Tracing system for Ningxia Tan sheep brucellosis serological sample

By designing a traceability system for serological samples of Ningxiatan Sheep Brucella, the problems of unauthorized sampling and irregular data management in the traditional detection process are solved, efficient and accurate sample collection and data management are achieved, scientific basis for disease prevention and control, and user experience and management efficiency are improved.

CN120106869APending Publication Date: 2025-06-06ANIMAL DISEASE PREVENTION & CONTROL CENT OF NINGXIA HUI AUTONOMOUS REGION
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Patent Information

Application Number
CN202510159446.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The traditional Ningxiatan sheep brucella serological testing process lacks standardization and automation, resulting in low sampling efficiency and accuracy. The recording and management of test results lacks a unified and standardized system, which is difficult to trace and analyze, and relies on manual processing and analysis, which is time-consuming and labor-intensive and prone to errors.

Method used

A traceability system for Ningxiatan sheep brucellosis serological samples was designed, including sample collection module, data storage and processing module and traceability query module. The sample collection module realizes automated collection and recording through an automated collection unit and an information entry unit; the data storage and processing module ensures data accuracy, security and analyticity through database construction, data verification and cleaning, encryption and backup, access control and data processing functions; the traceability query module supports flexible query and trend prediction through multi-dimensional query, visual analysis and historical data comparison.

Benefits of technology

Through automated collection and data management, sampling efficiency and data accuracy are improved, and the risk of human error is reduced; data security and recovery are guaranteed through encryption and backup; through multi-dimensional query and trend prediction, it provides a scientific basis for disease prevention and control, and improves user experience and management efficiency.

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Abstract

The invention relates to the technical field of Tan sheep brucellosis serology, and particularly discloses a Ningxia Tan sheep brucellosis serology sample traceability system, which comprises a sample collection module used for collecting a serum sample of Ningxia Tan sheep and recording collection information of the sample; the data storage and processing module is used for storing the basic information of the sample and the corresponding serological detection result; through cooperation of the sample collection module, the data storage and processing module and the traceability query module, the collection operation is automatically carried out, manual operation is greatly reduced, the sampling efficiency is improved, statistical analysis and trend prediction can be carried out on stored data, a scientific basis is provided for disease prevention and control, and the system is suitable for popularization and application. And meanwhile, the sample identifier generating and printing unit generates a unique two-dimensional code or bar code identifier for each sample, so that subsequent management and tracing are facilitated, the management efficiency is improved, and the management cost is reduced.
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Description

Technical Field

[0001] The invention belongs to the technical field of brucellosis serology of Tan sheep, and particularly relates to a traceability system for brucellosis serology samples of Tan sheep in Ningxia. Background Art

[0002] Ningxia Tan sheep, as a fine livestock breed unique to China, occupies an important position in animal husbandry. However, with the expansion of breeding scale and increase of breeding density, the disease prevention and control problem of Ningxia Tan sheep has become increasingly prominent, especially the prevention and control of infectious diseases such as brucellosis (abbreviated as brucellosis) has become increasingly severe. Brucellosis not only affects the health and production performance of Tan sheep, but may also be transmitted to humans through the food chain, posing a threat to human health.

[0003] In order to effectively prevent and control brucellosis, regular serological tests are needed for Ningxia Tan sheep. Traditional detection methods include tiger red plate agglutination test and test tube agglutination test. Although these tests can provide preliminary information on whether Tan sheep are infected with brucellosis pathogens;

[0004] However, the traditional testing process and management methods have the following disadvantages:

[0005] 1. Lack of standardization and automation in the sample collection process leads to low sampling efficiency and accuracy;

[0006] 2. There is a lack of a unified and standardized system for recording and managing test results, making data difficult to trace and analyze;

[0007] 3. For the processing and analysis of a large amount of test data, the traditional method often relies on manual work, which is not only time-consuming and labor-intensive, but also prone to errors. Therefore, a traceability system for Ningxia beach sheep serological samples of polio was proposed. Summary of the invention

[0008] The object of the present invention is to provide a traceability system for Ningxia beach sheep polio serological samples to solve the problems raised in the above-mentioned background technology.

