Analysis information display method and device, electronic equipment and readable storage medium

By acquiring and stitching microcolumn gel images in a sample analyzer to generate gel card images and display test results, the problem of sample analyzers being unable to display the morphology of gel columns is solved, enabling the effective utilization and accurate interpretation of gel columns.

CN115979971BActive Publication Date: 2026-07-21MEDCAPTAIN MEDICAL TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
MEDCAPTAIN MEDICAL TECH
Filing Date
2023-01-06
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Current sample analyzers cannot display the morphology of samples after testing and analysis in the gel column of microcolumn gel cards, which makes it impossible for users to understand the aggregation strength and test results, and also easily leads to the waste of gel columns.

Method used

By acquiring microcolumn gel images, receiving splicing test instructions, inserting sample column images into adjacent gel images, generating gel card images, and displaying test results through magnification and sliding window components, the effective utilization of gel columns is achieved.

Benefits of technology

It enables intuitive display of gel card images, accurate interpretation of test results, avoids waste of gel columns, and improves resource utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of medical instruments, and provides an analysis information display method and device, electronic equipment and a readable storage medium, which comprise the following steps: acquiring a micro-column gel image from a sample analyzer; receiving a splicing test instruction, and sending the splicing test instruction to the sample analyzer; acquiring sample column images of test samples in the plurality of gel columns from the sample analyzer; inserting the sample column images acquired from the sample analyzer into two or more adjacent micro-column gel images; and converting the two or more adjacent micro-column gel images into two or more gel card images. The application not only realizes real display of detection results of a gel card, helps a user to accurately read results, shows agglutination strength of each gel column and real effects of tests, and further avoids waste of gel columns.
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Description

Technical Field

[0001] This application relates to the field of medical device technology, and in particular to an analytical information display method, apparatus, electronic device, and readable storage medium. Background Technology

[0002] A sample analyzer is used to test and analyze samples (such as blood, body fluids, urine, etc.) (the process of incubating, centrifuging, shaking, and generating CCD images of the samples to obtain the blood type, blood indicators, body fluid indicators, and urine indicators of the samples) and obtain test results.

[0003] However, the inventors discovered that current sample analyzers typically provide direct test results without displaying the morphology of the sample within the gel column of the microcolumn gel card after testing and analysis. This prevents users from understanding the aggregation intensity and test effectiveness of the sample in each gel column. Furthermore, current sample analyzers usually place the sample into one or more complete gel columns of a microcolumn gel card before testing and analysis. As a result, many microcolumn gel cards that have undergone testing and analysis often have multiple unused gel columns, leading to gel column waste. Summary of the Invention

[0004] This application provides an analytical information display method, apparatus, electronic device, and readable storage medium to solve the problems of current sample analyzers not displaying the morphology of samples in the gel columns of microcolumn gel cards after testing and analysis, resulting in users being unable to understand the aggregation intensity and test results of samples in each gel column, and the problem that current sample analyzers easily produce many microcolumn gel cards that have undergone testing and analysis with multiple unused gel columns, resulting in wasted gel columns.

[0005] In a first aspect, this application provides an analytical information display method, applied in a sample analyzer, the method comprising:

[0006] The sample analyzer is used to acquire microcolumn gel images from the sample analyzer; wherein the sample analyzer is used to test and analyze the test samples in the gel columns of the microcolumn gel card; the microcolumn gel image is image information describing all the gel columns in a microcolumn gel card; the microcolumn gel image includes gel column images, and a gel column image is image information describing a single gel column;

[0007] The instrument receives a splicing test command and sends the splicing test command to the sample analyzer; wherein the splicing test command is used to instruct the sample analyzer to perform test analysis on the test samples in the multiple gel column images corresponding to the multiple gel columns in two or more adjacent microcolumn gel images.

[0008] The sample column images of the test samples in the plurality of gel columns are acquired from the sample analyzer. The sample column images acquired from the sample analyzer are inserted into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images. The gel card image describes the image information of the test samples in all gel columns of a microcolumn gel card after the test analysis. The gel card image includes sample column images, and a sample column image describes the image information of the test samples in a gel column after the test analysis.

[0009] In the above scheme, after inserting the sample column image obtained from the sample analyzer into two or more adjacent microcolumn gel images, thus converting the two or more adjacent microcolumn gel images into two or more gel card images, the method further includes:

[0010] Receive a magnification command; wherein the magnification command is a trigger event generated by clicking on a gel column in the gel card image;

[0011] The gel column in the clicked gel card image that corresponds to the magnification instruction is set as the target column, and the size of the target column is magnified according to the magnification instruction to obtain the magnified target column;

[0012] Activate the preset front layer, extract the magnified target column to the front layer, and make the front layer display the target column in the front layer, wherein the front layer is the layer located above the gel card image.

[0013] In the above scheme, before activating the preset front layer, the method further includes:

[0014] The parameters of the canvas in the front layer are set to transparent; wherein, the canvas is the carrier of the magnified target column in the front layer; the size of the canvas covers the gel card image.

[0015] In the above scheme, after extracting the magnified target column to the front layer and making the front layer display the target column in the front layer, the method further includes:

[0016] Receive a recovery command; wherein the recovery command is a trigger event generated by clicking on the target column in the front layer and / or the canvas portion in the front layer excluding the target column;

[0017] Delete the enlarged target column from the front layer and turn off the front layer.

