Block chain-based operating room safety verification system and method
By deploying blockchain nodes in the operating room and building a data prompt layer and update module, the problems of low verification efficiency and difficult to guarantee real-time information in the operating room safety verification system are solved, and automated management of operating room verification and real-time update of information are realized.
Patent Information
- Application Number
- CN202510300950.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2025-06-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing operating room safety verification system lacks orderliness and controllability during the verification process, resulting in inefficient verification and difficult to guarantee real-time information, resulting in delays and inconsistencies in the information verification process of the operating room.
The blockchain-based operating room security verification system is adopted, and by deploying blockchain nodes in the operating room, building a data prompt layer and update module, it realizes secure storage and real-time update of patient information, reminds medical staff to conduct verification, and provides verification process reports.
Through blockchain technology, the automated management of operating room verification is realized, ensuring the efficiency and controllability of the verification process, improving the real-time and accuracy of information, and avoiding the information delay of medical staff in the verification process.
Smart Images

Figure CN120221002A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical examinations, and particularly to a blockchain-based operating room safety verification system and method. Background Art
[0002] With the continuous progress of information technology, the medical field has also embraced the wave of informatization development. Among them, the surgical safety verification system for brain diseases is one of the important measures to ensure surgical safety. This system requires the surgical team to conduct multiple verifications during the operation to ensure the correctness and safety of the operation. With the continuous progress of medical technology and the increasing complexity of operations, the surgical safety verification system is also constantly improving. Currently, the process of operating room verification is not orderly enough and there is no controllable time reminder, making it difficult to ensure the efficiency of operating room verification. In addition, during the verification process, due to the intervention of multiple medical parties in understanding the operating room verification situation, it is difficult to ensure the real-time update of information, resulting in information delays and information mismatches in the process of multiple medical staff understanding the progress of operating room verification. Summary of the Invention
[0003] The purpose of the present invention is to provide a blockchain-based operating room safety verification system and method to solve the deficiencies in the background art.
[0004] To achieve the above purpose, the present invention provides the following technical solution: A blockchain-based operating room safety verification system, comprising:
[0005] A construction module, configured to obtain a blockchain based on the deployment of blockchain nodes in the operating room, input patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface;
[0006] A reminder module, connected to the construction module, configured to construct a data reminder layer corresponding to the patient information in the blockchain, and remind medical staff for verification according to the data reminder layer;
[0007] An update module, connected to the reminder module, configured to update the operating room verification process in real time in the blockchain and provide a real-time report on the operating room verification process.
[0008] In a preferred embodiment, the construction module includes:
[0009] A registration unit, configured to obtain the information of medical staff to register and obtain a medical staff terminal, and configure corresponding cloud servers for the control platform of the operating room and the medical staff terminal as blockchain nodes;
[0010] A construction unit, configured to connect multiple blockchain nodes according to a smart contract to obtain a blockchain;
[0011] An acquisition unit for acquiring patient information, where the patient information includes patient identity information and the type of surgery, entering the patient information into the front-end interface, and storing the patient information in the blockchain through the front-end interface.
[0012] In a preferred embodiment, the acquisition unit includes:
[0013] A connection unit for establishing a connection relationship between the front-end interface and multiple blockchain nodes;
[0014] An entry unit for entering patient information into the front-end interface, and transmitting the patient information to multiple blockchain nodes through the front-end interface for storage. The patient information is compared among the multiple blockchain nodes, and the same patient information is stored in the blockchain nodes.
[0015] In a preferred embodiment, the reminder module includes:
[0016] A formulation unit for formulating corresponding verification items and corresponding verification times in the blockchain as verification information according to the patient information;
[0017] A setting unit for constructing a data prompt layer corresponding to the blockchain according to the verification information. The data prompt layer includes a data layer, data clusters corresponding to blockchain nodes in the data layer, and a cursor, and connecting the data prompt layer to the blockchain;
[0018] A reminder unit for reminding medical staff for verification according to the data prompt layer, and determining the verification through the medical staff's corresponding medical terminal.
