Sample experiment item registration method
By displaying the interactive interface on the sample analyzer and configuring the position information of the reagent strips and sample tubes, the problem that the sample analyzer cannot be compatible with multiple and single reagents is solved, and flexible selection of reagents and simplified operation is achieved.
Patent Information
- Application Number
- CN202410869540.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-19
- Publication Date
- 2025-08-19
AI Technical Summary
Existing sample analyzers are not compatible with multiple and single reagents, resulting in waste of reagents or complicated operation.
By displaying an interactive interface on the sample analyzer, users can select and configure the position information of the reagent strip and sample tube, and realize the correlation between reagents and samples through operating controls, supporting compatibility between multiple and single reagents.
It realizes the flexibility to select multiple or single reagents on the sample analyzer, adapting to application scenarios with different samples, reducing reagent waste and simplifying the operation process.
Smart Images

Figure CN120507528A_ABST
Abstract
Description
[0001] This application is a divisional application of the invention patent application with the application date of February 19, 2024, application number 202410183820.2, and invention name “Channel Setting Method and Sample Experiment Project Registration Method”. Technical Field
[0002] The present invention relates to the technical field of medical devices, and in particular to a registration method for sample experimental items. Background Art
[0003] A sample analyzer is an instrument used to test and analyze samples. In related technologies, the reagents used in sample analyzers are mostly bottled reagents (multi-person reagents). The amount of bottled reagents is sufficient for multiple samples, but in some application scenarios, the number of test items is small, resulting in the inability to use up the bottled reagents within the validity period after opening, resulting in reagent waste. Therefore, POCT (point-of-care testing) sample analyzers that use single-person reagent card strips have emerged. However, single-person reagent card strips are different from bottled reagents and cannot adapt to application scenarios with large sample volumes. They have the problem of low efficiency. For frequently carried out test items, the reagent card strips need to be loaded repeatedly, which is cumbersome to operate; that is, only one of the reagent bottles or only the reagent card strips cannot fully adapt to all scenarios of sample analysis. At present, how to make multi-person reagents and single-person reagents compatible on sample analyzers has become an urgent problem to be solved. Summary of the Invention
[0004] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes a sample experimental project registration method that can register the experimental project of a sample on a sample analyzer, is compatible with both multi-person and single-person reagents, and can flexibly select between multi-person reagent bottles and single-person reagent strips based on the number of samples, adapting to application scenarios with different sample quantities.
[0005] In a first aspect, an embodiment of the present invention provides a sample experiment project registration method, which is applied to a sample analyzer, wherein the sample analyzer includes a sample compartment and a reagent storage module; the sample compartment is used to store sample tubes and reagent card strips; the reagent card strips are used to load single-person reagents; the reagent storage module is used to store reagent bottles; the reagent bottles are used to load multiple-person reagents; the method includes:
[0006] Displaying a second interactive interface, wherein the second interactive interface displays at least one first graphic and at least one second graphic, wherein the first graphic corresponds to the reagent card strip, and the second graphic corresponds to the sample tube;
[0007] In response to a sixth operation instruction, determining the selected second graphic as a first target object, and displaying a fifth interaction interface, wherein the fifth interaction interface displays a first operation control and at least one experiment item configuration control;
[0008] In response to a seventh operation instruction on the first operation control, determining location information of a target reagent card strip and first experimental item information, where the first experimental item information is obtained by scanning a code on the target reagent card strip or manually entering the information;
[0009] In response to an eighth operation instruction, rendering at least one of the experiment project configuration controls into a mark form according to the first experiment project information, and determining second experiment project information;
[0010] In response to a ninth operation instruction, the first target object, the position information of the target reagent card strip, and the second experimental item information are associated.
[0011] The embodiments of the present invention have at least the following beneficial effects:
[0012] By operating the second graphic corresponding to the sample tube, the relevant controls for registering the experimental items corresponding to the sample tube can be displayed, and the registration of the sample experimental items of the sample tube can be realized based on the manipulation of the first operation control and the experimental item configuration control and other relevant controls, so as to associate the sample experimental items of the sample tube with the reagents of the reagent card strip, and realize the loading and information entry of the reagent card strip and the matching of samples and reagents in the process of compatibility between multi-person reagents and single-person reagents.
[0013] In a second aspect, an embodiment of the present invention provides a sample experiment project registration method, which is applied to a sample analyzer, wherein the sample analyzer includes a sample compartment and a reagent storage module; the sample compartment is used to store sample tubes and reagent card strips; the reagent card strips are used to load single-person reagents; the reagent storage module is used to store reagent bottles; the reagent bottles are used to load multiple-person reagents; the method includes:
[0014] Displaying a second interactive interface, wherein the second interactive interface displays at least one first graphic and at least one second graphic, wherein the first graphic corresponds to the reagent card strip, and the second graphic corresponds to the sample tube;
[0015] In response to a fourteenth operation instruction, the selected first graphic is determined as a third target object, and first experimental project information and location information of a target reagent card strip are determined, where the first experimental project information is obtained by scanning a code on the target reagent card strip or manually entering the information;
[0016] In response to a fifteenth operation instruction, determining the selected second graphic as a first target object, and displaying a fifth interactive interface, wherein the fifth interactive interface displays at least one experimental item configuration control;
[0017] According to the first experimental project information, rendering at least one of the experimental project configuration controls into a marked state, and determining second experimental project information;
[0018] In response to the sixteenth operation instruction, the first target object, the position information of the target reagent card strip, and the second experimental item information are associated.
[0019] The embodiments of the present invention have at least the following beneficial effects:
[0020] By operating the second graphic corresponding to the sample tube, the relevant controls for registering the experimental items corresponding to the sample tube can be displayed, and the registration of the sample experimental items of the sample tube can be realized based on the manipulation of the first graphic and relevant controls such as the experimental item configuration control, so as to associate the sample experimental items of the sample tube with the reagents of the reagent card strip, and realize the loading and information entry of the reagent card strip and the matching of samples and reagents in the process of compatibility between multi-person reagents and single-person reagents.
[0021] In a third aspect, an embodiment of the present invention provides a sample analyzer, comprising:
[0022] A first display module is used to display a second interactive interface, wherein the second interactive interface displays at least one first graphic and at least one second graphic, wherein the first graphic corresponds to the reagent card strip, and the second graphic corresponds to the sample tube;
[0023] a fourth response module, configured to, in response to a sixth operation instruction, determine the selected second graphic as a first target object and display a fifth interaction interface, wherein the fifth interaction interface displays a first operation control and at least one experiment item configuration control;
[0024] a fifth response module, configured to determine, in response to a seventh operation instruction on the first operation control, location information of a target reagent card strip and first experimental item information, where the first experimental item information is obtained by scanning a code on the target reagent card strip or manually entering the information;
[0025] a sixth response module, configured to respond to an eighth operation instruction and render at least one of the experiment project configuration controls into a mark form according to the first experiment project information, and determine second experiment project information;
[0026] The seventh response module is configured to associate the first target object, the position information of the target reagent card strip, and the second experimental item information in response to a ninth operation instruction.
[0027] The embodiments of the present invention have at least the following beneficial effects:
[0028] By operating the second graphic corresponding to the sample tube, the relevant controls for registering the experimental items corresponding to the sample tube can be displayed, and the registration of the sample experimental items of the sample tube can be realized based on the manipulation of the first operation control and the experimental item configuration control and other relevant controls, so as to associate the sample experimental items of the sample tube with the reagents of the reagent card strip, and realize the loading and information entry of the reagent card strip and the matching of samples and reagents in the process of compatibility between multi-person reagents and single-person reagents.
[0029] In a fourth aspect, an embodiment of the present invention provides a sample analyzer, comprising:
[0030] A second display module is used to display a second interactive interface, wherein the second interactive interface displays at least one first graphic and at least one second graphic, wherein the first graphic corresponds to the reagent card strip, and the second graphic corresponds to the sample tube;
[0031] an eighth response module, configured to, in response to the fourteenth operation instruction, determine the selected first graphic as a third target object, and determine first experimental project information and location information of a target reagent card strip, where the first experimental project information is obtained by scanning a code on the target reagent card strip or manually entering the information;
[0032] a ninth response module, configured to, in response to the fifteenth operation instruction, determine the selected second graphic as a first target object and display a fifth interaction interface, wherein the fifth interaction interface displays at least one experimental item configuration control;
[0033] a tenth response module, configured to render at least one of the experiment project configuration controls into a marked state according to the first experiment project information, and determine second experiment project information;
[0034] The eleventh response module is configured to associate the first target object, the position information of the target reagent card strip, and the second experimental item information in response to the sixteenth operation instruction.
[0035] The embodiments of the present invention have at least the following beneficial effects:
[0036] By operating the second graphic corresponding to the sample tube, the relevant controls for registering the experimental items corresponding to the sample tube can be displayed, and the registration of the sample experimental items of the sample tube can be realized based on the manipulation of the first graphic and relevant controls such as the experimental item configuration control, so as to associate the sample experimental items of the sample tube with the reagents of the reagent card strip, and realize the loading and information entry of the reagent card strip and the matching of samples and reagents in the process of compatibility between multi-person reagents and single-person reagents.
