Reagent parameter updating method and system for instant diagnosis equipment
Through the collaborative work of multi-modules of instant diagnostic equipment and server equipment, the kit identification code is generated and automated configuration is solved, and the problem of cumbersome kit legality management and equipment parameter configuration is achieved, and efficient and convenient testing processes and reliable test results are achieved.
Patent Information
- Application Number
- CN202411754456.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-30
- Publication Date
- 2025-05-06
AI Technical Summary
When instant diagnostic equipment is used in non-standard laboratory environments, the legality management of the kit is difficult to effectively deal with, and manual input and manual confirmation of equipment parameters are cumbersome, which can easily lead to invalid test results.
Through the collaborative work of multi-modules of instant diagnostic equipment and server equipment, the kit identification code is generated and automated configuration is carried out to realize the automated update of kit parameters and legality control.
The process of manual input and manual confirmation of equipment parameters is reduced, the probability of test failure is reduced, the operation convenience and testing efficiency is improved, the legality management of the kit is ensured, and the reliability and safety of the test results are ensured.
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Figure CN119943322A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical equipment, and in particular to a method and system for updating reagent parameters of instant diagnosis equipment. Background Art
[0002] Compared with traditional laboratory diagnostic equipment, point-of-care diagnostic equipment has more diverse application scenarios and is used by users with different operating experiences. This feature places higher demands on the ease of operation of the equipment, aiming to avoid cumbersome software operation processes and complex parameter configurations, which are often the main factors leading to usage errors. In addition, when used in non-standard laboratory environments, the legal use of the test kit also faces certain legal risks.
[0003] At present, the startup process of mainstream diagnostic equipment usually follows the following steps: first, the sample and reagent are prepared, followed by the detailed setting of equipment parameters, and finally the start of the test. In this process, the test parameters often need to be manually entered and confirmed before the equipment is started, especially when the test items are switched, which involves the input of multiple parameters. Any input error of any parameter may directly lead to invalid test results. In the case of limited experience of on-site operators, the probability of setting errors increases significantly.
[0004] Furthermore, because point-of-care diagnostic equipment has the flexibility to be used in non-specific laboratory environments, this also brings challenges to the management of the legality of the test kit. Traditional equipment has limitations in verifying the authenticity and reliability of the test kit and cannot effectively meet the needs of this emerging application scenario. For this reason, we propose a method and system for updating the reagent parameters of point-of-care diagnostic equipment. Summary of the invention
[0005] In view of the deficiencies in the prior art, the present invention provides a method and system for updating reagent parameters of an instant diagnostic device, which solves the above-mentioned problems.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a reagent parameter updating system for a point-of-care diagnostic device, comprising a point-of-care diagnostic device and a server device, wherein the point-of-care diagnostic device is composed of a scanning module, a wireless communication module and a microprocessor module connected to each other;
[0007] The server device is composed of a wireless communication module, a processor module, a database module, an identification code generation software module and a display and printing module which are connected to each other, and the wireless communication module in the instant diagnosis device is connected with the wireless communication module in the server device for data transmission.
[0008] Preferably, the data transmission end of the scanning module in the instant diagnosis device is connected to the microprocessor module, and the data transmission end of the microprocessor module is connected to the data transmission end of the wireless communication module.
[0009] Preferably, the data transmission end of the processor module in the server device is respectively interconnected with the data transmission ends of the wireless communication module, the database module and the identification code generation software module, and the data transmission end of the identification code generation software module is also respectively connected with the database module and the display and printing module.
[0010] Preferably, the instant diagnostic equipment includes but is not limited to in vitro diagnostic equipment of molecular, immunological, biochemical and other types, and the system may have multiple instant diagnostic equipment, and the server equipment may be local or cloud-based.
[0011] The present invention also provides a method for updating reagent parameters of a point-of-care diagnostic device, which is applied to a system for updating reagent parameters of a point-of-care diagnostic device, and comprises the following steps:
[0012] S1: Generate a kit identification code through an identification code generation software module and a database module in a server device;
[0013] S2: Confirm the legitimacy of the test kit during system use;
[0014] S3: Automatically configure the kit parameters by scanning the kit identification code.