[0019] In a preferred embodiment, the setting unit includes:
[0020] A storage unit for setting the data layer, and setting multiple data clusters in the data layer. The number of data clusters is the same as the number of blockchain nodes, and the data clusters store the progress bars of the verification information;
[0021] A corresponding unit for corresponding the data clusters to the blockchain nodes one by one, and connecting the multiple data clusters to communicate with each other through the data layer;
[0022] A moving unit for setting a cursor in the data layer, and the cursor moves through the data layer to the position where the data cluster is located;
[0023] A connection unit for connecting the data clusters to the corresponding blockchain nodes.
[0024] In a preferred embodiment, the reminder unit includes:
[0025] A verification reminder unit is used to perform verification reminders on the medical staff side, move the cursor through the data layer to the position of the corresponding data cluster on the medical staff side, and use the data cluster corresponding to the medical staff side as the target data cluster;
[0026] A marking unit is used to determine through verification on the medical staff side, mark the progress bar of the verified information in the target data cluster through the cursor, and synchronize the progress bar of the verified information of the target data cluster to the remaining data clusters through the data layer.
[0027] In a preferred embodiment, the update module includes:
[0028] A triggering unit is used to trigger to the blockchain node through the connection relationship between the data cluster and the corresponding blockchain node after the progress bars of the verified information of all data clusters are updated;
[0029] A providing unit is used to change the verified information in the blockchain and provide an operating room verification progress report in real time after the blockchain node is triggered.
[0030] The present invention also provides a method for operating room safety verification based on blockchain, including the following steps:
[0031] Obtain a blockchain based on the deployment of blockchain nodes in the operating room, input patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface;
[0032] Construct a data prompt layer corresponding to the patient information in the blockchain, and perform verification reminders on medical staff according to the data prompt layer;
[0033] Update the operating room verification process in the blockchain in real time and provide an operating room verification progress report in real time.
[0034] In the above technical solution, the technical effects and advantages provided by the present invention are:
[0035] 1. The present invention can limit and prompt the time of the verification items of medical staff through the verified information, can effectively limit the time of operating room verification, avoid spending a large amount of time on verification, can not only ensure the effective progress of the verification process, but also ensure the controllability of the verification time, and it is difficult to realize the automated management of operating room verification;
[0036] 2. The present invention moves the cursor to the position of the corresponding data group at the medical staff side through the data layer, and takes the corresponding data group at the medical staff side as the target data group. The cursor can move to the position of the corresponding data group at the medical staff side for verifying item confirmation, and the verification is determined through the medical staff side. The progress bar of the verification information verified and determined in the target data group is marked by the cursor. The cursor can quickly understand the confirmation situation of the verification items by the medical staff side. The progress bar of the verification information of the target data group is synchronized to the other data groups through the data layer, and the data of the verification items can be quickly synchronized to all blockchain nodes, improving the efficiency of data update. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required to be used in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings.
[0038] Figure 1 It is a system block diagram of the present invention.
[0039] Figure 2 It is a method flow chart of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0040] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are some but not all of the embodiments of the present invention. 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.
[0041] Embodiment 1. Please refer to Figure 1 As shown, a blockchain-based operating room safety verification system in this embodiment includes:
[0042] A construction module, configured to obtain a blockchain based on the deployment of blockchain nodes in the operating room, input patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface;
[0043] A reminder module, connected to the construction module, configured to construct a data reminder layer corresponding to the patient information in the blockchain, and give a verification reminder to the medical staff according to the data reminder layer;
[0044] An update module, connected to the reminder module, configured to update the operating room verification process in real time in the blockchain and provide an operating room verification process report in real time.
[0045] It should be noted that it is possible to limit and prompt the time of the verification items of medical staff through the verification information, effectively limit the time of operating room verification, avoid spending a large amount of time on verification, ensure the effective progress of the verification process, and ensure the controllability of the verification time. However, it is difficult to achieve the automated management of operating room verification; move the cursor to the position of the corresponding data group at the medical staff end through the data layer, and regard the corresponding data group at the medical staff end as the target data group. The cursor can move to the position of the corresponding data group at the medical staff end for verifying items. Determine through verification at the medical staff end, and mark the progress bar of the verified verification information in the target data group through the cursor. The cursor can quickly understand the confirmation situation of the verification items at the medical staff end. Synchronize the progress bar of the verification information of the target data group to the other data groups through the data layer, and can quickly synchronize the data of the verification items to all blockchain nodes, improving the efficiency of data update.
