Experiment information display method and device

By dividing areas in one interface to display experimental batches, results and process information, the problems of inefficiency and difficulty in detecting abnormalities in the prior art are solved, and efficient and convenient inspection of experimental information and abnormal detection are achieved.

CN120407056APending Publication Date: 2025-08-01SHENZHEN NEW INDS BIOMEDICAL ENG CO LTD
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Patent Information

Application Number
CN202410153030.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-31
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

In the prior art, users are inefficient when reviewing the experimental results of multiple testing items, cumbersome operations, and cannot detect abnormalities in experimental detection in time, which may have adverse effects on the detection results.

Method used

Provide a method and device for displaying experimental information. By dividing it into a first area, a second area and a third area in an interface, the first area is used to display candidate experimental batches, the second area displays experimental result information, and the third area displays experimental process information, so as to realize the linkage display of different regions. Users can efficiently, conveniently and intuitively review the experimental information in one interface, and discover abnormalities in a timely manner by displaying experimental process information.

Benefits of technology

It realizes efficient, convenient and intuitive review of experimental information, and can promptly detect experimental abnormalities, improve the reliability of results, and avoid adverse effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an experiment information display method and device, a computer readable storage medium, a control terminal and a sample analysis system.The method comprises the steps that an experiment information management interface is displayed, the interface comprises a first area, a second area and a third area, a target experiment batch is determined on the basis of selection operation on candidate experiment batches in the first area, and the target experiment batch is sent to the control terminal; experimental result information corresponding to the target experimental batch is displayed in the second area, and experimental process information corresponding to the target experimental batch is displayed in the third area. According to the scheme, a user can be helped to efficiently, conveniently, visually and comprehensively look up experiment information, experiment detection abnormity can be found in time, and adverse effects are avoided.
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Description

Technical Field

[0001] The present application relates to the field of computer technologies, and in particular, to a method and device for displaying experimental information, a computer-readable storage medium, a control terminal, and a sample analysis system. Background Art

[0002] In vitro diagnosis refers to the detection and analysis of biological samples through experimental methods outside the organism. Sample analysis usually involves a sample analysis instrument and a control terminal. The control terminal is responsible for information management and experimental control, and the sample analysis instrument is responsible for performing experimental operations.

[0003] After the sample analysis instrument performs an experimental operation, it sends the obtained experimental detection data to the control terminal. The control terminal performs analysis and processing to obtain an experimental result and provides it to the user. Specifically, the control terminal generates a local file for each detection item respectively. After opening the file, multiple sub-pages will be generated to display the relevant experimental results. When the user needs to know the experimental result of a certain detection item, they need to first find the corresponding file from multiple files, then open the file, and then locate the corresponding sub-page for viewing.

[0004] However, in the prior art, when the user needs to know the experimental results of multiple detection items, they need to perform operations such as searching, opening, locating, and switching multiple times. The efficiency, convenience, and intuitiveness of information viewing are all relatively low. Moreover, the prior art cannot help the user to detect experimental detection anomalies in time, which may have an adverse impact on experimental detection. Summary of the Invention

[0005] Based on this, it is necessary to provide a method and device for displaying experimental information, a computer-readable storage medium, a control terminal, and a sample analysis system to solve the technical problems in the prior art that the efficiency, convenience, and intuitiveness of information viewing are all relatively low, and it cannot help the user to detect experimental detection anomalies in time, thereby having an adverse impact on experimental detection.

[0006] A method for displaying experimental information includes:

[0007] Display an experimental information management interface; wherein, the experimental information management interface includes a first area, a second area, and a third area;

[0008] Based on a selection operation on a candidate experimental batch in the first area, determine a target experimental batch;

[0009] Display the experimental result information corresponding to the target experimental batch in the second area, and display the experimental process information corresponding to the target experimental batch in the third area.

[0010] An apparatus for displaying experimental information includes:

[0011] An interface display module, configured to display an experimental information management interface; wherein the experimental information management interface includes a first area, a second area, and a third area;

[0012] a target batch determining module, configured to determine a target experimental batch based on a selection operation of candidate experimental batches in the first area;

[0013] The information display module is configured to display the experimental result information corresponding to the target experimental batch in the second area, and to display the experimental process information corresponding to the target experimental batch in the third area.

[0014] A computer-readable storage medium stores a computer program, which, when executed by a processor, causes the processor to perform the steps of the method described above.

[0015] A control terminal includes a memory and a processor, wherein the memory stores a computer program, and when the computer program is executed by the processor, the processor executes the method described above.

[0016] A sample analysis system includes a sample analysis instrument and the control terminal as described above, wherein the sample analysis instrument is in communication connection with the control terminal.

[0017] The above-mentioned experimental information display method, device, computer-readable storage medium, control terminal and sample analysis system display an experimental information management interface, which includes a first area, a second area and a third area. Based on the selection operation of the candidate experimental batch in the first area, the target experimental batch is determined, and then the experimental result information corresponding to the target experimental batch is displayed in the second area, and the experimental process information corresponding to the target experimental batch is displayed in the third area. In this way, an experimental information management interface is set up, and multiple areas are divided into one interface. The user selects the candidate experimental batch as needed in the first area, and can view the corresponding experimental result information and experimental process information in the second area and the third area. The information related to the experimental batch, experimental result, and experimental process is displayed in a centralized and hierarchical manner in one interface, and the linkage display of different areas is realized, which can help users to efficiently, conveniently, intuitively and comprehensively access experimental information. Moreover, due to the addition of the display of experimental process information, it can help users observe whether the entire experimental process meets expectations, further analyze the reliability of the results, and thus promptly discover abnormalities in experimental detection and avoid adverse effects. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 A diagram showing an application environment of a method for displaying experimental information in one embodiment;