[0018] In the above scheme, the sample column image has a well name; wherein, the well name is the position number or test sample number of the gel column corresponding to the sample column image on the microcolumn gel card corresponding to the gel card image where the sample column image is located.

[0019] In the above scheme, the gel card image is a reflection image generated by the sample analyzer based on the interpretation rules of the microcolumn gel card, the test sample in the gel column of the microcolumn gel card is tested and analyzed, and the aggregation intensity of the test sample after the test and analysis is determined.

[0020] In the above scheme, acquiring sample column images of the test samples in the plurality of gel columns from the sample analyzer includes:

[0021] Obtain the reaction column image corresponding to the test sample of a gel column in the reaction image;

[0022] Identify aggregated portions in the reflected column image that represent two or more aggregated intensities;

[0023] The agglomerated portion is assigned an agglomeration color based on the agglomeration intensity, thereby converting the reflected column image into the sample column image.

[0024] In the above scheme, after inserting the sample column image obtained from the sample analyzer into two or more adjacent microcolumn gel images, thereby converting the two or more adjacent microcolumn gel images into two or more gel card images, the method further includes:

[0025] The card test results are obtained from the sample analyzer; wherein, the card test results are the test analysis results of the sample analyzer on all gel columns in the micro-column gel card corresponding to the gel card image; the card test results include at least one column test result; the column test results are the test analysis results of the sample analyzer on the test samples in the gel columns of the micro-column gel card corresponding to the gel card image.

[0026] Set the gel card image corresponding to the card test result as the target card image, match the card test result with the target card image, and match the column test result in the card test result with the sample column image in the target card image one by one.

[0027] In the above scheme, the column test results include: the detected value and the threshold range;

[0028] The detection value is the analysis result output by the sample analyzer when it tests and analyzes the test sample in the gel column corresponding to the column test result;

[0029] The threshold range is the range within which the detected value is considered acceptable according to the test analysis.

[0030] Secondly, this application provides an analytical information display method, applied in a sample analyzer, the method comprising:

[0031] Activate the sliding window component; wherein, the sliding window component is a window bar used to scroll and display the at least one gel card image; the sliding window component includes: a data queue and a sliding window; the data queue is used to store the gel card images; the sliding window is used to display the gel card images on the data queue;

[0032] Based on the arrangement order of the micropillar gel cards in the sample analyzer, the gel card images are arranged in the data queue.

[0033] In the above scheme, after arranging the gel card images in the data queue, the method further includes:

[0034] The system receives a sliding command and moves the gel card image in the data queue relative to the sliding window along a first direction or a second direction, according to the sliding command; wherein the first direction and the second direction are opposite.

[0035] Thirdly, this application provides an analytical information display device, installed in a sample analyzer, the device comprising:

[0036] An image input module is used to acquire microcolumn gel images from the sample analyzer; wherein the sample analyzer is used to test and analyze test samples in the gel columns of the microcolumn gel card; the microcolumn gel image is image information describing all gel columns in a microcolumn gel card; the microcolumn gel image includes gel column images, and one gel column image is image information describing one gel column;

[0037] The instruction input module is used to receive splicing test instructions and send the splicing test instructions to the sample analyzer; wherein, the splicing test instructions are used to instruct the sample analyzer to perform test analysis on the test samples in the multiple gel column images corresponding to the multiple gel columns in two or more adjacent microcolumn gel images;

[0038] An image stitching module is used to acquire sample column images of test samples from the plurality of gel columns in the sample analyzer, and insert the sample column images acquired from the sample analyzer into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images; wherein, the gel card image describes the image information of the test samples in all gel columns of a microcolumn gel card after the test analysis; the gel card image includes sample column images, and a sample column image describes the image information of the test sample in a gel column after the test analysis.

[0039] Fourthly, this application provides an electronic device, including: a processor and a memory communicatively connected to the processor;

[0040] The memory stores computer-executed instructions;

[0041] The processor executes computer execution instructions stored in the memory to implement the first aspect or various possible methods for displaying analytical information as described above, or to implement the second aspect or various possible methods for displaying analytical information as described above.

[0042] Fifthly, this application provides a computer-readable storage medium storing computer-executable instructions, which, when executed by a processor, are used to implement the above-described method for displaying analytical information.

[0043] Sixthly, this application provides a computer program product, including a computer program that, when executed by a processor, implements the above-described method for displaying analysis information.

[0044] This application provides an analytical information display method, apparatus, electronic device, and readable storage medium. By analyzing the sample in the sample column using a sample column image analyzer, it displays the gel card image information of the sample after testing and analysis, so that users can intuitively and accurately interpret the test analysis results of the sample through the gel card image. This enables the true display of the test results of the gel card, helps users to accurately interpret the results, and shows the aggregation strength of each gel column and the true effect of the test.

[0045] Meanwhile, this application can arrange the samples in the gel columns of multiple micro-column gel cards and perform test analysis on the samples in the gel columns of multiple micro-column gel cards through splicing test commands, so that the gel columns left over from the previous test analysis can be used for the test analysis of the next sample, thereby avoiding the waste of gel columns. Attached Figure Description

[0046] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0047] Figure 1 This is a schematic diagram of an application scenario provided by an embodiment of this application;

[0048] Figure 2 A flowchart of Embodiment 1 of an analysis information display method provided in this application;

[0049] Figure 3 A flowchart of Embodiment 2 of an analysis information display method provided in this application;

[0050] Figure 4 A flowchart of Embodiment 3 of an analysis information display method provided in this application;

[0051] Figure 5 A schematic diagram of the program modules of Embodiment 4 of an analysis information display device provided in this application;

[0052] Figure 6 A schematic diagram of the program modules of Embodiment 5 of an analysis information display device provided in this application;

[0053] Figure 7 This is a schematic diagram of the hardware structure of the electronic device in the present invention.