[0037] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned by practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments with reference to the following drawings, in which:
[0039] Figure 1 This is a schematic structural diagram of a sample bin according to an embodiment of the present invention;
[0040] Figure 2 This is a schematic structural diagram of a reagent card strip loading rack according to an embodiment of the present invention;
[0041] Figure 3 A flow chart of the steps of a channel setting method according to an embodiment of the present invention;
[0042] Figure 4 This is one of the schematic diagrams of the first interactive interface according to an embodiment of the present invention;
[0043] Figure 5 This is a second schematic diagram of the first interactive interface according to an embodiment of the present invention;
[0044] Figure 6 This is a schematic diagram of a second interactive interface according to an embodiment of the present invention;
[0045] Figure 7 This is a second schematic diagram of the second interactive interface according to an embodiment of the present invention;
[0046] Figure 8 is a schematic diagram of a third interactive interface according to an embodiment of the present invention;
[0047] Figure 9 is a schematic diagram of a fourth interactive interface according to an embodiment of the present invention;
[0048] Figure 10 This is a flowchart of one of the steps of the sample experimental project registration method according to an embodiment of the present invention;
[0049] Figure 11 This is a third schematic diagram of the second interactive interface according to an embodiment of the present invention;
[0050] Figure 12 This is the second step flow chart of the sample experimental project registration method according to an embodiment of the present invention;
[0051] Figure 13 This is one of the principle block diagrams of the sample analyzer according to an embodiment of the present invention;
[0052] Figure 14 This is the second principle block diagram of the sample analyzer according to an embodiment of the present invention;
[0053] Figure 15 This is the third principle block diagram of the sample analyzer according to an embodiment of the present invention.
[0054] Reference numerals:
[0055] Sample compartment 100, loading channel 110, sample tube loading rack 120, sample tube 121, reagent card strip loading rack 130, reagent card strip 131;
[0056] Channel type configuration control 210, first radio button 211, second radio button 212, first drop-down list 213, second drop-down list 214, first channel bitmap 220, first graphic 221, second graphic 222, loading card bar control 231, manual entry card bar control 232, experiment project configuration control 240, second channel bitmap 251, third graphic 252, third channel bitmap 261, fourth graphic 262, experiment project options 263, sample analysis project 270;
[0057] First response module 301 , second response module 302 , third response module 303 , first display module 304 , fourth response module 305 , fifth response module 306 , sixth response module 307 , seventh response module 308 , second display module 309 , eighth response module 310 , ninth response module 311 , tenth response module 312 , and eleventh response module 313 . DETAILED DESCRIPTION
[0058] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0059] In the description of the present invention, "several" means one or more, "multiple" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, and "above," "below," and "within" are understood to include the number itself. The use of terms such as "first" and "second" is solely for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly specifying the number of the indicated technical features, or implicitly specifying the order of the indicated technical features.
[0060] In the description of the present invention, unless otherwise clearly defined, words such as “setting”, “installation” and “connection” should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above words in the present invention based on the specific content of the technical solution.
[0061] Explanation of terms:
[0062] PT: Prothrombin time;
[0063] APTT: Activated Partial Thromboplastin Time, activated partial thromboplastin time
[0064] TT:Thrombin Time, thrombin time
[0065] FIB: Fibrinogen
[0066] FDP:Fibrin / Fibrinogen Degradation Products, fibrin (original) degradation products
[0067] DD: D-Dimer
[0068] AT-III: antithrombin III
[0069] The sample analyzer is used in the field of medical or biochemical analysis, and its function is to detect the sample to be tested, wherein the sample to be tested can be blood, urine or body fluid, etc. In the related art, the sample analyzer includes a sample storage module and a reagent storage module, wherein the sample storage module is used to store multiple test tubes (also called sample tubes), and the reagent storage module is used to store multiple reagent bottles, each of which can store different or the same type of reagents. Generally, the reagent storage capacity of the reagent bottle is large, which can meet the use of multiple people, such as the use of dozens of test samples, and is suitable for scenes with large sample volumes (for example, large hospitals or large testing institutions). However, for application scenarios with a small sample volume, since the reagents stored in the reagent bottles have a shelf life limit, especially after the reagent bottles are opened, once the reagents exceed the expiration date, they cannot be used anymore. In order to solve the above technical problems, the related art has introduced reagent card strips to store reagents for single-person testing, without the need to use large reagent bottles, wherein a single person portion is relative to a plurality of persons, and refers to a packaged quantitative reagent and the amount of the reagent should meet the use needs of performing a sample test (single person use). It is worth mentioning that in the related art, POCT sample analyzers can only use single-person reagent card strips, while the sample analyzer of this embodiment is compatible with both single-person reagents and multi-person reagents.
[0070] Please refer to Figure 1 and Figure 2In this embodiment, a coagulation test application is used as an example. The sample analyzer includes a chassis and a sample compartment 100, a reagent storage module, a distribution module, an incubation detection module, and a test cup installed in the chassis. The sample compartment 100 is provided with at least one loading channel 110. The loading channel 110 is used to install a loading rack, wherein the loading rack can be a sample tube loading rack 120 for placing a sample tube 121, or a reagent card strip loading rack 130 for placing a reagent card strip 131 and a sample tube 121, or a reagent card strip loading rack for placing only a reagent card strip 131 (that is, the reagent card strip loading rack 130 does not have a placement position for the sample tube 121). Of course, in actual use, the reagent card strip 131 and the sample tube 121 on the reagent card strip loading rack 130 can be loaded and used separately, or can be loaded and used simultaneously, the sample tube 121 is used to store the sample to be tested, and the reagent storage module is used to place the reagent bottle. Reagent is stored in the reagent card strip 131 or the reagent bottle, and the reagent includes at least one of PT reagent, APTT reagent, TT reagent, FIB reagent, FDP reagent, DD reagent and AT-III reagent. In the present embodiment, according to the user's flexible selection, the reagent card strip 131 and the sample tube 121 can share the physical space of the sample bin 100 for loading, and there is no need to open up other spaces in the sample analyzer to additionally place the reagent card strip, which is conducive to the miniaturization of the sample analyzer. And because the reagent card strip 131 and the sample tube 121 are both used to meet the detection of a single person, as consumptive materials that need to be repeatedly loaded and replaced, the shared sample bin is convenient for user operation. The distribution module is used to inject the sample collected from the sample tube 121 into the test cup, and to inject the reagent collected from the reagent bottle or reagent card strip 131 into the test cup. The incubation and detection module is used to incubate the sample in the test cup and test the sample in the test cup to obtain the test result. In this embodiment, the sample analyzer can be loaded with multiple doses of reagents or single doses of reagents. For example, for coagulation analysis, some of the seven coagulation items are performed more frequently and should be tested using the reagents in the reagent bottle, while some items are performed less frequently and should be tested using the reagents in the reagent card strip. For example, even large hospitals or large testing institutions have peak and off-season business. During the peak season, the reagent usage is high, so the reagents in the reagent bottle should be used, while during the off-season, the reagent usage is low, so the reagents in the reagent card strip should be used. Therefore, how to make the sample analyzer compatible with both multiple doses of reagents and single doses of reagents has become an urgent problem to be solved.
[0071] Please refer to Figure 3, this embodiment discloses a channel setting method, including steps S110 to S130, for setting the channel type of the sample analyzer loading channel in the process of achieving compatibility between multi-person reagents and single-person reagents on the sample analyzer, thereby flexibly switching different loading racks to load samples and reagent strips. It should be noted that the numbering of the steps in this embodiment is only for the convenience of review and understanding, and does not limit the execution order of the steps. In actual application, adaptive adjustments can be made based on the logical relationship between the steps. Refer to the following Figure 1 、 Figure 2 、 Figures 4 and 5 The contents of each step are described in detail:
[0072] S110, in response to a first operation instruction, displaying a first interactive interface, wherein the first interactive interface displays a channel type configuration control 210;
[0073] S120, in response to a second operation instruction on the channel type configuration control 210, determining a channel type of a target channel, where the channel type includes a first channel type and a second channel type, where the first channel type is used to characterize the loading channel 110 of the reagent cartridge loading rack 130, and the second channel type is used to characterize the loading channel 110 of the sample tube loading rack 120;
[0074] S130. In response to the third operation instruction, a second interactive interface is displayed, and the second interactive interface displays a first channel bitmap 220 corresponding to the target channel, wherein, when the channel type of the target channel is the first channel type, the first channel bitmap 220 corresponding to the target channel is displayed as a first channel style; when the channel type of the target channel is the second channel type, the first channel bitmap 220 corresponding to the target channel is displayed as a second channel style.
