Sample reaction result display method, sample analyzer and readable storage medium
By receiving a result overview or detailed result instructions, the result overview table or sample information list is displayed on the sample analyzer interface, and the detailed reaction results are displayed according to the user's choice, which solves the scene limitations in traditional methods and realizes flexible sample reaction results display.
Patent Information
- Application Number
- CN202510631423.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-28
- Publication Date
- 2025-08-15
AI Technical Summary
It is difficult to take into account the traditional sample reaction result display method to view sample reaction result in various scenarios. Especially when there are many test items, users need to view the test results of each project in detail, and when there are few test items, they need to intuitively see the test results of all samples.
Provide a method for displaying sample reaction results. By receiving result overview instructions or detailed result instructions, displaying the result overview table or sample information list on the preset interface, and displaying detailed reaction result information according to user selection, including project results, detection results, reaction curve charts, etc.
It realizes the flexible display of simple or detailed reaction result information according to user needs, adapting to the reference requirements of sample reaction result in more scenarios, and improving the readability and flexibility of sample reaction results.
Smart Images

Figure CN120490510A_ABST
Abstract
Description
[0001] This application is a divisional application of the patent application with application number 202311848227.7 filed on December 28, 2023. The invention name of the original application is "Sample reaction result display method, sample analyzer and readable storage medium". Technical Field
[0002] The present application belongs to the field of medical device technology, and in particular relates to a sample reaction result display method, a sample analyzer, and a computer-readable storage medium. Background Art
[0003] With the rapid development of medical technology, testing and analyzing collected samples has become an important diagnostic aid. Sample analysis is typically performed using equipment such as sample analyzers, and doctors can view sample response information on analyzers or other displays.
[0004] Traditional methods for displaying sample reaction results are typically relatively fixed. One method displays all reaction result information in a list. This display scheme requires scrolling to view the test results when there are many test items. Another scheme displays sample information in one list and project information in another list. In this format, each time you view the results, you need to select a sample to view the test results. These display schemes are difficult to meet the needs of viewing sample reaction results in various scenarios. For example, when there are few test items, users need to intuitively see the test results of all samples, while when there are many test items, users need to view the test results of each item in detail. Therefore, the traditional sample reaction result display scheme has certain limitations in the scenarios it can adapt to. Summary of the Invention
[0005] The primary purpose of this application is to provide a sample reaction result display method, a sample analyzer, and a computer-readable storage medium. This method aims to increase the flexibility of viewing sample reaction results, enabling the display of simplified or detailed reaction result information based on user needs, thereby meeting the needs of viewing reaction results in a wider range of scenarios.
[0006] In order to achieve the above-mentioned object, the present application provides a method for displaying sample reaction results, which comprises:
[0007] If a result summary instruction is received, a result summary table is displayed on a preset interface, wherein the result summary table includes at least one sample information and first reaction result information corresponding to the sample information;
[0008] If a detailed result instruction is received, a sample information list is displayed in the first window of the preset interface;
[0009] When the sample information list receives a sample selection instruction, second reaction result information corresponding to the sample information pointed to by the sample selection instruction is displayed in the display area of the preset interface, wherein the amount of information in the second reaction result information is greater than that in the first reaction result information.
[0010] Optionally, if a detailed result instruction is received, the step of displaying the sample information list in the first window of the preset interface includes:
[0011] When the detailed result button of the preset interface receives a click instruction, a first window is displayed on the left side of the preset interface according to a preset first window range;
[0012] A sample information list is displayed in the first window, wherein the sample information list includes at least one of a status, a sample number, a barcode, and a category.
[0013] Optionally, the second reaction result information includes at least a project result and a test result;
[0014] The step of displaying the second reaction result information corresponding to the sample information pointed to by the sample selection instruction in the display area of the preset interface includes:
[0015] Displaying a second window on the right side of the first window according to a preset second window range;
[0016] Displaying in the second window the project result of at least one test project corresponding to the sample information pointed to by the sample selection instruction;
[0017] When the test item receives an item selection instruction, a third window is displayed on the right side of the second window according to a preset third window range;
[0018] At least one test result of the test item pointed to by the item selection instruction is displayed in the third window.
[0019] Optionally, the step of displaying in the third window at least one test result of the test item pointed to by the item selection instruction includes:
[0020] Displaying the test result corresponding to the project result in the first preset area of the third window;
[0021] When the detection result receives a click instruction, a result graph corresponding to the detection result is displayed in the second preset area of the third window, wherein the result graph is one of a sample photo or a reaction curve graph.
[0022] Optionally, the third window includes at least one detection method label corresponding to the detection result;
[0023] After the step of displaying a result graph corresponding to the detection result in the second preset area of the third window, the method further includes:
[0024] When the detection method label receives a click instruction, a reaction curve graph corresponding to the detection method pointed to by the detection method label is displayed in the second preset area;
[0025] When a merge display instruction is received, the reaction curve graphs corresponding to the detection results under the detection method are merged and displayed in the second preset area.
[0026] Optionally, the detection method includes an optical method and a magnetic bead method;
[0027] After the step of displaying a result graph corresponding to the detection result in the second preset area of the third window, the method further includes:
[0028] When a comparison view instruction is received, the reaction curve graphs corresponding to the optical method and the magnetic bead method are merged to generate a merged display graph;
[0029] The combined display graph and the reaction curve graphs corresponding to the optical method and the magnetic bead method are displayed side by side.
[0030] Optionally, after the step of displaying the combined display graph and the reaction curve graphs corresponding to the optical method and the magnetic bead method in parallel, the method further comprises:
[0031] The comparison information table is displayed side by side with the reaction curve diagrams of the optical method and the magnetic bead method and the combined display diagram, wherein the comparison information table at least includes the detection method name and the test serial number and detection result corresponding to the optical method and the magnetic bead method respectively.