[0046] In one embodiment, the construction module includes:
[0047] A registration unit, configured to obtain the information of medical staff to register and obtain a medical staff end. The control platform corresponding to the operating room and the medical staff end are both configured with corresponding cloud servers and used as blockchain nodes;
[0048] A construction unit, configured to connect multiple blockchain nodes according to a smart contract to obtain a blockchain;
[0049] An acquisition unit, configured to obtain patient information, where the patient information includes patient identity information and the type of surgery. Enter the patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface;
[0050] It should be noted that in order to ensure the security of data and the accuracy of operating room data verification, when storing data in the blockchain, it is first necessary to deploy blockchain nodes, obtain the information of medical staff (the department and identity information of medical staff) to register and obtain a medical staff end. Then, the control platform corresponding to the operating room and the medical staff end are both configured with corresponding cloud servers and used as blockchain nodes. Here, multiple blockchain nodes can be obtained corresponding to the operating room. Then, connect multiple blockchain nodes through a smart contract to obtain a blockchain, which can better record data securely, facilitate subsequent data storage and verification reminders. After deploying the blockchain, obtain the patient identity information and the type of surgery as patient information, enter the patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface, which can ensure the secure storage of data.
[0051] In one embodiment, the acquisition unit includes:
[0052] A connection unit, configured to build a connection relationship between the front-end interface and multiple blockchain nodes;
[0053] An input unit is configured to input patient information into a front-end interface, and transmit the patient information to multiple blockchain nodes through the front-end interface for storage. The multiple blockchain nodes compare the patient information with each other, and store the identical patient information in the blockchain nodes;
[0054] It should be noted that the front-end interface is used to input patient information, which is a data acquisition action before being stored in the blockchain nodes. Then, the front-end interface is connected to multiple blockchain nodes, and the patient information is input into the front-end interface. Since the front-end interface is connected to multiple blockchain nodes, the front-end interface can input the patient information into multiple blockchain nodes for storage. The multiple blockchain nodes compare the patient information with each other, and store the patient information that meets the threshold as target patient information in the blockchain nodes, which can store the data more securely and facilitate subsequent verification reminders.
[0055] In one embodiment, the reminder module includes:
[0056] A formulation unit is configured to formulate corresponding verification items and corresponding verification times in the blockchain according to the patient information as verification information;
[0057] A setting unit is configured to construct a data prompt layer corresponding to the blockchain according to the verification information. The data prompt layer includes a data layer, data clusters corresponding to blockchain nodes in the data layer, and a cursor, and connect the data prompt layer to the blockchain;
[0058] A reminder unit is configured to give verification reminders to medical staff according to the data prompt layer, and determine through verification by the medical staff's corresponding medical terminal;
[0059] It should be noted that in the blockchain, corresponding verification items and corresponding verification times are formulated according to the patient information as verification information. In the blockchain, corresponding verification information can be formulated for the stored patient information. For example, for a brain disease surgery, the required verification items include the patient's preoperative physical condition information, preoperative preparations (including tool preparations and preoperative treatment of the brain), intraoperative operation tool preparations, and postoperative examination items. The above information is used as verification information. Specific verification information formulates different items according to the actual situation. A data prompt layer is constructed corresponding to the verification information. The data prompt layer includes a data layer, data groups corresponding to blockchain nodes in the data layer, and a cursor. The data prompt layer is connected to the blockchain. After the data prompt layer is constructed, verification reminders are given to medical staff according to the data prompt layer. Verification is determined through the corresponding medical staff terminal. The medical staff terminal can click the button to pass the verification or give a voice feedback to confirm that the verification is completed. During the verification process, there is a time limit between each verification item, and time prompts can be given. For example, for the determination of preoperative tools, one minute is given as the confirmation time. If it is not confirmed within one minute, it means that the determination has not been made and directly enters the verification confirmation of the next item. It can perform time-based item verification confirmation reminders, which has an efficient role in operating room safety verification and improves verification efficiency.