[0075] Exemplarily, the first operation instruction may be an operation instruction for a menu bar in the current interface or an operation instruction for a certain operation control, wherein the first interactive interface may be a local area of the current interface or another interface different from the current interface. Through the second operation instruction, the channel type of the target channel is selected or input, wherein the position of the target channel corresponds one-to-one with the loading channel 110 on the sample analyzer, for example, the channel with serial number one is selected as the target channel, and the channel type of the target channel is configured as the first channel type or the second channel type. The third operation instruction may be an operation instruction for a certain operation control in the first interactive interface, such as clicking a save control. The third operation instruction may also be an operation instruction such as clicking, double-clicking, or sliding on the current interactive interface, such as clicking, double-clicking, or sliding in a designated area or a blank area. The second interactive interface can be another interface different from the current interface or the first interactive interface. For example, based on reasons such as display window size limitations, in response to a third operation instruction, the first interactive interface is closed and the second interactive interface is displayed, thereby simplifying the interface content and improving the visualization of the interface display. The second interactive interface can also be a local area of the current interface. For example, the first interactive interface is displayed in the first area of the current interface, and in response to a third operation instruction, the second interactive interface is displayed in the second area of the current interface, or the first interactive interface is displayed in the first area of the current interface, and in response to a third operation instruction, the first interactive interface is switched to the second interactive interface in the first area. It is hoped that it will be understood that the interactive interfaces of this embodiment can adopt the same design, and the different interactive interfaces will not be described in detail below.
[0076] In the process of achieving compatibility between multi-portion reagents and single-portion reagents, the problem of loading and entering reagent card strips needs to be solved. In this embodiment, by operating the channel type configuration control 210 on the first interactive interface, the channel type of the target channel can be determined, thereby setting the channel type of the loading channel 110 of the sample analyzer, that is, determining the usage method of the loading channel 110. In the process of achieving compatibility between multi-portion reagents and single-portion reagents, different loading racks can be flexibly switched to load samples and reagent card strips. In the second interactive interface, the first channel bitmap 220 corresponding to the target channel is displayed as the first channel style or the second channel style, so that the user can intuitively understand the channel type of the target channel and allow the user to subsequently perform targeted interactive operations on the target channel according to the channel type of the target channel.
[0077] Please refer to Figure 4 In some application examples, the channel type configuration control 210 includes multiple radio buttons. Step S120, in response to a second operation instruction on the channel type configuration control 210, determines the channel type of the target channel, including:
[0078] S121 : In response to selection instructions for multiple radio buttons, determine the channel type of the target channel.
[0079] In this embodiment, the optional channel types corresponding to the loading channel 110 are displayed in the second interactive interface in the form of radio buttons, so that the user can intuitively understand the optional channel types and the convenience of operation is improved.
[0080] The multiple radio buttons include multiple first radio buttons 211 and multiple second radio buttons 212. In response to selection instructions for the multiple radio buttons, determining the channel type of the target channel includes:
[0081] S122, in response to selection instructions for the plurality of first radio buttons 211, performing batch selections on the plurality of second radio buttons 212 and limiting the range of options for the plurality of second radio buttons 212, and determining a channel type of a target channel;
[0082] or,
[0083] S123, in response to selection instructions for the plurality of first radio buttons 211, removing restrictions on the option ranges of the plurality of second radio buttons 212;
[0084] S124 : In response to the selection instruction for the second radio button 212 , determine the channel type of the target channel.
[0085] For example, the first radio button 211 is configured with three types. The first radio button 211 of the first type is used to represent a normal mode in which only reagents in reagent bottles can be selected for testing. The second type of radio button 211 is used to represent a single-dose mode in which only reagents in reagent cartridges 131 can be selected for testing. The third type of radio button is used to represent a normal + single-dose mode in which reagents in both reagent bottles and reagent cartridges 131 can be selected for testing. The second radio button 212 is a channel type option configured for each loading channel 110. The channel type options include a normal sample rack and a single-dose sample rack. The normal sample rack is used to represent that the current loading channel 110 is used to install the sample tube loading rack 120, and the single-dose sample rack is used to represent that the current loading channel 110 is used to install the reagent cartridge loading rack 130.
[0086] When the first radio button 211 of the first type is selected, the second radio buttons 212 of all loading channels 110 are configured as regular sample racks and cannot be configured as single-dose sample racks. When the first radio button 211 of the second type is selected, the second radio buttons 212 of all loading channels 110 are configured as single-dose sample racks and cannot be configured as regular sample racks. This allows batch operations to be performed on all loading channels 110, which helps simplify operations and improve user experience. When the first radio button 211 of the third type is selected, the second radio button 212 of each loading channel 110 can be configured individually. For example, the second radio button 212 of the first loading channel 110 can be configured as a regular sample rack, while the second radio button 212 of the second loading channel 110 can be configured as a single-dose sample rack, thereby being compatible with both multi-dose and single-dose reagents.
[0087] Please refer to Figure 5 In some other application examples, the channel type configuration control 210 includes at least one drop-down list. Step S120, in response to a second operation instruction on the channel type configuration control 210, determines the channel type of the target channel, including:
[0088] S126 : In response to a selection instruction on at least one drop-down list, determine a channel type of a target channel.
[0089] The plurality of drop-down lists include a first drop-down list 213 and at least one second drop-down list 214. Step S126, in response to a selection instruction of at least one drop-down list, determines the channel type of the target channel, including the following:
[0090] S127, in response to the selection instruction of the first drop-down list 213, batch configure at least one second drop-down list 214 and limit the option range of at least one second drop-down list 214, and determine the channel type of the target channel;
[0091] or,
[0092] S128. In response to a selection instruction on the first drop-down list 213, unrestricting a range of options in at least one second drop-down list 214;
[0093] S129 : In response to a selection instruction on the second drop-down list 214 , determine the channel type of the target channel.
[0094] Exemplarily, the first drop-down list 213 is configured with three options, such as normal mode, single-serving mode, and normal + single-serving mode. The second drop-down list 214 is configured with two options, such as normal sample rack and single-serving sample rack. The number of the second drop-down list 214 is adapted to the number of the loading channels 110. When the current option of the first drop-down list 213 is selected as normal mode, all options of the second drop-down list 214 are configured as normal sample racks and cannot be configured as single-serving sample racks; when the current option of the first drop-down list 213 is selected as single-serving mode, all options of the second drop-down list 214 are configured as normal sample racks and cannot be configured as single-serving sample racks; When the current option in the first drop-down list 213 is selected as the conventional + single-portion mode, the second drop-down list 214 corresponding to each loading channel 110 can be configured separately. For example, the current option in the second drop-down list 214 of the first loading channel 110 is configured as a conventional sample rack, while the current option in the second drop-down list 214 of the second loading channel 110 is configured as a single-portion sample rack, thereby being compatible with both multi-portion reagents and single-portion reagents.
[0095] In some embodiments, step S130, in response to the third operation instruction, displays the second interactive interface, and then further includes:
[0096] S141, obtaining status data of the target channel;
[0097] S142 : Perform state rendering on the first channel bitmap 220 of the target channel according to the state data of the target channel.
[0098] Exemplary, when the loading channel 110 corresponding to the target channel is not installed with a loading rack, the first channel bitmap 220 of the target channel is rendered gray and configured as an inoperable state; when the loading channel 110 corresponding to the target channel is installed with a loading rack, the first channel bitmap 220 of the target channel is rendered white and configured as an operable state; when the loading channel 110 corresponding to the target channel is configured with reagent information, the first channel bitmap 220 of the target channel is rendered blue and the corresponding reagent information is displayed. This allows the user to more intuitively understand the usage status of the target channel, which is conducive to improving the user experience. It should be understood that the operable state and the inoperable state are relative. The operable state refers to operating the first channel bitmap 220, such as clicking, double-clicking or long pressing, and the preset interactive content is executed or presented in the current interactive interface; and the inoperable state refers to when the first channel bitmap 220 is operated, and the current interactive interface does not respond or does not present the preset interactive content.
[0099] Please refer to Figure 6 and Figure 7The first channel style is configured with a first graphic 221 corresponding to the reagent card strip 131. Step S142, based on the state data of the target channel, performs state rendering on the first channel bitmap 220 of the target channel, including:
[0100] S1421: When the state data indicates that the target channel is in an inoperable state, render the first graphic 221 corresponding to the target channel into a first form;
[0101] Alternatively, S1422, when the state data indicates that the target channel is in an operable state, rendering the first graphic 221 corresponding to the target channel into a second form;
[0102] Alternatively, in S1423 , when the status data indicates that the target channel has been configured with reagent information, the first graphic 221 corresponding to the target channel is rendered into a third form.
[0103] For example, Figure 6 The second interactive interface shown only displays the second channel style. Figure 7 The second interactive interface shown displays a first channel layout and a second channel layout. The first graphic 221 is an oblong. To help users distinguish between different reagent strips, position markers, such as "Position 1" and "Position 2," are placed on the first graphic 221. In the first layout, the first graphic 221 is rendered in gray and inoperable. In the second layout, the first graphic 221 is rendered in white and operable. In the third layout, the first graphic 221 is rendered in blue and displays the corresponding reagent information.