[0015] Preferably, the step S1: generating a kit identification code by using an identification code generation software module and a database module in a server device specifically comprises the following steps:
[0016] S11: running a software module for generating a reagent kit identification code in a server device;
[0017] S12: Inputting the unique code of the test kit and relevant information of the test item into the test kit identification code generation software module;
[0018] S13: generating an identification code by running a kit identification code generating software module, and printing the identification code by a display printing module and pasting the same on the kit;
[0019] S14: The identification code information is synchronously stored in the database module.
[0020] Preferably, the S2: confirming the legitimacy of the kit during use of the system specifically comprises the following steps:
[0021] S21: The instant diagnostic device scans the identification code information of the test kit through a scanning module;
[0022] S22: The instant diagnosis device transmits the identification code information to the server device through the wireless communication module;
[0023] S23: The server device determines whether the unique code of the identification code information is legal through the data of the database module. If it is legal, the database module in the server device records that the current code has been used and allows the instant diagnosis device to run. If it is illegal, the illegal information of the current code is issued and the instant diagnosis device is not allowed to run.
[0024] Preferably, the step S3: automatically configuring the reagent kit parameters by scanning the reagent kit identification code specifically comprises the following steps:
[0025] S31: The instant diagnostic device scans the identification code information of the test kit through a scanning module;
[0026] S32: The instant diagnosis device parses the test parameter information in the identification code through the microprocessor module and transmits it to the server device through the wireless communication module;
[0027] S33: After confirming the validity of the test kit, the server device determines whether to allow the instant diagnosis device to run. If allowed, the test parameters are updated and the instant diagnosis device starts testing. If not allowed, a message is sent that the test kit is illegal and the diagnosis device test ends.
[0028] Compared with the prior art, the present invention provides a method and system for updating reagent parameters of instant diagnostic equipment, which has the following beneficial effects: through the cooperation of multiple modules in the instant diagnostic equipment and the server equipment, the process of manual input and manual confirmation of equipment parameters can be reduced, and test failures caused by parameter input errors can be avoided. At the same time, the equipment operation time can be reduced to improve the test efficiency. More importantly, the present invention can perform the legality control of the reagent kit to avoid the error of the test result caused by the use of illegal reagent kits. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is a schematic diagram of the module structure of the reagent parameter updating system of the instant diagnosis device of the present invention;
[0030] Figure 2 This is a schematic diagram of the process of generating the identification code of the kit of the present invention;
[0031] Figure 3 Schematic diagram of the process of confirming the legitimacy of the kit of the present invention;
[0032] Figure 4 A schematic diagram of the process of automatically configuring the parameters of the kit of the present invention by scanning an identification code;
[0033] Figure 5 A schematic diagram of the input interface of the kit identification code generation software used in the kit identification code generation process of the present invention;
[0034] Figure 6Schematic diagram of a kit identification code generated during the kit identification code generation process of the present invention. DETAILED DESCRIPTION
[0035] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0036] See also Figure 1-6 , a reagent parameter updating system for a point-of-care diagnostic device, comprising a point-of-care diagnostic device and a server device, wherein the point-of-care diagnostic device is composed of a scanning module, a wireless communication module and a microprocessor module connected to each other, the scanning module is used to scan an identification code on a reagent kit, the wireless communication module is used to transmit data with the server device, and the microprocessor module is responsible for data processing and instruction execution;
[0037] The server device is composed of a wireless communication module, a processor module, a database module, an identification code generation software module and a display and printing module which are interconnected, and the wireless communication module in the instant diagnosis device is connected to the wireless communication module in the server device for data transmission. The server device is responsible for generating a test kit identification code, storing identification code information, and responding to and processing requests sent by the instant diagnosis device.
[0038] The data transmission end of the scanning module in the instant diagnosis device is connected to the microprocessor module, and the data transmission end of the microprocessor module is connected to the data transmission end of the wireless communication module.
[0039] The data transmission end of the processor module in the server device is respectively connected to the data transmission ends of the wireless communication module, the database module and the identification code generation software module, and the data transmission end of the identification code generation software module is also respectively connected to the database module and the display and printing module.
[0040] Point-of-care diagnostic devices include, but are not limited to, in vitro diagnostic devices of the molecular, immune, and biochemical types. The system may have multiple point-of-care diagnostic devices, and the server device may be local or cloud-based.