[0032] Optionally, the sample reaction result display method further includes:
[0033] If a detailed result instruction is received, one of calculation information, test information, patient information or diagnostic reference information is displayed in a fourth window of the preset interface, and a label corresponding to the calculation information, test information, patient information or diagnostic reference information is displayed;
[0034] When the tag receives a click instruction, information corresponding to the tag is displayed in the fourth window.
[0035] In addition, to achieve the above-mentioned purpose, the present application also provides a sample reaction result display device, which is applied to a sample analyzer;
[0036] The sample reaction result display device comprises:
[0037] a first response module configured to display a result summary table on a preset interface upon receiving a result summary instruction, wherein the result summary table includes at least one sample information and first reaction result information corresponding to the sample information;
[0038] A second response module, configured to display a sample information list in the first window of the preset interface upon receiving a detailed result instruction;
[0039] An information display module is used to display second reaction result information corresponding to the sample information pointed to by the sample selection instruction in the display area of the preset interface when the sample information list receives a sample selection instruction, wherein the amount of information in the second reaction result information is greater than the amount of information in the first reaction result information.
[0040] In addition, to achieve the above-mentioned purpose, the present application also provides a sample analyzer, which includes: a memory, a processor, and a sample reaction result display program stored in the memory and executable on the processor. When the sample reaction result display program is executed by the processor, the steps of the sample reaction result display method described above are implemented.
[0041] In addition, to achieve the above objectives, the present application also provides a computer-readable storage medium, on which a sample reaction result display program is stored. When the sample reaction result display program is executed by a processor, the steps of the sample reaction result display method described above are implemented.
[0042] An embodiment of the present application proposes a sample reaction result display method, a sample analyzer, and a computer-readable storage medium. The sample reaction result display method includes: if a result overview instruction is received, displaying a result overview table on a preset interface, wherein the result overview table includes at least one sample information and first reaction result information corresponding to the sample information; if a detailed result instruction is received, displaying a sample information list in a first window of the preset interface, and when the sample information list receives a sample selection instruction, displaying second reaction result information corresponding to the sample information pointed to by the sample selection instruction in a display area of the preset interface, wherein the amount of information in the second reaction result information is greater than that in the first reaction result information.
[0043] In this way, based on the technical solution of the embodiment of the present application, the first reaction result information in the form of a result overview table required by the user or the second reaction result information with a larger amount of information can be displayed according to the result overview instruction or detailed result instruction input by the user, overcoming the scenario limitations of the traditional sample reaction result display solution, allowing users to flexibly select the display form of the sample reaction results according to their own needs, and adapt to the sample reaction result viewing needs in more scenarios. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] Figure 1 Schematic diagram of the hardware operating environment of the sample analyzer according to the embodiment of the present application;
[0045] Figure 2 This is a schematic flow chart of the steps of the method for displaying the sample reaction results of this application;
[0046] Figure 3 This is a schematic diagram of a result overview interface in the first embodiment of the method for displaying sample reaction results of this application;
[0047] Figure 4 This is a schematic diagram of a detailed result interface of the first embodiment of the sample reaction result display method of this application;
[0048] Figure 5 This is a schematic diagram of a sample photo interface in the first embodiment of the sample reaction result display method of this application;
[0049] Figure 6 This is a schematic diagram of a calculation information interface in the first embodiment of the sample reaction result display method of this application;
[0050] Figure 7 This is a schematic diagram of a test information interface in the first embodiment of the sample reaction result display method of this application;
[0051] Figure 8 This is a schematic diagram of a patient information interface in the first embodiment of the sample reaction result display method of this application;
[0052] Figure 9 This is a schematic diagram of an expert mode interface in the first embodiment of the sample reaction result display method of this application;
[0053] Figure 10 This is a schematic diagram of an optical method reaction curve interface in the second embodiment of the sample reaction result display method of this application;
[0054] Figure 11 This is a schematic diagram of a video interface of a magnetic bead method in the second embodiment of the sample reaction result display method of this application;
[0055] Figure 12 This is a schematic diagram of a magnetic particle method reaction curve in the second embodiment of the sample reaction result display method of this application;
[0056] Figure 13 This is a schematic diagram of an immunoturbidimetric reaction curve in the second embodiment of the method for displaying sample reaction results of this application;
[0057] Figure 14 This is a schematic diagram of a combined display interface in the second embodiment of the sample reaction result display method of this application;
[0058] Figure 15 This is a schematic diagram of a comparison viewing interface in the second embodiment of the sample reaction result display method of this application;
[0059] Figure 16 This is a functional module diagram of an embodiment of a sample reaction result display device of the present application.
[0060] The realization of the objectives, functional features and advantages of this application will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION
[0061] It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.
[0062] Reference Figure 1 , Figure 1 This is a schematic diagram of the device structure of the hardware operating environment of the sample analyzer involved in the embodiment of the present application.
[0063] It should be noted that the sample analyzer in the embodiment of the present application is used to detect and analyze patient samples (such as blood or other body fluids), and output corresponding test results and sample reaction result information such as reaction curves for users to review.
[0064] It should be understood that, based on the different design requirements of actual applications, the terminal device of the embodiment of the present application can of course also be other devices or device modules. For example, the terminal device can also be a data storage control terminal or a portable computer and other movable or non-movable terminal devices.
[0065] like Figure 1 As shown, the sample analyzer may include: a processor 1001, such as a CPU, a communication bus 1002, a user interface 1003, a network interface 1004, and a memory 1005. Among them, the communication bus 1002 is used to realize the connection and communication between these components. The user interface 1003 may include a display screen (Display), an input unit such as a keyboard (Keyboard), and the user interface 1003 may optionally include a standard wired interface and a wireless interface. The network interface 1004 may optionally include a standard wired interface and a wireless interface (such as a Wi-Fi interface). The memory 1005 may be a high-speed RAM memory or a stable memory (non-volatile memory), such as a disk memory. The memory 1005 may optionally be a storage device independent of the aforementioned processor 1001.