[0104] In addition, please continue to refer to Figure 7 The first channel style is further configured with a second graphic 222 corresponding to the sample tube 121. Step S142, based on the state data of the target channel, performs state rendering on the first channel bitmap 220 of the target channel, including:
[0105] S1424: When the state data indicates that the target channel is in an inoperable state, render the second graphic 222 corresponding to the target channel in a fourth form;
[0106] Alternatively, in step S1425, when the state data indicates that the target channel is in an operable state, the second graphic 222 corresponding to the target channel is rendered into a fifth form;
[0107] Alternatively, in step S1426 , when the state data indicates that the sample tube 121 corresponding to the target channel is in the sample analysis phase, the second graphic 222 corresponding to the target channel is rendered into a sixth form;
[0108] Alternatively, in S1427, when the status data indicates that the target channel has been loaded with the sample tube 121 and the sample analysis of the sample tube 121 has been completed in whole or in part, the second graphic 222 corresponding to the target channel is rendered into the seventh form.
[0109] Exemplarily, the second graphic 222 is circular in shape. To facilitate user differentiation between different sample tubes, corresponding position numbers, such as "1-10" and "4-7," are provided on the second graphic 222. In the fourth mode, the second graphic 222 is rendered in a gray, inoperable state. In the fifth mode, the second graphic 222 is rendered in a white, operable state. In the sixth mode, the second graphic 222 is rendered in green. In the seventh mode, the second graphic 222 is rendered in blue. Alternatively, the second graphic 222 may be rendered in different colors depending on the progress of the sample analysis items of the sample tube 121. For example, when all items corresponding to the sample tube 121 are completed, the second graphic 222 may be rendered in dark blue. When only some of the items corresponding to the sample tube 121 are completed (e.g., only one or two of the three items, PT, APTT, and TT, are completed), the second graphic 222 may be rendered in light blue or orange. By rendering the second graphic 222 in different forms, the user can intuitively understand the status of different sample tubes 121, thereby improving the user experience.
[0110] After the channel type of the target channel is configured, the reagent information of the reagent card strip 131 of the target channel may be associated, that is, the reagent information may be automatically entered by loading the reagent card strip 131 or manually entered.
[0111] Please refer to Figure 7 and Figure 8 In some application examples, the second interactive interface includes a first partition and a second partition, the first channel bitmap 220 is displayed in the first partition, and the second partition displays a loading card bar control 231. In step S130, in response to the third operation instruction, the second interactive interface is displayed, and then the following steps are further included:
[0112] S151, in response to a fourth operation instruction on the loading card bar control 231, displaying a third interactive interface, wherein the third interactive interface displays at least one second channel bitmap 251;
[0113] S152: Determine and display at least one second channel bitmap 251 according to a first sequence number set, or render at least one second channel bitmap 251 into an optional form, wherein the first sequence number set is used to represent the sequence number of the target channel whose channel type is the first channel type.
[0114] Exemplarily, the style of the second channel bitmap 251 can be the same as that of the first channel bitmap 220, for example, the number of second channel bitmaps 251 is the same as the number of first channel bitmaps 220, and the channel type of the second channel bitmap 251 can be changed according to the channel type of the first channel bitmap 220; of course, the style of the second channel bitmap 251 can be different from that of the first channel bitmap 220, for example, the number of second channel bitmaps 251 is the same as the number of first channel bitmaps 220, but all second channel bitmaps 251 are displayed in the first channel style, that is, the first graphic 221 and the second graphic 222 are displayed. The function of the second channel bitmap 251 is to provide the user with optional positions of the reagent card strip 131 that need to be associated. In order to avoid user misoperation, at least one second channel bitmap 251 is displayed according to the first serial number, that is, only the available parts of all second channel bitmaps 251 are displayed, or the available parts of all second channel bitmaps 251 are rendered into an optional form according to the first serial number set, wherein the first serial number set can be determined according to the channel type of all first channel bitmaps 220, for example, the serial number of the first channel bitmap 220 whose channel type is the first type is added to the first serial number set.
[0115] Please refer to Figure 7 and Figure 9 In some other application examples, the second interactive interface includes a first partition and a second partition, the first channel bitmap 220 is displayed in the first partition, and the second partition displays a manual entry card bar control 232. In step S130, in response to the third operation instruction, the second interactive interface is displayed, and then the following steps are further included:
[0116] S161, in response to a fifth operation instruction on the manual entry card bar control 232, displaying a fourth interactive interface, wherein the fourth interactive interface displays at least one third channel bitmap 261;
[0117] S162. Determine and display at least one of the third channel bitmaps 261 according to a first sequence number set, or render at least one of the third channel bitmaps 261 into an optional form. The first sequence number set is used to represent the sequence number of the target channel whose channel type is the first channel type.
[0118] In some further embodiments, the second interactive interface includes a first partition and a second partition, the first channel bitmap 220 is displayed in the first partition, and the second partition displays a loading card strip control 231 and a manual entry card strip control 232. The user can operate the loading card strip control 231 or the manual entry card strip control 232 according to actual application requirements to associate the corresponding reagent card strip 131 information with the target channel.
[0119] It should be noted that the loading card bar control 231 and the manual entry card bar control 232 can be displayed or hidden by triggering the second graphic 222. For example, in the default state, the loading card bar control 231 and the manual entry card bar control 232 are hidden. When one of the second graphics 222 is selected, the loading card bar control 231 and the manual entry card bar control 232 are displayed. Of course, in some application scenarios, when the second interactive interface is displayed, one of the second graphics 222 is configured to be selected, so that the loading card bar control 231 and the manual entry card bar control 232 can be automatically displayed.
[0120] Please refer to Figure 13 Based on the above-mentioned channel setting method, this embodiment further provides a sample analyzer, including a first response module 301, a second response module 302, and a third response module 303. The inventive concept of this sample analyzer is the same as the inventive concept of the above-mentioned channel setting method. For matters not involved in the embodiment, reference can be made to the above-mentioned channel setting method embodiment, and will not be repeated below.
[0121] A first response module 301 is configured to display a first interactive interface in response to a first operation instruction, wherein the first interactive interface displays a channel type configuration control 210;
[0122] A second response module 302 is configured to determine a channel type of a target channel in response to a second operation instruction on the channel type configuration control 210 , where the channel type includes a first channel type and a second channel type, where the first channel type is used to characterize the loading channel 110 of the reagent cartridge loading rack 130 , and the second channel type is used to characterize the loading channel 110 of the sample tube loading rack 120 ;
[0123] The third response module 303 is used to display a second interactive interface in response to the third operation instruction, and the second interactive interface displays a first channel bitmap 220 corresponding to the target channel, wherein, when the channel type of the target channel is the first channel type, the first channel bitmap 220 corresponding to the target channel is displayed as the first channel style; when the channel type of the target channel is the second channel type, the first channel bitmap 220 corresponding to the target channel is displayed as the second channel style.
[0124] By operating the channel type configuration control 210 on the first interactive interface, the channel type of the target channel can be determined, and the loading channel of the sample analyzer can be set to achieve compatibility with multi-person reagents and single-person reagents. Different loading racks can be flexibly switched to load samples and reagent card strips. In the second interactive interface, the first channel bitmap 220 corresponding to the target channel is displayed as the first channel style or the second channel style, so that the user can intuitively understand the channel type of the target channel.
[0125] Please refer to Figure 10 This embodiment also provides a sample experiment project registration method, including steps S210 to S250, for realizing the registration of sample experiment projects in the process of being compatible with multi-person reagents and single-person reagents, so as to judge whether to draw multi-person reagents or single-person reagents when performing sample analysis. It should be noted that the steps in this embodiment are numbered only for the convenience of review and understanding, and do not limit the execution order of the steps. In actual application, adaptive adjustments can be made according to the logical relationship between the steps. The contents of each step are described in detail below:
[0126] S210, displaying a second interactive interface, wherein the second interactive interface displays at least one first graphic 221 and at least one second graphic 222, wherein the first graphic 221 corresponds to the reagent card strip 131, and the second graphic 222 corresponds to the sample tube 121;
[0127] For example, please refer to Figure 7 The number of first graphics 221 corresponds to the number of reagent card strips 131, and the shape of the first graphics 221 is oblong, the number of second graphics 222 corresponds to the number of sample tubes 121, and the second graphics 222 are circular. For example, in the first channel bitmap 220 of the first channel style, the number of first graphics 221 is two, and the number of second graphics 222 is one.
[0128] S220, in response to the sixth operation instruction, determining the selected second graphic 222 as the first target object, and displaying a fifth interaction interface, wherein the fifth interaction interface displays a first operation control and at least one experiment item configuration control 240;
[0129] Exemplarily, the sixth operation instruction may be an operation instruction such as clicking, double-clicking or long pressing. For example, clicking one of the second graphics 222 will determine the selected second graphic 222 as the first target object, and display the experimental project configuration interface associated with the first target object, that is, the fifth interactive interface. The fifth interactive interface can be displayed in a local area of the current interface, or it can be another interface different from the current interactive interface.