[0019] Figure 2Schematic flowchart of the method for displaying experimental information in an embodiment;

[0020] Figure 3 Schematic diagram of the interface layout of the experimental information management interface in an embodiment;

[0021] Figure 4 Schematic diagram for displaying validity information and paraphrase information in an embodiment;

[0022] Figure 5 Schematic diagram of the fourth area in the experimental information management interface in an embodiment;

[0023] Figure 6 Schematic diagram of the detailed information viewing window in an embodiment;

[0024] Figure 7 Schematic diagram of the analysis option setting window in an embodiment;

[0025] Figure 8 Schematic diagram for displaying relevant experimental information corresponding to the experimental stage to be displayed in an embodiment;

[0026] Figure 9 Schematic diagram for the control software to display the experimental information management interface in an example;

[0027] Figure 10 Block diagram of the structure of the experimental information display device in an embodiment;

[0028] Figure 11 Block diagram of the structure of the control terminal in an embodiment. Detailed implementation manners

[0029] Regarding the terms used in this application, the terms "include", "comprise", "have", "show", and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units does not necessarily have to be limited to the clearly listed steps or units, but may also include other steps or units that are not clearly listed or are inherent to these processes, methods, products, or devices. The terms "a plurality", "multiple", and any variations thereof mean at least two, unless otherwise specifically and clearly defined; the terms "first", "second", etc. are used to make a naming distinction for similar objects, but these objects themselves are not limited by these terms and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity, specific order, or primary-secondary relationship of the indicated technical features, etc.

[0030] For the convenience of understanding the technical implementation of this application, the application fields and application environments of this application are described in detail:

[0031] This application can be applied to the field of in vitro diagnosis, and the sub-field is, for example, nucleic acid detection. The application environment can be as Figure 1 shown, including a control terminal 110 and a sample analysis instrument 120. The control terminal 110 is installed with control software, and the control terminal 110 and the sample analysis instrument 120 are communicatively connected.

[0032] Specifically, the control software in the control terminal 110 divides the test samples into experimental batches. Furthermore, under the control of the control software, the sample analysis instrument 120 performs corresponding experimental operations for each experimental batch, obtains experimental detection data, and sends it to the control software. Correspondingly, the control software analyzes and processes the received experimental detection data, obtains relevant experimental information such as the experimental process information and experimental result information of each experimental batch, and provides an experimental information management interface for the user to view information and perform interactive operations. Specifically, the experimental information management interface includes a first area, a second area, and a third area. The user can select the candidate experimental batches in the first area, and the control software thereby determines the target experimental batch. Furthermore, the experimental result information corresponding to the target experimental batch is displayed in the second area, and the experimental process information corresponding to the target experimental batch is displayed in the third area.

[0033] Among them, the control terminal 110 can be but is not limited to various desktop computers, laptop computers, tablet computers, Internet of Things devices, and smart phones. The sample analysis instrument 120 is an in vitro diagnostic instrument, and specifically can be a PCR instrument, such as a PCR integrated machine or a PCR single machine.

[0034] For ease of understanding, the sample analysis instrument 120 is introduced by taking a PCR integrated machine as an example. The PCR integrated machine is also called a nucleic acid integrated machine, which is a type of PCR instrument. Among them, PCR is the abbreviation of Polymerase chain reaction. The PCR integrated machine includes a reagent configuration module, a nucleic acid extraction module, and a nucleic acid amplification module. The reagent configuration module is used to complete the tasks of configuring the extraction plate and the amplification plate, that is, using the extraction reagent to configure the extraction plate and using the amplification reagent to configure the amplification plate. The nucleic acid extraction module is used to complete tasks such as sample loading, nucleic acid extraction, and nucleic acid transfer, that is, collecting samples from the sample tube and adding them to the extraction plate, then performing nucleic acid extraction on the samples in the extraction plate, and transferring the extracted nucleic acid to the amplification plate. The nucleic acid amplification module is used to amplify the nucleic acid in the amplification plate by using the PCR technology to obtain PCR detection data.

[0035] The following further describes the present application in detail with reference to the accompanying drawings and embodiments. It should be noted that the following takes the method provided by the present application as being applied to Figure 1 the control terminal in as an example for illustration, but this is only an exemplary illustration and is not limited to the method being executed only by the control terminal.

[0036] In one embodiment, as Figure 2 shown, a method for displaying experimental information is provided, and the method may include the following steps S202 to S206.

[0037] S202, display an experimental information management interface.

[0038] The experimental information management interface is an interactive interface of the control software for displaying relevant experimental information. Specifically, the experimental information management interface includes a first area, a second area, and a third area. The first area is used to display candidate experimental batches, the second area is used to display experimental result information, and the third area is used to display experimental process information.

[0039] There can be various implementation manners for the interface design of the experimental information management interface. Display features such as the shapes, sizes, and position distributions of the first area, the second area, and the third area can be flexibly set according to requirements as long as the functional requirements can be met. For example, as Figure 3 shown, a first area 301 is provided on the left side in the experimental information management interface 300, a second area 302 and a third area 303 are provided on the right side, and the second area 302 is located above the third area 303. Among them, the first area 301 is a vertical rectangle, and the second area 302 and the third area 303 are horizontal rectangles. In this way, the visual appearance of the experimental information management interface is simple and the page logic is clear, which can effectively guide the user to quickly find the experimental information that needs to be concerned.

[0040] In addition, there can also be various ways to trigger the display of the experimental information management interface. For example, the user clicks a specific function button to trigger it, or the user performs a predetermined gesture operation to trigger it, and so on.

[0041] S204, based on the selection operation of the candidate experimental batches in the first area, determine the target experimental batch.