[0066] Those skilled in the art will understand that Figure 1The structure of the sample analyzer shown in the figure does not constitute a limitation to the sample analyzer, and the sample analyzer may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently.
[0067] like Figure 1 As shown, the memory 1005 as a computer storage medium may include an operating system, a network communication module, a user interface module, and a sample reaction result display program.
[0068] exist Figure 1 In the terminal shown, the network interface 1004 is mainly used to connect to the backend server and communicate data with the backend server; the user interface 1003 is mainly used to connect to the client and communicate data with the client; and the processor 1001 can be used to call the sample reaction result display program stored in the memory 1005 and perform the following operations:
[0069] If a result summary instruction is received, a result summary table is displayed on a preset interface, wherein the result summary table includes at least one sample information and first reaction result information corresponding to the sample information;
[0070] If a detailed result instruction is received, a sample information list is displayed in the first window of the preset interface;
[0071] When the sample information list receives a sample selection instruction, second reaction result information corresponding to the sample information pointed to by the sample selection instruction is displayed in the display area of the preset interface, wherein the amount of information in the second reaction result information is greater than that in the first reaction result information.
[0072] Optionally, the processor 1001 may also be configured to call a sample reaction result display program stored in the memory 1005 and perform the following operations:
[0073] When the detailed result button of the preset interface receives a click instruction, a first window is displayed on the left side of the preset interface according to a preset first window range;
[0074] A sample information list is displayed in the first window, wherein the sample information list includes at least one of a status, a sample number, a barcode, and a category.
[0075] Optionally, the second reaction result information includes at least a project result and a test result. The processor 1001 may also be configured to call a sample reaction result display program stored in the memory 1005 to perform the following operations:
[0076] Displaying a second window on the right side of the first window according to a preset second window range;
[0077] Displaying in the second window the project result of at least one test project corresponding to the sample information pointed to by the sample selection instruction;
[0078] When the test item receives an item selection instruction, a third window is displayed on the right side of the second window according to a preset third window range;
[0079] At least one test result of the test item pointed to by the item selection instruction is displayed in the third window.
[0080] Optionally, the processor 1001 may also be configured to call a sample reaction result display program stored in the memory 1005 and perform the following operations:
[0081] Displaying the test result corresponding to the project result in the first preset area of the third window;
[0082] When the detection result receives a click instruction, a result graph corresponding to the detection result is displayed in the second preset area of the third window, wherein the result graph is one of a sample photo or a reaction curve graph.
[0083] Optionally, the third window includes at least one detection method label corresponding to the detection result. After the step of displaying a result graph corresponding to the detection result in the second preset area of the third window, the processor 1001 may further be configured to call a sample reaction result display program stored in the memory 1005 and perform the following operations:
[0084] When the detection method label receives a click instruction, a reaction curve graph corresponding to the detection method pointed to by the detection method label is displayed in the second preset area;
[0085] When a merge display instruction is received, the reaction curve graphs corresponding to the detection results under the detection method are merged and displayed in the second preset area.
[0086] Optionally, the detection method includes an optical method and a magnetic bead method. After the step of displaying a result graph corresponding to the detection result in the second preset area of the third window, the processor 1001 may be further configured to call a sample reaction result display program stored in the memory 1005 and perform the following operations:
[0087] When a comparison view instruction is received, the reaction curve graphs corresponding to the optical method and the magnetic bead method are merged to generate a merged display graph;
[0088] The combined display graph and the reaction curve graphs corresponding to the optical method and the magnetic bead method are displayed side by side.
[0089] Optionally, after the step of displaying the combined display image and the reaction curve graphs corresponding to the optical method and the magnetic bead method in parallel, the processor 1001 may also be used to call a sample reaction result display program stored in the memory 1005 and perform the following operations:
[0090] The comparison information table is displayed side by side with the reaction curve diagrams of the optical method and the magnetic bead method and the combined display diagram, wherein the comparison information table at least includes the detection method name and the test serial number and detection result corresponding to the optical method and the magnetic bead method respectively.
[0091] Optionally, the processor 1001 may also be configured to call a sample reaction result display program stored in the memory 1005 and perform the following operations:
[0092] If a detailed result instruction is received, one of calculation information, test information, patient information or diagnostic reference information is displayed in a fourth window of the preset interface, and a label corresponding to the calculation information, test information, patient information or diagnostic reference information is displayed;
[0093] When the tag receives a click instruction, information corresponding to the tag is displayed in the fourth window.
[0094] Based on the above-mentioned sample analyzer, various embodiments of the sample reaction result display method of the present application are proposed.
[0095] Please refer to Figure 2 , Figure 2 This is a flow chart of the first embodiment of the method for displaying sample reaction results of the present application. In the first embodiment of the method for displaying sample reaction results of the present application, the method for displaying sample reaction results of the present application includes:
[0096] Step S10: If a result summary instruction is received, a result summary table is displayed on a preset interface, wherein the result summary table includes at least one sample information and first reaction result information corresponding to the sample information;
[0097] It should be noted that in the embodiments of the present application, the sample analyzer can test and analyze collected patient samples and output corresponding sample reaction results, which include at least the test results corresponding to various parameters and a reaction curve. It should be noted that the preset interface is a result display interface corresponding to the sample analyzer or a display connected to the sample analyzer, which is used to display the sample reaction results to the user.
[0098] As an example, the preset interface includes an interface switch key. When the user clicks the interface switch key and switches the state of the interface switch key to the result overview, it is deemed that the result overview instruction is received, and the result overview table is displayed on the preset interface, showing the user at least one sample information and the first reaction result information corresponding to the sample information in a tabular form, wherein the first reaction result information includes at least one test item and the detection results corresponding to each test item.
[0099] In a feasible embodiment, when the sample analyzer outputs the sample reaction result, before the user inputs a result overview instruction or a detailed result instruction, a preset display interface, such as a result overview interface or a detailed result interface, is displayed.