[0130] S230: In response to a seventh operation instruction on the first operation control, determining the location information of the target reagent card strip and first experimental project information, where the first experimental project information is obtained by scanning the target reagent card strip or manually entering the information;
[0131] In order to achieve compatibility between multi-dose reagents and single-dose reagents, this embodiment responds to the seventh operation instruction of the first operation control to determine the position of the target reagent card strip and the first experimental project information, so as to facilitate subsequent association of the information, wherein the first experimental project information determined based on the seventh operation instruction is configured to use single-dose reagents, that is, when performing the test, the corresponding reagent is drawn according to the position of the target reagent card strip. Among them, the first experimental project information can be one or more of PT, APTT, TT, FIB, FDP, DD or AT-III. Of course, depending on the data storage format, the first experimental project information can only include the identification of multiple experimental projects, such as PT, APTT, etc., or it can include the identification of multiple experimental projects and the corresponding reagent location information. The reagent location information is obtained by scanning the target reagent card strip or manually entering it. It can be selected according to the needs of different user habits or application scenarios, with high flexibility.
[0132] S240, in response to the eighth operation instruction, rendering at least one experimental project configuration control 240 into a mark form according to the first experimental project information, and determining the second experimental project information;
[0133] For example, the experimental project configuration control 240 is configured with a status mark, for example Figure 7 The lower right corner of the experimental project configuration control 240 marked with "PT" presents a check mark to render it into a marked form, or the color, shape, etc. of the experimental project configuration control 240 are changed, and the unmarked form is opposite to the marked form, for example, the check mark is cancelled to render it into an unmarked form. When a certain experimental project configuration control 240 is rendered into a marked state, it means that the experimental project corresponding to the experimental project configuration control 240 is a project that needs to be carried out, that is, the corresponding reagent needs to be used for detection. Among them, the eighth operation instruction can be an operation instruction for a certain operation control, for example, after determining the first experimental project information, click the "Save" control, so as to render at least one experimental project configuration control 240 according to the first experimental project information; the eighth operation instruction can also be an operation instruction such as clicking, double-clicking, long pressing or sliding, for example, after determining the first experimental project information, click, double-clicking, long pressing or sliding in the designated area of the interactive interface. In the default state, the second experimental project information is the same as the first experimental project information.
[0134] S250 , in response to the ninth operation instruction, associating the position information of the first target object and the target reagent card strip with the second experimental item information.
[0135] The ninth operation instruction can be an operation instruction for a certain operation control, or an operation instruction such as clicking, double-clicking, long pressing or sliding, which will not be repeated here. The position information of the first target object and the target reagent card strip is associated with the second experimental project information. When the sample corresponding to the first target object is tested, the reagent to be used is determined according to the second experimental project information, and the position of the reagent is determined according to the position information of the target reagent card strip, so that the sample is associated with the single-portion reagent in the sample analyzer, so that the user can flexibly select the single-portion reagent on the sample analyzer to test the sample, without being limited to using multiple-portion reagents, thereby being compatible with multiple-portion reagents and single-portion reagents.
[0136] In the process of achieving compatibility between multi-portion reagents and single-portion reagents, the problem of loading and entering reagent card strips needs to be solved. In this embodiment, by operating the second graphic 222 corresponding to the sample tube 121, the relevant controls for registering the experimental project corresponding to the sample tube 121 can be displayed, and based on the manipulation of the first operation control and the experimental project configuration control 240 and other related controls, the loading and information entry of the reagent card strip 131 and the registration of the sample experimental project of the sample tube 121 are realized, so as to associate the sample experimental project of the sample tube 121 with the reagent of the reagent card strip 131, and achieve the loading and information entry of the reagent card strip and the matching of samples and reagents in the process of compatibility between multi-portion reagents and single-portion reagents.
[0137] In some application examples, step S210, displaying the second interactive interface, includes:
[0138] S211, displaying a second interactive interface, wherein the second interactive interface displays at least one first channel bitmap 220, wherein the at least one first channel bitmap 220 is displayed as a first channel style, and the first channel style is configured with at least one first graphic 221 and at least one second graphic 222;
[0139] For example, please refer to Figure 7 When the reagent cartridge loading rack 130 is installed in the loading channel 110, the first channel bitmap 220 corresponding to the loading channel 110 is displayed as the first channel style, as shown in the two first channel bitmaps 220 on the left. Of course, the four first channel bitmaps 220 shown in the figure can all be displayed as the first channel style. The first channel style is configured with a first graphic 221 and a second graphic 222. The number of first graphics 221 and second graphics 222 can be one or more. In the figure, each first channel bitmap 220 shows two first graphics 221 and one second graphic 222. The sixth operation instruction in step S220 can be for any one of the multiple second graphics 222. Of course, if there is only one second graphic 222, the target object of the sixth operation instruction can be determined without doubt.
[0140] In some other application examples, step S210, displaying the second interactive interface, includes:
[0141] S212. Display a second interactive interface, wherein the second interactive interface displays at least one first channel bitmap 220, at least one first channel bitmap 220 displayed as a first channel style, and at least one first channel bitmap 220 displayed as a second channel style, wherein the first channel style is configured with at least one first graphic 221, and the second channel style is configured with at least one second graphic 222.
[0142] For example, please refer to Figure 7 The number of loading channels 110 can be multiple, for example, four. The four loading channels 110 can be equipped with sample tube loading racks 120 or reagent cartridge loading racks 130. When a reagent cartridge loading rack 130 is installed in one of the loading channels 110, the first channel bitmap 220 corresponding to the loading channel 110 is displayed as a first channel style, as shown in the two first channel bitmaps 220 on the left. However, the first channel bitmap 220 on the left may not be configured with a second graphic 222. When a sample tube loading rack 120 is installed in one of the loading channels 110, the first channel bitmap 220 corresponding to the loading channel 110 is displayed as a second channel style, as shown in the two first channel bitmaps 220 on the right. The number of second graphics 222 in the second channel style is the same as the number of sample tubes 121 that can be placed on the sample tube loading rack 120. In this case, the second graphic 222 in step S220 can be the second graphic 222 in the first channel style or the second graphic 222 in the second channel style. That is, the same operation can be performed on the second graphic 222 corresponding to any sample tube 121.
[0143] In some application scenarios, the second interactive interface includes a first partition and a second partition, and the first channel bitmap 220 is displayed in the first partition. In step S220, in response to the sixth operation instruction, the selected second graphic 222 is determined as the first target object, and a fifth interactive interface is displayed, including:
[0144] S221 . In response to a sixth operation instruction, determine the selected second graphic 222 as a first target object, and display a fifth interaction interface in the second partition.
[0145] For example, in an application scenario where the screen window size is limited, the first channel bitmap 220 is displayed in the first partition of the second interactive interface, and the fifth interactive interface is displayed in the second partition of the second interactive interface. The first channel bitmap 220 and the fifth interactive interface can be displayed in the current window at the same time, which is convenient for users to view and operate different partitions, thereby improving user experience.
[0146] After the channel type of the target channel is configured, the reagent information of the reagent card strip 131 of the target channel may be associated, that is, the reagent information may be automatically entered by loading the reagent card strip 131 or manually entered.
[0147] Please refer to Figure 7 and Figure 8 In some application examples, the first operation control is a loading card strip control 231. Step S230, in response to the seventh operation instruction on the first operation control, determines the location information of the target reagent card strip and the first experimental item information, including:
[0148] S231, in response to the seventh operation instruction on the loading card strip control 231, displaying a third interactive interface, wherein the third interactive interface displays at least one second channel bitmap 251, the second channel bitmap 251 is configured with at least one third graphic 252, and the third graphic 252 corresponds to the reagent card strip 131;
[0149] S232, in response to the tenth operation instruction, determining at least one selected third graphic 252 to obtain position information of a target reagent card strip;
[0150] S233: In response to a code scanning operation on the target reagent card strip, first experimental project information obtained based on the code scanning operation is acquired.
