, and each storage unit is in standby mode. When a new patient terminal is registered, a standby storage unit is activated, and then the patient terminal is connected to the storage unit. The storage unit can store subsequent information about the patient's disease.
[0047] In one embodiment, the connection unit includes:
[0048] The setup unit is used to set up multiple meta-storage boundaries in the medical platform. The meta-storage boundaries include storage units, multiple bionic units, and multiple dimensions.
[0049] Overlapping units are used when multiple bionic units and storage units are in an overlapping state. The overlapping bionic units and storage units are mapped to bit planes. The number of bit planes is the same as the total number of multiple bionic units and storage units. Multiple bit planes are interconnected.
[0050] The connection unit is used to enable the storage unit in the medical platform, connect the patient terminal to the plane through the medical platform, and connect the patient terminal to the storage unit through the plane;
[0051] In one embodiment, the overlapping unit includes:
[0052] The configuration unit is used to configure multiple bionic units for a corresponding storage unit and determine multiple authorized connection ports for the storage unit;
[0053] The port connection unit is used to set a corresponding number of bionic ports on the bionic unit based on multiple connection ports. The multiple bionic ports are connected one-to-one with the connection ports to obtain multiple bionic units and storage units in an overlapping state. The multiple bionic ports are connected to the bit plane where they are located.
[0054] It should be noted that the data space set up in the medical platform for storing subsequent patient disease information exists as a technical architecture. This includes a storage unit, multiple bionic units, and multiple dimensions. The storage unit is a virtual machine used to store subsequent patient disease information. The multiple bionic units are also virtual machines, used to replace the storage unit to access unauthorized information. The bionic units are not used to store subsequent patient disease information. The dimensions here are databases. Multiple data spaces are divided in the medical platform to support the storage unit and the bionic units. The multiple dimensions are interconnected, allowing the storage unit and bionic units to be transferred between multiple dimensions. For example, when the storage unit is accessed by an unauthorized network, the unauthorized network access can be routed to one of the bionic units. The bionic unit connects to its dimension through a bionic port, and the storage unit connects to the bionic port through a connection port, achieving an overlap between multiple bionic units and the storage unit. This provides good protection for patient disease information, preventing unauthorized network access and tampering, and ensuring the security of patient disease information. Therefore, subsequent treatment of patients can be based on secure data as a reference for disease management.
[0055] In one embodiment, the storage module includes:
[0056] Data storage unit, used to collect patient disease information and store it in the corresponding storage unit;
[0057] The transfer unit is used to obtain the storage status of the storage unit, where the storage status is whether the storage unit is accessed by an unauthorized network. When it is accessed by an unauthorized network, the storage unit is disconnected from the target bionic unit, the target bionic unit is connected to the unauthorized network, and the storage unit is transferred to another dimension. It is connected to the other dimension through multiple authorized connection ports and continues to be connected to the patient.
[0058] In one embodiment, the transfer unit includes:
[0059] The access unit is used to select a bionic unit as the target bionic unit when the storage unit is accessed by an unauthorized network.
[0060] An access unit is used to allow unauthorized networks to access the target bionic unit through the storage unit, while simultaneously disconnecting the connection port of the storage unit from the bionic port of the target bionic unit.
[0061] The transfer connection unit is used to transfer the storage unit and other bionic units (excluding the target bionic unit) to another plane, establish a connection between the storage unit and other bionic units (excluding the target bionic unit) and the other plane, and continue to connect the patient end and the storage unit through the other plane.
[0062] It should be noted that patient disease information is collected through diagnosis by medical staff and examination by medical devices. This information is then stored in a storage unit via the patient's end. The patient's end and authorized medical staff can connect to a dimensional plane. The dimensional plane connects the authorized medical staff to the storage unit through multiple authorized connection ports. When the storage unit is accessed by an unauthorized network, a bionic unit is selected as the target bionic unit. Since the storage unit is connected to the bionic ports of every bionic unit, regardless of which authorized connection port is accessed by an unauthorized network, the unauthorized network can be allowed to access the target bionic unit through the storage unit. Simultaneously, the connection port of the storage unit is disconnected from the bionic port of the target bionic unit. The storage unit and all other bionic units except the target bionic unit are then transferred to another dimensional plane, establishing... The connection between the storage unit and other bionic units (excluding the target bionic unit) and other planes allows the patient terminal to continue connecting to the storage unit via these other planes, without affecting the use of the storage unit. After the target bionic unit connects to an unauthorized network, it can transfer to the plane where the storage unit is located and re-establish a connection with the storage unit. This ensures the storage unit is always ready to connect to unauthorized networks. Multiple bionic units are used to ensure the storage unit can continuously handle multiple unauthorized network accesses. The total number of bionic units and storage units is the same as the number of planes. The number of bionic units represents the number of unauthorized network accesses the storage unit can continuously handle. The security of the storage unit can be understood by observing the planes it transfers to, which is represented by a security index. The formula for the security index is: ,in, For safety index, The number of bit planes transferred from the storage unit. The number of bionic units that are also connected to the storage unit. A constant that is greater than zero. The weighting factor for the number of storage unit transfer planes. The total number of dimensions represents the security index. A higher security index indicates a lower level of security for the storage unit. For example, in the event of unauthorized network access, one bionic unit is activated, and the storage unit and other bionic units are moved to another dimension. If unauthorized network access still occurs after moving to another dimension, another bionic unit is activated, and the storage unit and the remaining bionic units are moved again until the storage unit reaches a secure dimension. This ensures the security of the storage unit for patient disease information and the ability to cope with unauthorized network access, thus guaranteeing data security.