[0042] An experimental batch is the smallest experimental unit when the batch sample analysis instrument conducts experimental detections. For example, for a PCR all-in-one machine, the most representative is a PCR experimental detection with 96 wells as one experimental batch. In practical applications, the control software can divide the experimental batches, and the specific division method can adopt any applicable method in the art. For example, the control software divides the experimental batches based on the sample types and experimental items of the samples to be tested, and requires that the samples to be tested in the same experimental batch have the same sample types and experimental items.

[0043] The candidate experimental batches are the experimental batches that need to be displayed in the first area for the user to select. There can be one or more candidate experimental batches.

[0044] Specifically, there can be multiple ways to determine candidate experimental batches. For example, it can be pre-set in the control software, and all the experimental batches already generated in the control software are directly used as candidate experimental batches. Another example is that the candidate experimental batches can also be determined based on user operations. Specifically, the user selects the experimental batches that meet the conditions from all the experimental batches already generated in the control software as candidate experimental batches.

[0045] There can also be multiple ways to display candidate experimental batches. For example, the candidate experimental batches can be displayed in a list in the first area. The list includes batch records corresponding one by one to the candidate experimental batches, that is, one batch record represents one candidate experimental batch, and the batch records are available for the user to perform selection operations. Among them, the batch records can include the description information of the candidate experimental batches, at least including the experimental batch identifier (such as experimental batch ID) for uniquely identifying the candidate experimental batches. In addition, it can also include the experimental items of the candidate experimental batches, batch status (registration, in experiment, completed, failed, etc.), detection module (the detection module used in the current experimental batch, for example, the PCR reaction module in a PCR integrated machine), experimental start time, and experimental completion time, etc. Through the rich information, it helps the user quickly and accurately understand the candidate experimental batches and distinguish different candidate experimental batches.

[0046] The selection operation for the candidate experimental batches is an operation to determine the target experimental batch from the candidate experimental batches. Among them, the target experimental batch is the experimental batch for which the experimental result information and experimental process information are to be viewed. The user performs a selection operation on the displayed candidate experimental batches, and the selected candidate experimental batch is the target experimental batch.

[0047] Among them, the selection operation can be a single-selection operation, that is, the user performs one selection operation to select one target experimental batch from the candidate experimental batches. Thus, the user views the experimental result information and experimental process information of one target experimental batch at a time. However, in other embodiments, it can also be a multi-selection operation, that is, the user performs one selection operation to select multiple target experimental batches from the candidate experimental batches and views the experimental result information and experimental process information of multiple target experimental batches in batches. The specific implementation methods of the selection operation are, for example, clicking, checking, etc.

[0048] S206, display the experimental result information corresponding to the target experimental batch in the second area, and display the experimental process information corresponding to the target experimental batch in the third area.

[0049] The experimental result information is used to reflect the final result of the experimental detection of the samples in the target experimental batch. Among them, the samples in the target experimental batch can include at least one of the test samples, quality control products, and calibration products.

[0050] Specifically, the experimental result information may include the sample result data corresponding to each sample in the target experimental batch. Among them, the relationship between the sample and the sample result data can be one-to-one, that is, one sample corresponds to a set of sample result data. For the information specifically included in the sample result data, it can be preset in the control software, and it can be set according to user requirements, as well as the project type and experimental stage of the experimental project in the target experimental batch. For example, if the target experimental batch detects an experimental project of the PCR qualitative / quantitative type, corresponding to the amplification stage of the experimental project, the sample result data of the target experimental batch can specifically correspond to include the Ct values, concentration values, and qualitative detection results of each target in the samples of the target experimental batch, and the qualitative detection results such as negative, positive, and gray zone; for another example, if the target experimental batch detects an experimental project of the gene typing type based on the melting curve method, corresponding to the melting stage of the experimental project, the sample result data of the target experimental batch can specifically include the melting temperature (Tm value) and coefficient of variation (CV value) of each target in the samples of the target experimental batch, etc.

[0051] It should be noted that in addition to the sample result data, the experimental result information may also include other information related to the sample, such as sample description information for describing the sample situation, specifically such as sample identification (such as sample number), sample attributes, and sample detection status, etc. In addition, there can be multiple display methods for the experimental result information. For example, the experimental result information can be displayed in a list in the second area, and the list includes the result records corresponding to each sample in the target experimental batch, and the result records are available for the user to view and select. The result records can specifically include the sample result data corresponding to the sample, as well as other information related to the sample described above.

[0052] The experimental process information is used to reflect the changes in the experimental detection process. Similarly, the information specifically included in the experimental process information can also be preset in the control software, and can also be set according to user requirements, as well as the project type and experimental stage of the experimental project in the target experimental batch.

[0053] For example, if the target experimental batch detects an experimental project of the PCR qualitative / quantitative type, corresponding to the amplification stage of the experimental project, the experimental process information of the target experimental batch can specifically include at least one of temperature curve information, original amplification curve information, normalized amplification curve information, and standard curve information.

[0054] Among them, the temperature curve information and the original amplification curve information are the original experimental process information, which is the information collected by the signal acquisition device during the execution of the experimental operation by the sample analysis instrument. The temperature curve information is the real-time temperature curve in the detection module during the experimental detection process, which is collected by the temperature sensor at a certain frequency. For example, during the PCR experimental detection process, it is the real-time temperature curve in the PCR reaction module. The original amplification curve information is the light intensity signal emitted by the fluorescent markers of each target during the polymerase chain reaction, which is generally collected by a camera or other photosensitive components under specific temperature conditions.

[0055] The normalized amplification curve information and the standard curve information are the experimental process information obtained through processing, which is calculated based on the corresponding algorithms. The normalized amplification curve information is obtained by calculating the original amplification curve information through a series of algorithms. Generally, it can be considered that the normalized amplification curve information is the light intensity data simply emitted by the target fluorescent substance after eliminating the influences of various aspects such as physical device differences, light intensity background differences, and light wavelength crosstalk. It is the light intensity data closest to the theoretical amplification process. The standard curve information is a linear relationship curve fitted by the Ct values and logarithmic concentration values obtained by amplifying a series of calibration products with known concentration gradients. For example, during the PCR quantitative experiment, substituting the Ct value of the sample with unknown concentration into the standard curve formula can calculate the logarithmic concentration value, and then the concentration value of the sample can be obtained.

