Analyzer, calibration application method and storage medium thereof

By displaying the batch number and/or bottle number of the reagent on the analyzer interface, the user can quickly select the target reagent and view its calibration solution, solving the problem of inconvenient operation of calibration application in the prior art and improving operation efficiency.

CN115267226BActive Publication Date: 2025-05-09ZYBIO INC
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Patent Information

Application Number
CN202210808087.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-08
Publication Date
2025-05-09
Estimated Expiration
2042-07-08

AI Technical Summary

Technical Problem

When applying for calibration of existing analyzers, it is difficult for users to quickly find the reagents and calibration solution required, resulting in inconvenient operation.

Method used

By displaying the batch number and/or bottle number of the reagent on the interface as the first identifier, the user can first select the target reagent, then view its corresponding calibration solution identification, and perform calibration application.

Benefits of technology

It improves the convenience of the analyzer calibration application, and users can quickly find the reagents needed and their corresponding calibration solution, reducing operation steps and time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an analyzer, a calibration application method and a storage medium, and belongs to the field of analyzers. The present invention improves the convenience of analyzer calibration application by displaying a first identifier including target information corresponding to a reagent on an interface, wherein the target information includes the batch number and / or bottle number of the reagent; responding to a first selection instruction of the first identifier, determining that the reagent corresponding to the first selection instruction is the target reagent, and displaying a second identifier of a calibration solution corresponding to the target reagent on the interface; responding to a second selection instruction of the second identifier, determining that the calibration solution corresponding to the second selection instruction is the target calibration solution; and calibrating the target reagent and the target calibration solution.
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Description

Technical Field

[0001] The present invention relates to the field of analyzers, and in particular to an analyzer, a calibration application method and a storage medium thereof. Background Art

[0002] The analyzer is used for testing projects. Generally, the analyzer needs to be used to calibrate the reagents of the project. Before calibration, an interface will be provided for the user to apply for calibration in order to calibrate the reagents required by the user.

[0003] When applying for calibration, an existing analyzer generally displays a project button on the interface. After the user selects a project through the project button, all calibration solutions associated with the project and their related reagent information are displayed. The user then displays the required reagents and calibration solutions from the displayed information to apply for calibration. However, when there are a large number of calibration solutions or reagents in the project, the user cannot quickly find the required reagents and calibration solutions. Therefore, the existing analyzer calibration application operation is extremely inconvenient.

[0004] The above contents are only used to assist in understanding the technical solution of the present invention and do not constitute an admission that the above contents are prior art. Summary of the invention

[0005] The main purpose of the present invention is to provide an analyzer, a calibration application method and a storage medium thereof, aiming to improve the convenience of analyzer calibration application.

[0006] To achieve the above object, the present invention provides a calibration application method, which comprises the following steps:

[0007] Displaying a first identifier including target information corresponding to the reagent on the interface, wherein the target information includes a batch number and / or a bottle number of the reagent;

[0008] In response to the first selection instruction of the first identification, determining that the reagent corresponding to the first selection instruction is a target reagent, and displaying a second identification of a calibration solution corresponding to the target reagent on the interface;

[0009] In response to the second selected instruction of the second identifier, determining that the calibration fluid corresponding to the second selected instruction is the target calibration fluid;

[0010] The target reagent and the target calibration solution are calibrated.

[0011] Optionally, the first identifier is more than one, and the step of responding to the first selection instruction of the first identifier, determining that the reagent corresponding to the first selection instruction is the target reagent, and displaying the second identifier of the calibration solution corresponding to the target reagent on the interface includes:

[0012] When more than one first selected instruction is received, determining that the reagent corresponding to each of the first selected instructions is a target reagent;

[0013] The second identifiers corresponding to more than one target reagent are displayed in sequence according to the order in which more than one first selected instructions are received.

[0014] Optionally, the number of calibration solutions corresponding to the target reagent is one or more than one, and the step of sequentially displaying the second identifiers corresponding to more than one target reagent according to the order in which more than one first selection instructions are received includes:

[0015] The target lists corresponding to more than one target reagent are displayed in sequence according to the sequence, and the target list includes the second identifiers of all calibration solutions corresponding to the target reagents.

[0016] Optionally, there is a target calibration liquid in the calibration liquids corresponding to more than one of the target reagents, and the second identifier corresponding to the target calibration liquid is displayed in the target list corresponding to each of the target reagents; wherein the target calibration liquid is a calibration liquid corresponding to more than one of the target reagents.

[0017] Optionally, the step of displaying a first identifier including target information corresponding to the reagent on the interface includes:

[0018] Obtaining the current calibration status of the reagent;

[0019] determining a first display parameter of the first identifier according to the calibration state, where different calibration states correspond to different first display parameters;

[0020] The first identifier is displayed according to the first display parameter.