[0041] The present invention also provides a method for updating reagent parameters of a point-of-care diagnostic device, which is applied to a system for updating reagent parameters of a point-of-care diagnostic device, and comprises the following steps:
[0042] S1: Generate a kit identification code through an identification code generation software module and a database module in a server device;
[0043] S2: Confirm the legitimacy of the test kit during system use;
[0044] S3: Automatically configure the kit parameters by scanning the kit identification code.
[0045] Wherein step S1: generating a kit identification code by using an identification code generating software module and a database module in a server device, specifically comprises the following steps:
[0046] S11: running a software module for generating a reagent kit identification code in a server device;
[0047] S12: Input the kit unique code and test item related information into the kit identification code generation software module. The input interface of the kit identification code generation software module is as follows: Figure 5 As shown;
[0048] S13: Generate an identification code by running the kit identification code generation software module, and print the identification code by the display printing module and paste it on the kit. The generated kit identification code is as follows: Figure 6 As shown;
[0049] S14: The identification code information is synchronously stored in the database module.
[0050] Wherein step S2: confirming the legitimacy of the test kit during use of the system, specifically includes the following steps:
[0051] S21: The instant diagnostic device scans the identification code information of the test kit through a scanning module;
[0052] S22: The instant diagnosis device transmits the identification code information to the server device through the wireless communication module;
[0053] S23: The server device determines whether the unique code of the identification code information is legal through the data of the database module. If it is legal, the database module in the server device records that the current code has been used and allows the instant diagnosis device to run. If it is illegal, the illegal information of the current code is issued and the instant diagnosis device is not allowed to run.
[0054] The process of step S3: automatically configuring the reagent kit parameters by scanning the reagent kit identification code occurs simultaneously with the above step S2: confirming the legitimacy of the reagent kit during system use, and specifically includes the following steps:
[0055] S31: The instant diagnostic device scans the identification code information of the test kit through a scanning module;
[0056] S32: The instant diagnosis device parses the test parameter information in the identification code through the microprocessor module and transmits it to the server device through the wireless communication module;
[0057] S33: After confirming the validity of the test kit, the server device determines whether to allow the instant diagnosis device to run. If allowed, the test parameters are updated and the instant diagnosis device starts testing. If not allowed, a message is sent that the test kit is illegal and the diagnosis device test ends.
[0058] The working principle of the reagent parameter update system of the instant diagnostic device is as follows: through the identification code generation software module and the database module in the server device, a unique reagent kit identification code is generated according to the unique code of the reagent kit and the relevant information of the test item, and it is printed out through the display printing module and pasted on the reagent kit. At the same time, the identification code information is synchronously stored in the database module.
[0059] When using the instant diagnosis device, the device first scans the identification code information on the test kit through the scanning module, and sends the identification code information to the server device through the wireless communication module. The server device determines whether the unique code of the identification code is legal through the database module. If it is legal, it records that the current code has been used and allows the instant diagnosis device to run; if it is illegal, it sends illegal code information and prohibits the instant diagnosis device from running.
[0060] After confirming the legitimacy of the test kit, the instant diagnosis device scans the identification code information of the test kit again through the scanning module, and parses the test parameter information in the identification code through the microprocessor module. Then, the test parameter information is sent to the server device through the wireless communication module. After confirming that the instant diagnosis device is allowed to run, the server device updates the test parameters, and the instant diagnosis device can start testing.
[0061] Embodiment 1:
[0062] In this embodiment, the instant diagnosis device is a molecular diagnosis device, and the server device is a local server. First, the identification code generation software module and the database module in the server device are used to generate a unique test kit identification code according to the unique code of the test kit and the test item related information, and the unique test kit identification code is printed out and pasted on the test kit. Then, when using the molecular diagnosis device, the device scans the test kit identification code through the scanning module, and sends the identification code information to the server device through the wireless communication module. The server device determines the uniqueness of the identification code through the database module, and allows or prohibits the device from running. Finally, after confirming the legitimacy of the test kit, the device scans the identification code again through the scanning module, parses the test parameter information, and starts the test.
[0063] Embodiment 2:
[0064] In this embodiment, the instant diagnosis device is a plurality of immune diagnosis devices, and the server device is a cloud server. Similar to Example 1, the kit identification code is first generated by the cloud server and printed and pasted. Then, when the immune diagnosis device is used, the device scans the identification code through the scanning module, and sends the identification code information to the cloud server for legitimacy verification through the wireless communication module. Finally, after confirming the legitimacy of the kit, the device parses the test parameter information and starts the test.