[0060] In one embodiment, the setting unit includes:
[0061] A storage unit for setting the data layer and setting multiple data groups in the data layer. Among them, the number of data groups is the same as the number of blockchain nodes, and the data groups store the progress bars of verification information;
[0062] A corresponding unit for corresponding the data groups to the blockchain nodes one by one and connecting the multiple data groups to communicate with each other through the data layer;
[0063] A moving unit for setting a cursor in the data layer, and the cursor moves through the data layer to the position where the data group is located;
[0064] A connection unit for connecting the data group to the corresponding blockchain node;
[0065] In one embodiment, the reminder unit includes:
[0066] A verification reminder unit for giving verification reminders to the medical staff terminal, moving the cursor through the data layer to the position of the data group corresponding to the medical staff terminal, and taking the data group corresponding to the medical staff terminal as the target data group;
[0067] A marking unit for determining verification through the medical staff terminal, marking the progress bar of the verified verification information in the target data group through the cursor, and synchronizing the progress bar of the verification information of the target data group to the other data groups through the data layer;
[0068] It should be noted that a data layer is set up. Here, the data layer is a flat database and can exist in the form of a data layer. Then, multiple data clusters are set up in the data layer. Here, a data cluster is a storage space for a progress bar storing verification information. The progress bar of the verification information is a progress bar in which multiple verification items are sorted in sequence and the verification items have verification time limits. Multiple data clusters are communicatively connected to each other. The number of data clusters is the same as the number of blockchain nodes. The data clusters are corresponding and connected to the blockchain nodes one by one. A cursor is set up in the data layer. Through the cursor, the position can be moved among the data clusters, and it can move from one data cluster to another through the data layer. The cursor is equivalent to a mobile port. The operating room safety verification can only be determined through online verification by one account and by a certain medical staff terminal. Through the cursor, the verification confirmation information of the blockchain node corresponding to the medical staff terminal regarding the verification information can be quickly understood. In the actual reminder process, a verification reminder is sent to the medical staff terminal. The cursor is moved through the data layer to the position of the data cluster corresponding to the medical staff terminal. The data cluster corresponding to the medical staff terminal is used as the target data cluster. The cursor can move to the position of the data cluster corresponding to the medical staff terminal for confirming the verification items. The verification is determined through the medical staff terminal. The progress bar of the verification information in the target data cluster is marked through the cursor. The cursor can quickly understand the confirmation situation of the medical staff terminal regarding the verification items. The progress bar of the verification information of the target data cluster is synchronized to the other data clusters through the data layer, and the data of the verification items can be quickly synchronized to all blockchain nodes, improving the efficiency of data update;
[0069] In one embodiment, the update module includes:
[0070] A trigger unit, configured to trigger to the blockchain node through the connection relationship between the data cluster and the corresponding blockchain node after the progress bars of the verification information of all data clusters are updated;
[0071] A providing unit, configured to, after the blockchain node is triggered, change the verification information in the blockchain and provide a real-time operating room verification progress report;
[0072] It should be noted that after the data cluster is updated, the verification information of all blockchain nodes can be changed one by one through the data cluster. Here, the change is the confirmation situation of the verification items in the verification information. The data stored in the blockchain nodes can be changed in real time quickly, and the delay of information among multiple blockchain nodes can be reduced, which is better for the personnel corresponding to the medical staff terminal to view the verification information.
[0073] Embodiment 2. Please refer to Figure 2 As shown, the method for operating room safety verification based on blockchain in this embodiment includes the following steps:
[0074] S1. Obtain a blockchain based on the deployment of blockchain nodes in the operating room, input patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface;
[0075] S2. Construct a data prompt layer corresponding to the patient information in the blockchain, and conduct verification reminders for medical staff according to the data prompt layer;
[0076] S3. Update the operating room verification process in real time in the blockchain and provide an operating room verification process report in real time.
[0077] As described in the above steps S1 - S3, move the cursor through the data layer to the position of the data group corresponding to the medical staff side, and regard the data group corresponding to the medical staff side as the target data group. The cursor can move to the position of the data group corresponding to the medical staff side for verifying item confirmation. Determine through verification by the medical staff side, mark the progress bar of the verified information in the target data group through the cursor. The cursor can quickly understand the confirmation situation of the verification items by the medical staff side. Synchronize the progress bar of the verification information of the target data group to the other data groups through the data layer, and can quickly synchronize the data of the verification items to all blockchain nodes, improving the efficiency of data update.