[0021] Optionally, the step of displaying a first identifier including target information corresponding to the reagent on the interface includes:

[0022] Acquiring status information of the reagent, wherein the status information indicates whether the reagent meets the calibration application conditions and whether the reagent is in a state where calibration has been applied for but no calibration test has been conducted;

[0023] determining a second display parameter of the first identifier according to the state information, where different state information corresponds to different second display parameters;

[0024] The first identifier is displayed according to the second display parameter to prompt whether the first identifier is allowed to be selected.

[0025] Optionally, after the step of displaying the first identifier including target information corresponding to the reagent on the interface, the method further includes:

[0026] In response to the first selection instruction or the deselection instruction of the first identification or the status instruction of the reagent having started calibration test, the second display parameter is adjusted, and the first identification is displayed according to the adjusted second display parameter.

[0027] Optionally, the step of displaying a first identifier including target information corresponding to the reagent on the interface includes:

[0028] Get the calibration mode;

[0029] When the calibration mode is the first calibration mode, a first identifier including the batch number is displayed, and the first calibration mode is a mode for calibrating the reagent in batches;

[0030] When the calibration mode is the second calibration mode, the first identifier including the bottle number is displayed, and the second calibration mode is a mode for calibrating the reagent in bottles.

[0031] In addition, to achieve the above-mentioned purpose, the present invention also provides an analyzer, which includes: a memory, a processor, and a calibration application program stored in the memory and executable on the processor, wherein the calibration application program is configured to implement the steps of the calibration application method described above.

[0032] In addition, to achieve the above-mentioned purpose, the present invention further provides a storage medium, on which a calibration application program is stored, and when the calibration application program is executed by a processor, the steps of the calibration application method described above are implemented.

[0033] In the embodiment of the present invention, a first identifier including target information corresponding to the reagent is displayed on the interface, wherein the target information includes the batch number and / or bottle number of the reagent, and in response to a first selection instruction of the first identifier, the reagent corresponding to the first selection instruction is determined to be the target reagent, and a second identifier of a calibration solution corresponding to the target reagent is displayed on the interface, and in response to a second selection instruction of the second identifier, the calibration solution corresponding to the second selection instruction is determined to be the target calibration solution, and the target reagent and the target calibration solution are calibrated. In this calibration application process, project-related information is no longer displayed, but the reagent identifier is first displayed by batch number and / or bottle number, so that the user can quickly find the reagent with the batch number and / or bottle number required, and then the corresponding calibration solution identifier is screened out by the user's selection of the reagent for display for the user's selection, and all the calibration solutions in the project are no longer displayed without screening, so that the user can quickly find the reagent required for calibration and its corresponding calibration solution, thereby improving the convenience of the analyzer calibration application. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 It is a structural diagram of an analyzer of a hardware operating environment involved in an embodiment of the present invention;

[0035] Figure 2 A schematic diagram of a flow chart of a first embodiment of a calibration application method of the present invention;

[0036] Figure 3 A schematic diagram of a flow chart of a second embodiment of the calibration application method of the present invention;

[0037] Figure 4 It is a schematic diagram of the interface of the first calibration mode of the calibration application method embodiment of the present invention;

[0038] Figure 5 It is a schematic diagram of the interface of the second calibration mode of the calibration application method embodiment of the present invention;

[0039] Figure 6 for Figure 2 Detailed flow chart of step S20;

[0040] Figure 7 A schematic diagram of a flow chart of a third embodiment of a calibration application method of the present invention;

[0041] Figure 8 for Figure 2 Detailed flowchart of step S10 in FIG.

[0042] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0043] It should be understood that the specific embodiments described herein are only used to explain the present invention, and are not used to limit the present invention.

[0044] Reference Figure 1 , Figure 1 The figure is a schematic diagram of the structure of the analyzer of the hardware operating environment involved in the embodiment of the present invention.

[0045] like Figure 1 As shown, the analyzer may include: a processor 1001, such as a central processing unit (CPU), and a memory 1002. The memory 1002 may be a high-speed random access memory (RAM) memory, or a stable non-volatile memory (NVM), such as a disk memory. The memory 1002 may optionally be a storage device independent of the aforementioned processor 1001.

[0046] Those skilled in the art will understand that Figure 1The structure shown in the figure does not constitute a limitation on the analyzer, and may include more or less components than shown in the figure, or combine certain components, or arrange the components differently.

[0047] like Figure 1 As shown, the memory 1002 as a storage medium may include an operating system, a data storage module, a network communication module, a user interface module and a calibration application program.