[0151] Wherein, the 3rd interactive interface can be presented at the local area of current interface, or, the 3rd interactive interface is other interfaces that are different from current interface.Exemplary, the second channel bitmap 251 is configured with at least one 3rd figure 252, and the shape of the 3rd figure 252 can be identical with the first figure 221, for example, all be oblong.Certainly, in some application examples, the second channel bitmap 251 can also be configured with the second figure 222 corresponding with sample tube 121.The function of the second channel bitmap 251 is to provide the user with the optional position of the reagent card strip 131 that needs to be associated, in order to avoid the user from performing misoperation, according to the first sequence number set, all available parts in the second channel bitmap 251 are rendered into optional form, wherein the first sequence number set can be determined according to the channel type of all first channel bitmaps 220, for example, the sequence number of the first channel bitmap 220 that channel type is first type is added the first sequence number set.Suppose that the second channel bitmap 251 is configured with two 3rd figures 252, i.e., the reagent card strip loading rack 130 is provided with two reagent card strip installation positions, and the user can select any reagent card strip installation position to associate as needed. For example, in response to the tenth operation instruction, one of the third graphics 252 is selected, and the position information of the target reagent card strip is determined based on information such as the position or serial number of the selected third graphic 252. The tenth operation instruction can be an operation instruction such as clicking, double-clicking, or long pressing on the third graphic 252. The user then installs the reagent card strip 131 into the corresponding position of the reagent card strip loading rack 130 of the corresponding loading channel 110 and scans the reagent card strip 131. This automatically enters the relevant information of the reagent card strip 131 and completes the association of the position information of the reagent card strip 131, so as to facilitate the positioning of the reagent on the reagent card strip 131 during subsequent sample testing. For example, if the reagent card strip 131 is configured with PT reagent, the reagent card strip 131 is located in the loading channel 110 with serial number 1 and is installed in the installation position with serial number 2 of the reagent card strip loading rack 130. In this way, a single dose of PT reagent can be positioned. Of course, the reagent card strip 131 can be configured with multiple reagents, such as PT reagent, APTT reagent, etc., and the positions of different reagents can be numbered to identify the positions of different reagents. When the user needs to load multiple reagent cards, they can enter them by repeating the above operation. The installation order of multiple reagent cards can also be determined according to the order determined by the third graphics 252 in step S232. For example, the user first clicks the third graphics 252 with sequence number 1, and then clicks the third graphics 252 with sequence number 2, to indicate that two reagent cards are to be installed in sequence in the installation positions with sequence numbers 1 and 2, thereby facilitating the entry and installation of multiple reagent cards.
[0152] Please refer to Figure 7 and Figure 9In other application examples, the first operation control is a manual card entry control 232. Step S230, in response to a seventh operation instruction on the first operation control, determines the location information of the target reagent card and the first experimental project information, including:
[0153] S234: In response to the seventh operation instruction on the manual entry card strip control 232, a fourth interactive interface is displayed, wherein the fourth interactive interface displays at least one third channel bitmap 261 and a plurality of experimental project options 263. The third channel bitmap 261 is configured with at least one fourth graphic 262, and the fourth graphic 262 corresponds to the reagent card strip 131.
[0154] S235, in response to the eleventh operation instruction, determining the selected fourth graphic 262 to obtain the position information of the target reagent card strip;
[0155] S236 . In response to the twelfth operation instruction, determine the selected experiment project option 263 to obtain first experiment project information.
[0156] Exemplarily, similar to the third interactive interface, the fourth interactive interface is displayed in a local area of the current interface, or it may be another interface different from the current interface. The function and shape of the third channel bitmap 261 are similar to those of the second channel bitmap 251, and will not be described in detail here. In some application scenarios, such as when a code scanning device is not configured or the code scanning device is malfunctioning, the user can manually enter the information of the reagent card strip 131, for example, by entering the relevant information of the reagent card strip 131, i.e., the first experimental project information, through the twelfth operation instruction for the multiple experimental project options 263 in the fourth interactive interface. The eleventh operation instruction and the tenth operation instruction achieve the same effect, and will not be described in detail here. It should be noted that step S235 and step S236 do not limit the execution order during the execution process. A batch number entry control is also displayed in the fourth interactive interface, and the batch number information of the reagent card strip is entered through the batch number entry control, thereby adding the batch number information to the first experimental project information, for example Figure 8 The batch number of the PT reagent shown is "2022032201", and the batch number of the APTT reagent is "2022032202".
[0157] Step S240, in response to the eighth operation instruction, renders at least one experimental project configuration control 240 into a mark form according to the first experimental project information, determines the second experimental project information, and then further includes:
[0158] S241, determining a second target object in the first graphic 221 according to the position information of the target reagent card strip;
[0159] S242: Render the second target object into a third form.
[0160] For example, please refer to Figure 7 The position information of the target reagent card strip can be determined through step S232 or step S235. The first channel bitmap 220 can be one or more. In the first channel style, each first channel bitmap 220 is configured with one or more first graphics 221 corresponding to the reagent card strip 131. According to the position information of the target reagent card strip, the second target object in the one or more first graphics 221 is determined, and the second target object is rendered in the third form, so that the user can intuitively understand the installation position of the target reagent card strip and related reagent information.
[0161] Exemplarily, step S242, rendering the second target object into the third form, includes at least one of the following:
[0162] S2421, rendering the second target object into a preset color;
[0163] Alternatively, S2422 , mark information corresponding to the second experimental item information is displayed on the second target object.
[0164] For example, the second target object is rendered in a blue background, and the abbreviation of the reagent is displayed on the second target object as label information, such as PT, APTT, TT, FIB, etc.
[0165] Step S240, in response to the eighth operation instruction, rendering at least one experimental project configuration control 240 into a mark form according to the first experimental project information, and determining the second experimental project information, and then further comprising:
[0166] S243 , in response to the thirteenth operation instruction on the experiment project configuration control 240 , rendering the selected experiment project configuration control 240 into a marked form or an unmarked form, and determining the second experiment project information.
[0167] For example, as described above, in the default state, the second experimental project information is the same as the first experimental project information. In order to further improve the flexibility of sample experimental project registration, the experimental project configuration control 240 can be operated to check or uncheck the corresponding experimental project. For example, please continue to refer to Figure 7, the first experimental project information includes three items: PT, APTT, and TT, that is, PT reagent, APTT reagent, and TT reagent are required for sample analysis. The user can manually choose to cancel or add experimental projects, for example, clicking the experimental project configuration control 240 corresponding to PT, rendering the experimental project control from a marked form to an unmarked form to cancel the PT experimental project; for example, clicking the experimental project configuration control 240 corresponding to FIB, rendering the experimental project control from an unmarked form to a marked form to add a FIB experimental project. When the reagent corresponding to the selected experimental project is not a single-portion reagent, the reagent type is determined to be a multi-portion reagent (see the content of the third experimental project information below). In this way, a more flexible reagent selection method can be provided to the user, so as to be compatible with multi-portion reagents and single-portion reagents in sample analysis.
[0168] In some application examples, a dilution ratio configuration control is further displayed on the fifth interactive interface. In step S240, in response to the eighth operation instruction, at least one experimental project configuration control is rendered into a mark form according to the first experimental project information, and the second experimental project information is determined. The following steps are then included:
[0169] S243. In response to the operation instruction for the dilution ratio configuration control, determine the dilution ratio corresponding to each experimental item.
[0170] For example, the number of dilution ratio configuration controls is the same as the number of experimental project configuration controls, so that the dilution ratio of the reagent used in each experimental project can be configured separately, for example, Figure 7 As shown, the dilution ratio configuration control is implemented in the form of a drop-down list. By selecting an option in the drop-down list, the dilution ratio of the reagent is configured. The dilution ratio can be 1:1, 1:2, 1:3, or 1:4, etc. Of course, in some application examples, the number of dilution ratio configuration controls can be one, which is used to uniformly configure the dilution ratios of all experimental items. For example, in some application examples, each experimental item is configured with a corresponding dilution ratio configuration control, and a dilution ratio configuration control is provided for uniformly configuring all experimental items.
[0171] Step S250, in response to the ninth operation instruction, associating the position information of the first target object and the target reagent card with the second experimental item information, including:
[0172] S251, determining third experimental project information based on the first experimental project information and the second experimental project information, where the third experimental project information is used to represent experimental project information not included in the first experimental project information;
[0173] S252: In response to the ninth operation instruction, associate the position information of the first target object and the target reagent card with the second experiment item information, and associate the first target object with the third experiment item information.
[0174] Exemplarily, in order to better make multi-portion reagents and single-portion reagents compatible on the sample analyzer, the first experimental project information obtained based on the relevant operation of the first operating control is directly related to the target reagent card strip. Therefore, the reagent required to be used in the experimental project corresponding to the first experimental project information is defaulted to a single-portion reagent, and the experimental project information not included in the first experimental project information, that is, the third experimental project information, is defaulted to a multi-portion reagent, that is, the corresponding reagent needs to be drawn from the reagent bottle. In this way, by associating the position information of the first target object and the target reagent card strip with the second experimental project information, it is possible to determine which experimental projects require the use of single-portion reagents and the storage location of the single-portion reagents. By associating the first target object and the third experimental project information, it is possible to determine which experimental projects require the use of multi-portion reagents, and the reagent information of the multi-portion reagents can be located by methods such as table lookup, which will not be explained in detail here. In this way, single-portion reagents and multi-portion reagents can be distinguished, thereby making single-portion reagents and multi-portion reagents compatible on the sample analyzer.