[0065] The instant diagnosis equipment reagent parameter update method and system cooperate with each other through multiple modules in the instant diagnosis equipment and server equipment, which can reduce the process of manual input and manual confirmation of equipment parameters, avoid test failures caused by parameter input errors, and at the same time reduce equipment operation time and improve test efficiency. More importantly, the present invention can perform test kit legitimacy management and control to avoid test result errors caused by the use of illegal test kits. By automatically identifying and configuring reagent parameters and strengthening the legitimacy management and control of test kits, the convenience and accuracy of operation are effectively improved, and the reliability and safety of test results are guaranteed. At the same time, the system can adapt to a variety of application scenarios.
[0066] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A reagent parameter updating system for instant diagnostic equipment, characterized in that: It includes an instant diagnosis device and a server device, wherein the instant diagnosis device is composed of a scanning module, a wireless communication module and a microprocessor module connected to each other; The server device is composed of a wireless communication module, a processor module, a database module, an identification code generation software module and a display and printing module which are connected to each other, and the wireless communication module in the instant diagnosis device is connected with the wireless communication module in the server device for data transmission.
2. The reagent parameter updating system for instant diagnostic equipment according to claim 1, characterized in that: The data transmission end of the scanning module in the instant diagnosis device is connected to the microprocessor module, and the data transmission end of the microprocessor module is connected to the data transmission end of the wireless communication module.
3. The reagent parameter updating system for instant diagnostic equipment according to claim 1, characterized in that: The data transmission end of the processor module in the server device is respectively interconnected with the data transmission ends of the wireless communication module, the database module and the identification code generation software module, and the data transmission end of the identification code generation software module is also respectively connected with the database module and the display and printing module.
4. The reagent parameter updating system for instant diagnostic equipment according to claim 1, characterized in that: The point-of-care diagnostic equipment includes, but is not limited to, in vitro diagnostic equipment of molecular, immune, biochemical, etc. types, and the system may have multiple point-of-care diagnostic equipment, and the server equipment may be local or cloud-based.
5. A method for updating reagent parameters of a point-of-care diagnostic device, applied to the system for updating reagent parameters of a point-of-care diagnostic device according to claim 1, characterized in that: The following steps are involved: S1: Generate a kit identification code through an identification code generation software module and a database module in a server device; S2: Confirm the legitimacy of the test kit during system use; S3: Automatically configure the kit parameters by scanning the kit identification code.
6. The method for updating reagent parameters of a point-of-care diagnostic device according to claim 5, characterized in that: S1: generating a kit identification code by using an identification code generation software module and a database module in a server device, specifically comprises the following steps: S11: running a software module for generating a reagent kit identification code in a server device; S12: Inputting the unique code of the test kit and relevant information of the test item into the test kit identification code generation software module; S13: generating an identification code by running a kit identification code generating software module, and printing the identification code by a display printing module and pasting the same on the kit; S14: The identification code information is synchronously stored in the database module.
7. The method for updating reagent parameters of a point-of-care diagnostic device according to claim 6, characterized in that: S2: confirming the legitimacy of the kit during use of the system, specifically includes the following steps: S21: The instant diagnostic device scans the identification code information of the test kit through a scanning module; S22: The instant diagnosis device transmits the identification code information to the server device through the wireless communication module; S23: The server device determines whether the unique code of the identification code information is legal through the data of the database module. If it is legal, the database module in the server device records that the current code has been used and allows the instant diagnosis device to run. If it is illegal, the illegal information of the current code is issued and the instant diagnosis device is not allowed to run.
8. The method for updating reagent parameters of a point-of-care diagnostic device according to claim 7, characterized in that: S3: Automatically configuring the reagent kit parameters by scanning the reagent kit identification code, specifically includes the following steps: S31: The instant diagnostic device scans the identification code information of the test kit through a scanning module; S32: The instant diagnosis device parses the test parameter information in the identification code through the microprocessor module and transmits it to the server device through the wireless communication module; S33: After confirming the validity of the test kit, the server device determines whether to allow the instant diagnosis device to run. If allowed, the test parameters are updated and the instant diagnosis device starts testing. If not allowed, a message is sent that the test kit is illegal and the diagnosis device test ends.