[0048] exist Figure 1 In the analyzer shown, the processor 1001 and the memory 1002 in the analyzer of the embodiment of the present invention can be set in the analyzer. The analyzer calls the calibration application program stored in the memory 1002 through the processor 1001 and executes the calibration application method provided by the embodiment of the present invention.

[0049] The embodiment of the present invention provides a calibration application method, referring to Figure 2 , Figure 2 It is a flowchart diagram of a first embodiment of a calibration application method of the present invention.

[0050] In this embodiment, the calibration application method includes:

[0051] Step S10, displaying a first identifier including target information corresponding to the reagent on the interface, wherein the target information includes the batch number and / or bottle number of the reagent;

[0052] The interface is an interactive interface for the user to use the analyzer, and is used for the user to operate to apply for calibration. In this embodiment, the left side of the interface is the reagent information, and the right side of the interface is the calibration solution information. In other embodiments, the left side of the interface may also be the calibration solution information, and the right side of the interface may be the reagent information.

[0053] When using an analyzer for testing, the reagents need to be calibrated every time a new item is added or the reagent batch number of each item is changed to ensure that the instrument can guarantee the accuracy of the test results. Reagents, also known as biochemical reagents or test drugs, are mainly pure chemicals used to achieve chemical reactions, analytical tests, research experiments, teaching experiments, and chemical formulas.

[0054] In this embodiment, the target information also includes the name and calibration status of the reagent. In other embodiments, the target information may also include reagent-related information such as reagent formula, reagent configuration method, and reagent location. The reagent batch number can be customized according to the reagent's factory date, for example, using 20211026 as the batch number. The reagent bottle number can be represented by adding brackets and numbers after the reagent batch number, for example, using (1) as the bottle number.

[0055] In this embodiment, the first mark is a reagent button, recording reagent related information, and there are multiple display modes, such as using different colors to represent specific reagent information, or using different shapes to represent specific reagent information. In other embodiments, the first mark can also be a form.

[0056] The batch number of the reagent is determined when the reagent leaves the factory.

[0057] Specifically, the first identification of all reagents at the current moment is displayed on the interface. It can be seen that all reagent buttons at the current moment are displayed on the left side of the interface, and the reagent buttons record the batch number and / or bottle number of the corresponding reagent.

[0058] Specifically, the interface may display one or more first identifiers, and different first identifiers include different target information. When the first identifier includes a batch number, the first identifier represents all reagents of the batch number; when the first identifier includes a bottle number, the first identifier represents the reagent corresponding to the bottle number; when the first identifier includes a batch number and a bottle number, the first identifier represents the reagent corresponding to the corresponding bottle number under the batch number.

[0059] The reagents here are all the reagents currently loaded in the analyzer.

[0060] Step S20, in response to the first selection instruction of the first identifier, determining that the reagent corresponding to the first selection instruction is a target reagent, and displaying a second identifier of a calibration solution corresponding to the target reagent on the interface;

[0061] The first selected instruction refers to an instruction in which the first identifier of the target reagent is selected by the user. The target reagent is the reagent selected by the user for calibration at the current moment. Specifically, all reagents associated with the target information contained in the first identifier corresponding to the first selected instruction can be determined as target reagents. For example, the reagent associated with the bottle number contained in the first identifier corresponding to the first selected instruction is determined as the target reagent; for another example, all reagents associated with the batch number contained in the first identifier corresponding to the first selected instruction are determined as target reagents.

[0062] The calibration of the reagent needs to be completed using a calibration solution, and it can be known that the calibration solution is used for reagent calibration. In this embodiment, the second identification of the calibration solution includes the batch number, name, concentration level, location, state, calibration rules and corresponding reagent batch number of the calibration solution. In other embodiments, the second identification of the calibration solution may also include a formula and a configuration method, etc.

[0063] It should be noted that the display interface of each reagent batch number corresponds to displaying the second identifier of at least one calibration solution. Before using the calibration solution to calibrate the reagent, that is, before step S20, it also includes responding to the instruction of adding a calibration solution of the target reagent, adding the second identifier of the calibration solution corresponding to the target reagent; associating the second identifier with the batch number of the target reagent, and displaying the batch number and the second identifier on the interface. Therefore, it can be known that the second identifier of the calibration solution corresponding to the batch number is displayed on the interface according to different reagent batch numbers.

[0064] The batch number of the calibration solution is determined when the calibration solution leaves the factory.

[0065] Specifically, when a first selection instruction of a first identifier is received, in response to the first selection instruction of the first identifier, the reagent corresponding to the first selection instruction is determined to be a target reagent, and a second identifier of a calibration solution corresponding to the target reagent is displayed on the interface.

