Blood matching test method, blood matching test display method, and related apparatus

By working together with the blood typing analyzer and the server, the pairing relationship between multiple samples can be switched and visualized, which solves the problems of poor interactivity and user experience in the existing technology, and improves the safety and convenience of blood transfusion.

CN115792250BActive Publication Date: 2026-04-24MEDCAPTAIN 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
2022-11-25
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing blood typing analyzers cannot intuitively display the entire blood matching process of a sample during crossmatch testing, resulting in poor interactivity and user experience, and they cannot meet the matching scenarios between multiple samples.

Method used

This invention provides a blood typing test method and a display method that, through the collaborative work of a blood typing analyzer and a server, supports the pairing relationships between multiple samples, including the switching and visualization of donor and recipient blood attributes, and outputs the blood typing test results.

Benefits of technology

It improves the ease of interaction and user experience, and can intuitively display the entire blood matching test process of the sample, meet the matching needs between multiple samples, and ensure blood transfusion safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the application discloses a blood matching test method, a blood matching test display method and related devices, wherein the blood matching test display method comprises: displaying a plurality of test samples to be matched in a first display interface; in response to a selection operation of a user on at least two test samples in the first display interface, displaying sample information of each test sample; in response to a test event triggered by the user through the application test interface, performing blood matching test; and outputting the result of the blood matching test through a second display interface. By implementing the embodiment of the application, the blood matching test process of the sample as a whole can be visually displayed, which helps to improve the interactive convenience and improve the user experience.
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Description

Technical Field

[0001] This application relates to the field of Internet technology, and in particular to a blood matching test method, a blood matching test display method, and related devices. Background Technology

[0002] With the continuous development of medicine, blood transfusion has become an essential means of patient treatment. However, adverse reactions occur frequently during blood transfusion therapy, and these adverse reactions may even endanger the patient's life. Therefore, it is necessary to further confirm the absence of antigen-antibody reactions of blood type incompatibility between the recipient and the donor before blood transfusion to ensure the recipient's transfusion safety. Although some blood typing analyzers currently offer crossmatching testing functions, their crossmatching requests are handled through a separate interface. The user interface can only display the final crossmatching result in a simple and rough manner, failing to provide an intuitive display of the overall crossmatching testing process, thus affecting the convenience of interaction and resulting in a poor user experience. Summary of the Invention

[0003] This application provides a blood matching test method, a blood matching test display method, and related devices, which can visually display the entire blood matching test process of a sample, helping to improve the convenience of interaction and enhance the user experience.

[0004] One embodiment of this application provides a blood typing test method, applied to a blood typing analyzer, including:

[0005] Select at least two test samples based on user operations, and determine the sample attributes of each test sample; wherein, the sample attributes include blood supply attributes and blood recipient attributes, and the at least two test samples include at least one test sample with blood supply attributes and at least one test sample with blood recipient attributes.

[0006] Perform blood matching tests on at least two test samples selected by the user; and

[0007] Output the results of the blood matching test.

[0008] One embodiment of this application provides a blood typing test display method, applied to a blood typing analyzer, including:

[0009] The first display screen shows multiple test samples awaiting blood matching.

[0010] In response to the user's selection of at least two test samples in the first display interface, display the sample information for each test sample;

[0011] In response to a test event triggered by a user through the test application interface, perform a blood matching test;

[0012] The results of the blood matching test are displayed on the second display interface.

[0013] One embodiment of this application provides a blood typing analyzer, including a memory and a processor. The memory is connected to the processor, the memory is used to store computer programs, and the processor is used to call the computer programs so that the blood typing analyzer executes the blood matching test method and / or the blood matching test display method provided in the above-mentioned embodiment of this application.

[0014] One aspect of this application provides a computer-readable storage medium storing a computer program adapted to be loaded and executed by a processor, so that a blood typing analyzer having a processor performs the method provided in one aspect of this application.

[0015] According to one aspect of this application, a computer program product or computer program is provided, comprising computer instructions stored in a computer-readable storage medium. A processor of a blood typing analyzer reads the computer instructions from the computer-readable storage medium, executes the computer instructions, and causes the blood typing analyzer to perform the blood matching test method provided in the above-mentioned aspect, and / or the blood matching test display method provided in the above-mentioned aspect.

[0016] The blood typing test display method provided in this application embodiment can display a first display interface on a blood typing analyzer, showing multiple test samples to be tested. Based on this, in response to a user's selection of at least two test samples on the first display interface, the method displays the sample information for each test sample. Finally, in response to a test event triggered by the user through the first display interface, the method executes the blood typing test and outputs the final blood typing test results for at least two test samples through a second display interface. Therefore, in this application embodiment, the entire blood typing test process can be visually displayed, which helps improve interactivity and user experience. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in one or more embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a schematic diagram of a network architecture provided in an embodiment of this application;

[0019] Figure 2 This is a schematic flowchart of a blood matching test method provided in an embodiment of this application;

[0020] Figure 3 This is a schematic flowchart of a blood matching test display method provided in an embodiment of this application;

[0021] Figure 4 This is a schematic diagram of a blood matching test scenario provided in an embodiment of this application;

[0022] Figure 5 This is a schematic diagram of an interface change provided in an embodiment of this application;

[0023] Figure 6 This is another schematic diagram of interface changes provided in an embodiment of this application;

[0024] Figure 7 This is another schematic diagram of interface changes provided in the embodiments of this application;

[0025] Figure 8 This is a schematic diagram of another blood matching test scenario provided in an embodiment of this application;

[0026] Figure 9 This is a schematic diagram of the structure of a blood matching test device provided in an embodiment of this application;

[0027] Figure 10 This is a schematic diagram of the structure of a blood matching test display device provided in an embodiment of this application;

[0028] Figure 11 This is a schematic diagram of the structure of a blood typing analyzer provided in an embodiment of this application. Detailed Implementation

[0029] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present application.

[0030] The terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or apparatuses.