[0054] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation

[0055] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0056] Please see Figure 1 The specific application scenario of this application is as follows:

[0057] A server 3, which runs an analytical information display method, is installed in the sample analyzer 4; the server 3 is used to acquire microcolumn gel images from the sample analyzer.

[0058] Server 3 is used to receive splicing test commands and send them to the sample analyzer.

[0059] Server 3 is used to acquire sample column images of test samples from multiple gel columns from the sample analyzer, and insert the sample column images acquired from the sample analyzer into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images.

[0060] Server 3 is also used to launch sliding window component 31; sliding window component includes: data queue 311 and sliding window 312; data queue is used to store gel card images; server 3 arranges gel card images in data queue according to the arrangement order of micropillar gel cards in sample analyzer.

[0061] The technical solution of this application and how the technical solution of this application solves the problems of the prior art will be described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will be described below with reference to the accompanying drawings.

[0062] Example 1:

[0063] Please see Figure 2 This application provides a method for displaying analytical information, applied in a sample analyzer, the method comprising:

[0064] S101: Acquire microcolumn gel images from a sample analyzer; wherein, the sample analyzer is used to test and analyze the test samples in the gel columns of a microcolumn gel card; a microcolumn gel image is image information describing all the gel columns in a microcolumn gel card; a microcolumn gel image includes gel column images, and a gel column image is image information describing a gel column.

[0065] S102: Receive the splicing test command and send the splicing test command to the sample analyzer; wherein, the splicing test command is used to instruct the sample analyzer to perform test analysis on the test samples in the multiple gel column images corresponding to the multiple gel columns in two or more adjacent microcolumn gel images.

[0066] S103: Obtain sample column images of test samples from multiple gel columns from the sample analyzer, and insert the sample column images obtained from the sample analyzer into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images; wherein, the gel card image describes the image information of all test samples in a microcolumn gel card after testing and analysis; the gel card image includes sample column images, and a sample column image describes the image information of a test sample in a gel column after testing and analysis.

[0067] In this example, by acquiring microcolumn gel images from the sample analyzer, receiving splicing test instructions, sending the splicing test instructions to the sample analyzer, acquiring sample column images of test samples from multiple gel columns from the sample analyzer, and inserting the sample column images acquired from the sample analyzer into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images.

[0068] Therefore, the sample column image analyzer analyzes the sample in the sample column and displays the gel card image information after the sample is tested and analyzed, so that users can intuitively and accurately interpret the test and analysis results of the sample through the gel card image. This enables the true display of the test results of the gel card, helps users interpret the results accurately, and shows the aggregation intensity of each well and the true effect of the test.

[0069] Current sample analyzers typically place samples into the gel columns of one or more complete microcolumn gel cards before testing and analysis. This often results in multiple unused gel columns on the tested microcolumn gel cards, leading to gel column waste. To address this, the splicing test command in this application is not limited to testing and analyzing gel columns in a single microcolumn gel card. Instead, it can arrange samples from multiple microcolumn gel cards and perform testing and analysis on the samples in the gel columns of multiple microcolumn gel cards through the splicing test command. This allows gel columns remaining from previous tests and analyses to be used for subsequent sample tests and analyses, thereby avoiding gel column waste.

[0070] In this embodiment, the judgment result is determined by the different microcolumn gel cards of the sample analyzer. Based on the aggregation intensity of each well, an image of the microcolumn well is presented. When the test only requires a few wells of one card, the remaining wells can be spliced ​​with the empty wells of other cards to complete a test.

[0071] Preferably, the sample column image includes a well name; where the well name is the position number or test sample number of the gel column corresponding to the sample column image on the microcolumn gel card corresponding to the gel card image. The gel card image is a reflection image generated by the sample analyzer based on the interpretation rules of the microcolumn gel card, after testing and analyzing the test sample in the gel column of the microcolumn gel card, and based on the aggregation intensity of the test sample after the test analysis. Therefore, when the previous microcolumn gel card has been tested and there are still a few wells remaining, they can be selected together with the subsequent wells to complete a test. The final interpretation result is displayed below, which meets the needs of clinical scenarios, solves the problem of making full use of consumables, avoids waste of resources, is more efficient, saves resources, and provides a better user experience.

[0072] In a preferred embodiment, acquiring sample column images of test samples in multiple gel columns from a sample analyzer includes:

[0073] Obtain the reflection column image corresponding to a test sample of a gel column in the reflection image;

[0074] Identify aggregated portions in a columnar image that represent two or more aggregated intensities;

[0075] The agglomerated portion is assigned a color based on the agglomeration intensity, thus converting the reflection column image into a sample column image.

[0076] In this example, the reaction column image corresponding to the test sample of a gel column is obtained in the reaction image, the agglomeration part representing two or more agglomeration intensities in the reaction column image is identified, and the agglomeration part is assigned agglomeration color according to the agglomeration intensity, so that the reaction column image is converted into a sample column image.

[0077] The sample analyzer tests and analyzes samples, causing them to agglomerate and form agglomerated portions with varying agglomeration intensities within a gel column. By assigning different agglomerated portions different colors, a sample column image is obtained and displayed, achieving the technical effect of intuitively showing the test and analysis results of the sample in the gel column.