[0066] Step S30, in response to the second selected instruction of the second identifier, determining that the calibration solution corresponding to the second selected instruction is the target calibration solution;

[0067] After the user selects the target reagent, he or she must also select the target calibration solution to apply for calibration.

[0068] The second selection instruction refers to an instruction that the second identifier of the target calibration solution is selected by the user. The target calibration solution is the calibration solution selected by the user for calibration at the current moment.

[0069] Step S40, calibrating the target reagent and the target calibration solution.

[0070] It should be noted that calibration is to determine a reference point, namely the K value or F value, through reagents and calibration solutions.

[0071] In this embodiment, the embodiment of the present invention displays a first identifier including target information corresponding to the reagent on the interface, wherein the target information includes the batch number and / or bottle number of the reagent, responds to a first selection instruction of the first identifier, determines that the reagent corresponding to the first selection instruction is the target reagent, and displays a second identifier of a calibration solution corresponding to the target reagent on the interface, responds to a second selection instruction of the second identifier, determines that the calibration solution corresponding to the second selection instruction is the target calibration solution, and calibrates the target reagent and the target calibration solution. In this calibration application process, the project-related information is no longer displayed, but the reagent identifier is first displayed by batch number and / or bottle number, so that the user can quickly find the reagent with the batch number and / or bottle number required, and then the corresponding calibration solution identifier is screened out by the user's selection of the reagent for display for user selection, and all the calibration solutions in the project are no longer displayed without screening, so that the user can quickly find the reagent and its corresponding calibration solution required for calibration application, thereby improving the convenience of analyzer calibration application.

[0072] Further, see Figure 3 Based on the above embodiment, the present invention proposes a second embodiment of a calibration application method. Figure 3 In the embodiment shown, step S10 includes:

[0073] Step S01, obtaining a calibration mode;

[0074] Specifically, the calibration mode is displayed on the interface, and the calibration mode is acquired in response to a calibration mode selection instruction.

[0075] Step S02, when the calibration mode is the first calibration mode, displaying a first identifier including the batch number, wherein the first calibration mode is a mode for calibrating the reagent in batches;

[0076] It should be noted that the first identifier of the first calibration mode includes the reagent name, batch number and calibration status corresponding to the target reagent.

[0077] Reference Figure 4 , Figure 4 This is a schematic diagram of the interface of the first calibration mode of the calibration application method embodiment of the present invention.

[0078] When the user selects the calibration application as the first calibration mode in the interface, the first identification including the batch number of all reagents is displayed on the left side of the interface. Specifically, the reagent name, batch number and calibration status of all reagents are displayed on the left side of the interface. For example, the reagent name of the reagent displayed on the left side of the interface is TSH, the batch number is 20211026, and the calibration status is failed.

[0079] Step S03: when the calibration mode is the second calibration mode, a first identifier including the bottle number is displayed, and the second calibration mode is a mode for calibrating the reagent in bottles.

[0080] It should be noted that the first identifier of the second calibration mode includes the reagent name, batch number, bottle number and calibration status corresponding to the target reagent.

[0081] Reference Figure 5 , Figure 5 This is a schematic diagram of the interface of the second calibration mode of the calibration application method embodiment of the present invention.

[0082] When the user selects the calibration application as the second calibration mode in the interface, the first identification including the bottle number of all reagents is displayed on the left side of the interface. Specifically, the reagent name, batch number, bottle number and calibration status of all reagents are displayed on the left side of the interface. For example, the reagent name of the reagent displayed on the left side of the interface is TSH, the batch number is 20211026, the bottle number is (1) and the calibration status is failed.

[0083] In this embodiment, two calibration modes are used to implement targeted and rapid calibration application of reagents, thereby improving the convenience of calibration application of the analyzer.

[0084] Further, see Figure 6 , the first identifier is more than one, the step S20 comprises:

[0085] Step S21, when more than one first selected instruction is received, determining that the reagent corresponding to each first selected instruction is a target reagent;

[0086] It should be noted that the reagent information on the left side of the program interface allows the user to select multiple reagents for calibration, that is, the reagent buttons on the left side can be selected in multiple ways.

[0087] Step S22, displaying the second identifiers corresponding to the more than one target reagents in sequence according to the order in which the more than one first selection instructions are received.

[0088] The order in which the first selection instructions are received refers to the order in which the target reagents are selected one by one by the user.