[0100] For example, referring to Figure 3 The result overview interface shown in the figure can be switched to the result overview interface by clicking the interface switch button ( Figure 3 The interface shown is the result overview interface. The interface switch button in the lower left corner reads "Detailed Results" (the text is displayed). The interface switch can also be completed by clicking the ">" icon in the upper right corner. Users can switch between the result overview interface and the detailed result interface according to hospital needs, and the switch selection is retained after switching. The result overview table includes information such as status, sample identification number, location, and fields corresponding to items such as APTT (activated partial thromboplastin time), PT (prothrombin time), INR (international normalized ratio), TT (thrombin time), FIB (fibrinogen), DD (D-dimer), FDP (fibrin / fibrinogen degradation products), AT-III (antithrombin), and PLA (platelets). In addition, the result overview interface also includes function buttons such as editing samples, querying, reviewing, canceling review, LIS transmission, retesting, deleting, printing, result exporting, and customization, providing users with a rich and diverse range of functional options.
[0101] Step S20: If a detailed result instruction is received, a sample information list is displayed in the first window of the preset interface;
[0102] It should be noted that in the embodiment of the present application, the user can switch the display interface by clicking the interface switch key of [Detailed Results] / [Result Overview] in the preset interface, or by switching the display interface through the interface icon. When the user switches the state of the interface switch key to detailed results, it is deemed that the detailed results instruction has been received, and the sample information list is displayed in the first window of the preset interface, wherein the sample information list includes at least one piece of sample information, and the sample information includes field information other than the project, such as status, sample number, location, barcode, category, etc.
[0103] Exemplarily, the first window is rectangular and is located on the left side of the preset interface, and its size parameters such as length and width can be customized according to user wishes.
[0104] In a feasible embodiment, while the sample information list is displayed in the first window, detailed reaction result information corresponding to the first sample information in the sample information list can be displayed by default in other areas on the right side of the preset interface, wherein the detailed reaction result information includes test items, item results, one or more test results, reaction curve graphs, sample photos, binary images, grayscale images, etc.
[0105] Step S30: When the sample information list receives a sample selection instruction, the second reaction result information corresponding to the sample information pointed to by the sample selection instruction is displayed in the display area of the preset interface, wherein the amount of information in the second reaction result information is greater than that in the first reaction result information.
[0106] In the embodiment of the present application, it should be noted that step S10 and steps S20-S30 are in a parallel relationship, and there is no order of execution. The execution order of step S30 is after step S20. When a certain sample information in the sample information list receives a click instruction from the user, it is deemed to have received a sample selection instruction pointing to the sample information. At this time, the second reaction result information corresponding to the sample information is displayed in the display area on the right side of the first window in the preset interface. Among them, the second reaction result information is more detailed and has a larger amount of information than the first reaction result information. In addition to including at least one test item and the test results corresponding to each test item, it also includes image information such as reaction curve graphs, sample photos, binary images and grayscale images corresponding to the test results.
[0107] In a feasible embodiment, after the sample information list is displayed in the preset interface and before a sample selection instruction input by the user is received, the second reaction result information corresponding to the latest sample information is displayed in the display area by default.
[0108] Exemplarily, the sample reaction result display method provides a result overview interface and a detailed result interface. Specifically, the result overview interface includes: a list displaying status, sample number, location, barcode, project, category, test tube type, application time, test time, completion time, reviewer, review, upload, sample information, name, and other fields. Among them, the projects are displayed according to the project order preset by the user, and the display of the header field can be customized. In addition, the detailed result interface includes: a first list displaying status, sample number, location, barcode, category, and other fields other than the project; a second list displaying the project and the corresponding project results; a third list displaying the results of multiple tests of all calculation parameters of the methodology in which the calculation parameters selected in list two correspond to the project; a reaction curve corresponding to the test result of the selected methodology; and sample photos and reaction curves. These image information share the same display area and can be switched. The sample photos include multiple sample pictures (for example, 8 pictures) taken by the sample at the scanner in the machine, which can be flipped by the user. It can also include calculation information, reagent information, patient information, and expert mode tabbed display. The user can switch the display status by clicking the tab. Among them, the result overview interface is suitable for application scenarios with a small number of projects, allowing users to intuitively see all the test results of the samples, while the detailed result interface is suitable for application scenarios with many projects or the need to frequently confirm the reaction curve, allowing users to view as many project results as possible and further check the corresponding reaction curves.
[0109] Furthermore, in a feasible embodiment, in step S10, if a detailed result instruction is received, the step of displaying the sample information list in the first window of the preset interface may include:
[0110] Step S11, when the detailed result button of the preset interface receives a click instruction, a first window is displayed on the left side of the preset interface according to a preset first window range;
[0111] Step S12: Displaying a sample information list in the first window, wherein the sample information list includes at least one of a status, a sample number, a barcode, and a category.
[0112] In the embodiment of the present application, a method for displaying a detailed result interface is provided. Specifically, referring to Figure 4 In addition to clicking the [Detailed Results] / [Result Overview] interface switch button in the lower left corner ( Figure 4 The interface shown is the detailed result interface. The interface switch button in the lower left corner displays "result overview"). You can also click the "》" icon in the upper right corner to complete the interface switch. Users can switch between the result overview interface and the detailed result interface according to the needs of the hospital. After switching, the selection will be maintained. Figure 4In the figure, label 1 is the first window (i.e., list one), which is rectangular in shape. Optionally, there is a scroll bar at the bottom of the first window for users to slide to view the detailed information corresponding to each sample information in the sample information list. The detailed information includes status, sample identification number (i.e., sample number), location, barcode, category, etc.
[0113] As an example, each piece of sample information in the sample information list is updated sequentially from top to bottom, and the user can select a piece of sample information so that the user can view the detailed result information corresponding to the sample information in the display area ( Figure 4 The dashed box area (including the areas marked 2, 3, and 4) displays specific calculation parameters, results, and reaction curves. Specifically, if the user does not select any sample information, the most recent sample information in the sample information list (i.e., the last sample information in the list) is selected by default and displayed in the display area on the right.