[0056] For another example, if the target experimental batch detects an experimental project of the genotyping type based on the melting curve method, corresponding to the melting stage of the experimental project, the experimental process information of this target experimental batch may specifically include at least one of the temperature curve, the original melting curve information, and the melting peak curve.

[0057] It should be noted that the information form of the experimental process information may specifically be in the form of a chart. In addition, as described above, the experimental process information may include information in multiple dimensions. In this regard, the way to display the experimental process information in the third area may be to set an information selection control in the third area to achieve switching and display of different dimensions of information in the third area. Specifically, for example, a dropdown box is set in the third area, and there are 4 information options in the dropdown box that correspond one-to-one to the temperature curve chart, the original amplification curve chart, the normalized amplification curve chart, and the standard curve chart. When the user selects an information option, the chart corresponding to the selected information option is displayed in the third area. However, it can be understood that the way to display the experimental process information in the third area is not limited to this, but any applicable way can be adopted.

[0058] In this embodiment, the control software displays an experimental information management interface, which includes a first area, a second area, and a third area. In the first area, candidate experimental batches are displayed. After the user selects a target experimental batch from the displayed candidate experimental batches, the experimental result information corresponding to the target experimental batch is displayed in the second area, and the experimental process information corresponding to the target experimental batch is displayed in the third area.

[0059] For the above method of displaying experimental information, an experimental information management interface is set up, and multiple areas are divided in one interface. The user can select candidate experimental batches as needed in the first area, and then view the corresponding experimental result information and experimental process information in the second area and the third area. The information related to experimental batches, experimental results, and experimental processes is displayed in one interface in a concentrated and well-organized manner, and the linked display of different areas is realized, which can help users efficiently, conveniently, intuitively, and comprehensively access experimental information. Moreover, by adding the display of experimental process information, it can help users observe whether the entire experimental process meets expectations, further analyze the reliability of the results, so as to timely detect abnormal experimental detections and avoid adverse effects.

[0060] In one embodiment, the method for displaying experimental information in the present application may include the following steps: When the first area is hidden, a batch selection control is displayed in the experimental information management interface. The batch selection control includes batch options corresponding one by one to the candidate experimental batches in the first area, and the size of the batch selection control is smaller than the size of the first area. Based on this, the method for determining the target experimental batch may include the following steps: Based on the selection operation for the batch options, the candidate experimental batch corresponding to the selected batch option is determined as the target experimental batch.

[0061] In this embodiment, the first area can be hidden so that the first area is not displayed in the experimental information management interface. Then, a batch selection control is displayed in the experimental information management interface to replace the first area, realizing the function of selecting the target experimental batch.

[0062] There can be various specific implementation manners for hiding the first area, which can be realized based on user operations. For example, a corresponding function button is set, and the user clicks the function button to trigger the hiding of the first area, or the user drags the border of the first area to reduce the display size of the first area. When the display size is reduced to a preset size (such as reduced to zero), the first area is hidden.

[0063] It should be noted that after hiding the first area, the first area can be redisplayed so that the first area is redisplayed in the experimental information management interface. Similarly, the specific implementation method can be to click the corresponding function button to trigger the redisplay of the first area, or to drag the border of the first area to enlarge the display size of the first area. When it is enlarged to the preset size (for example, the original size of the first area), the first area is redisplayed. In addition, after hiding the first area, a blank area can be generated in the experimental information management interface to prompt the user that the first area is hidden in the experimental information management interface, so as to facilitate the user to operate and redisplay the first area.

[0064] The batch selection control is used to implement a similar function to that of the first area, and it includes batch options corresponding one by one to the candidate experimental batches in the first area. The user selects from the batch options of the batch selection control, and the control software can determine the candidate experimental batch corresponding to the selected batch option as the target experimental batch.

[0065] Specifically, the size of the batch selection control is smaller than that of the first area. On the premise of meeting the functional requirements, the smaller the display size, the more conducive it is to saving the interface space of the experimental information management interface. The setting position of the batch selection control can be flexibly set according to needs. For example, it can be set at the top of the experimental information management interface, with prominent display, which conforms to the user's observation habit. For the specific implementation method of the batch selection control, a drop-down box can be selected, and its display size can be much smaller than that of the first area. Of course, other applicable control types can also be selected. In addition, for the batch options in the batch selection control, the identification information of the candidate experimental batches needs to be displayed, and the user can distinguish different candidate experimental batches through the identification information. The identification information can be flexibly set according to needs. Preferably, the identification information can be as concise as possible. For example, it can only include the batch number of the candidate experimental batch and the name of the experimental project. Specifically, for example, the batch option can display "001 - Novel Coronavirus". 。

[0066] In this embodiment, it is supported to hide the first area, and after hiding the first area, a batch selection control with a relatively small display size is automatically added and displayed in the experimental information management interface to replace the first area to implement the function of selecting the target experimental batch. Without affecting the basic functions, it can release the interface space of the experimental information management interface, which is beneficial to adjusting the interface layout to a form that better meets the user's needs.

[0067] In one embodiment, after the first area is hidden, the method for displaying experimental information in the present application may further include the following steps: appropriately enlarging the second area and the third area in the experimental information management interface.

[0068] In this embodiment, after hiding the first area, the second area and the third area can be correspondingly enlarged in the experimental information management interface. Specifically, for example, the second area and the third area are correspondingly enlarged so that the display areas of the second area and the third area cover the display area of the first area.