[0089] Here, when the user selects the first target reagent on the left side of the interface, in response to the selection instruction of the first identifier of the first target reagent, the second identifier of the calibration solution corresponding to the first target reagent is displayed on the right side of the interface; when the user selects the second target reagent on the left side of the interface, in response to the selection instruction of the first identifier of the second target reagent, the second identifier of the calibration solution corresponding to the second target reagent is displayed on the right side of the interface; when the user selects the third target reagent on the left side of the interface, the same is done until the user does not select a target reagent on the left side of the interface.

[0090] When the user does not select the target reagent on the left side of the interface, the interface stops at the current interface, and the second mark of the target calibration solution is not added on the right side of the interface.

[0091] Specifically, the order of the more than one target reagents is determined according to the order in which the more than one first selection instructions are received, and the second identifiers corresponding to the more than one target reagents are displayed in sequence according to the order in which the more than one first selection instructions are received.

[0092] In this embodiment, the second identifiers of the calibration solutions corresponding to the target reagents are displayed in sequence according to the order in which the first identifiers of the selected target reagents are selected, so that when the target calibration solutions are selected, the target calibration solutions can be searched according to the order in which the target reagents are selected, which facilitates searching for calibration solutions corresponding to different or the same reagents according to the selected order, thereby improving the speed of determining the target calibration solution through the target reagent, thereby improving the convenience of applying for analyzer calibration.

[0093] Specifically, when the user selects the calibration application as the first calibration mode in the interface, more than one selected batch number instruction is received, and the reagent corresponding to the batch number is determined to be the target reagent; the second identification corresponding to more than one target reagent is displayed in sequence according to the order in which the more than one selected batch number instructions are received.

[0094] When the user selects the calibration application as the second calibration mode in the interface, more than one selected bottle number instruction is received, and the reagent corresponding to the bottle number is determined to be the target reagent; the second identification corresponding to more than one target reagent is displayed in sequence according to the order in which more than one selected batch number instructions are received.

[0095] In other embodiments, the second identifiers of the target calibration solutions may also be displayed in sequence according to the display order of the first identifiers of the target reagents on the interface.

[0096] Further, the number of calibration solutions corresponding to the target reagent is one or more than one, and the step S22 includes:

[0097] The target lists corresponding to more than one target reagent are displayed in sequence according to the sequence, and the target list includes the second identifiers of all calibration solutions corresponding to the target reagents.

[0098] All second identifiers of calibration solutions corresponding to a target reagent correspond to a target list, and the target list contains one or more calibration solutions.

[0099] It should be noted that the second identification includes the batch number, name, concentration level, position, state, calibration rule and corresponding reagent batch number of the calibration solution. The batch number can be customized according to the factory date of the reagent. The second identification can be displayed in the target list in sequence according to the order in which the calibration solution is added to the analyzer, or can be displayed in the target list in sequence according to the time sequence of the batch number of the second identification.

[0100] In this embodiment, a target calibration solution corresponding to a target reagent is included in a target list, and the second identifiers of the target calibration solution are displayed in sequence according to the order in which the first identifiers of the target reagents are selected, so that the calibration solution corresponding to one reagent is continuously displayed, which is convenient for finding the calibration solution corresponding to the same reagent, thereby improving the convenience of analyzer calibration application.

[0101] Specifically, when the user selects the calibration application as the first calibration mode in the interface, more than one selected batch number instruction is received, and the reagent corresponding to the batch number is determined to be the target reagent; according to the order in which the more than one selected batch number instructions are received, the more than one target lists corresponding to the target reagents are displayed in sequence, and the target list includes the second identifiers of all calibration solutions corresponding to the target reagents.

[0102] When the user selects the calibration application as the second calibration mode in the interface, more than one selected bottle number instruction is received, and the reagent corresponding to the bottle number is determined to be the target reagent; according to the order in which more than one selected batch number instructions are received, more than one target list corresponding to the target reagent is displayed in sequence, and the target list includes the second identifier of all calibration solutions corresponding to the target reagent.

[0103] Furthermore, there is a target calibration liquid in the calibration liquids corresponding to more than one of the target reagents, and the second identifier corresponding to the target calibration liquid is displayed in the target list corresponding to each of the target reagents; wherein the target calibration liquid is a calibration liquid corresponding to more than one of the target reagents.

[0104] The interface is an interactive interface for the user to use the analyzer, and is used for the user to operate to apply for calibration. In this embodiment, the left side of the interface is the reagent information, and the right side of the interface is the calibration solution information.

[0105] Specifically, when one calibration solution corresponds to multiple batches of reagents, the calibration solution is displayed in the calibration solution list on the right side of the interface corresponding to each batch of reagents, that is, the target list corresponding to each target reagent contains the calibration solution.