[0114] Furthermore, in step S30, the second reaction result information includes at least a project result and a test result. The step of displaying the second reaction result information corresponding to the sample information pointed to by the sample selection instruction in the display area of the preset interface may include:
[0115] Step S31, displaying a second window on the right side of the first window according to a preset second window range;
[0116] Step S32, displaying in the second window the project result of at least one test project corresponding to the sample information pointed to by the sample selection instruction;
[0117] Step S33, when the test item receives an item selection instruction, a third window is displayed on the right side of the second window according to a preset third window range;
[0118] Step S34: displaying at least one test result of the test item pointed to by the item selection instruction in the third window.
[0119] In the present application, refer to Figure 4 The second window is the area corresponding to label 2 (i.e., List 2). The second window is used to display the project results corresponding to the sample information selected in the first window. For example, Figure 4 In the example, the currently selected sample information is the second one, and the corresponding item results include the calculation parameters PT and PTR (prothrombin time ratio), which belong to the same test item. In addition, the item results also include the values corresponding to the item TT and the item APTT. For example, when the test item PT in the second window receives a click instruction, it is deemed to have received the item selection instruction, and the test result corresponding to the test item is displayed in the third window ( Figure 4 The number of tests shown in FIG is 3, and each test result includes the corresponding PT value and PTR value).
[0120] It should be noted that the project results in the second window are equivalent to the latest test results in the third window. If the user needs to display the test results corresponding to other test orders in the second window, he can click the "Change report results" button in the third window and select the corresponding order (1, 2 or 3) to switch the project results in the second window to test results of other orders.
[0121] In an embodiment of the present application, the detailed result interface provides users with a method for viewing in detail the project results and test results corresponding to each piece of sample information. In scenarios where there are many test items and the demand for test results is more detailed, it can provide users with more standardized and detailed data display effects, thereby improving the readability of sample reaction results.
[0122] Furthermore, the step of displaying at least one test result of the test item pointed to by the item selection instruction in the third window may include:
[0123] Step S321, displaying the test result corresponding to the project result in the first preset area of the third window;
[0124] Step S322: When the detection result receives a click instruction, a result graph corresponding to the detection result is displayed in the second preset area of the third window, wherein the result graph is one of a sample photo or a reaction curve graph.
[0125] In the embodiment of the present application, when the user has clicked a test item in the second window, the test result corresponding to the item result is displayed in the first preset area of the third window. Figure 4 As an example, the first preset area can be the rectangular area in the lower half of the third window (labeled 3) (i.e., List 3), and the detection results include: Order 1, PT(s) is 12.5, PTR is 11.7; Order 2, PT(s) is 12.5, PTR is 11.7; Order 3, PT(s) is 12.5, PTR is 11.7.
[0126] In the third list of the third window, the user can click on any row of test result data, so that the result graph corresponding to the test result is displayed above the third list of the third window (i.e., the second preset area), wherein the result graph can be the result graph corresponding to various detection methods, including optical method, magnetic bead method, magnetic microparticle method and sample photo (refer to Figure 5), etc., different types of result graphs have corresponding paging labels, and users can click different paging labels to display different result graphs in the same second preset area.
[0127] Exemplarily, the result graph corresponding to the optical method includes the original curve, the first-order derivative curve and the second-order derivative curve; the result graph corresponding to the magnetic bead method includes the original curve and the amplitude curve; the result graph corresponding to the magnetic particle method includes a grayscale image, a binary image and a video.
[0128] Optionally, refer to Figure 4 The result graph display interface has "《" and "》" icons on the left and right sides. Users can click the icons on the left and right sides to quickly switch between different result graphs under the same detection method. In addition, function buttons such as "Merge Display", "Comparative View", and "Image Export" can be set between the first and second preset areas to provide users with more diverse options.
[0129] In addition, in a feasible embodiment, the detailed result interface may further include a fourth window for displaying other information, and the sample reaction result display method further includes:
[0130] Step S40: If a detailed result instruction is received, displaying one of the calculation information, test information, patient information, or diagnostic reference information in a fourth window of the preset interface, and displaying a label corresponding to the calculation information, test information, patient information, or diagnostic reference information, respectively;
[0131] Step S50: When the tag receives a click instruction, information corresponding to the tag is displayed in the fourth window.
[0132] In the embodiment of the present application, it should be noted that the fourth window is displayed in parallel with the first window, the second window and the third window in the aforementioned content. Figure 4 The fourth window may include four different types of information, wherein, referring to Figure 6 , the calculation information includes the specific values of the parameters corresponding to the test results; refer to Figure 7 , test information includes category, tube type, sample information, methodology, number of repetitions, dilution factor, PTR1, PTR2, Diluent (diluent), calibration date, completion date, milestones and prompts; refer to Figure 8 , patient information includes the patient's name, gender, age, patient ID, department, diagnosis and notes; diagnostic reference information (i.e. Figure 9 The expert mode in the test is mainly used to provide users with reference information for disease diagnosis based on sample test results (for reference only).
[0133] In addition, the upper portion of the fourth window includes four paging tabs for different types of information. It is understandable that the user can switch the information displayed in the fourth window by clicking on different paging tabs.