[0069] Supporting the hiding of the first area and giving the display space of the experimental information management interface to the second area and the third area can enable users to have a larger viewing space to view the experimental result information and experimental process information of the target experimental batch, meeting the information viewing needs of users in different scenarios.

[0070] In addition, it should be noted that in addition to the first area being able to be hidden and the second area and the third area being able to be enlarged adaptively to the hiding of the first area, in other embodiments, any applicable user operation method can be adopted to adjust any one or more of the first area, the second area, and the third area to any size within the interface range of the experimental information management interface. Specifically, for example, for the adjustment of the display sizes of the second area and the third area, a height ratio lever can be set in the blank area between the second area and the third area. The lever is hidden by default and displayed when the mouse hovers over this position. Users can adjust the height ratio of the second area and the third area by dragging the lever, and the lever can stay at any position within the height range of the area jointly formed by the second area and the third area, thereby realizing flexible adjustment of the display sizes of the second area and the third area.

[0071] In one embodiment, the validity information of the candidate experimental batches is displayed in the first area. Based on this, the method for displaying experimental information in this application may further include the following steps: in response to a trigger operation on the guiding control in the first area, display the interpretation information.

[0072] The validity information corresponds one-to-one with the candidate experimental batches, that is, each candidate experimental batch has its own corresponding validity information. The validity information is used to characterize the validity of the overall experimental results of the corresponding candidate experimental batch, that is, the validity of the overall experimental results of the entire candidate experimental batch. Specifically in implementation, as in the previous example, batch records corresponding one-to-one with the candidate experimental batches can be displayed in the first area. Thus, the validity information can be included in the batch records.

[0073] The content of the validity information can be set based on the specific application scenario of the experimental detection and user needs. For example, the validity information can only include conclusion information of valid or invalid, or can be further refined. The validity information can correspond to different situations of valid and invalid, including specific validity type information.

[0074] Moreover, in some application scenarios, the validity information may not be easily understandable. A guiding control can also be displayed in the first area to help users understand the validity information of the candidate experiment batches. After the user triggers an operation on the guiding control, the control software will display the interpretation information in the experiment information management interface, and the interpretation information is used to explain the meaning of the validity information. Specifically, the display styles and positions of the guiding control and the interpretation information can be set according to actual needs. For example, the guiding control is a circular button located at the lower left corner of the first area. After clicking the guiding control, the interpretation information is displayed in a rectangular pop-up box near the guiding control.

[0075] For ease of understanding, the validity information and the interpretation information are described by taking the application to a PCR integrated machine as an example. As Figure 4 shown, the candidate experiment batches are displayed in a list in the first area 400. The list includes batch records corresponding one by one to the candidate experiment batches. The batch records include experiment batch ID, experiment item, experiment status, and validity information, etc. The validity information includes the type identifier of the validity type of the candidate experiment batch. Specifically, for any candidate experiment batch, its validity information includes at least one of NC, NCI, LPCI, HPCI, and NTCI. For example, for the candidate experiment batch with the experiment batch ID of 001 in the figure, its validity information includes NCI and HPCI. Moreover, a guiding button 401 is also provided in the first area 400. When the user clicks the guiding button 401, a pop-up box 402 including the interpretation information is displayed, and the interpretation information therein respectively explains the meanings of the above type identifiers, that is, NC represents not calibrated, NCI represents invalid negative control product, LPCI represents invalid weak positive control product, HPCI represents invalid strong positive control product, and NTCI represents invalid no-template control product.

[0076] In one embodiment, the experiment information management interface further includes a fourth area. The display method of the experiment information in the present application may include at least one of the following:

[0077] The first item: Based on the selection operation for the first screening mode setting control in the fourth area, screen out the experiment batches that meet the batch screening conditions from the already created experiment batches as candidate experiment batches.

[0078] The second item: Based on the selection operation for the second screening mode setting control in the fourth area, screen out the experiment batches of the current day from the already created experiment batches as candidate experiment batches.

[0079] The third item: Based on the sample information input in the search control in the fourth area, use the experiment batches associated with the sample information as candidate experiment batches.

[0080] The fourth area is used to screen out candidate experimental batches, and there is an interface control for implementing the function of screening candidate experimental batches. The user performs corresponding operations on the corresponding interface control to screen out candidate experimental batches from the experimental batches already created by the control software. Subsequently, the control software will display the screened candidate experimental batches in the first area.

[0081] Among them, there can be various ways to set the interface control in the fourth area and the corresponding way to screen candidate experimental batches, specifically as follows:

[0082] In a specific embodiment, a first screening mode setting control can be set in the fourth area. When the first screening mode setting control is selected, the control software will screen out the experimental batches that meet the batch screening conditions from the already created experimental batches as candidate experimental batches, where the batch screening conditions are determined based on the setting operations for the screening condition setting control. In this way, it is convenient for users to independently screen candidate experimental batches from different dimensions, with strong pertinence and high flexibility.

[0083] Among them, there can be various implementation methods for setting the batch screening conditions. For example, an entry control can also be set in the fourth area. After the user clicks the entry control, the screening condition setting control will be displayed in the experimental information management interface. Then, the user sets the batch screening conditions through the screening condition setting control. The screening condition setting control can specifically adopt a pop-up box or any other applicable control, and the setting content in the screening condition setting control can be set according to requirements. For example, the setting content can include at least one of the experimental time, detection module, experimental status, experimental batch identifier, and experimental project of the experimental batch.

[0084] For example, as Figure 5 shown, the "screening result" option 5011 set in the experimental information management interface 500 is the first screening mode setting control, and the "screening condition" button 5012 is the entry control. When the user clicks the "screening condition" button 5012, the control software displays the batch screening condition setting pop-up box 5013, that is, the screening condition setting control. The user sets the batch screening conditions as needed through the screening condition setting pop-up box 5013, and when the "screening result" option 5011 is selected, the control software will screen out the experimental batches that meet the batch screening conditions from the already created experimental batches as candidate experimental batches and display the determined candidate experimental batches in the first area.