[0078] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of changes or substitutions, which should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claimed rights.
Claims
1. An operating room safety verification system based on blockchain, characterized in that: include: A construction module is used to deploy blockchain nodes based on the operating room to obtain a blockchain, enter patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface; The reminder module is connected to the construction module and is used to construct a data reminder layer corresponding to the patient information in the blockchain, and to verify and remind medical staff according to the data reminder layer; The update module is connected to the reminder module and is used to update the operating room verification process in real time in the blockchain and provide the operating room verification process report in real time.
2. According to claim 1, a blockchain-based operating room safety verification system is characterized by: The building blocks include: The registration unit is used to obtain the information of medical staff and register to obtain the medical terminal. The corresponding operating room control platform and the medical terminal are configured with corresponding cloud servers and serve as blockchain nodes; A construction unit, used to connect multiple blockchain nodes according to smart contracts to obtain a blockchain; The acquisition unit is used to acquire patient information, wherein the patient information includes patient identity information and operation type, enter the patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface.
3. According to claim 2, a blockchain-based operating room safety verification system is characterized by: The acquisition unit comprises: A connection unit, used to build a connection relationship between the front-end interface and multiple blockchain nodes; The input unit is used to input the patient information into the front-end interface, and transmit the patient information to multiple blockchain nodes for storage through the front-end interface. The multiple blockchain nodes compare the patient information respectively, and store the same patient information in the blockchain nodes.
4. According to claim 1, a blockchain-based operating room safety verification system is characterized by: The reminder module comprises: A formulation unit, used to formulate corresponding verification items and corresponding verification time as verification information in the blockchain according to the patient information; A setting unit is used to construct a data prompt layer corresponding to the blockchain according to the verification information, wherein the data prompt layer includes a data layer, a data group corresponding to the blockchain node in the data layer, and a cursor, and connects the data prompt layer with the blockchain; The reminder unit is used to verify and remind the medical staff according to the data prompt layer, and verify and confirm through the medical terminal corresponding to the medical staff.
5. According to claim 4, a blockchain-based operating room safety verification system is characterized by: The setting unit comprises: A storage unit, used to set a data layer, in which a plurality of data groups are set, wherein the number of data groups is the same as the number of blockchain nodes, and the data group stores a progress bar of verification information; A corresponding unit is used to make a one-to-one correspondence between data groups and blockchain nodes, and to connect multiple data groups to each other through the data layer; A moving unit, used to set a cursor in the data layer, the cursor moves through the data layer at the location of the data group; The connection unit is used to connect the data group with the corresponding blockchain node.
6. According to claim 5, a blockchain-based operating room safety verification system is characterized by: The reminder unit comprises: A verification reminder unit is used to remind the medical end to verify, move the cursor through the data layer to the data group position corresponding to the medical end, and use the data group corresponding to the medical end as the target data group; The marking unit is used to verify and confirm through the medical end, mark the progress bar of the verified information in the target data group through the cursor, and synchronize the progress bar of the verification information of the target data group to the remaining data groups through the data layer.
7. According to claim 1, a blockchain-based operating room safety verification system is characterized by: The update module includes: A trigger unit, used to trigger to the blockchain node through the connection relationship between the data group and the corresponding blockchain node after the progress bar of the verification information of all data groups is updated; A unit is provided for changing the verification information in the blockchain and providing an operating room verification progress report in real time after the blockchain node is triggered.
8. A blockchain-based operating room safety verification method, used to implement a blockchain-based operating room safety verification system as described in any one of claims 1 to 7, characterized in that: The following steps are involved: Deploy blockchain nodes in the operating room to obtain a blockchain, enter patient information into the front-end interface, and store the patient information in the blockchain through the front-end interface; A data prompt layer is built in the blockchain corresponding to the patient information, and medical staff are reminded to verify according to the data prompt layer; The operating room verification process is updated in real time in the blockchain and the operating room verification process report is provided in real time.