[0031] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0032] With the continuous development of medicine, blood transfusion has become an essential means of patient treatment. However, adverse reactions occur frequently during blood transfusion therapy, and these adverse reactions may even endanger the patient's life. Therefore, it is necessary to further confirm the absence of antigen-antibody reactions due to blood type incompatibility between the recipient and the donor before blood transfusion to ensure the recipient's transfusion safety. Although some blood typing analyzers currently offer crossmatching testing functions, their crossmatching requests are handled on a separate interface. The user interface can only display the final crossmatching result in a simple and rough manner, failing to provide an intuitive display of the entire crossmatching testing process, thus affecting the convenience of interaction and resulting in a poor user experience. In addition, current blood typing analyzers are generally suitable for matching one recipient sample (the test sample whose attributes correspond to the recipient's attributes) with one donor sample (the test sample whose attributes correspond to the donor's attributes). They cannot meet the needs of matching one recipient sample with multiple donor samples, or multiple recipient samples with multiple donor samples. Therefore, traditional crossmatching testing methods are not very convenient.

[0033] To intuitively display the overall blood matching test process of a sample, improve interactivity and user experience, this application provides a blood matching test method and a blood matching test display method, applicable to... Figure 1 In the network architecture shown.

[0034] Please see Figure 1 , Figure 1 This is a schematic diagram of a network architecture provided in an embodiment of this application. Figure 1As shown, the network architecture includes a blood typing analyzer 101 and a server 102. In this embodiment, the blood typing analyzer 101 can be used independently to perform blood matching tests and display the results, or the blood typing analyzer 101 and the server 102 can be used collaboratively to perform blood matching tests and display the results. Taking the blood typing analyzer 101 used independently to perform blood matching tests as an example, it can specifically include: the blood typing analyzer 101 can select at least two test samples according to user operation, and determine the sample attributes of each test sample; wherein, the sample attributes include donor attributes and recipient attributes, and the at least two test samples include at least one test sample with donor attributes and at least one test sample with recipient attributes; the blood typing analyzer 101 performs blood matching tests on the at least two test samples selected by the user; and outputs the results of the blood matching tests through the blood typing analyzer 101. In addition, the blood typing analyzer 101 can display a first display interface for blood matching testing, which displays multiple test samples to be tested; when a user selects at least two test samples in the first display interface, the sample information of each test sample can be displayed; the user executes the blood matching test through a test event triggered by the first display interface; and the results of the blood matching test can be output through a second display interface.

[0035] The server 102 involved in this application embodiment can be used to store sample information of multiple test samples to be matched for blood testing. When performing blood matching tests, the blood typing analyzer 101 can obtain the sample information of multiple test samples to be matched for blood testing from the server 102. The server 102 can be an independent physical server, a server cluster or distributed system composed of multiple physical servers, or a cloud server providing basic cloud computing services such as cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communication, middleware services, domain name services, security services, content delivery networks (CDN), and big data and artificial intelligence platforms. The blood typing analyzer 101 and the server 102 can be directly or indirectly connected via wired or wireless communication, which is not limited in this application embodiment; the number of blood typing analyzers 101 and servers 102 is also not limited in this application embodiment.

[0036] Please see Figure 2 , Figure 2 This is a schematic flowchart of a blood typing test method provided in an embodiment of this application. It is understood that the explanation is based on the example of this blood typing test method being performed by a blood typing analyzer. Figure 2 As shown, the blood matching test method may include steps S101-S103:

[0037] Step S101: Select at least two test samples based on user operations and determine the sample attributes of each test sample.

[0038] The sample attributes include donor and recipient blood attributes. When a blood typing analyzer performs a blood matching test, the test samples generally need to include at least one donor blood attribute and at least one recipient blood attribute. Therefore, the at least two test samples selected by the blood typing analyzer according to user operation can include at least one donor blood attribute and at least one recipient blood attribute. For example, it can include one recipient blood attribute and one donor blood attribute; it can also include one recipient blood attribute and two or more donor blood attribute test samples; or it can include two or more recipient blood attribute test samples and two or more donor blood attribute test samples, etc., and this application does not limit the scope of the embodiments.

[0039] In one possible implementation, the sample attributes of each test sample can be set by default. For example, the first test sample selected by the user can be set to the blood-receiving attribute by default, and the samples selected after the first test sample can be set to the blood-donating attribute by default. Specifically, test sample D-1 is the first test sample selected by the user, and its corresponding sample attribute can be set to the blood-receiving attribute by default; test sample B-2 is the second test sample selected by the user, and its corresponding sample attribute can be set to the blood-donating attribute by default; test sample C-1 is the third test sample selected by the user, and its corresponding sample attribute can be set to the blood-donating attribute by default.

[0040] In another possible implementation, the sample attributes of each test sample can be determined based on user actions. For example, after selecting a test sample for blood matching, the user can switch the sample attributes according to the actual blood matching requirements. For instance, if test sample D-1 currently has the recipient attribute, the user can switch it to the donor attribute; if test sample B-2 currently has the donor attribute, the user can switch it to the recipient attribute. The blood typing analyzer can then quickly switch sample attributes based on the user's switching operations.

[0041] Step S102: Perform blood matching tests on at least two test samples selected by the user.

[0042] It is understandable that when a blood typing analyzer performs a blood matching test on at least two test samples selected by a user, it needs to determine the sample attributes of at least two test samples and the pairing relationships between these attributes. Specifically, a test sample with a donor attribute can be associated with a test sample with a recipient attribute, forming a one-to-one pairing; a test sample with a donor attribute can also be associated with at least two test samples with recipient attributes, forming a one-to-many pairing; at least two test samples with donor attributes can also be associated with at least two test samples with recipient attributes, forming a one-to-many pairing, and so on. This application embodiment does not limit this. Thus, this application embodiment provides multiple pairing relationships to meet the needs of blood matching tests in any scenario, contributing to improved ease of interaction.

[0043] For example, test sample D-1 is the first test sample selected by the user, and its corresponding sample attribute can be set to the blood recipient attribute by default; test sample B-2 is the second test sample selected by the user, and its corresponding sample attribute can be set to the blood donor attribute by default; test sample C-1 is the third test sample selected by the user, and its corresponding sample attribute can be set to the blood donor attribute by default. A pairing relationship can be generated between test samples with the blood recipient attribute and the immediately following test sample with the blood donor attribute, so that a blood typing test can be performed. That is, test sample D-1 (sample attribute: blood recipient) can be associated with test sample B-2 (sample attribute: blood donor) to generate pairing relationship 1; and test sample D-1 can be associated with test sample C-1 (sample attribute: blood donor) to generate pairing relationship 2. Furthermore, the blood typing analyzer can perform blood typing tests on test samples D-1, B-2, and C-1 based on pairing relationships 1 and 2.