[0085] In another specific implementation, a second screening mode setting control can be set in the fourth area. The user only needs to select the second screening mode setting control, and the control software will screen out the experimental batches of the current day from the already created experimental batches as candidate experimental batches, where the experimental batches of the current day can include the experimental batches with the experimental start time on the current day. In this way, it is possible to conveniently and quickly screen out the experimental batches of the current day, which highly meets the daily needs of users.Figure 5 For example, the "Today's Results" option 5021 is the second mode setting control.

[0086] In another specific embodiment, a search control can be set in the fourth area. The user inputs sample information in the search control, and the control software filters out the experimental batches associated with the sample information from the created experimental batches as candidate experimental batches. The sample information is used to identify the samples in the experimental batches, such as sample numbers. In addition, it should be noted that in addition to searching for candidate experimental batches by sample information, the search control can also filter by other dimensional information. For example, information such as experimental batch ID and experimental project can be input for filtering. Figure 5 For example, the search box 5031 is the search control.

[0087] In addition, the control software can not only adopt one of the above three implementation methods alone. In other embodiments, the above three methods can also be combined and used. For example, the control software can support the above three implementation methods at the same time, and set the first screening mode setting control, the second screening mode setting control, and the search control in the fourth area at the same time. Refer to Figure 5 the complete situation shown in the fourth area. It can be understood that any two of them can also be combined. For example, the first screening mode setting control and the second screening mode setting control are set in the fourth area at the same time. In this way, through combined use, the screening function is diversified, and the diverse needs of users in different scenarios can be met.

[0088] In one embodiment, the experimental result information includes the sample result data corresponding to each sample in the target experimental batch; the experimental process information includes the amplification curve chart corresponding to the target experimental batch, and the amplification curve chart includes the amplification curves corresponding to each sample in the target experimental batch. Based on this, the display method of the experimental information in the present application may include at least one of the following:

[0089] The first item: Based on the selection operation for the sample result data displayed in the second area, determine the first target sample from the samples in the target experimental batch, and prominently mark the amplification curve corresponding to the first target sample in the amplification curve chart displayed in the third area;

[0090] The second item: Based on the selection operation for the amplification curves in the amplification curve chart displayed in the third area, determine the second target sample from the samples in the target experimental batch, and prominently mark the sample result data corresponding to the second target sample in the second area.

[0091] As described above, the experimental result information corresponding to the target experimental batch includes the sample result data corresponding to each sample in the target experimental batch. There can be a one-to-one correspondence between the sample and the sample result data, that is, one sample corresponds to a set of sample result data.

[0092] The experimental process information corresponding to the target experimental batch includes the amplification curve chart corresponding to the target experimental batch, and the amplification curve chart includes the amplification curves corresponding to the respective samples in the target experimental batch. Among them, the amplification curve chart may include at least one of the original amplification curve chart and the normalized amplification curve chart. In addition, it can be understood that for any sample in the target experimental batch, the number of amplification curves corresponding to the sample is determined by the target in the sample and the number of repeated detections of the sample.

[0093] After determining the target experimental batch, the sample result data corresponding to the samples in the target experimental batch can be displayed in the second area, and the amplification curve chart corresponding to the target experimental batch can be displayed in the third area. Based on this, the information that the user needs to pay attention to can be highlighted based on the user operation. There can be various specific implementation manners for highlighting, as follows:

[0094] In a specific embodiment, the user can perform a selection operation on the sample result data displayed in the second area, and the control software determines the sample corresponding to the selected sample result data accordingly, that is, the first target sample, and then highlights the amplification curve corresponding to the first target sample in the amplification curve chart displayed in the third area, so that it is convenient for the user to quickly find the amplification curve corresponding to the sample of interest among numerous amplification curves.

[0095] In another specific embodiment, the user can also perform a selection operation on the amplification curves in the amplification curve chart displayed in the third area, and the control software determines the sample corresponding to the selected amplification curve accordingly, that is, the second target sample, and then highlights the sample result data corresponding to the second target sample in the second area, so that it is convenient for the user to quickly find the sample result data corresponding to the sample of interest.

[0096] In yet another specific embodiment, the control software can also support the above two implementation manners simultaneously to meet the diverse needs of users in different scenarios.

[0097] It should be noted that for highlighting the amplification curves and the sample result data, any applicable methods such as bolding, highlighting, and displaying in a preset color can be specifically adopted.

[0098] In one embodiment, the experimental process information includes the amplification curve chart corresponding to the target experimental batch. Based on this, the method for displaying the experimental information in the present application may include the following steps: displaying the threshold line corresponding to the target experimental batch and the amplification curve of the calibrator corresponding to the target experimental batch in the amplification curve chart displayed in the third area; determining the reference threshold corresponding to the target experimental batch based on the position adjustment operation for the threshold line.

[0099] It should be noted that when analyzing the experimental results of the target experimental batch, a threshold needs to be set for the target experimental batch. Especially when using the baseline threshold method for result analysis, the threshold can be set manually by the user.

[0100] In this embodiment, when displaying the normalized amplification curve chart in the third region, a threshold line can be displayed in the normalized amplification curve chart. The user drags the threshold line to adjust its position, thereby realizing the setting of the reference threshold. Moreover, the amplification curve of the calibrator corresponding to the target experimental batch can also be displayed in the normalized amplification curve chart and provided to the user as a reference to help the user judge whether the set threshold is reasonable, which can improve the accuracy and efficiency of the user setting the threshold.