[0078] In this embodiment, the test analysis of the sample analyzer includes incubation, centrifugation, shaking, and CCD image (sample column image) of the sample. For example, the sample analyzer may be a blood typing analyzer, the sample is blood, and the test analysis involves obtaining a blood type sample column image through blood typing analysis.

[0079] Example 2:

[0080] Please see Figure 3 This application provides a method for displaying analytical information, applied in a sample analyzer, the method comprising:

[0081] S201: Obtain microcolumn gel images from a sample analyzer; wherein, the sample analyzer is used to test and analyze the test samples in the gel columns of a microcolumn gel card; a microcolumn gel image is image information describing all the gel columns in a microcolumn gel card; a microcolumn gel image includes gel column images, and a gel column image is image information describing a gel column.

[0082] This step is the same as S101 in Example 1, so it will not be described again here.

[0083] S202: Receive the splicing test command and send the splicing test command to the sample analyzer; wherein, the splicing test command is used to instruct the sample analyzer to perform test analysis on the test samples in the multiple gel column images corresponding to the multiple gel columns in two or more adjacent microcolumn gel images.

[0084] This step is the same as S102 in Example 1, so it will not be described again here.

[0085] S203: Obtain sample column images of test samples from multiple gel columns from the sample analyzer, and insert the sample column images obtained from the sample analyzer into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images; wherein, the gel card image describes the image information of all test samples in all gel columns in a microcolumn gel card after testing and analysis; the gel card image includes sample column images, and a sample column image describes the image information of the test sample in a gel column after testing and analysis.

[0086] This step is the same as S103 in Example 1, so it will not be described again here.

[0087] S204: Receive magnification command; wherein, the magnification command is a trigger event generated by clicking on a gel column in the gel card image.

[0088] In this step, the click event generated by the user clicking or double-clicking the gel card image is used as the trigger event for the zoom-in command.

[0089] S205: Set the gel column in the clicked gel card image corresponding to the magnification command as the target column, and magnify the size of the target column according to the magnification command to obtain the magnified target column.

[0090] In this step, users can use touch gestures to swipe left and right in the microcolumn gel card display area to browse information on multiple microcolumn gel cards and view test results. They can also click to zoom in on a single gel column to make the image displayed on the gel column more detailed and clear, allowing for interpretation of the test results of a single gel column. This gives users greater freedom, facilitates accurate interpretation, and is simple and efficient.

[0091] S206: Activate the preset front layer, extract the magnified target column to the front layer, and make the front layer display the target column in the front layer. The front layer is the layer located above the gel card image.

[0092] In this step, by extracting the magnified target column to the front layer, the technical effect of magnifying and displaying the target column can be achieved without occupying other space.

[0093] In this embodiment, before activating the preset front layer, the method further includes:

[0094] Set the parameters of the canvas in the front layer to transparent; the canvas is the carrier of the magnified target column in the front layer; the size of the canvas covers the gel card image.

[0095] By setting the front layer to transparent, the user can easily observe the gel card image through the front layer.

[0096] S207: Receive recovery command; wherein the recovery command is a trigger event generated by clicking on the target column in the previous layer and / or the canvas portion in the previous layer excluding the target column;

[0097] In this step, the click event generated by the user clicking or double-clicking the gel card image is used as the trigger event for the recovery command.

[0098] S208: Delete the enlarged target column in the front layer and turn off the front layer.

[0099] In this step, the enlarged target column is deleted from the previous layer to facilitate the insertion of the enlarged target column in the next step.

[0100] Turn off the front layer to display the gel card image clearly and completely.

[0101] S209: Obtain card test results from the sample analyzer; wherein, the card test results are the test analysis results of the sample analyzer on all gel columns in the micro-column gel card corresponding to the gel card image; the card test results include at least one column test result; the column test results are the test analysis results of the sample analyzer on the test samples in the gel columns of the micro-column gel card corresponding to the gel card image.

[0102] Preferably, the column test results include: the detected value and the threshold range;

[0103] The detection value is the analytical result output by the sample analyzer when it tests and analyzes the test sample in the gel column corresponding to the column test result;

[0104] The threshold range is the range of values ​​that the test results are considered acceptable according to the test analysis.

[0105] The results for each well location are displayed, including the well location name, detection threshold, and threshold range.

[0106] S210: Set the gel card image corresponding to the card test result as the target card image, match the card test result with the target card image, and match the column test result in the card test result with the sample column image in the target card image one by one.

[0107] In this step, the card test results are obtained and matched with the target card image. The column test results in the card test results are matched one by one with the sample column images in the target card image, so that users can intuitively view the column test results of each gel column.

[0108] Example 3:

[0109] Please see Figure 4 This application provides a method for displaying analytical information, applied in a sample analyzer, the method comprising:

[0110] S301: Acquire microcolumn gel images from a sample analyzer; wherein, the sample analyzer is used to test and analyze the test samples in the gel columns of a microcolumn gel card; a microcolumn gel image is image information describing all the gel columns in a microcolumn gel card; a microcolumn gel image includes gel column images, and a gel column image is image information describing a gel column.

[0111] This step is the same as S101 in Example 1, so it will not be described again here.

[0112] S302: Receive splicing test command and send the splicing test command to the sample analyzer; wherein, the splicing test command is used to instruct the sample analyzer to perform test analysis on the test samples in the multiple gel column images corresponding to the multiple gel columns in two or more adjacent microcolumn gel images.