[0009] To achieve the above object, the present invention provides the following technical solutions:

[0010] A traceability system for serological samples of Ningxia Tan sheep poxvirus, comprising:

[0011] The sample collection module is used to collect serum samples of Ningxia Tan sheep and record the sample collection information, which includes the collection time, collection location, Tan sheep identification, sampling personnel, sampling method and preliminary processing of the sample;

[0012] A data storage and processing module is used to store the basic information of the sample and the corresponding serological test results, the test results include the results of the tiger red plate agglutination test, the test tube agglutination test serological test and the pathogen culture results; the data storage and processing module includes a data processing function, which can perform statistical analysis and trend prediction on the stored data;

[0013] The traceability query module, based on the query conditions input, the query conditions of the traceability query module are the beach sheep identification, sampling time range, and test results, and retrieves and displays relevant sample information and test results from the data storage and processing module to achieve sample traceability; the traceability results can be displayed in the form of tables, charts, etc., which is convenient for users to view and analyze.

[0014] Preferably, the sample collection module includes an automated collection unit, a sample information entry unit and a sample identification generation and printing unit.

[0015] Preferably, the automated collection unit is configured with an automatic blood collection device, which is used to automatically collect serum samples from Ningxia beach sheep according to a preset blood collection procedure, thereby reducing manual operations and improving sampling efficiency and accuracy. The sample information entry unit is used to automatically or manually enter detailed information of the sample while collecting the sample. The sample information entry unit includes but is not limited to the unique identification of the beach sheep, sampling time, sampling location, sampling personnel ID and beach sheep health status. The sample identification generation and printing unit is used to generate a unique QR code or barcode identification for each collected serum sample, and print or paste it on the sample container for subsequent management and traceability.

[0016] Preferably, the data storage and management module includes a database construction unit, a data verification and cleaning unit, a data encryption and backup unit and a data access control unit; the database construction unit is used to construct a structured database and store basic information of the sample, test results, processing records and other data; the data verification and cleaning unit is used to verify and clean the entered data to ensure the accuracy and consistency of the data; the data encryption and backup unit uses an advanced encryption algorithm to encrypt and store sensitive data, and regularly backs up the data to ensure the security and recoverability of the data; the data access control unit is used to implement strict access control policies to ensure that only authorized users can access and modify the data.

[0017] Preferably, the traceability query module includes a multi-dimensional query unit, a visual analysis unit and a historical data comparison unit; the multi-dimensional query unit is used to support queries by multiple dimensions such as time, location, beach sheep identification, test results, etc., and provide a flexible query method; the visual analysis unit uses charts, reports, etc. to display the query results, which is convenient for users to quickly understand the data and analyze trends; the historical data comparison unit is used to compare the test results of the same beach sheep at different time points, analyze the trend of disease changes, and provide a scientific basis for disease prevention and control.

[0018] Preferably, the data storage and processing module also includes an ARIMA (Autoregressive Integrated Moving Average) model formula:

[0019] The Y t is the predicted value at time t, and θ(B) are the polynomials of the autoregressive and moving average parts, respectively, B is the lag operator, and ε t is a white noise error term. By fitting this model, the system can predict the trend of test results at future time points.

[0020] The traceability query module also includes a prediction trend line based on linear regression, whose formula is: Y = β 0 +β 1 X+ε;

[0021] Y is the predicted value, X is the independent variable, β 0 is the intercept term, β 1 is the slope coefficient and ε is the error term. By drawing this trend line, the user can intuitively see the changing trend of the test results.

[0022] Compared with the prior art, the present invention has the following beneficial effects:

[0023] The sample collection module makes the collection operation automatic, greatly reducing manual operations and improving sampling efficiency. At the same time, the automatic recording of sample information ensures the accuracy of the data and reduces the risk of human error.

[0024] Through the function of the data encryption and backup unit, the data encryption and backup unit uses advanced encryption algorithms to encrypt and store sensitive data, and backs up data regularly, effectively ensuring the security and recoverability of data. Strict access control policies ensure that only authorized users can access and modify data, protecting user privacy. At the same time, using the function of the data storage and processing module, the data storage and processing module can perform statistical analysis and trend prediction on the stored data, providing a scientific basis for disease prevention and control. The traceability query module supports flexible query and visual analysis, which is convenient for users to quickly understand data and analyze trends, and helps to timely discover and control the spread of diseases.

[0025] The sample identification generation and printing unit generates a unique QR code or barcode identification for each sample, which is convenient for subsequent management and traceability. This not only improves management efficiency but also reduces management costs. At the same time, the traceability query module displays the traceability results in the form of tables and charts, which are intuitive and easy to understand. The prediction trend line based on linear regression helps users understand the changing trend of the test results more intuitively, thereby improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a block diagram of the system unit of the present invention;

[0027] Figure 2 It is a unit block diagram of the sample collection module of the present invention;

[0028] Figure 3 A unit block diagram of the data storage and management module of the present invention;

[0029] Figure 4 This is a unit block diagram of the traceability query module of the present invention. DETAILED DESCRIPTION

[0030] 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.