[0101] Specifically, the threshold line can be implemented by a line type control. Secondly, there are various ways to trigger the display of the amplification curve of the calibrator corresponding to the target experimental batch in the normalized amplification curve chart. For example, it can be set to default display. As long as the normalized amplification curve chart is displayed in the third region, the amplification curve of the corresponding calibrator is defaultly displayed in the chart. Another example is that it can be triggered based on the user operation. The user clicks the corresponding function button or performs a preset gesture operation to trigger the display. In addition, for the convenience of the user's observation, the amplification curve of the corresponding calibrator can also be highlighted in the normalized amplification curve chart.

[0102] In one embodiment, the third region includes a target selection control, and the target selection control corresponds one-to-one to the targets corresponding to the target experimental batch; the experimental process information includes the amplification curve chart corresponding to the target experimental batch, and the amplification curve chart includes the amplification curves corresponding to the samples in the target experimental batch respectively, and the amplification curve corresponding to each sample includes the amplification curve corresponding one-to-one to the target of the sample. Based on this, the method for displaying the experimental information in the present application may include the following steps: based on the selection operation of the target selection control, determine the target to be hidden from the targets corresponding to the target experimental batch, and hide the amplification curve corresponding to the target to be hidden in the amplification curve chart displayed in the third region.

[0103] As described above, the experimental process information corresponding to the target experimental batch includes the amplification curve chart corresponding to the target experimental batch. The amplification curve chart includes the amplification curves corresponding to the samples in the target experimental batch respectively, and the amplification curve corresponding to each sample includes the amplification curve corresponding one-to-one to the target in the sample. The amplification curve chart may include at least one of the original amplification curve chart and the normalized amplification curve chart.

[0104] However, the number of targets in the samples of the target experimental batch and the number of repeated detections of the samples often result in many amplification curves in the amplification curve chart corresponding to the target experimental batch. A large number of amplification curves are concentrated in one chart, which is not conducive to users clearly and intuitively viewing the amplification curves they want to focus on. To address this, in this embodiment, a target selection control is set in the third region to solve the corresponding problem.

[0105] Among them, the target selection control is used to select the target to be hidden. The target selection control corresponds one-to-one with the targets corresponding to the target experimental batch. The targets corresponding to the target experimental batch include the targets in the samples of the target experimental batch. That is, if there are N targets corresponding to the target experimental batch, then N target selection controls corresponding one-to-one with these N targets are displayed in the third region. The target corresponding to the target selection control selected by the user is the target to be hidden, and the target to be hidden can be one or more.

[0106] Specifically, the user performs a selection operation on the target selection control in the third region. The target corresponding to the selected target selection control is the target to be hidden. Then, the software is controlled to hide the amplification curve corresponding to the target to be hidden in the amplification curve chart displayed in the third region. It should be noted that for the target to be hidden, it can be restored to a non-hidden target through user operations, and its corresponding amplification curve is redisplayed in the amplification curve chart in the third region.

[0107] In this embodiment, it supports the user to manually adjust the amplification curves displayed in the amplification curve chart, which can avoid information accumulation and help the user clearly and intuitively view the amplification curves they want to focus on.

[0108] In one embodiment, the experimental result information includes the sample result data corresponding to each sample in the target experimental batch, and the experimental information management interface further includes a fifth region. Based on this, the display method of the experimental information in this application may include at least one of the following:

[0109] The first item: Based on the selection operation of the sample result data displayed in the second region, determine the third target sample from the samples of the target experimental batch; in response to the triggering operation of the first function control in the fifth region, display a detailed information viewing window; the detailed information viewing window displays the basic information, sample result data, and amplification curve chart of the third target sample;

[0110] The second item: Based on the selection operation of the sample result data displayed in the second region, determine the fourth target sample from the samples of the target experimental batch; in response to the triggering operation of the second function control in the fifth region, recalculate the sample result data corresponding to the fourth target sample, and obtain the updated sample result data and display it in the second region;

[0111] Third item: In response to a triggering operation on the third function control in the fifth area, display an analysis option setting window; the analysis option setting window includes a data preprocessing rule setting area, a calculation rule setting area, and a display content setting area.

[0112] The fifth area is used to provide function controls, allowing users to perform corresponding interaction operations on the target experimental batch according to actual needs, so as to obtain information or interface display effects that meet user expectations. Among them, there can be various settings of function controls and corresponding interaction operations, specifically as follows:

[0113] In a specific embodiment, a first function control can be set in the fifth area, which is used to trigger the display of more comprehensive and detailed experimental information of the corresponding samples in the target experimental batch. The user performs a selection operation on the sample result data displayed in the second area, and the control software determines the sample corresponding to the selected sample result data accordingly, that is, the third target sample. Then, the user performs a triggering operation on the first function control, and the control software displays a detailed information viewing window in the experimental information management interface. The detailed information viewing window displays the basic information of the third target sample, the sample result data, and the amplification curve chart. The specific content of these information can be set based on actual needs. For example Figure 6 as shown in the content. It should be noted that the sample result data here includes the sample result data corresponding to each detection when the sample is detected multiple times. Figure 6 As shown, the sample has been detected twice repeatedly, and two groups of sample result data are correspondingly displayed in the upper right corner of the window.

[0114] In another specific embodiment, a second function control can be set in the fifth area, which is used to trigger the recalculation of the sample result data corresponding to the corresponding samples in the target experimental batch. The user performs a selection operation on the sample result data displayed in the second area, and the control software determines the sample corresponding to the selected sample result data accordingly, that is, the fourth target sample. Then, the user performs a triggering operation on the second function control, and the control software calls the corresponding calculation rules and data to recalculate the sample result data corresponding to the fourth target sample, obtains the updated sample result data, and displays it in the second area. It should be noted that when the user performs a triggering operation on the second function control, the control software can directly start the recalculation, or can first display a confirmation pop-up window and then start the recalculation after the user confirms it, so as to avoid misoperation and cause the loss of important data.