[0063] In one embodiment, the information management module includes:
[0064] Obtain the department corresponding to the patient's disease information and bind the patient's end to the corresponding department end through the medical platform;
[0065] The medical platform will send the patient's disease information to the corresponding department.
[0066] It should be noted that patient disease information needs to be categorized. For example, for cardiovascular emergency patients, the corresponding cardiology department can cooperate with the emergency department to pre-connect the patient's information, understand the patient's information in advance, and make preparations for cooperation. Through the medical platform, the corresponding patient disease information can be sent to the linked department.
[0067] Example 2, please refer to Figure 2 As shown in this embodiment, a method for statistical analysis of patient information in an emergency department includes:
[0068] S1. Collect patient identity information, register the patient terminal based on the patient identity information, enable the storage unit based on the patient terminal, and connect the patient terminal to the storage unit;
[0069] S2. Collect patient disease information in real time, store the patient disease information in the corresponding storage unit, derive a bionic unit based on the storage status of the storage unit, and replace the storage unit with the bionic unit.
[0070] S3. Organize the patient's disease information to obtain the disease category, bind the corresponding department according to the disease category, and send the patient's disease information to the bound department.
[0071] As described in steps S1-S3 above, when unauthorized network access occurs, one bionic unit is activated, and the storage unit and other bionic units are moved to another dimension. If unauthorized network access still exists after being moved to another dimension, then another bionic unit is activated, and the storage unit and the remaining bionic units are moved again until the storage unit reaches a safe dimension. This ensures the security of the storage unit for storing patient disease information, has the ability to cope with unauthorized network access, and guarantees data security.
[0072] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. An emergency department patient information statistics system, characterized in that, include: The registration module is used to collect patient identity information, register the patient terminal based on the patient identity information, enable the storage unit based on the patient terminal, and connect the patient terminal to the storage unit. The storage module, connected to the registration module, is used to collect patient disease information in real time, store the patient disease information in the corresponding storage unit, and derive a bionic unit based on the storage status of the storage unit, and replace the storage unit with the bionic unit. The information management module, connected to the storage module, is used to organize patient disease information to obtain disease categories, bind the corresponding department based on the disease category, and display the patient's disease information to the bound department.
2. The emergency department patient information statistics system according to claim 1, characterized in that: The registration module includes: The registration unit is used to collect patient identity information and register patients on the medical platform. The connection unit is used to connect the patient terminal to the medical platform, enable the storage unit in the medical platform, and connect the patient terminal to the storage unit.
3. The emergency department patient information statistics system according to claim 2, characterized in that: The connection unit includes: The setup unit is used to set up multiple meta-storage boundaries in the medical platform. The meta-storage boundaries include storage units, multiple bionic units, and multiple dimensions. Overlapping units are used when multiple bionic units and storage units are in an overlapping state. The overlapping bionic units and storage units are mapped to bit planes. The number of bit planes is the same as the total number of multiple bionic units and storage units. Multiple bit planes are interconnected. The connection unit is used to enable the storage unit in the medical platform, connect the patient terminal to the plane through the medical platform, and connect the patient terminal to the storage unit through the plane.
4. The emergency department patient information statistics system according to claim 3, characterized in that: The overlapping unit includes: The configuration unit is used to configure multiple bionic units for a corresponding storage unit and determine multiple authorized connection ports for the storage unit; The port connection unit is used to set a corresponding number of bionic ports on the bionic unit based on multiple connection ports. The multiple bionic ports are connected one-to-one with the connection ports to obtain multiple bionic units and storage units in an overlapping state. The multiple bionic ports are connected to the bit plane where they are located.
5. The emergency department patient information statistics system according to claim 4, characterized in that: The storage module includes: Data storage unit, used to collect patient disease information and store it in the corresponding storage unit; The transfer unit is used to obtain the storage status of the storage unit, which is whether the storage unit is accessed by an unauthorized network. When it is accessed by an unauthorized network, the storage unit is disconnected from the target bionic unit, the target bionic unit is connected to the unauthorized network, and the storage unit is transferred to another dimension. It is connected to the other dimension through multiple authorized connection ports and continues to be connected to the patient.
6. The emergency department patient information statistics system according to claim 5, characterized in that: The transfer unit includes: The access unit is used to select a bionic unit as the target bionic unit when the storage unit is accessed by an unauthorized network. An access unit is used to allow unauthorized networks to access the target bionic unit through the storage unit, while simultaneously disconnecting the connection port of the storage unit from the bionic port of the target bionic unit. The transfer connection unit is used to transfer the storage unit and other bionic units (excluding the target bionic unit) to another plane, establish a connection between the storage unit and other bionic units (excluding the target bionic unit) and the other plane, and continue to connect the patient end and the storage unit through the other plane.
7. The emergency department patient information statistics system according to claim 1, characterized in that: The information management module includes: Obtain the department corresponding to the patient's disease information and bind the patient's end to the corresponding department end through the medical platform; The medical platform will send the patient's disease information to the corresponding department.
8. A method for patient information statistics in an emergency department, used to implement the patient information statistics system for an emergency department as described in any one of claims 1-7, characterized in that, include: Collect patient identity information, register the patient terminal based on the patient identity information, enable the storage unit based on the patient terminal, and connect the patient terminal to the storage unit; The system collects patient disease information in real time, stores the information in corresponding storage units, and derives bionic units based on the storage status of the storage units, replacing the storage units with these bionic units. The patient's disease information is organized to obtain disease categories, and the corresponding department is linked according to the disease category. The patient's disease information is then displayed to the linked department.
Citation Information
Cited By
Cloud platform data remote backup method
CN121173595A
Method for cloud platform data off-site backup
CN121173595B