[0113] This step is the same as S102 in Example 1, so it will not be described again here.

[0114] S303: Obtain sample column images of test samples from multiple gel columns from the sample analyzer, and insert the sample column images obtained from the sample analyzer into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images; wherein, the gel card image describes the image information of the test samples in all gel columns in a microcolumn gel card after testing and analysis; the gel card image includes sample column images, and a sample column image describes the image information of the test samples in a gel column after testing and analysis.

[0115] This step is the same as S103 in Example 1, so it will not be described again here.

[0116] S304: Activate the sliding window component; wherein, the sliding window component is a window bar used to implement the scrolling display of at least one gel card image; the sliding window component includes: a data queue and a sliding window; the data queue is used to store gel card images; the sliding window is used to display gel card images on the data queue;

[0117] In this step, by setting up a sliding window component and arranging the gel card images sequentially in the data queue, different gel card images can be displayed on the sliding window by controlling the sliding window or the data queue.

[0118] S305: Arrange the gel card images in the data queue according to the arrangement order of the microcolumn gel cards in the sample analyzer.

[0119] To ensure a one-to-one correspondence between the gel card images arranged in the sliding window assembly and the microcolumn gel cards in the sample analyzer, facilitating verification by staff, this step arranges the gel card images in the data queue according to the arrangement order of the microcolumn gel cards in the sample analyzer. This allows staff to accurately observe the microcolumn gel cards placed in different positions regardless of how they control the sliding window assembly.

[0120] S306: Receive a sliding instruction, and according to the sliding instruction, move the gel card image in the data queue relative to the sliding window along a first direction or a second direction; wherein the first direction and the second direction are opposite.

[0121] In this step, the sliding command can be a trigger event generated by clicking and / or double-clicking and / or sliding within the sliding window, used to display the gel card image of the data queue in the sliding window. The first direction is sliding to the left, and the second direction can be sliding to the right; or the first direction is sliding up, and the second direction is sliding down.

[0122] S307: Receive a magnification command; wherein the magnification command is a trigger event generated by clicking on a gel column in the gel card image.

[0123] In this step, the click event generated by the user clicking or double-clicking the gel card image is used as the trigger event for the zoom-in command.

[0124] S308: Set the gel column in the clicked gel card image corresponding to the magnification command as the target column, and magnify the size of the target column according to the magnification command to obtain the magnified target column.

[0125] In this step, users can use touch gestures to swipe left and right in the microcolumn gel card display area to browse information on multiple microcolumn gel cards and view test results. They can also click to zoom in on a single gel column to make the image displayed on the gel column more detailed and clear, allowing for interpretation of the test results of a single gel column. This gives users greater freedom, facilitates accurate interpretation, and is simple and efficient.

[0126] S309: Activate the preset front layer, extract the magnified target column to the front layer, and make the front layer display the target column in the front layer. The front layer is the layer located above the gel card image.

[0127] In this step, by extracting the magnified target column to the front layer, the technical effect of magnifying and displaying the target column can be achieved without occupying other space.

[0128] In this embodiment, before activating the preset front layer, the method further includes:

[0129] Set the parameters of the canvas in the front layer to transparent; the canvas is the carrier of the magnified target column in the front layer; the size of the canvas covers the gel card image.

[0130] By setting the front layer to transparent, the user can easily observe the gel card image through the front layer.

[0131] S310: Receive a restore command; wherein the restore command is a trigger event generated by clicking on the target column in the previous layer and / or the canvas portion in the previous layer excluding the target column;

[0132] In this step, the click event generated by the user clicking or double-clicking the gel card image is used as the trigger event for the recovery command.

[0133] S311: Delete the enlarged target column in the previous layer and turn off the previous layer.

[0134] In this step, the enlarged target column is deleted from the previous layer to facilitate the insertion of the enlarged target column in the next step.

[0135] Turn off the front layer to display the gel card image clearly and completely.

[0136] S312: Obtain card test results from the sample analyzer; wherein, the card test results are the test analysis results of the sample analyzer on all gel columns in the micro-column gel card corresponding to the gel card image; the card test results include at least one column test result; the column test results are the test analysis results of the sample analyzer on the test samples in the gel columns of the micro-column gel card corresponding to the gel card image.

[0137] Preferably, the column test results include: the detected value and the threshold range;

[0138] The detection value is the analytical result output by the sample analyzer when it tests and analyzes the test sample in the gel column corresponding to the column test result;

[0139] The threshold range is the range of values ​​that the test results are considered acceptable according to the test analysis.

[0140] The results for each well location are displayed, including the well location name, detection threshold, and threshold range.

[0141] S313: Set the gel card image corresponding to the card test result as the target card image, match the card test result with the target card image, and match the column test result in the card test result with the sample column image in the target card image one by one.

[0142] In this step, the card test results are obtained and matched with the target card image. The column test results in the card test results are matched one by one with the sample column images in the target card image, so that users can intuitively view the column test results of each gel column.

[0143] Example 4:

[0144] Please see Figure 5 This application provides an analytical information display device 1, installed in a sample analyzer, comprising:

[0145] Image input module 11 is used to acquire microcolumn gel images from a sample analyzer; wherein, the sample analyzer is used to test and analyze test samples in the gel columns of a microcolumn gel card; a microcolumn gel image is image information describing all gel columns in a microcolumn gel card; a microcolumn gel image includes gel column images, and a gel column image is image information describing a gel column;

[0146] The instruction input module 12 is used to receive splicing test instructions and send the splicing test instructions to the sample analyzer; wherein, the splicing test instructions are used to instruct the sample analyzer to perform test analysis on the test samples in the multiple gel column images corresponding to the multiple gel columns in two or more adjacent microcolumn gel images.