[0044] Optionally, users can switch the sample attributes of test samples according to actual blood matching testing needs, thereby switching their pairing relationships. For example, test sample C-1, which originally had the blood donor attribute, can be switched to have the blood recipient attribute; at this time, test samples D-1 and C-1 have the blood recipient attribute, and test sample B-2 has the blood donor attribute. Furthermore, the blood typing analyzer can associate at least one test sample with the blood donor attribute with one or more of at least two test samples with the blood recipient attribute, based on user operation. That is, the blood typing analyzer can associate test sample D-1 (with the blood recipient attribute) with test sample B-2 (with the blood donor attribute) to generate pairing relationship 3; and associate test sample C-1 (with the blood recipient attribute) with test sample B-2 to generate pairing relationship 4; furthermore, the blood typing analyzer can perform blood matching tests on test samples D-1, B-2, and C-1 based on pairing relationships 3 and 4. This allows for quick switching between pairings, improving convenience and user experience.

[0045] Step S103: Output the results of the blood matching test.

[0046] Specifically, after completing the blood typing test, the blood typing analyzer can output the results, which can be used to determine whether the blood can be used for transfusion therapy to the corresponding patient. For example, the test samples used for the blood typing test are test sample D-1 and test sample B-2. The sample attribute corresponding to test sample D-1 is the recipient attribute, and the sample attribute corresponding to test sample B-2 is the donor attribute. The results of the blood typing test for test samples D-1 and B-2 can include major-side compatibility / minor-side compatibility, major-side compatibility / minor-side incompatibility, major-side incompatibility / minor-side compatibility, and major-side incompatibility / minor-side incompatibility, etc. When the blood matching test results for test samples D-1 and B-2 are predominantly compatible / secondarily compatible, it indicates that test sample B-2 can be used for blood transfusion therapy to the patient corresponding to test sample D-1. When the blood matching test results for test samples D-1 and B-2 are predominantly compatible / secondarily incompatible or predominantly incompatible / secondarily compatible, it indicates that in emergency situations, test sample B-2 can be used for small-component blood transfusion therapy to the patient corresponding to test sample D-1. For example, when the result is predominantly compatible / secondarily incompatible, in emergency situations, test sample B-2 can be used to transfuse a small amount of red blood cells to the patient corresponding to test sample D-1; when the result is predominantly incompatible / secondarily compatible, in emergency situations, test sample B-2 can be used to transfuse a small amount of plasma to the patient corresponding to test sample D-1. When the blood matching test results for test samples D-1 and B-2 are predominantly incompatible / secondarily incompatible, it indicates that test sample B-2 cannot be used for blood transfusion therapy to the patient corresponding to test sample D-1.

[0047] from Figure 2 As can be seen, after selecting at least two test samples based on user operations and determining the sample attributes of each test sample, blood matching tests can be performed on the at least two test samples selected by the user, and the results of the blood matching tests can be output. This can intuitively display the overall blood matching test process of the samples, which helps to improve the user experience.

[0048] Please see Figure 3 , Figure 3 This is a schematic flowchart of a blood typing test display method provided in an embodiment of this application. It is understood that the explanation is based on the example of this blood typing test display method being executed by a blood typing analyzer. Figure 3 As shown, the blood matching test method may include steps S201-S204:

[0049] Step S201: The first display interface shows multiple test samples awaiting blood matching.

[0050] Step S202: In response to the user's selection operation for at least two test samples in the first display interface, display the sample information for each test sample.

[0051] Step S203: In response to the test event triggered by the user through the test application interface, perform the blood matching test.

[0052] Step S204: Output the blood matching test results through the second display interface.

[0053] Specifically, please refer to the following: Figure 4 , Figure 4 This is a schematic diagram of a blood matching test scenario provided in an embodiment of this application. For example... Figure 4 As shown, before a user (e.g., user A) of the blood typing analyzer 20 can perform a blood matching test on a test sample, a blood matching application is required. That is, when user A triggers the sample application field 31, the blood typing analyzer 20 can respond to user A's trigger operation on the sample application field 31 by displaying a first display interface 201. The first display interface 201 can display multiple test samples awaiting blood matching, for example... Figure 4 The test samples A-1, B-1, and A-2 shown are among those displayed. User A can select at least two test samples on the first display interface 201 to perform a blood matching test. Optionally, each test sample can be displayed in the first display interface 201 in the form of coordinates, thereby providing a more intuitive representation of the location information of each test sample.

[0054] User A can select at least two test samples for blood matching on the first display interface 201. The blood typing analyzer 20, in response to User A's selection of at least two samples on the first display interface 201, can display the sample information of the selected samples on the third display interface 202. Optionally, the third display interface 202 may also include an add control 2022 and an item selection bar 2021. User A can use the add control 2022 on the third display interface 202 to add test samples from the first display interface 201 for blood matching; User A can use the drop-down sub-options of the item selection bar 2021 to select the test items for the test samples. The test items selectable in the item selection bar 2021 may include, but are not limited to, blood matching test, ABO positive typing and RhD test, ABO reverse typing test, irregular antibody screening test, direct antiglobulin test, etc. Figure 4 As shown, blood matching test is selected in the current item selection bar 2021, indicating that the test sample is about to undergo blood matching test. Optionally, user A can also delete test samples that were mistakenly selected or unwanted in the third display interface 202 using the delete control 205.