[0175] Please refer to Figure 11 In some application examples, the second interactive interface includes a first partition and a second partition, and the first channel bitmap 220 is displayed in the first partition. Step S250, in response to the ninth operation instruction, associates the position information of the first target object and the target reagent card strip with the second experimental project information, further comprising:
[0176] S260 , closing the fifth interactive interface, and displaying the sample analysis item 270 associated with the first target object in the second partition.
[0177] The sample analyzer can register sample experiment items for one or more sample tubes 121. After sample experiment item registration is complete, the sample analysis items 270 associated with the first target object can be displayed and sample analysis can be performed. By setting up a first partition and a second partition in the second interactive interface, the first channel bitmap 220 and the sample analysis items 270 can be displayed in the same interactive interface, making it easier for users to view and operate intuitively.
[0178] Please refer to Figure 14Based on the above-mentioned sample experiment project registration method, this embodiment further provides a sample analyzer, including a first display module 304, a fourth response module 305, a fifth response module 306, a sixth response module 307, and a seventh response module 308. The inventive concept of this sample analyzer is the same as the inventive concept of the above-mentioned sample experiment project registration method. For matters not involved in the embodiment, please refer to the above-mentioned sample experiment project registration method embodiment, and will not be repeated below.
[0179] A first display module 304 is used to display a second interactive interface, where the second interactive interface displays at least one first graphic 221 and at least one second graphic 222 , where the first graphic 221 corresponds to the reagent card strip 131 , and the second graphic 222 corresponds to the sample tube 121 ;
[0180] The fourth response module 305 is configured to, in response to the sixth operation instruction, determine the selected second graphic 222 as the first target object and display a fifth interaction interface, wherein the fifth interaction interface displays the first operation control and at least one experiment item configuration control 240;
[0181] A fifth response module 306 is configured to determine, in response to a seventh operation instruction on the first operation control, location information of the target reagent card strip and first experimental project information, where the first experimental project information is obtained by scanning the target reagent card strip or manually entering the information;
[0182] The sixth response module 307 is configured to respond to the eighth operation instruction, render at least one experiment project configuration control 240 into a mark form according to the first experiment project information, and determine the second experiment project information;
[0183] The seventh response module 308 is configured to associate the position information of the first target object and the target reagent card with the second experiment item information in response to the ninth operation instruction.
[0184] By operating the second graphic 222 corresponding to the sample tube 121, the relevant controls for registering the experimental project corresponding to the sample tube 121 can be displayed, and based on the manipulation of the first operation control and the experimental project configuration control 240 and other relevant controls, the loading and information entry of the reagent card strip 131 and the registration of the sample experimental project of the sample tube 121 are realized, so as to associate the sample experimental project of the sample tube 121 with the reagent of the reagent card strip 131, thereby being compatible with multi-person reagents and single-person reagents.
[0185] Please refer to Figure 12, this embodiment also provides a sample experiment item registration method, including steps S310 to S350, for realizing the registration of sample experiment items in the process of being compatible with multi-person reagents and single-person reagents, so as to judge whether to absorb multi-person reagents or single-person reagents when performing sample analysis. It should be noted that the present sample experiment item registration method embodiment is basically the same as the inventive concept of the above-mentioned sample experiment item registration method embodiment. In order to avoid redundancy, the content not involved in the present sample experiment item registration method embodiment can refer to the above-mentioned sample experiment item registration method embodiment. The steps of this embodiment are numbered only to facilitate review and understanding, and do not limit the execution order of the steps. In actual application, adaptive adjustments can be made according to the logical relationship between the steps. The contents of each step are described in detail below:
[0186] S310, displaying a second interactive interface, wherein the second interactive interface displays at least one first graphic 221 and at least one second graphic 222, wherein the first graphic 221 corresponds to the reagent card strip 131, and the second graphic 222 corresponds to the sample tube 121;
[0187] S320: In response to the fourteenth operation instruction, the selected first graphic 221 is determined as the third target object, and the first experimental project information and the location information of the target reagent card strip are determined, where the first experimental project information is obtained by scanning the target reagent card strip or manually entering the information;
[0188] S330, in response to the fifteenth operation instruction, determining the selected second graphic 222 as the first target object, and displaying a fifth interactive interface, wherein the fifth interactive interface displays at least one experimental project configuration control 240;
[0189] S340, rendering at least one experiment project configuration control 240 into a marked state according to the first experiment project information, and determining the second experiment project information;
[0190] S350 , in response to the sixteenth operation instruction, associating the position information of the first target object and the target reagent card strip with the second experimental item information.
[0191] Please refer to Figure 11, which is different from steps S210 to S250, the first experimental project information corresponding to the target reagent card strip is determined in step S320 before step S330, and the first operation control is omitted in the fifth interactive interface, which simplifies the user operation to a certain extent. In step S320, operating the first graphic 221 can trigger different functions. For example, clicking the first graphic 221 can determine the selected first graphic 221 as the third target object, and determine the position information of the target reagent card strip, and then automatically enter the relevant information of the reagent card strip by scanning the code, thereby determining the first experimental project information; for example, long pressing the first graphic 221 can determine the selected first graphic 221 as the third target object, and determine the position information of the target reagent card strip, and then display the following. Figure 8 The fourth interactive interface shown is used to manually enter the relevant information of the reagent card strip. Of course, in some application examples, the fourth interactive interface can omit the third channel bitmap 261, thereby becoming the sixth interactive interface.
[0192] Step S310: Displaying a second interactive interface, including:
[0193] S311, displaying a second interactive interface, wherein the second interactive interface displays at least one first channel bitmap 220, wherein the at least one first channel bitmap 220 is displayed as a first channel style, and the first channel style is configured with at least one first graphic 221 and at least one second graphic 222;
[0194] For example, please refer to Figure 11 When the reagent cartridge loading rack 130 is installed in the loading channel 110, the first channel bitmap 220 corresponding to the loading channel 110 is displayed in the first channel style, as shown in the two first channel bitmaps 220 on the left. Of course, when all loading channels 110 are installed with the reagent cartridge loading rack 130, the four first channel bitmaps 220 shown in the figure can all be displayed in the first channel style. The first channel style is configured with a first graphic 221 and a second graphic 222. The number of first graphics 221 and second graphics 222 can be one or more. In the figure, each first channel bitmap 220 shows two first graphics 221 and one second graphic 222. The sixth operation instruction in step S220 can be directed to any one of the multiple second graphics 222. Of course, if there is only one second graphic 222, the target object of the sixth operation instruction can be determined without doubt.
[0195] Alternatively, S312, a second interactive interface is displayed, wherein the second interactive interface displays at least one first channel bitmap 220, at least one first channel bitmap 220 is displayed as a first channel style, and at least one first channel bitmap 220 is displayed as a second channel style, the first channel style is configured with at least one first graphic 221, and the second channel style is configured with at least one second graphic 222.
[0196] For example, please refer to Figure 11 The number of loading channels 110 can be multiple, for example, four. The four loading channels 110 can be equipped with sample tube loading racks 120 or reagent cartridge loading racks 130. When a reagent cartridge loading rack 130 is installed in one of the loading channels 110, the first channel bitmap 220 corresponding to the loading channel 110 is displayed as a first channel style, as shown in the two first channel bitmaps 220 on the left. However, the first channel bitmap 220 on the left may not be configured with a second graphic 222. When a sample tube loading rack 120 is installed in one of the loading channels 110, the first channel bitmap 220 corresponding to the loading channel 110 is displayed as a second channel style, as shown in the two first channel bitmaps 220 on the right. The number of second graphics 222 in the second channel style is the same as the number of sample tubes 121 that can be placed on the sample tube loading rack 120. In this case, the second graphic 222 in step S220 can be the second graphic 222 in the first channel style or the second graphic 222 in the second channel style. That is, the same operation can be performed on the second graphic 222 corresponding to any sample tube 121.
[0197] Step S350: In response to the sixteenth operation instruction, the position information of the first target object and the target reagent card strip is associated with the second experimental item information, which also includes:
[0198] S341 , in response to the seventeenth operation instruction on the experiment project configuration control 240 , rendering the selected experiment project configuration control 240 into a marked state or an unmarked state, and determining second experiment project information.
[0199] In order to further improve the flexibility of sample experiment project registration, the experiment project configuration control 240 can be operated to select or unselect the corresponding experiment project. The operation of the experiment project configuration control 240 is the same as the above step S243 and will not be repeated here.
[0200] Step S350, in response to the sixteenth operation instruction, associating the position information of the first target object and the target reagent card strip with the second experimental item information, including:
[0201] S351, determining third experimental project information based on the first experimental project information and the second experimental project information, where the third experimental project information is used to represent experimental project information not included in the first experimental project information;
[0202] S352: In response to the sixteenth operation instruction, associate the first target object, the position information of the target reagent card strip, and the second experiment item information, and associate the first target object with the third experiment item information.
[0203] Through the operations of steps S351 to S352, single-person reagents and multi-person reagents can be distinguished, so that single-person reagents and multi-person reagents are compatible on the sample analyzer. The principle is the same as that of steps S251 to S252 and will not be repeated here.