[0147] The image stitching module 13 is used to acquire sample column images of test samples from multiple gel columns in the sample analyzer, and insert the sample column images acquired from the sample analyzer into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images; wherein, the gel card image describes the image information of all test samples in the gel columns of a microcolumn gel card after testing and analysis; the gel card image includes sample column images, and a sample column image describes the image information of the test sample in a gel column after testing and analysis.

[0148] Optionally, the analysis information display device 1 further includes:

[0149] The magnification input module 14 is used to receive magnification commands; wherein, the magnification command is a trigger event generated by clicking on a gel column in the gel card image.

[0150] The magnified target recognition module 15 is used to set the gel column in the gel card image corresponding to the magnification instruction as the target column, and to magnify the size of the target column according to the magnification instruction to obtain the magnified target column;

[0151] The target magnification module 16 is used to activate the preset front layer, extract the magnified target column to the front layer, and make the front layer display the target column in the front layer. The front layer is the layer located above the gel card image.

[0152] Optionally, the analysis information display device 1 further includes:

[0153] The recovery input module 17 is used to receive recovery instructions; wherein the recovery instructions are triggered by clicking on the target column in the previous layer and / or the canvas portion in the previous layer excluding the target column.

[0154] Target recovery module 18 is used to delete the enlarged target column in the previous layer and turn off the previous layer.

[0155] Optionally, the analysis information display device 1 further includes:

[0156] The result input module 19 is used to obtain card test results from the sample analyzer; wherein, the card test results are the test analysis results of the sample analyzer on all the test samples of the gel columns in the micro-column gel card corresponding to the gel card image; the card test results include at least one column test result; the column test results are the test analysis results of the sample analyzer on the test samples in the gel columns of the micro-column gel card corresponding to the gel card image;

[0157] The result correspondence module 10 is used to set the gel card image corresponding to the card test result as the target card image, to correspond the card test result with the target card image, and to correspond the column test result in the card test result with the sample column image in the target card image one by one.

[0158] Example 5:

[0159] Please see Figure 6 This application provides an analysis information display device 2, installed in a sample analyzer, including: a sliding window activation module 24 for activating a sliding window component; wherein, the sliding window component is a window bar for scrolling and displaying at least one gel card image; the sliding window component includes: a data queue and a sliding window; the data queue is used to store gel card images; the sliding window is used to display gel card images on the data queue;

[0160] The sliding window loading module 25 is used to arrange the gel card images in the data queue according to the arrangement order of the microcolumn gel cards in the sample analyzer.

[0161] The image sliding module 26 is used to receive a sliding command and, according to the sliding command, move the gel card image in the data queue relative to the sliding window along a first direction or a second direction; wherein the first direction and the second direction are opposite.

[0162] Optionally, the analysis information display device 1 further includes:

[0163] Image input module 21 is used to acquire microcolumn gel images from a sample analyzer; wherein, the sample analyzer is used to test and analyze test samples in the gel columns of a microcolumn gel card; a microcolumn gel image is image information describing all gel columns in a microcolumn gel card; a microcolumn gel image includes gel column images, and a gel column image is image information describing a gel column;

[0164] The instruction input module 22 is used to receive splicing test instructions and send the splicing test instructions to the sample analyzer; wherein, the splicing test instructions are used to instruct the sample analyzer to perform test analysis on the test samples in the multiple gel column images corresponding to the multiple gel columns in two or more adjacent microcolumn gel images.

[0165] The image stitching module 23 is used to acquire sample column images of test samples from multiple gel columns in the sample analyzer, and insert the sample column images acquired from the sample analyzer into two or more adjacent microcolumn gel images, so that the two or more adjacent microcolumn gel images are converted into two or more gel card images; wherein, the gel card image describes the image information of all test samples in the gel columns of a microcolumn gel card after testing and analysis; the gel card image includes sample column images, and a sample column image describes the image information of the test sample in a gel column after testing and analysis.

[0166] Optionally, the analysis information display device 1 further includes:

[0167] The magnification input module 27 is used to receive magnification commands; wherein, the magnification command is a trigger event generated by clicking on a gel column in the gel card image.

[0168] The magnified target recognition module 28 is used to set the gel column in the gel card image corresponding to the magnification instruction as the target column, and to magnify the size of the target column according to the magnification instruction to obtain the magnified target column;

[0169] The target magnification module 29 is used to activate the preset front layer, extract the magnified target column to the front layer, and make the front layer display the target column in the front layer. The front layer is the layer located above the gel card image.

[0170] Optionally, the analysis information display device 1 further includes:

[0171] The recovery input module 210 is used to receive recovery instructions; wherein the recovery instructions are triggered by clicking on the target column in the previous layer and / or the canvas portion in the previous layer excluding the target column.

[0172] Target recovery module 211 is used to delete the enlarged target column in the previous layer and turn off the previous layer.