[0055] The third display interface 202 may include one or more sub-display areas. Figure 4The sub-display areas 2023 and 2024 shown can be used to display sample information for each of at least two selected test samples. Figure 4 As shown, sample information may include, but is not limited to, the test sample's serial number, location, sample name, test item, and sample attributes. Optionally, the test sample can be characterized by information such as its location or sample name within the sample information. Furthermore, the sub-display area may also include a sample attribute control. Figure 4 The sample attribute controls 2023a and 2024a shown can display the corresponding sample attributes of each test sample. These sample attributes include recipient (blood-receiving) and donor (blood-supply) attributes. The sample attribute controls can display a first icon or a second icon, which can be set to different icons. The first icon can be used to indicate that the sample attribute is recipient (blood-receiving), and the second icon can be used to indicate that the sample attribute is donor (blood-supply). Figure 4 As shown, sample attribute control 2023a displays an "S" style icon, which is the first icon, meaning that the sample attribute of sample D-1 is the recipient attribute. Sample attribute control 2024a displays a "G" style icon, which is the second icon, meaning that the sample attribute of sample B-2 is the donor attribute. It is understood that this embodiment does not specifically limit the style of the first and second icons; they can be one or more combinations of other letters, patterns, text, etc. Thus, the sample attribute controls can visually display the sample attributes of each test sample in the third display interface 202, allowing for quick differentiation between recipient and donor attributes.

[0056] It is understandable that the sample attributes of each test sample can be set to default. For example, the first test sample selected by user A in the first display interface 201 can be set to the blood-receiving attribute by default, and the samples selected after the first test sample can be set to the blood-donating attribute by default. Figure 4 As shown, test sample D-1 is the first test sample selected by user A, and its corresponding sample attribute can be set to the recipient attribute by default; test sample B-2 is the test sample selected by user A after test sample D-1, and its corresponding sample attribute can be set to the donor attribute by default. It can be understood that a test sample with the recipient attribute can be called a recipient sample, and a test sample with the donor attribute can be called a donor sample. At this point, recipient sample D-1 and donor sample B-2 can be associated to generate a pairing relationship. Then, based on the pairing relationship between recipient sample D-1 and donor sample B-2, a blood matching application can be quickly submitted, thereby completing the blood matching test.

[0057] Furthermore, after user A assembles the test sample in the corresponding position according to the pairing relationship between the recipient and donor blood samples, they can activate the start control item 203 on the first display interface 201. The blood typing analyzer 20, responding to the trigger operation on the start control item 203, triggers a test event and executes the blood matching test. After the blood matching test is completed, the blood typing analyzer 20 can output the test results through the second display interface 34. The second display interface 34 is associated with the sample information displayed on the third display interface 202, such as... Figure 4 As shown, the second display interface 34 may include, but is not limited to, Figure 4 The information displayed includes the recipient blood sample, donor blood sample, test items, test results, etc. For example... Figure 4 As shown, the second display interface 34 displays the blood matching test results of the recipient blood sample D-1 and the donor blood sample B-2, indicating that the donor blood sample B-2 can be used to provide blood transfusion treatment to the patient corresponding to the recipient blood sample D-1.

[0058] Optionally, the blood typing analyzer 20 may also include an abnormal situation bar 33, a menu bar 207, a home bar 208, a settings control 209, etc. Among them, when user A triggers the abnormal situation bar 33, it can display the abnormal situation in the blood typing analyzer 20; when user A triggers the menu bar 207, it can display the menu of the blood typing analyzer 20; when user A triggers the home bar 208, it can return to the home page of the blood typing analyzer 20; when user A triggers the settings control 209, it can set the sound, font, etc. of the blood typing analyzer 20.

[0059] It should be noted that, Figure 4 The layout of interface elements, number of controls, text content, icon styles, and number of icons shown are merely illustrative and should not be construed as limiting the embodiments of this application.

[0060] In one possible implementation, user A can switch the sample attributes of the test sample in the third display interface 202 according to the actual blood matching test needs. For example, for a certain test sample, its recipient attribute can be switched to donor attribute; or its donor attribute can be switched to recipient attribute. Specifically, user A can trigger the sample attribute control, and the blood typing analyzer responds to the trigger operation of the sample attribute control by switching the sample attributes of the corresponding test sample, thereby realizing quick switching of sample attributes.

[0061] Specifically, please refer to the following: Figure 5 , Figure 5 This is a schematic diagram of an interface change provided in an embodiment of this application. For example... Figure 5As shown, the third display interface 202 may include sub-display areas 2023, 2024, 2025, and 2026; wherein sub-display area 2023 corresponds to sample attribute control 2023a; sub-display area 2024 corresponds to sample attribute control 2024a; sub-display area 2025 corresponds to sample attribute control 2025a; and sub-display area 2026 corresponds to sample attribute control 2026a. Each sample attribute control may display a first icon or a second icon, wherein the first icon can be used to represent that the sample attribute of the test sample is a blood-receiving attribute, and the second icon is used to represent that the sample attribute of the test sample is a blood-donating attribute. Figure 5 As shown, sample attribute control 2023a displays an "S" style icon, which is the first icon, meaning that the sample attribute of sample D-1 is the recipient attribute at this time; sample attribute control 2024a, sample attribute control field 2025a, and sample attribute control 2026a all display a "G" style icon, which is the second icon, meaning that the sample attributes corresponding to test samples B-2, C-1, and A-4 are the donor attributes at this time. Figure 5 As shown, when user A triggers the sample attribute control 2025a, the blood typing analyzer 20 can respond to the trigger operation by changing the second icon to the first icon. Specifically, it can change the second icon ("G") to the first icon ("S"), thereby changing the sample attribute of test sample C-1 from donor to recipient, thus achieving quick switching of sample attributes. Understandably, although... Figure 5 As not shown, when user A triggers the sample attribute control 2025a again, the blood type analyzer 20 can also respond to the trigger operation on the sample attribute control 2025a by switching the first icon to the second icon. That is, the first icon of the "S" style can be switched to the second icon of the "G" style, so that the sample attribute corresponding to test sample C-1 is switched back from blood recipient attribute to blood donor attribute.

[0062] like Figure 5As shown, after switching the sample attribute corresponding to test sample C-1 from donor to recipient, test samples D-1 and C-1 are now recipient samples; test samples B-2 and A-4 are donor samples. In this case, the recipient samples can be associated with the donor samples immediately following them to generate a pairing relationship. That is, based on the pairing relationship between recipient sample D-1 and donor sample B-2, and between recipient sample C-1 and donor sample A-4, a crossmatching application can be quickly implemented, thereby completing the crossmatching test according to the aforementioned pairing relationships. Further, after user A assembles the sample in the corresponding position according to the aforementioned pairing relationship between recipient and donor samples, they can trigger the start control item 203 in the first display interface 201. The blood typing analyzer 20 responds to the trigger operation of the start control item 203, triggering a test event and executing the crossmatching test. After the crossmatching test is completed, the blood typing analyzer 20 can display the test results corresponding to the pairing relationship through the second display interface.