[0134] In a feasible embodiment, the sample analyzer used in the sample reaction result display method may include multiple modules such as a sample carrying module, a reagent carrying module, a reaction cup loading module, a sample transfer module, a reaction module, and a detection module. Among them, the sample carrying module is used to carry samples. The sample carrying module can be a sample scheduling module that places the sample on a sample rack and then enters the sample transfer module of the sample analyzer through the front track to absorb the sample. It can also be a sample tray module set on the sample analyzer. This embodiment of the application does not limit this. The reagent carrying module is used to carry reagents. The reagent carrying module can be a reagent tray type or a reagent compartment module that places multiple reagent bottles on a reagent rack and then places the reagent rack in the sample analyzer. This invention does not limit this. The reagent carrying module includes a variety of reagents, wherein the types of reagents can be optical reagents, magnetic bead reagents, and magnetic microparticle reagents; the reaction cup loading module is used to provide a reaction cup, which can be a magnetic bead reaction cup containing magnetic beads, or an empty reaction cup; the sample transfer module is used to transfer samples and reagents into the reaction cup; the reaction module is used to provide an incubation place for incubating samples and / or reagents placed in the reaction cup; the detection module is used to detect the incubated sample reagent mixture to obtain the final test result. The detection module includes an optical detection module, a magnetic bead detection module, and a magnetic microparticle detection module; the display module is used to display the test results obtained by the detection module. The sample reaction result display method in the embodiment of the present application can be specifically applied to the display module of the sample analyzer to provide users with a more flexible way to view sample reaction results and meet data viewing needs in more scenarios.
[0135] An embodiment of the present application proposes a sample reaction result display method, which includes: if a result overview instruction is received, displaying a result overview table on a preset interface, wherein the result overview table includes at least one sample information and first reaction result information corresponding to the sample information; if a detailed result instruction is received, displaying a sample information list in a first window of the preset interface, and when the sample information list receives a sample selection instruction, displaying second reaction result information corresponding to the sample information pointed to by the sample selection instruction in a display area of the preset interface, wherein the amount of information in the second reaction result information is greater than the amount of information in the first reaction result information.
[0136] In this way, based on the technical solution of the embodiment of the present application, the first reaction result information in the form of a result overview table required by the user or the second reaction result information with a larger amount of information can be displayed according to the result overview instruction or detailed result instruction input by the user, overcoming the scenario limitations of the traditional sample reaction result display solution, allowing users to flexibly select the display form of the sample reaction results according to their own needs, and adapt to the sample reaction result viewing needs in more scenarios.
[0137] Furthermore, based on the first embodiment of the method for displaying sample reaction results of the present application, a second embodiment of the method for displaying sample reaction results of the present application is proposed.
[0138] In this embodiment, the third window includes at least one detection method label corresponding to the detection result; after the step of displaying a result graph corresponding to the detection result in the second preset area of the third window, the method may further include:
[0139] Step A10: When the detection method label receives a click instruction, a reaction curve graph corresponding to the detection method pointed to by the detection method label is displayed in the second preset area;
[0140] Step A20: When a merge display instruction is received, the reaction curve graphs corresponding to the detection results under the detection method are merged and displayed in the second preset area.
[0141] In a feasible embodiment, the sample reaction result display method is used to display the reaction results of the four coagulation items, wherein the detection method may include one or more of the optical method, the magnetic bead method and the magnetic microparticle method. When the detection method label in the third window receives a click instruction input by the user, the reaction curve graph corresponding to the detection method label is displayed in the second preset area of the third window. The reaction curve graph here is the original unprocessed reaction curve graph corresponding to each detection method. It should be noted that the reaction curve graph is the first result graph displayed by default in the second preset area. At this time, the user can still switch the currently displayed result graph by clicking on the different graph labels corresponding to the detection method in the second preset area. For example, after the label corresponding to the optical method is clicked by the user, the following is displayed. Figure 10 The original curve graph shown (the horizontal axis is the test time, the vertical axis is the original light intensity) shows the optical method's first-order and second-order derivative graphs. Users can also click the virtual buttons to the left of "First-Order Derivative" and "Second-Order Derivative" above the graph, or the icons on the left and right sides of the original curve graph to jump to the corresponding derivative graph. It should be noted that the reaction curve area for test items other than the four coagulation items only displays the original test curves.
[0142] For example, Figure 11As shown in FIG, the result graph corresponding to the magnetic bead method includes the original curve graph (the horizontal axis is the detection time, and the vertical axis is the detection signal intensity) and the amplitude curve graph; Figure 12 As shown in the figure, the result images corresponding to the magnetic particle method include grayscale images, binary images and videos; Figure 13 As shown, the result graph corresponding to the immunoturbidimetric method is the original curve graph (the horizontal axis is the detection time, and the vertical axis is the original light intensity).
[0143] Furthermore, the third window includes a merge display virtual button, and the user can click the merge display virtual button to merge the data of multiple test results corresponding to the current detection method into the same reaction curve graph for comparison. Figure 14 The figure shows a schematic diagram of the combined display of the original curve graphs of the detection results on both sides corresponding to the optical method, where the horizontal axis is the detection time and the vertical axis is the original light intensity. After generating the combined display graph, the user can use it to determine whether there are errors in the process of multiple tests according to the same detection method, and obtain more accurate sample reaction result data.
[0144] For example, when a test item is tested using multiple methodologies, the results of tests using different methods are displayed under the corresponding methodology tab. When the user clicks on the merged display, all results under the method (except the magnetic particle method) are automatically displayed on one graph, so that the user can intuitively see the comparison of the results of repeated tests of the same methodology, and can zoom in to view the details of the merged graph by touching.
[0145] In addition, the third window further includes a "Compare View" function virtual key. After the step of displaying the result graph corresponding to the test result in the second preset area of the third window, the method may further include:
[0146] Step A30, when a comparison and viewing instruction is received, merging the reaction curve graphs corresponding to the optical method and the magnetic bead method to generate a combined display graph;
[0147] Step A40: displaying the combined display image and the reaction curve graphs corresponding to the optical method and the magnetic bead method in parallel.
[0148] In the embodiment of the present application, a display interface for comparing the detection results of the optical method and the magnetic bead method is further provided for the user. By displaying the reaction curves corresponding to the optical method and the magnetic bead method side by side, the difference between the two is more intuitively reflected. It is understandable that the original curve of the magnetic bead method can be generated by derivative calculation and transformation to generate a curve graph in the form of the original curve graph of the optical method, so that the curve graph after the magnetic bead method conversion can be displayed in the same figure as the curve graph of the optical method (such as Figure 15 shown below left).