[0173] Optionally, the analysis information display device 1 further includes:

[0174] The result input module 212 is used to obtain card test results from the sample analyzer; wherein, the card test results are the test analysis results of the sample analyzer on all the test samples of the gel columns in the micro-column gel card corresponding to the gel card image; the card test results include at least one column test result; the column test results are the test analysis results of the sample analyzer on the test samples in the gel columns of the micro-column gel card corresponding to the gel card image;

[0175] The result correspondence module 213 is used to set the gel card image corresponding to the card test result as the target card image, to correspond the card test result with the target card image, and to correspond the column test result in the card test result with the sample column image in the target card image one by one.

[0176] Example 6:

[0177] To achieve the above objectives, this application also provides an electronic device 5, including: a processor 52 and a memory 51 communicatively connected to the processor 52; the memory stores computer-executed instructions;

[0178] The processor executes computer execution instructions stored in memory 51 to implement the above-described analysis information display method. The components of the analysis information display device can be distributed across different electronic devices. Electronic device 5 can be a smartphone, tablet, laptop, desktop computer, rack server, blade server, tower server, or cabinet server (including standalone servers or server clusters composed of multiple application servers), etc. The electronic devices in this embodiment include, but are not limited to, memory 51 and processor 52, which can communicate with each other via a system bus. Figure 7 As shown. It should be noted that, Figure 7Only electronic devices with components are shown; however, it should be understood that it is not required to implement all the components shown, and more or fewer components may be implemented instead. In this embodiment, memory 51 (i.e., readable storage medium) includes flash memory, hard disk, multimedia card, card-type memory (e.g., SD or DX memory), random access memory (RAM), static random access memory (SRAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), programmable read-only memory (PROM), magnetic memory, disk, optical disk, etc. In some embodiments, memory 51 may be an internal storage unit of the electronic device, such as the hard disk or memory of the electronic device. In other embodiments, memory 51 may also be an external storage device of the electronic device, such as a plug-in hard disk, smart media card (SMC), secure digital (SD) card, flash card, etc., equipped on the electronic device. Of course, memory 51 may also include both internal storage units and external storage devices of the electronic device. In this embodiment, memory 51 is typically used to store the operating system and various application software installed on the electronic device, such as the program code of the analysis information display device in Embodiment 3. In addition, the memory 51 can also be used to temporarily store various types of data that have been output or will be output. In some embodiments, the processor 52 can be a central processing unit (CPU), controller, microcontroller, microprocessor, or other data processing chip. The processor 52 is typically used to control the overall operation of the electronic device. In this embodiment, the processor 52 is used to run program code stored in the memory 51 or process data, for example, to run an analysis information display device to implement the analysis information display method of the above embodiments.

[0179] The integrated modules implemented as software functional modules described above can be stored in a computer-readable storage medium. These software functional modules, stored in a storage medium, include several instructions to cause an electronic device (which may be a personal computer, server, or network device, etc.) or processor to execute some steps of the methods of the various embodiments of this application. It should be understood that the processor may be a Central Processing Unit (CPU), or other general-purpose processors, digital signal processors (DSPs), application-specific integrated circuits (ASICs), etc. A general-purpose processor may be a microprocessor or any conventional processor. The steps of the methods disclosed in this application can be directly implemented by a hardware processor, or implemented by a combination of hardware and software modules in the processor. The memory may include high-speed RAM, and may also include non-volatile memory (NVM), such as at least one disk storage device, and may also be a USB flash drive, external hard drive, read-only memory, disk, or optical disk, etc.

[0180] To achieve the above objectives, this application also provides a computer-readable storage medium, such as flash memory, hard disk, multimedia card, card-type memory (e.g., SD or DX memory), random access memory (RAM), static random access memory (SRAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), programmable read-only memory (PROM), magnetic memory, disk, optical disk, server, App application store, etc., which stores computer-executable instructions, and the program implements the corresponding function when executed by processor 52. The computer-readable storage medium of this embodiment is used to store computer-executable instructions for implementing the analysis information display method, and when executed by processor 52, it implements the analysis information display method of the above embodiment.

[0181] The aforementioned storage medium can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic storage, flash memory, magnetic disk, or optical disk. The storage medium can be any available medium that can be accessed by a general-purpose or special-purpose computer.

[0182] An exemplary storage medium is coupled to a processor, enabling the processor to read information from and write information to the storage medium. Alternatively, the storage medium can be an integral part of the processor. Both the processor and the storage medium can reside in an Application Specific Integrated Circuit (ASIC). Alternatively, the processor and storage medium can exist as discrete components in an electronic device or host device.

[0183] This application provides a computer program product, including a computer program that, when executed by a processor, implements the above-described method for displaying analysis information.

[0184] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.

[0185] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this application are indicated by the following claims.

[0186] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.

Claims

1. A method for displaying analytical information, characterized in that, When applied in a sample analyzer, the method includes: The sample analyzer acquires microcolumn gel images of at least two microcolumn gel cards; wherein the sample analyzer is used to test and analyze test samples in the gel columns of the microcolumn gel cards; the microcolumn gel image is image information describing all gel columns in a microcolumn gel card; the microcolumn gel image includes gel column images, and one gel column image is image information describing one gel column; Receive a splicing test instruction and send the splicing test instruction to the sample analyzer; wherein, the splicing test instruction is used to instruct the sample analyzer to perform test analysis on test samples from multiple gel columns selected from at least two microcolumn gel cards in a single test analysis task; The sample column images of the test samples in the plurality of gel columns are obtained from the sample analyzer; The acquired sample column images are inserted into the positions corresponding to the selected gel columns in the at least two microcolumn gel images to update each microcolumn gel image; and the updated at least two microcolumn gel images are output as a response result to the splicing test command.