[0063] It should be noted that, Figure 5 The layout of interface elements, number of controls, text content, icon styles, and number of icons shown are merely illustrative and should not be construed as limiting the embodiments of this application.

[0064] In one possible implementation, the first display interface of the blood typing analyzer may include an editing control. The blood typing analyzer can display a pairing interface in response to a trigger operation on the editing control. This pairing interface displays the pairing relationships for crossmatching tests of at least two test samples. The pairing relationships are associated with sample attributes in the sample information corresponding to the at least two test samples, so that the crossmatching relationships can be clearly and explicitly displayed.

[0065] Specifically, please refer to the following: Figure 6 , Figure 6 This is another schematic diagram of interface changes provided in an embodiment of this application. For example... Figure 6 As shown, the first display interface 201 of the blood typing analyzer 20 may also include an editing control 204. User A can edit or confirm the pairing relationship of the blood matching test samples by triggering the editing control 204. Specifically, when user A triggers the editing control 204, the blood typing analyzer 20 can respond to the trigger operation on the editing control 204 and then display the pairing interface 50, which can display the pairing relationship of at least two test samples. This pairing relationship is associated with the sample information displayed in each sub-display area of ​​the third display interface 202, and further, with the sample attributes displayed by each sample attribute control in the third display interface 202. Generally, only test samples with different sample attributes can form a pairing relationship. Figure 6As shown, test samples D-1 and C-1 have recipient blood attributes, while test samples B-2 and A-4 have donor blood attributes. Therefore, one possible pairing relationship displayed on the pairing interface 50 could be: recipient sample D-1 paired with donor sample B-2; recipient sample D-1 paired with donor sample A-4; recipient sample C-1 paired with donor sample B-2; and recipient sample C-1 paired with donor sample A-4. Optionally, user A can also return to the sample attribute controls in the third display interface 202 to switch the sample attributes corresponding to their test samples, thereby generating new pairing relationships. Thus, this embodiment of the application can visually display the cross-matching pairing situation through the pairing interface 50, allowing users to clearly see the pairing relationship of each test sample, thereby improving the user experience.

[0066] Furthermore, user A can trigger the confirmation control 507 in the pairing interface 50. The blood typing analyzer 20 can respond to the triggering operation of the confirmation control 507 and display the final pairing relationship used for blood matching testing. After user A confirms the pairing relationship that needs to be tested for blood matching and assembles the sample in the corresponding position according to the pairing relationship, user A can trigger the start control item 203 in the first display interface 201. The blood typing analyzer 20 responds to the triggering operation of the start control item 203, triggers the test event, and executes the blood matching test. After the blood matching test is completed, the blood typing analyzer 20 can output the test results of the blood matching test corresponding to the pairing relationship through the second display interface.

[0067] It should be noted that, Figure 6 The layout of interface elements, number of controls, text content, icon styles, and number of icons shown are merely illustrative and should not be construed as limiting the embodiments of this application.

[0068] In one possible implementation, the pairing interface may include at least one recipient sample area and its corresponding donor sample area. For each recipient sample area, the recipient sample area displays the recipient sample shown in the third display interface, wherein the recipient sample represents a sample whose sample attribute corresponds to the recipient attribute. Furthermore, the donor sample area corresponding to the recipient sample area also includes a sub-edit control. For each sub-edit control, in response to a trigger operation on the sub-edit control, the blood typing analyzer displays a selection area, which displays the donor sample shown in the third display interface and its corresponding optional control. The donor sample represents a sample whose sample attribute corresponds to the donor attribute. In response to a selection operation on the optional control, the blood typing analyzer displays the donor sample corresponding to the selected optional control in the donor sample area, wherein the donor sample is used for blood matching testing with the recipient sample in the recipient sample area.

[0069] Specifically, please refer to the following: Figure 7 , Figure 7 This is another schematic diagram of interface changes provided in an embodiment of this application. For example... Figure 7 As shown, the pairing interface 50 may include at least one blood sample area ( Figure 7 The blood sample receiving area 501 and blood sample receiving area 503 shown in the figure and their corresponding blood supply sample areas ( Figure 7 The blood donation sample areas 502 and 504 are shown in the diagram. For each blood recipient sample area, for example, blood recipient sample area 501 displays the blood recipient sample D-1 shown in the third display interface 202; and for example, blood recipient sample area 503 displays the blood recipient sample C-1 shown in the third display interface 202. Figure 7 As shown, for each blood sample area, such as blood sample area 501, its corresponding blood donor sample area 502 can display the blood donor sample B-2 that is the default pairing with the blood donor sample D-1 in blood sample area 501. The default pairing blood donor sample can be determined according to the blood donor sample displayed in the third display interface 202. For example, the blood donor sample immediately following the blood donor sample can be used as the default pairing blood donor sample. In this case, the crossmatching application can be quickly completed based on the blood donor sample and the default pairing blood donor sample, so as to quickly perform the crossmatching test. Further, after user A assembles the sample in the corresponding position according to the blood donor sample and the default pairing blood donor sample, he can trigger the start control item 203 in the first display interface 201. In response to the trigger operation of the start control item 203, the blood typing analyzer 20 can display the second display interface and display the test results of the crossmatching test corresponding to the pairing relationship through the second display interface.