[0149] For example, in the embodiment of the present application, after receiving the comparison view instruction, the following Figure 15 In the interface shown, the upper left is the reaction curve of the optical method, the upper right is the reaction curve of the magnetic bead method, the lower left is the reaction curve of the optical method and the magnetic bead method combined in one figure, and the lower right is a comparison information table.
[0150] On the other hand, after the step of displaying the combined display image and the reaction curve graphs corresponding to the optical method and the magnetic bead method in parallel, the method further includes:
[0151] Step A50, displaying the comparison information table, the reaction curve diagrams of the optical method and the magnetic bead method, and the combined display diagram side by side, wherein the comparison information table at least includes the detection method name and the test serial number and detection result corresponding to the optical method and the magnetic bead method respectively.
[0152] In the embodiment of the present application, the detection method names, serial numbers and items of the optical method and the magnetic bead method are added to the comparison information table, and the comparison information table is displayed side by side with the reaction curve diagrams of the optical method and the magnetic bead method in the aforementioned steps and the merged display diagram, so that the user can intuitively browse which two detection methods are currently being compared, as well as the serial numbers and project results of the detection results, thereby enhancing the readability of the comparison viewing interface.
[0153] For example, when the user needs to compare the results of different methodologies, first select a test result in the list under the optical method tab, then select a test result in the list under the magnetic bead method tab, and click Compare and View. The reaction curves of the magnetic bead method and the optical method will be automatically displayed on the same interface (Compare and View interface). Specifically, the first line of the Compare and View interface displays the test results of the two methods separately, the second line displays the reaction curves of the two methods together, and the list displays the test serial numbers and results corresponding to the two methods. In the Compare and View interface, users can view the reaction curves separately or combine them for comparison and viewing, and can zoom in to view the details of the graph by touching.
[0154] The embodiments of the present application provide a method for merging and comparing multiple test results of the same project, as well as merging and comparing test results corresponding to different detection methods, which overcomes the technical defects of traditional sample reaction result display methods that cannot compare different test results of the same project and cannot compare test results of multiple different detection methods. The technical solution of the embodiments of the present application supports the comparison, merging and viewing of results of different methodologies for the same project, and supports the comparison, merging and viewing of results of multiple tests using the same method. In certain scenarios where reaction curve graphs and sample reaction result accuracy are more important, it can provide users with a more intuitive and concise visual effect, thereby improving the efficiency of browsing sample reaction results.
[0155] In addition, the present invention also provides a sample reaction result display device, please refer to Figure 16 , Figure 16 This is a functional module diagram of an embodiment of the sample reaction result display device of this application, as shown in FIG. Figure 16 As shown, the sample reaction result display device of this application includes:
[0156] A first response module 10 is configured to display a result summary table on a preset interface upon receiving a result summary instruction, wherein the result summary table includes at least one sample information and first reaction result information corresponding to the sample information;
[0157] The second response module 20 is configured to display a sample information list in the first window of the preset interface upon receiving a detailed result instruction;
[0158] The information display module 30 is used to display the second reaction result information corresponding to the sample information pointed to by the sample selection instruction in the display area of the preset interface when the sample information list receives a sample selection instruction, wherein the amount of information of the second reaction result information is greater than the amount of information of the first reaction result information.
[0159] Optionally, the second response module 20 is further configured to:
[0160] When the detailed result button of the preset interface receives a click instruction, a first window is displayed on the left side of the preset interface according to a preset first window range;
[0161] A sample information list is displayed in the first window, wherein the sample information list includes at least one of a status, a sample number, a barcode, and a category.
[0162] Optionally, the second reaction result information includes at least a project result and a test result, and the information display module 30 is further configured to:
[0163] Displaying a second window on the right side of the first window according to a preset second window range;
[0164] Displaying in the second window the project result of at least one test project corresponding to the sample information pointed to by the sample selection instruction;
[0165] When the test item receives an item selection instruction, a third window is displayed on the right side of the second window according to a preset third window range;
[0166] At least one test result of the test item pointed to by the item selection instruction is displayed in the third window.
[0167] Optionally, the information display module 30 is further configured to:
[0168] Displaying the test result corresponding to the project result in the first preset area of the third window;
[0169] When the detection result receives a click instruction, a result graph corresponding to the detection result is displayed in the second preset area of the third window, wherein the result graph is one of a sample photo or a reaction curve graph.
[0170] Optionally, the third window includes at least one detection method label corresponding to the detection result, and the information display module 30 is further configured to:
[0171] When the detection method label receives a click instruction, a reaction curve graph corresponding to the detection method pointed to by the detection method label is displayed in the second preset area;
[0172] When a merge display instruction is received, the reaction curve graphs corresponding to the detection results under the detection method are merged and displayed in the second preset area.
[0173] Optionally, the detection method includes an optical method and a magnetic bead method, and the information display module 30 is further used to:
[0174] When a comparison view instruction is received, the reaction curve graphs corresponding to the optical method and the magnetic bead method are merged to generate a merged display graph;
[0175] The combined display graph and the reaction curve graphs corresponding to the optical method and the magnetic bead method are displayed side by side.
[0176] Optionally, the information display module 30 is further configured to:
[0177] The comparison information table is displayed side by side with the reaction curve diagrams of the optical method and the magnetic bead method and the combined display diagram, wherein the comparison information table at least includes the detection method name and the test serial number and detection result corresponding to the optical method and the magnetic bead method respectively.
[0178] Optionally, the information display module 30 is further configured to:
[0179] If a detailed result instruction is received, one of calculation information, test information, patient information or diagnostic reference information is displayed in a fourth window of the preset interface, and a label corresponding to the calculation information, test information, patient information or diagnostic reference information is displayed;
[0180] When the tag receives a click instruction, information corresponding to the tag is displayed in the fourth window.
[0181] The specific embodiments of the various functional modules of the sample reaction result display device of the present application during operation are basically the same as the embodiments of the sample reaction result display method of the present application described above, and will not be described in detail here.