[0106] In this embodiment, one calibration solution is displayed in the target list corresponding to multiple batches of reagents, so as to avoid missing calibration solutions corresponding to the reagents, facilitate searching for calibration solutions corresponding to the reagents, and even facilitate selecting calibration solutions corresponding to the reagents, thereby improving the convenience of analyzer calibration application.

[0107] Further, see Figure 7 The third embodiment of the present invention provides a calibration application method based on the above Figure 7 In the embodiment shown, step S10 includes:

[0108] Step S11, obtaining the current calibration status of the reagent;

[0109] The calibration status includes uncalibrated status, application status, calibration status, success status, failure status, expired status and extension status. The calibration status is updated in real time according to the status of the reagent. All reagent buttons at the current moment are displayed on the left side of the interactive interface of the analyzer. In this embodiment, the first identifier of the reagent is the reagent button, which records the reagent related information.

[0110] Here, the analyzer can obtain the current calibration state of the reagent by detecting the application information of the reagent at the current moment, and the application information can be the information recorded by the reagent button or the calibration application list information stored in the system. In other embodiments, the current calibration state of the reagent can also be obtained by the user inputting the current state of the reagent.

[0111] Step S12, determining a first display parameter of the first identifier according to the calibration state, wherein different calibration states correspond to different first display parameters;

[0112] In this embodiment, the first display parameter is color, and different colors correspond to different calibration states. In other embodiments, the first display parameter may also be shape, and different shapes correspond to different calibration states.

[0113] Step S13: displaying the first identifier according to the first display parameter.

[0114] Here, the first identification is displayed according to different calibration states of the reagent, and the first identification includes the batch number of the reagent. Specifically, the batch number of the reagent is displayed according to different calibration states of the reagent.

[0115] For example, when the reagent is in a failed state, the batch number of the reagent is displayed in red; when the reagent is in an expired state, the batch number of the reagent is displayed in yellow.

[0116] In this embodiment, the first identification of the reagent, that is, the batch number, is displayed in different colors according to the calibration status of the reagent, so that the calibration status of the reagent can be quickly determined according to the color on the interface, thereby speeding up the speed of knowing the calibration status of the reagent. The calibration status of each reagent can be clearly seen on the interface, thereby improving the convenience of reagent calibration application.

[0117] It should be noted that step S11, step S12 and step S13 are performed after step S01, step S02 and step S03.

[0118] Specifically, when the user selects the calibration application as the first calibration mode in the interface, the current calibration status of the reagent is obtained, and the first display parameter of the batch number corresponding to the reagent is determined according to the calibration status. Different calibration states correspond to different first display parameters, and the batch number is displayed according to the first display parameter.

[0119] When the user selects the calibration application as the second calibration mode in the interface, the current calibration status of the reagent is obtained, and the first display parameters of the batch number and bottle number corresponding to the reagent are determined according to the calibration status. Different calibration states correspond to different first display parameters, and the batch number and the bottle number are displayed according to the first display parameters.

[0120] Further, see Figure 8 , the step S10 comprises:

[0121] Step S111, obtaining status information of the reagent, wherein the status information indicates whether the reagent meets the calibration application conditions and whether the reagent is in a state where calibration has been applied for but no calibration test has been conducted;

[0122] It should be noted that different projects have different bidding application conditions, which are formulated according to the requirements of different projects.

[0123] The left side of the interactive interface of the analyzer displays all reagent buttons at the current moment. In this embodiment, the first identifier of the reagent is the reagent button, which records the reagent-related information. Here, the analyzer can obtain the current status information of the reagent by detecting the current status information of the reagent, and the application information can be the information recorded by the reagent button. In other embodiments, the current status information of the reagent can also be obtained by the user inputting the current status information of the reagent.

[0124] Step S112, determining a second display parameter of the first identifier according to the state information, where different state information corresponds to different second display parameters;

[0125] When the reagent meets the calibration application condition, determining that the first identifier corresponds to a first parameter;

[0126] When the reagent does not meet the calibration application condition, determining that the first identifier corresponds to a second parameter;

[0127] When the reagent has been in the process of applying for calibration and has not been calibrated for testing, determining that the first identifier corresponds to a third parameter;

[0128] The second display parameter includes a first parameter, a second parameter and a third parameter.

[0129] In this embodiment, the second display parameter is the brightness of the first mark, and different state information corresponds to different brightness. Specifically, the first parameter, the second parameter and the third parameter are three different brightnesses. In other embodiments, the second display parameter may also be a pattern, and different state information corresponds to different patterns.

[0130] For example, the first parameter is that the button is blank, the second parameter is grayed out, and the third parameter is low light.