[0070] In addition, the blood donor sample area corresponding to the blood recipient sample area may also include sub-edit controls (such as...). Figure 7 (As shown in the examples 5021 and 5041, etc.), for each sub-editing control, such as sub-editing control 5041, when user A triggers an operation on sub-editing control 5041, the blood typing analyzer 20 can respond by displaying a selection area 505. This selection area 505 displays the donor blood samples A-4 and B-2 displayed in the third display interface 202, along with their corresponding optional controls 5051 and 5052, respectively. The blood typing analyzer 20 can determine whether the corresponding donor blood sample is displayed in the donor blood sample area based on the state of the optional control. Figure 6As shown in the diagram above, when the optional control 5051 is in the selected state, the blood typing analyzer 20 can display the corresponding blood sample A-4 in the blood sample area 504 according to the selected state of the optional control 5051; when the optional control 5052 is in the deselected state, the blood sample area 504 will not display the blood sample B-2. Furthermore, user A can perform a selection operation on the optional control 5052, and the blood typing analyzer 20, in response to the selection operation on the optional control 5052, switches the optional control 5052 from the deselected state to the selected state (e.g., ...). Figure 7 As shown in the diagram, both optional controls 5051 and 5052 are currently selected. The blood typing analyzer 20 can display the corresponding donor sample A-4 and donor sample B-2 in the donor sample area 504 according to the selection status of optional controls 5051 and 5052. It can be seen that the sub-editing controls allow for quick editing of crossmatching relationships. This enables not only crossmatching tests with one donor sample and one recipient sample, and multiple donor samples and one recipient sample, but also crossmatching tests with multiple donor samples and multiple recipient samples, thereby improving interactivity and user experience.

[0071] Furthermore, after user A assembles the sample at the corresponding position according to the pairing relationship between the blood sample and the blood donor sample, user A can trigger the start control item 203 in the first display interface 201. In response to the trigger operation of the start control item 203, the blood type analyzer 20 can display the second display interface and display the test results of the blood matching test corresponding to the pairing relationship through the second display interface.

[0072] It should be noted that, Figure 7 The layout of interface elements, number of controls, text content, icon styles, and number of icons shown are merely illustrative and should not be construed as limiting the embodiments of this application.

[0073] In one possible implementation, the pairing interface may further include a confirmation control. In response to a trigger operation on the confirmation control, the blood typing analyzer determines the target recipient sample and its corresponding target donor sample based on the recipient sample displayed in the recipient sample area and the donor sample displayed in the corresponding donor sample area. Then, in response to a trigger operation on the start control item of the first display interface, the blood typing analyzer displays a second display interface, wherein the second display interface displays the blood matching test results of each target recipient sample and its corresponding target donor sample.

[0074] Specifically, please refer to the following: Figure 8 , Figure 8 This is a schematic diagram of another blood matching test scenario provided in an embodiment of this application. For example... Figure 8As shown, the pairing interface 50 may also include a confirmation control 507. User A can trigger the confirmation control 507. In response to the triggering operation of the confirmation control 507, the blood type analyzer 20 determines the target blood sample for the final user's blood matching test as blood sample D-1 and its corresponding target blood sample B-2, based on the blood sample D-1 displayed in the blood sample area 501 and its corresponding blood sample B-2 displayed in the blood sample area 502. Similarly, based on the blood sample C-1 displayed in the blood sample area 503 and its corresponding blood sample B-2 and blood sample A-4 displayed in the blood sample area 504, the target blood sample for the final user's blood matching test is determined to be blood sample C-1 and its corresponding target blood sample B-2 and sample A-4. Furthermore, after determining the target recipient sample and its corresponding target donor sample for the final blood matching test, user A can trigger an operation on the start control item 203 of the first display interface 201. In response to the trigger operation on the start control item 203 of the first display interface 201, the blood typing analyzer 20 displays the second display interface 34. The second display interface 34 displays the blood matching test results of each target recipient sample and its corresponding target donor sample. Figure 8 As shown, the second display interface 34 displays the blood matching test results of recipient sample D-1 and donor sample B-2: major side match / minor side match. This indicates that donor sample B-2 can be used for blood transfusion treatment of the patient corresponding to recipient sample D-1. The blood matching test results of recipient sample C-1 and donor sample A-4 are major side match / minor side mismatch, indicating that in emergency situations, donor sample A-4 can be used to transfuse a small amount of red blood cells to the patient corresponding to recipient sample C-1. The blood matching test results of recipient sample C-1 and donor sample B-2 are major side mismatch / minor side mismatch, indicating that donor sample B-2 cannot be used for blood transfusion treatment of the patient corresponding to recipient sample C-1. It can be seen that the confirmation control helps users further confirm whether to use the matching relationship for blood matching testing, thus improving the user experience.

[0075] It should be noted that, Figure 8 The layout of interface elements, number of controls, text content, icon styles, and number of icons shown are merely illustrative and should not be construed as limiting the embodiments of this application.

[0076] from Figure 3As can be seen, a first display interface can be displayed on the blood typing analyzer, showing multiple test samples to be matched for blood testing. Based on this, in response to a user's selection of at least two test samples on the first display interface, the sample information for each test sample can be displayed. Finally, in response to a test event triggered by the user through the first display interface, the blood matching test is executed, and the final blood matching test results for at least two test samples are output through a second display interface. Therefore, in this embodiment, the entire blood matching test process can be visually displayed, which helps improve the convenience of interaction and enhance the user experience.

[0077] Please see Figure 9 , Figure 9 This is a schematic diagram of a blood typing test device provided in an embodiment of this application. As shown in the figure, the blood typing test device 800 can be applied to a blood typing analyzer. The blood typing test device 800 may include: a determining unit 801, a testing unit 802, and an output unit 803. Detailed descriptions of each unit are as follows:

[0078] The determining unit 801 is used to select at least two test samples according to user operation and determine the sample attributes of each test sample; wherein, the sample attributes include blood supply attributes and blood recipient attributes, and the at least two test samples include at least one test sample with blood supply attributes and at least one test sample with blood recipient attributes.

[0079] Test unit 802 is used to perform blood matching tests on at least two test samples selected by the user;

[0080] Output unit 803 is used to output the results of blood matching tests.

[0081] In one possible implementation, a test sample with blood receiving properties is associated with at least one test sample with blood supply properties.

[0082] In one possible implementation, the selected at least two test samples include at least two test samples with blood-receiving properties.

[0083] In one possible implementation, the blood matching testing device 800 may further include Figure 9 The association unit, not shown, is used to associate at least one test sample with a blood supply attribute with one or more of at least two test samples with a blood recipient attribute based on user operation.

[0084] In one possible implementation, the blood matching testing device 800 may further include Figure 9 The switching unit, not shown, is used to switch the sample attributes of each test sample according to user operation.

[0085] It should be noted that the implementation of each unit can also be referenced accordingly. Figure 2 The corresponding description of the method embodiments shown is provided below. Furthermore, the beneficial effects of employing the same method will not be repeated here.