[0204] Please refer to Figure 15 Based on the above-mentioned sample experiment project registration method, this embodiment further provides a sample analyzer, including a second display module 309, an eighth response module 310, a ninth response module 311, a tenth response module 312, and an eleventh response module 313. The inventive concept of this sample analyzer is the same as the inventive concept of the above-mentioned sample experiment project registration method. For matters not involved in the embodiment, reference can be made to the above-mentioned sample experiment project registration method embodiment, and will not be repeated below.
[0205] A second display module 309 is used to display a second interactive interface, wherein the second interactive interface displays at least one first graphic 221 and at least one second graphic 222 , wherein the first graphic 221 corresponds to the reagent card strip 131 , and the second graphic 222 corresponds to the sample tube 121 ;
[0206] an eighth response module 310 for determining, in response to the fourteenth operation instruction, the selected first graphic 221 as the third target object, and determining first experimental project information and location information of a target reagent card strip, where the first experimental project information is obtained by scanning a code on the target reagent card strip or manually entering the information;
[0207] a ninth response module 311 for determining the selected second graphic 222 as the first target object in response to the fifteenth operation instruction, and displaying a fifth interaction interface, wherein the fifth interaction interface displays at least one experiment project configuration control 240;
[0208] A tenth response module 312 is configured to render at least one experiment project configuration control 240 into a marked state according to the first experiment project information, and determine the second experiment project information;
[0209] The eleventh responding module 313 is configured to associate the position information of the first target object and the target reagent card with the second experimental item information in response to the sixteenth operation instruction.
[0210] By operating the second graphic corresponding to the sample tube 121, the relevant controls for registering the experimental items corresponding to the sample tube 121 can be displayed, and based on the manipulation of the relevant controls, the loading and information entry of the reagent card strip 131 and the registration of the sample experimental items of the sample tube 121 are realized, so as to associate the sample experimental items of the sample tube with the reagents of the reagent card strip 131, and the loading and information entry of the reagent card strip and the matching of samples and reagents are realized in the process of realizing compatibility between multi-person reagents and single-person reagents.
[0211] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the knowledge of ordinary technicians in the relevant technical field without departing from the scope of the present invention.
Claims
1. A sample experimental project registration method, characterized in that: Applied to a sample analyzer, the sample analyzer comprises a sample compartment and a reagent storage module; the sample compartment is used to store sample tubes and reagent card strips; The reagent card strip is used to load a single dose of reagent; The reagent storage module is used to store reagent bottles; The reagent bottle is used to load multiple doses of reagent; the method comprises: Displaying a second interactive interface, wherein the second interactive interface displays at least one first graphic and at least one second graphic, wherein the first graphic corresponds to the reagent card strip, and the second graphic corresponds to the sample tube; In response to a sixth operation instruction, determining the selected second graphic as a first target object and displaying a fifth interactive interface, wherein the fifth interactive interface displays a first operation control and at least one experimental item configuration control, wherein the first target object corresponds to a sample to be detected; In response to a seventh operation instruction on the first operation control, determining location information of a target reagent card strip and first experimental item information, where the first experimental item information is obtained by scanning a code on the target reagent card strip or manually entering the information; In response to an eighth operation instruction, rendering at least one of the experiment project configuration controls into a mark form according to the first experiment project information, and determining second experiment project information; In response to a ninth operation instruction, the first target object, the position information of the target reagent card strip, and the second experimental item information are associated.
2. The sample experiment project registration method according to claim 1, characterized in that: The displaying of the second interactive interface includes: Displaying a second interactive interface, wherein the second interactive interface displays at least one first channel bitmap, wherein at least one first channel bitmap is displayed as a first channel style, and the first channel style is configured with at least one first graphic and at least one second graphic; Alternatively, a second interactive interface is displayed, wherein the second interactive interface displays at least one first channel bitmap, at least one first channel bitmap is displayed as the first channel style, and at least one first channel bitmap is displayed as the second channel style, the first channel style is configured with at least one first graphic, and the second channel style is configured with at least one second graphic.
3. The sample experiment project registration method according to claim 2, characterized in that: The second interactive interface includes a first partition and a second partition, the first channel bitmap is displayed in the first partition, and in response to the sixth operation instruction, the selected second graphic is determined as the first target object, and a fifth interactive interface is displayed, including: In response to a sixth operation instruction, the selected second graphic is determined as a first target object, and a fifth interaction interface is displayed in the second partition.
4. The sample experiment project registration method according to claim 1, characterized in that: The first operation control is a card strip loading control, and the step of determining the position information of the target reagent card strip and the first experimental item information in response to the seventh operation instruction of the first operation control includes: In response to a seventh operation instruction on the loading card strip control, a third interactive interface is displayed, wherein the third interactive interface displays at least one second channel bitmap, the second channel bitmap is configured with at least one third graphic, and the third graphic corresponds to the reagent card strip; In response to a tenth operation instruction, determining at least one selected third graphic to obtain position information of a target reagent card strip; In response to a code scanning operation on the target reagent card strip, first experimental item information obtained based on the code scanning operation is acquired.
5. The sample experiment project registration method according to claim 1, characterized in that: The first operation control is a manual card strip entry control, and the determining of the target reagent card strip position information and the first experimental item information in response to the seventh operation instruction of the first operation control includes: In response to a seventh operation instruction on the manual entry card strip control, a fourth interactive interface is displayed, wherein the fourth interactive interface displays at least one third channel bitmap and a plurality of experimental project options, the third channel bitmap is configured with at least one fourth graphic, and the fourth graphic corresponds to the reagent card strip; In response to the eleventh operation instruction, determining the selected fourth graphic to obtain position information of the target reagent card strip; In response to the twelfth operation instruction, the selected experimental project option is determined to obtain first experimental project information.
6. The sample experiment project registration method according to claim 1, characterized in that: In response to the eighth operation instruction, according to the first experimental project information, rendering at least one of the experimental project configuration controls into a mark form, and determining the second experimental project information, further comprising: determining a second target object in the first graphic according to the position information of the target reagent card strip; Rendering the second target object into a third form.
7. The sample experiment project registration method according to any one of claims 1 to 6, characterized in that: In response to the eighth operation instruction, according to the first experimental project information, rendering at least one of the experimental project configuration controls into a mark form, and determining the second experimental project information, further comprising: In response to a thirteenth operation instruction on the experiment project configuration control, rendering the selected experiment project configuration control into a marked form or an unmarked form, and determining second experiment project information; Alternatively, the fifth interactive interface further displays a dilution ratio configuration control, and in response to the eighth operation instruction, at least one of the experimental project configuration controls is rendered into a mark form according to the first experimental project information, and the second experimental project information is determined, and then the following further comprises: In response to the operation instruction of the dilution ratio configuration control, the dilution ratio corresponding to each experimental item is determined.
8. The sample experiment project registration method according to any one of claims 1 to 6, characterized in that: In response to the ninth operation instruction, associating the first target object, the position information of the target reagent card strip, and the second experimental item information includes: determining third experimental project information according to the first experimental project information and the second experimental project information, wherein the third experimental project information is used to represent experimental project information not included in the first experimental project information; In response to a ninth operation instruction, the first target object, the position information of the target reagent card strip, and the second experimental item information are associated, and the first target object and the third experimental item information are associated.
9. The sample experiment project registration method according to claim 2 or 3, characterized in that: The second interactive interface includes a first partition and a second partition, the first channel bitmap is displayed in the first partition, and in response to the ninth operation instruction, the first target object, the position information of the target reagent card strip, and the second experimental item information are associated, further comprising: The fifth interactive interface is closed, and the sample analysis items associated with the first target object are displayed in the second partition.
10. A sample experiment project registration method, characterized in that: Applied to a sample analyzer, the sample analyzer comprises a sample compartment and a reagent storage module; the sample compartment is used to store sample tubes and reagent card strips; The reagent card strip is used to load a single dose of reagent; The reagent storage module is used to store reagent bottles; The reagent bottle is used to load multiple doses of reagent; the method comprises: Displaying a second interactive interface, wherein the second interactive interface displays at least one first graphic and at least one second graphic, wherein the first graphic corresponds to the reagent card strip, and the second graphic corresponds to the sample tube; In response to a fourteenth operation instruction, the selected first graphic is determined as a third target object, and first experimental project information and location information of a target reagent card strip are determined, where the first experimental project information is obtained by scanning a code on the target reagent card strip or manually entering the information; In response to a fifteenth operation instruction, the selected second graphic is determined as a first target object, and a fifth interactive interface is displayed, wherein the fifth interactive interface displays at least one experimental item configuration control, and the first target object corresponds to a sample to be detected; According to the first experimental project information, rendering at least one of the experimental project configuration controls into a marked state, and determining second experimental project information; In response to the sixteenth operation instruction, the first target object, the position information of the target reagent card strip, and the second experimental item information are associated.