[0031] like Figure 1 As shown,

[0032] Embodiment 1: A traceability system for serological samples of Ningxia Tan sheep poxvirus, comprising:

[0033] The sample collection module is used to collect serum samples of Ningxia Tan sheep and record the sample collection information, which includes the collection time, collection location, Tan sheep identification, sampling personnel, sampling method and preliminary processing of the sample;

[0034] A data storage and processing module is used to store the basic information of the sample and the corresponding serological test results, the test results include the results of the tiger red plate agglutination test, the test tube agglutination test serological test and the pathogen culture results; the data storage and processing module includes a data processing function, which can perform statistical analysis and trend prediction on the stored data;

[0035] The traceability query module, based on the query conditions input, the query conditions of the traceability query module are the beach sheep identification, sampling time range, and test results, and retrieves and displays relevant sample information and test results from the data storage and processing module to achieve sample traceability; the traceability results can be displayed in the form of tables, charts, etc., which is convenient for users to view and analyze.

[0036] Specifically, the sample collection module includes an automated collection unit, a sample information input unit, and a sample identification generation and printing unit;

[0037] Specifically, the automated collection unit is configured with an automatic blood collection device, which is used to automatically collect serum samples from Ningxia beach sheep according to a preset blood collection procedure, reduce manual operations, and improve sampling efficiency and accuracy. The sample information entry unit is used to automatically or manually enter detailed information of the sample while collecting the sample. The sample information entry unit includes but is not limited to the unique identification of the beach sheep, the sampling time, the sampling location, the sampling personnel ID and the health status of the beach sheep. The sample identification generation and printing unit is used to generate a unique QR code or barcode identification for each collected serum sample, and print or paste it on the sample container for subsequent management and traceability.

[0038] From the above, it can be seen that through the role of the sample collection module, the collection operation is automated, which greatly reduces manual operations and improves sampling efficiency. At the same time, the automatic recording of sample information ensures the accuracy of the data and reduces the risk of human error.

[0039] Specifically, the data storage and management module includes a database construction unit, a data verification and cleaning unit, a data encryption and backup unit, and a data access control unit; the database construction unit is used to construct a structured database and store basic information of the sample, test results, processing records and other data; the data verification and cleaning unit is used to verify and clean the input data to ensure the accuracy and consistency of the data; the data encryption and backup unit uses an advanced encryption algorithm to encrypt and store sensitive data, and backs up the data regularly to ensure the security and recoverability of the data; the data access control unit is used to implement a strict access control policy to ensure that only authorized users can access and modify the data; the data storage and processing module also includes a data processing function, which can perform statistical analysis and trend prediction on the stored data; the query conditions of the traceability query module are beach sheep identification, sampling time range and test results, and the traceability results are displayed in the form of tables and charts;

[0040] From the above, we can see that through the role of the data encryption and backup unit, the data encryption and backup unit uses advanced encryption algorithms to encrypt and store sensitive data, and regularly backs up data, effectively ensuring the security and recoverability of the data. Strict access control policies ensure that only authorized users can access and modify data, protecting user privacy; at the same time, utilizing the role of the data storage and processing module, the data storage and processing module can perform statistical analysis and trend prediction on the stored data, providing a scientific basis for disease prevention and control, and the traceability query module supports flexible query and visual analysis, which is convenient for users to quickly understand data and analyze trends, and helps to timely detect and control the spread of diseases.

[0041] Specifically, the traceability query module includes a multi-dimensional query unit, a visual analysis unit and a historical data comparison unit; the multi-dimensional query unit is used to support queries by multiple dimensions such as time, location, beach sheep identification, and test results, and provide a flexible query method; the visual analysis unit uses charts, reports, etc. to display query results, which is convenient for users to quickly understand data and analyze trends; the historical data comparison unit is used to compare the test results of the same beach sheep at different time points, analyze the trend of disease changes, and provide a scientific basis for disease prevention and control;

[0042] As can be seen from the above, the sample identification generation and printing unit generates a unique QR code or barcode identification for each sample, which is convenient for subsequent management and traceability. This not only improves management efficiency, but also reduces management costs. At the same time, the traceability query module displays the traceability results in the form of tables, charts, etc., which are intuitive and easy to understand. The prediction trend line based on linear regression helps users understand the changing trend of the test results more intuitively, thereby improving the user experience.