[0086] Please see Figure 10 , Figure 10 This is a schematic diagram of the structure of a blood matching test display device provided in an embodiment of this application. Figure 10 As shown, the blood typing test display device 900 can be applied to a blood typing analyzer. The blood typing test display device 900 may include: a first display unit 901, a second display unit 902, and a third display unit 903. Detailed descriptions of each unit are as follows:

[0087] The first display unit 901 is used to display multiple test samples to be matched for blood testing on the first display interface;

[0088] The second display unit 902 is used to display sample information for each test sample in response to the user's selection operation for at least two test samples in the first display interface.

[0089] The third display unit 903 is used to respond to a test event triggered by the user through the first display interface, execute a blood matching test, and output the results of the blood matching test through the second display interface.

[0090] In one possible implementation, the blood matching test display device 900 may further include Figure 10 The fourth display unit, not shown, is used to display sample information of each of the at least two test samples through the third display interface; the sample information includes sample attributes, which include blood supply attributes and blood recipient attributes; the third display interface includes sample attribute controls; the sample attributes corresponding to the test sample are displayed through the sample attribute controls.

[0091] In one possible implementation, the blood matching test display device 900 may further include Figure 10 The switching unit, not shown, is used to switch the sample attributes of the corresponding test sample in response to a trigger operation on the sample attribute control.

[0092] In one possible implementation, the first display interface includes editing controls, and the blood matching test display device 900 may further include... Figure 10 The fifth display unit, not shown, is used to display a pairing interface in response to a trigger operation on the editing control. The pairing interface displays the pairing relationship of blood matching tests with at least two test samples, and the pairing relationship is associated with the sample attributes in the sample information corresponding to the at least two test samples.

[0093] In one possible implementation, the matching interface includes at least one blood-receiving sample area and its corresponding blood-donating sample area. For each blood-receiving sample area, the blood-receiving sample area displays the blood-receiving sample shown in the third display interface. The blood-receiving sample represents a sample with the blood-receiving attribute. Its corresponding blood-donating sample area includes a sub-editing control. The blood matching test display device 900 also includes... Figure 10 The sixth display unit (not shown) is used to display a selection area for each sub-edit control in response to a trigger operation on the sub-edit control. The selection area displays the blood donor sample and its corresponding optional control displayed in the third display interface. The blood donor sample represents a sample whose sample attribute is the blood donor attribute. In response to a selection operation on the optional control, the blood donor sample corresponding to the selected optional control is displayed in the blood donor sample area. The blood donor sample is used to perform blood matching tests with the blood recipient sample in the blood recipient sample area.

[0094] In one possible implementation, the pairing interface further includes a confirmation control, and the blood matching test display device 900 also includes... Figure 10 The determination unit and the seventh display unit are not shown in the figure. The determination unit is used to determine the target blood sample and its corresponding target blood sample in response to a trigger operation on the confirmation control, based on the blood sample displayed in the blood sample area and the blood sample displayed in the corresponding blood sample area. The seventh display unit is used to display the second display interface in response to a trigger operation on the start control item of the first display interface. The second display interface displays the blood matching test results of each target blood sample and its corresponding target blood sample.

[0095] It should be noted that the implementation of each unit can also be referenced accordingly. Figure 3 The corresponding description of the method embodiments shown is provided below. Furthermore, the beneficial effects of employing the same method will not be repeated here.

[0096] Please see Figure 11 , Figure 11 This is a schematic diagram of the structure of a blood typing analyzer provided in an embodiment of this application. Figure 11As shown, the blood typing analyzer 1000 may include: a processor 1001, a network interface 1004, and a memory 1005. Furthermore, the blood typing analyzer 1000 may also include: a user interface 1003, and one or more communication buses 1002. The communication bus 1002 is used to enable communication between these components. The user interface 1003 may include a display screen and a keyboard; optionally, the user interface 1003 may also include a standard wired interface or a wireless interface. Optionally, the network interface 1004 may include a standard wired interface or a wireless interface (such as a Wi-Fi interface). The memory 1005 may be high-speed RAM or non-volatile memory, such as one or more disk drives. Optionally, the memory 1005 may also be one or more storage devices located remotely from the processor 1001. Figure 11 As shown, the memory 1005, which is a computer-readable storage medium, may include an operating system, a network communication module, a user interface module, and a device control application.

[0097] In such Figure 11 In the blood typing analyzer 1000 shown, the network interface 1004 provides network communication functionality; the user interface 1003 is mainly used to provide an input interface for the user; and the processor 1001 can be used to call the device control application stored in the memory 1005 to achieve:

[0098] Select at least two test samples based on user operations, and determine the sample attributes of each test sample; wherein, the sample attributes include blood supply attributes and blood recipient attributes, and the at least two test samples include at least one test sample with blood supply attributes and at least one test sample with blood recipient attributes.

[0099] Perform blood matching tests on at least two test samples selected by the user.

[0100] Processor 1001 can also be used to call device control applications stored in memory 1005 to achieve:

[0101] The first display screen shows multiple test samples awaiting blood matching.

[0102] In response to the user's selection of at least two test samples in the first display interface, display the sample information for each test sample;

[0103] In response to a test event triggered by the user through the first display interface, perform a blood matching test;

[0104] The results of the blood matching test are displayed on the second display interface.

[0105] It should be understood that the blood typing analyzer 1000 described in the embodiments of this application can perform the functions described above. Figure 2 The description of the blood matching test method in the corresponding embodiments, and / or, Figure 3 The description of the blood matching test display method in the corresponding embodiments can also be performed as described above. Figure 9 The description of the blood matching testing device 800 in the corresponding embodiments, and / or, Figure 10 The description of the blood matching test display device 900 in the corresponding embodiment will not be repeated here. Furthermore, the beneficial effects of using the same method will also not be repeated here.

[0106] Furthermore, it should be noted that this application embodiment also provides a computer-readable storage medium, which stores the aforementioned blood matching testing device 800 and / or the computer program executed by the blood matching testing display device 900. The computer program includes program instructions, and when the processor executes the program instructions, it can execute the aforementioned... Figure 2 The description of the blood matching test method in the corresponding embodiments, and / or, Figure 3 The description of the blood typing test display method in the corresponding embodiments will not be repeated here. Furthermore, the beneficial effects of using the same method will also not be repeated. For technical details not disclosed in the computer-readable storage medium embodiments related to this application, please refer to the description of the method embodiments of this application. As an example, program instructions can be deployed and executed on a blood typing analyzer, or on multiple blood typing analyzers located in one location, or on multiple blood typing analyzers distributed across multiple locations and interconnected via a communication network. Multiple blood typing analyzers distributed across multiple locations and interconnected via a communication network can form a blockchain system.