2. The analytical information display method according to claim 1, characterized in that, Following the output of the updated at least two micropillar gel images, the method further includes: Receive a magnification command; wherein the magnification command is a trigger event generated by clicking on a gel column in the updated microcolumn gel image; The gel column corresponding to the magnification command in the updated microcolumn gel image is set as the target column, and the size of the target column is magnified according to the magnification command to obtain the magnified target column; Activate the preset front layer, extract the magnified target column to the front layer, and make the front layer display the target column in the front layer, wherein the front layer is the layer located above the updated microcolumn gel image.

3. The method for displaying analytical information according to claim 2, characterized in that, Before activating the preset front layer, the method further includes: The parameters of the canvas in the front layer are set to transparent; wherein, the canvas is the carrier of the magnified target column in the front layer; the size of the canvas covers the updated microcolumn gel image.

4. The analytical information display method according to claim 2, characterized in that, After extracting the magnified target column to the front layer, so that the front layer displays the target column in the front layer, the method further includes: Receive a recovery command; wherein the recovery command is a trigger event generated by clicking on the target column in the front layer and / or the canvas portion in the front layer excluding the target column; Delete the enlarged target column from the front layer and turn off the front layer.

5. The analytical information display method according to claim 1, characterized in that, The sample column image has a well name; wherein, the well name is the gel column corresponding to the sample column image, the position number on the microcolumn gel card corresponding to the microcolumn gel image where the sample column image is located, or the test sample number.

6. The method for displaying analytical information according to claim 1, characterized in that, The microcolumn gel image is a reflection image generated by the sample analyzer based on the interpretation rules of the microcolumn gel card, the test sample in the gel column of the microcolumn gel card is tested and analyzed, and the aggregation intensity of the test sample after the test and analysis is determined.

7. The analytical information display method according to claim 6, characterized in that, The step of acquiring sample column images of the test samples in the plurality of gel columns from the sample analyzer includes: Obtain the reaction column image corresponding to the test sample of a gel column in the reaction image; Identify aggregated portions in the reflected column image that represent two or more aggregated intensities; The agglomerated portion is assigned an agglomeration color based on the agglomeration intensity, thereby converting the reflected column image into the sample column image.

8. The method for displaying analytical information according to claim 1, characterized in that, After outputting the updated at least two micropillar gel images, the method further includes: The card test results are obtained from the sample analyzer; wherein, the card test results are the test analysis results of the sample analyzer on all gel columns in the microcolumn gel card corresponding to the updated microcolumn gel image; the card test results include at least one column test result; the column test results are the test analysis results of the sample analyzer on the test samples in the gel columns of the microcolumn gel card corresponding to the updated microcolumn gel image; The updated microcolumn gel image corresponding to the card test result is set as the target card image. The card test result is matched with the target card image, and the column test result in the card test result is matched one-to-one with the sample column image in the target card image.

9. The method for displaying analytical information according to claim 8, characterized in that, The column test results include: the detected values ​​and the threshold range; The detection value is the analysis result output by the sample analyzer when it tests and analyzes the test sample in the gel column corresponding to the column test result; The threshold range is the range within which the detected value is considered acceptable according to the test analysis.

10. A method for displaying analytical information, characterized in that, When applied in a sample analyzer, the method includes: Activate the sliding window component; wherein, the sliding window component is a window bar used to scroll and display at least one micropillar gel image; the sliding window component includes: a data queue and a sliding window; the data queue is used to store the micropillar gel image; the sliding window is used to display the micropillar gel image on the data queue; According to the arrangement order of the microcolumn gel cards in the sample analyzer in any of the analytical information display methods of claims 1-9, the microcolumn gel images in any of the analytical information display methods of claims 1-9 are arranged in the data queue.

11. The method for displaying analytical information according to claim 10, characterized in that, After arranging the microcolumn gel images from any of the analytical information display methods of claims 1-9 in the data queue, the method further includes: The system receives a sliding command and moves the microcolumn gel image in the data queue relative to the sliding window along a first direction or a second direction, according to the sliding command; wherein the first direction and the second direction are opposite.

12. An analytical information display device, characterized in that, Installed in a sample analyzer, the device includes: An image input module is used to acquire microcolumn gel images of at least two microcolumn gel cards from the sample analyzer; wherein the sample analyzer is used to perform test analysis on the test samples in the gel columns of the microcolumn gel cards; the microcolumn gel image is image information describing all the gel columns in a microcolumn gel card; the microcolumn gel image includes gel column images, and one gel column image is image information describing the gel column; The instruction input module is used to receive splicing test instructions and send the splicing test instructions to the sample analyzer; wherein, the splicing test instructions are used to instruct the sample analyzer to perform test analysis on test samples from multiple gel columns selected from at least two microcolumn gel cards in a single test analysis task; The image stitching module is used to acquire sample column images of the test samples from the multiple gel columns in the sample analyzer; insert the acquired sample column images into the positions corresponding to the selected gel columns in at least two microcolumn gel images to update each microcolumn gel image; and output the updated at least two microcolumn gel images as a response result to the stitching test command for display.

13. An electronic device, characterized in that, include: A processor and a memory communicatively connected to the processor; The memory stores computer-executed instructions; The processor executes computer execution instructions stored in the memory to implement the analytical information display method as described in any one of claims 1 to 11.

14. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores computer-executable instructions, which, when executed by a processor, are used to implement the analytical information display method as described in any one of claims 1 to 11.