[0182] The present application also provides a computer storage medium storing a sample reaction result display program. When the sample reaction result display program is executed by a processor, the steps of the sample reaction result display program method described in any of the above embodiments are implemented.
[0183] The specific embodiments of the computer storage medium of the present application are basically the same as the above-mentioned embodiments of the sample reaction result display program method of the present application, and will not be described in detail here.
[0184] The present application also provides a computer program product, which includes a computer program. When the computer program is executed by a processor, the steps of the sample reaction result display method of the present application as described in any of the above embodiments are implemented, which will not be repeated here.
[0185] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or system. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or system comprising the element.
[0186] The serial numbers of the above embodiments of the present application are for description only and do not represent the advantages or disadvantages of the embodiments.
[0187] Through the description of the above implementation methods, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of software plus the necessary general hardware platform, and of course by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of the present application, or the part that contributes to the prior art, can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) as described above, and includes several instructions for enabling a sample analyzer (which can be a TWS headset, etc.) to execute the methods described in each embodiment of the present application.
[0188] The above are only preferred embodiments of the present application and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A sample analyzer for coagulation detection, comprising: A sample carrying module, used for carrying samples; A reagent carrying module, used for carrying reagents; A reaction cup loading module, used for providing a reaction cup; A sample transfer module, used for transferring the sample and the reagent into the reaction cup; A reaction module, used to provide an incubation location for incubating samples and / or reagents placed in a reaction cup; The detection module is used to detect the incubated sample-reagent mixture and obtain the detection result; A display module is used to display the detection results obtained by the detection module; It is characterized in that the detection module includes an optical detection module and a magnetic bead detection module; The test results include optical test results and magnetic bead test results; The display module is further configured to display a preset interface, which is a result display interface of the sample analyzer or a result display interface corresponding to a display connected to the sample analyzer; The display module is further configured to separately display the optical test result and the magnetic bead test result of the same test item on the same preset interface; And / or, it is also used to combine the optical method detection result and the magnetic bead method detection result of the same test item for display on the preset interface.
2. A sample analyzer according to claim 1, characterized in that: The display module displays the optical test result and the magnetic bead test result of the same test item on the same preset interface respectively according to the comparison instruction; And / or, the optical detection result and the magnetic bead detection result of the same test item are combined and displayed on the preset interface.
3. The sample analyzer according to claim 1, wherein: The detection modules include an optical detection module, a magnetic bead detection module and a magnetic microparticle detection module; The test results include optical test results, magnetic bead test results and magnetic microparticle test results; Furthermore, the optical detection result, the magnetic bead detection result and the magnetic microparticle detection result of the same test item are displayed separately on the same preset interface.
4. A sample analyzer according to any one of claims 1 to 3, characterized in that: The reaction curve of the optical detection result and the reaction curve of the magnetic bead detection result of the same test item are displayed separately on the same preset interface; And / or, the reaction curve in the optical detection result and the reaction curve in the magnetic bead detection result of the same test item are combined and displayed on the same preset interface.
5. A sample analyzer according to claim 4, characterized in that: The reaction curve in the optical detection result and the reaction curve in the magnetic bead detection result of the same test item are combined and displayed on the same preset interface, including: The original curve graph of the magnetic bead method is converted through derivation calculation to generate a curve graph in the form of the original curve graph of the optical method, and the converted curve graph of the magnetic bead method and the curve graph of the optical method are displayed in the same graph.
6. A sample analyzer for coagulation detection, comprising: A sample carrying module, used for carrying samples; A reagent carrying module, used for carrying reagents; A reaction cup loading module, used for providing a reaction cup; A sample transfer module, used for transferring the sample and the reagent into the reaction cup; A reaction module, used to provide an incubation location for incubating samples and / or reagents placed in a reaction cup; The detection module is used to detect the incubated sample-reagent mixture and obtain the final detection result; A display module is used to display the detection results obtained by the detection module; It is characterized in that the detection module includes an optical detection module and a magnetic bead detection module; The test results include optical test results and magnetic bead test results; The display module is further configured to display a preset interface, which is a result display interface of the sample analyzer or a result display interface corresponding to a display connected to the sample analyzer; The display module is also used to merge the data of multiple detection results of the optical detection module and display them in the same reaction curve graph in the preset interface; or, it is also used to merge the data of multiple detection results of the magnetic bead detection module and display them in the same reaction curve graph in the preset interface.
7. A sample analyzer according to claim 6, characterized in that: According to the merging instruction, the display module merges the data of multiple detection results of the optical detection module and displays them in the same reaction curve graph in the preset interface; or merges the data of multiple detection results of the magnetic bead detection module and displays them in the same reaction curve graph in the preset interface.
8. A method for displaying sample reaction results, applied to a sample analyzer for performing coagulation testing, comprising: Determine the samples and their test items; Determine the test results based on the determined samples and their test items The test results include optical test results and magnetic bead test results; Displaying the optical detection results and the magnetic bead detection results separately on the same preset interface; And / or, the optical detection result and the magnetic bead detection result are combined and displayed on the same preset interface.
9. A sample reaction result display method according to claim 8, characterized in that: The test results include optical test results, magnetic bead test results and magnetic microparticle test results; The optical method detection results, the magnetic bead method detection results and the magnetic microparticle method detection results are displayed separately on the same preset interface; Preferably, the optical method detection result includes an original optical method curve graph; And / or, the magnetic bead method detection result includes an original curve graph or an amplitude curve graph of the magnetic bead method; And / or, the detection result of the magnetic particle method includes a grayscale image, a binary image or a video.
10. A method for displaying sample reaction results, applied to a sample analyzer for performing coagulation testing, comprising: Determine the detection method; the detection method is an optical method or a magnetic bead method; According to the determined detection method, determining multiple detection results corresponding to the detection method; The data of multiple test results corresponding to the detection method are merged into the same reaction curve graph for comparative display.