[0107] Furthermore, it should be noted that this application also provides a computer program product or computer program, which may include computer instructions that can be stored in a computer-readable storage medium. The processor of the blood typing analyzer reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the blood typing analyzer to perform the aforementioned... Figure 2 The description of the blood matching test method in the corresponding embodiments, and / or, Figure 3 The description of the blood matching test method in the corresponding embodiments is already provided and will not be repeated here. Furthermore, the beneficial effects of using the same method will also not be repeated. For technical details not disclosed in the computer program products or computer program embodiments related to this application, please refer to the description of the method embodiments of this application.

[0108] It should be noted that, for the sake of simplicity, the foregoing method embodiments are all described as a series of actions. However, those skilled in the art should understand that this application is not limited to the described order of actions, as some steps may be performed in other orders or simultaneously according to this application. Furthermore, those skilled in the art should also understand that the embodiments described in the specification are preferred embodiments, and the actions and modules involved are not necessarily essential to this application.

[0109] The steps in the method of this application embodiment can be adjusted, combined, or deleted according to actual needs.

[0110] The modules in the device of this application embodiment can be merged, divided, and deleted according to actual needs.

[0111] Those skilled in the art will understand that all or part of the processes in the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. The storage medium can be a magnetic disk, optical disk, read-only memory (ROM), or random access memory (RAM), etc.

[0112] The above-disclosed embodiments are merely preferred embodiments of this application and should not be construed as limiting the scope of this application. Therefore, any equivalent variations made in accordance with the claims of this application shall still fall within the scope of this application.

Claims

1. A blood typing test method, applied to a blood typing analyzer, characterized in that, include: Displays multiple test samples awaiting blood matching; Based on user operation, at least two test samples are selected, and the sample attributes of each selected test sample are determined; wherein, the sample attributes include blood supply attributes and blood recipient attributes, the at least two test samples include at least one test sample with blood supply attributes and at least one test sample with blood recipient attributes, and the sample attributes of each test sample are set by default; The sample attributes of the selected test sample are switched according to user operation; Based on the user's switching operation, at least one test sample with blood receiving attribute is associated with at least one test sample with blood supply attribute to form a corresponding pairing relationship; Perform blood matching tests on the at least two test samples selected by the user; and Output the results of the blood matching test.

2. The method according to claim 1, characterized in that, The selected at least two test samples must include at least two test samples with blood-related properties.

3. The method according to claim 2, characterized in that, After the steps of selecting at least two test samples based on user operation and determining the sample attributes of each test sample, the method further includes: According to user operation, the test sample of at least one blood supply attribute is associated with one or more of the test samples of at least two blood recipient attributes.

4. A method for displaying blood typing results, applied to a blood typing analyzer, characterized in that, include: The first display screen shows multiple test samples awaiting blood matching. In response to a user's selection of at least two test samples in the first display interface, sample information for each test sample is displayed, wherein the sample information includes sample attributes, the sample attributes include blood supply attributes and blood recipient attributes, and the sample attributes for each test sample are set by default. In response to a trigger operation on the sample attribute control, the sample attribute corresponding to the test sample is switched; In response to a user's triggering operation on the editing control in the first display interface, a pairing interface is displayed, wherein the pairing interface displays the pairing relationship of the blood matching test of the at least two test samples, and is set by default. The pairing relationship is associated with the sample attributes in the sample information corresponding to the at least two test samples. The default pairing relationship includes associating a test sample with the blood recipient attribute with the test sample with the blood donor attribute that follows it to form a pairing relationship. In response to a test event triggered by the user through the first display interface, a blood matching test is performed; The results of the blood matching test are displayed on the second display interface.

5. The method according to claim 4, characterized in that, After the step of displaying sample information for each test sample in response to a user's selection of at least two test samples in the first display interface, the method further includes: The sample information of each of the at least two test samples is displayed through a third display interface; the sample information includes sample attributes, which include blood supply attributes and blood recipient attributes; the third display interface includes sample attribute controls; The sample attribute control displays the sample attributes corresponding to the test sample.

6. The method according to claim 5, characterized in that, The pairing interface includes at least one blood-receiving sample area and its corresponding blood-donating sample area. For each blood-receiving sample area, the blood-receiving sample area displays the blood-receiving sample shown in the third display interface. The blood-receiving sample represents a sample whose sample attribute corresponds to the blood-receiving attribute. The corresponding blood-donating sample area includes a sub-editing control. The method further includes: For each of the sub-editing controls, in response to a triggering operation on the sub-editing control, a selection area is displayed, which displays the blood sample displayed in the third display interface and its corresponding selectable control, wherein the blood sample represents a sample whose sample attribute is the blood supply attribute; In response to a selection operation for the optional control, the blood sample corresponding to the selected optional control is displayed in the blood sample area, the blood sample being used for blood matching testing with the blood sample in the blood sample area.

7. The method according to claim 5, characterized in that, The pairing interface also includes a confirmation control, and the method further includes: In response to a trigger operation on the confirmation control, the target blood sample and its corresponding target blood sample are determined based on the blood sample displayed in the blood sample area and the corresponding blood sample displayed in the blood donor area. In response to a trigger operation on the start control item of the first display interface, a second display interface is displayed, which shows the blood matching test results of each target blood recipient sample and its corresponding target blood donor sample.

8. A blood typing analyzer, characterized in that, The device includes a processor, a memory, and a communication interface, wherein the memory stores a computer program configured to be executed by the processor, the computer program including instructions for performing steps in the blood matching test method according to any one of claims 1 to 3, and / or instructions for performing steps in the blood matching test display method according to any one of claims 4 to 7.

9. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program that causes a computer to execute instructions to implement the blood matching test method of any one of claims 1 to 3, and / or to execute the steps in the blood matching test display method of any one of claims 4 to 7.

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