[0131] Step S113: displaying the first identifier according to the second display parameter to prompt whether the first identifier is allowed to be selected.

[0132] The first identification is displayed through the second display parameter according to different status information of the reagent.

[0133] It should be noted that, when the reagent meets the calibration application conditions and the first identifier has been selected at the current moment, it is determined that the first identifier is not allowed to be selected.

[0134] For example, when the reagent meets the calibration application conditions, the first identifier is displayed as blank to prompt that the first identifier is allowed to be selected;

[0135] When the reagent does not meet the calibration application conditions, the first identifier is displayed as grayed out to indicate that the first identifier is not allowed to be selected;

[0136] When the reagent is in the process of applying for calibration but not being calibrated, the first identifier is displayed in low light to indicate that the first identifier is not allowed to be selected;

[0137] When the reagent meets the calibration application condition and the first identifier has been selected at the current moment, the first identifier is displayed as highlighted to prompt that the first identifier is not allowed to be selected.

[0138] In this embodiment, the first identifier is displayed by different status information of the reagent, so that the reagent status information can be quickly determined to determine whether the first identifier is allowed to be selected, which facilitates rapid calibration application, thereby improving the convenience of analyzer calibration application.

[0139] It should be noted that the order of step S111, step S112 and step S113 is no particular priority to the above-mentioned step S11, step S12 and step S13, and step S111, step S112 and step S113 are after step S01, step S02 and step S03.

[0140] Furthermore, after step S10, the method further includes:

[0141] In response to the first selection instruction or the deselection instruction of the first identification or the status instruction of the reagent having started calibration test, the second display parameter is adjusted, and the first identification is displayed according to the adjusted second display parameter.

[0142] It should be noted that when the reagent meets the calibration application conditions and the first identifier is not selected, it is determined that the first identifier is allowed to be selected.

[0143] For example, when the reagent meets the calibration application condition and the first identifier is not selected, it is determined that the first identifier is allowed to be selected and the first identifier is blank.

[0144] In this embodiment, the second display parameter is the brightness of the reagent button, and different state information corresponds to different brightness. In other embodiments, the second display parameter can also be a pattern, and different state information corresponds to different patterns.

[0145] In this embodiment, the brightness of the reagent button is adjusted by the reagent status instruction, so that the reagent status information can be determined in time, which is convenient for rapid calibration application, thereby improving the convenience of analyzer calibration application.

[0146] Specifically, the second display parameter includes a first parameter, a second parameter, a third parameter and a fourth parameter;

[0147] When the reagent meets the calibration application condition and the first identifier has been selected, determining that the first identifier corresponds to the fourth parameter, in response to a cancel selection instruction of the first identifier, adjusting the fourth parameter to the first parameter, and displaying the first identifier according to the first parameter;

[0148] When the reagent meets the calibration application condition and the first identifier is not selected, determining that the first identifier corresponds to the first parameter, adjusting the first parameter to the fourth parameter in response to the first selection instruction, and displaying the first identifier according to the fourth parameter;

[0149] When the reagent has been in the process of applying for calibration but not undergoing calibration testing, it is determined that the first identifier corresponds to a third parameter, and in response to a status instruction indicating that the calibration test of the reagent has started, the third parameter is adjusted to the second parameter, and the first identifier is displayed according to the second parameter.

[0150] For example, when the reagent meets the calibration application condition and the first identifier has been selected, the first identifier is determined to be highlighted, and in response to a deselection instruction of the first identifier, the first identifier is displayed as blank;

[0151] When the reagent meets the calibration application condition and the first identifier is not selected, determining that the first identifier is blank, and in response to the first selection instruction, displaying the first identifier as highlighted;

[0152] When the reagent has been in the process of applying for calibration but has not been calibrated, the first indicator is determined to be low-lit, and in response to a status instruction that the calibration test of the reagent has been started, the first indicator is displayed as blank.

[0153] In addition, an embodiment of the present invention further provides an analyzer, comprising: a memory, a processor, and a calibration application program stored in the memory and executable on the processor, wherein the calibration application program is configured to implement the relevant steps of any embodiment of the calibration application method as described above.

[0154] In addition, an embodiment of the present invention further provides a storage medium, on which a calibration application program is stored. When the calibration application program is executed by a processor, the relevant steps of any embodiment of the calibration application method described above are implemented.

[0155] It should be noted that, in this article, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or system including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or system. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the existence of other identical elements in the process, method, article or system including the element.

[0156] The serial numbers of the above embodiments of the present invention are only for description and do not represent the advantages or disadvantages of the embodiments.