[0043] Embodiment 2: This embodiment is basically the same as the previous embodiment, except that the data storage and processing module further includes an ARI MA (autoregressive integrated moving average) model formula:

[0044] The Y t is the predicted value at time t, and θ(B) are the polynomials of the autoregressive and moving average parts, respectively, B is the lag operator, and ε t is a white noise error term. By fitting this model, the system can predict the trend of test results at future time points.

[0045] The traceability query module also includes a prediction trend line based on linear regression, whose formula is: Y = β 0 +β 1 X+ε;

[0046] Y is the predicted value, X is the independent variable, β 0is the intercept term, β 1 is the slope coefficient and ε is the error term. By drawing this trend line, the user can intuitively see the changing trend of the test results.

[0047] 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 traceability system for serological samples of Ningxia Tan sheep poxvirus, characterized in that: include: The sample collection module is used to collect serum samples from Ningxia Tan sheep and record the sample collection information; A data storage and processing module, used to store the basic information of the sample and the corresponding serological test results; The traceability query module retrieves and displays relevant sample information and test results from the data storage and processing module based on the input query conditions to achieve sample traceability.

2. The traceability system for serological samples of Ningxia beach sheep poxvirus according to claim 1, characterized in that: The sample collection module includes an automated collection unit, a sample information input unit and a sample identification generation and printing unit.

3. The traceability system for serological samples of Ningxia beach sheep poxvirus according to claim 1, characterized in that: The automated collection unit is configured with an automatic blood collection device, which is used to automatically collect serum samples from Ningxia beach sheep according to a preset blood collection procedure. The sample information entry unit is used to automatically or manually enter detailed information of the sample while collecting the sample. The sample information entry unit includes but is not limited to the unique identification of the beach sheep, the sampling time, the sampling location, the sampling personnel ID and the health status of the beach sheep. The sample identification generation and printing unit is used to generate a unique QR code or barcode identification for each collected serum sample, and print or paste it on the sample container.

4. The traceability system for serological samples of Ningxia beach sheep poxvirus according to claim 1, characterized in that: The data storage and management module includes a database construction unit, a data verification and cleaning unit, a data encryption and backup unit and a data access control unit; the database construction unit is used to construct a structured database and store basic information of the sample, test results, processing records and other data; the data verification and cleaning unit is used to verify and clean the input data; the data encryption and backup unit uses an advanced encryption algorithm to encrypt and store sensitive data, and backs up the data regularly; the data access control unit is used to implement a strict access control policy.

5. The traceability system for serological samples of Ningxia beach sheep poxvirus according to claim 1, characterized in that: The traceability query module includes a multi-dimensional query unit, a visual analysis unit and a historical data comparison unit; the multi-dimensional query unit is used to support queries based on multiple dimensions such as time, location, beach sheep identification, and test results; the visual analysis unit displays the query results in the form of charts, reports, etc.; the historical data comparison unit is used to compare the test results of the same beach sheep at different time points to analyze the trend of disease changes.

6. The traceability system for serological samples of Ningxia Tan sheep poxvirus according to claim 1, characterized in that: The collection information includes the collection time, collection location, beach sheep identification, sampling personnel, sampling method and preliminary processing of the samples. The test results include the results of tiger red plate agglutination test, test tube agglutination test, serological test and pathogen culture results.

7. The traceability system for serological samples of Ningxia Tan sheep poxvirus according to claim 1, characterized in that: The data storage and processing module also includes a data processing function, which can perform statistical analysis and trend prediction on the stored data. The query conditions of the traceability query module are beach sheep identification, sampling time range and test results. The traceability results are displayed in the form of tables and charts.

8. The traceability system for serological samples of Ningxia Tan sheep poxvirus according to claim 1, characterized in that: The data storage and processing module also includes an ARIMA (Autoregressive Integrated Moving Average) model formula: The Y t is the predicted value at time t, and θ(B) are the polynomials of the autoregressive and moving average parts, respectively, B is the lag operator, and ε t is the white noise error term; The traceability query module also includes a prediction trend line based on linear regression, the formula of which is: Y=β0+β1X+ε; Y is the predicted value, X is the independent variable, β0 is the intercept term, β1 is the slope coefficient, and ε is the error term.