[0157] 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 a necessary general hardware platform, and of course by hardware, but in many cases the former is a better implementation method. Based on such an understanding, the technical solution of the present invention is essentially 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 a number of instructions for a terminal device (which can be a mobile phone, a computer, a server, or a network device, etc.) to execute the methods described in each embodiment of the present invention.

[0158] The above are only preferred embodiments of the present invention, and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A calibration application method, characterized in that: The calibration application method comprises the following steps: Displaying a first identifier including target information corresponding to the reagent on the interface includes: obtaining a calibration mode, when the calibration mode is a first calibration mode, displaying a first identifier including a batch number, the first calibration mode is a mode for calibrating the reagent in batches, when the calibration mode is a second calibration mode, displaying a first identifier including a bottle number, the second calibration mode is a mode for calibrating the reagent in bottles, and the target information includes the batch number and / or the bottle number of the reagent; In response to the first selection instruction of the first identification, determining that the reagent corresponding to the first selection instruction is the target reagent, and displaying the second identification of the calibration solution corresponding to the target reagent on the interface, including: when the user selects the calibration application as the first calibration mode on the interface, receiving more than one selected batch number instruction, determining that the reagent corresponding to the batch number is the target reagent, and displaying more than one target list corresponding to the target reagent in sequence according to the order in which the more than one selected batch number instructions are received, the target list includes the second identification of all calibration solutions corresponding to the corresponding target reagent, and / or, when the user selects the calibration application as the second calibration mode on the interface, receiving more than one selected bottle number instruction, determining that the reagent corresponding to the bottle number is the target reagent, and displaying more than one target list corresponding to the target reagent in sequence according to the order in which the more than one selected batch number instructions are received, the target list includes the second identification of all calibration solutions corresponding to the corresponding target reagent; In response to the second selected instruction of the second identifier, determining that the calibration fluid corresponding to the second selected instruction is the target calibration fluid; The target reagent and the target calibration solution are calibrated.

2. The calibration application method according to claim 1, characterized in that: The first identification is more than one, and the step of responding to the first selection instruction of the first identification, determining that the reagent corresponding to the first selection instruction is the target reagent, and displaying the second identification of the calibration solution corresponding to the target reagent on the interface includes: When more than one first selected instruction is received, determining that the reagent corresponding to each of the first selected instructions is a target reagent; The second identifiers corresponding to more than one target reagent are displayed in sequence according to the order in which more than one first selected instructions are received.

3. The calibration application method according to claim 2, characterized in that: The number of calibration solutions corresponding to the target reagent is one or more than one, and the step of sequentially displaying the second identifiers corresponding to more than one target reagent according to the order in which more than one first selection instructions are received comprises: The target lists corresponding to more than one target reagent are displayed in sequence according to the sequence, and the target list includes the second identifiers of all calibration solutions corresponding to the target reagents.

4. The calibration application method according to claim 3, characterized in that: There is a target calibration liquid in the calibration liquids corresponding to more than one of the target reagents, and the second identifier corresponding to the target calibration liquid is displayed in the target list corresponding to each of the target reagents; wherein the target calibration liquid is a calibration liquid corresponding to more than one of the target reagents.

5. The calibration application method according to claim 1, characterized in that: The step of displaying a first identification including target information corresponding to the reagent on the interface comprises: Obtaining the current calibration status of the reagent; determining a first display parameter of the first identifier according to the calibration state, where different calibration states correspond to different first display parameters; The first identifier is displayed according to the first display parameter.

6. The calibration application method according to claim 1, characterized in that: The step of displaying a first identification including target information corresponding to the reagent on the interface comprises: Acquiring status information of the reagent, wherein the status information indicates whether the reagent meets the calibration application conditions and whether the reagent is in a state where calibration has been applied for but no calibration test has been conducted; determining a second display parameter of the first identifier according to the state information, where different state information corresponds to different second display parameters; The first identifier is displayed according to the second display parameter to prompt whether the first identifier is allowed to be selected.

7. The calibration application method according to claim 6, characterized in that: After the step of displaying the first identification including the target information corresponding to the reagent on the interface, the method further includes: In response to the first selection instruction or the deselection instruction of the first identification or the status instruction of the reagent having started calibration test, the second display parameter is adjusted, and the first identification is displayed according to the adjusted second display parameter.

8. An analyzer, characterized in that: The analyzer comprises: a memory, a processor, and a calibration application program stored in the memory and executable on the processor, wherein the calibration application program is configured to implement the steps of the calibration application method according to any one of claims 1 to 7.

9. A storage medium, characterized in that: The storage medium stores a calibration application program, and when the calibration application program is executed by the processor, the steps of the calibration application method according to any one of claims 1 to 7 are implemented.

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