[0115] In another specific embodiment, a third function control can be set in the fifth area for setting result analysis options for a target experimental batch. When the user triggers an operation on the third function control, the control software displays an analysis option setting window in the experimental information management interface. This window includes a data preprocessing rule setting area, a calculation rule setting area, and a display content setting area, where the user can make relevant settings. The specific settings in these setting areas can all be determined based on actual requirements. For example Figure 7 the content shown.

[0116] In yet another specific embodiment, any one of a fourth function control for implementing the experimental data import function, a fifth function control for triggering the printing of the result data of the corresponding sample, a sixth function control for triggering the uploading of the result data of the corresponding sample to the LIS system, and a seventh function control for triggering the deletion of the result data of the corresponding sample can be set in the fifth area. The functions of these function controls are relatively easy to understand and will not be elaborated here.

[0117] In addition, the control software can not only set the above seven function controls individually. In other embodiments, the above function controls can also be used in combination. For example, the above seven function controls can be set simultaneously in the fifth area. It can be understood that any multiple of them can also be combined as needed in practice, which will not be elaborated here. In this way, through combined use, diversified function control is achieved, which can meet the diverse needs of users in different scenarios, and the function control settings are centralized, making it convenient for users to operate.

[0118] In one embodiment, the experimental information management interface displays label options, and the label options correspond one-to-one to the to-be-displayed experimental stages included in the experimental items corresponding to the target experimental batch. The to-be-displayed experimental stages included in the experimental items are determined based on the item type of the experimental item. Based on this, the steps of displaying the experimental result information corresponding to the target experimental batch in the second area and displaying the experimental process information corresponding to the target experimental batch in the third area may include the following steps: Based on the selection operation on the label options, display the experimental result information corresponding to the target experimental batch in the target experimental stage in the second area and display the experimental process information corresponding to the target experimental batch in the target experimental stage in the third area; the target experimental stage includes the to-be-displayed experimental stage corresponding to the selected label option.

[0119] The experimental stages to be displayed included in the experimental project can be set from the experimental stages in the experimental project that have experimental result information and experimental process information, and the number can be one or more. For the convenience of description, the experimental stages with experimental result information and experimental process information will be hereinafter referred to as candidate experimental stages. Specifically, the experimental stages to be displayed can be set based on the project type of the experimental project and the user requirements. Based on the project type of the experimental project, all candidate experimental stages in the experimental project can be determined, and then, according to the user requirements, the experimental stages to be displayed can be set from all candidate experimental stages of the experimental project.

[0120] There can be multiple specific ways to set the experimental stages to be displayed. For example, all candidate experimental stages in the experimental project can be set as the experimental stages to be displayed. In this case, after determining the target experimental batch, the experimental result information and experimental process information of all candidate experimental stages in the experimental project corresponding to the target experimental batch are displayed in the experimental information management interface. For another example, candidate experimental stages that meet the experimental stage screening conditions can also be selected from all candidate experimental stages of the experimental project as the experimental stages to be displayed. The experimental stage screening conditions are, for example, belonging to a preset attention stage, that is, the experimental stages that the user pre-specifies to need attention. In this way, after determining the target experimental batch, only the experimental result information and experimental process information of the candidate experimental stages that meet the experimental stage screening conditions are displayed in the experimental information management interface. If only some candidate experimental stages meet the stage screening conditions, only the corresponding experimental information of some candidate experimental stages is displayed in the experimental information management interface, and the corresponding experimental information of all candidate experimental stages is not displayed.

[0121] Taking an example for illustration, for the experimental projects supported by a PCR all-in-one machine, the experimental projects of the PCR qualitative / quantitative type usually only include one experimental stage with experimental result information and experimental process information, that is, the amplification stage, and the amplification stage can be set as the experimental stage to be displayed. For another example, in the experimental projects of the gene typing type based on the melting curve method, both the amplification stage and the melting stage have experimental result information and experimental process information. In this case, both of these two experimental stages can be set as the experimental stages to be displayed, or the preset attention stage only includes the melting stage, and thus only the melting stage is set as the experimental stage to be displayed.

[0122] The label option is an interface control for implementing the function of selecting the target experimental stage, and the label options correspond one by one to the experimental stages to be displayed included in the experimental project corresponding to the target experimental batch. When a label option is selected, the experimental stage to be displayed corresponding to this label option is the target experimental stage. Different target experimental stages can be switched by selecting different label options, and then the experimental result information corresponding to the target experimental batch in different target experimental stages can be viewed in the second area, and the experimental process data corresponding to the target experimental batch in different target experimental stages can be viewed in the third area.

[0123] It should also be noted that when the experimental items corresponding to the target experimental batch include multiple experimental stages to be displayed, multiple label options are correspondingly displayed in the experimental information management interface. The control software can preset one of the label options as the default option, that is, the label option that is default selected. After determining the target experimental batch, the control software first automatically selects the default option, and uses the experimental stage to be displayed corresponding to the default option as the target experimental stage, and then can be changed to select other label options according to the user's selection operation. The default option can be preset according to actual needs. For example, the label option ranked first (i.e., the label option displayed on the far left) is preset as the default option. Another example is that it can be preset according to the type of experimental item. For example, for an experimental item of the genotyping type based on the melting curve method, the label option corresponding to the melting stage is preset as the default option.

[0124] In this embodiment, the control software displays label options in the experimental information management interface. Subsequently, the user selects the label options as needed. The control software determines the experimental stage to be displayed corresponding to the selected label option, that is, the target experimental stage, and then displays the experimental result information corresponding to the target experimental batch in this target experimental stage in the second area, and displays the experimental process information corresponding to the target experimental batch in this target experimental stage in the third area.

[0125] There can be multiple specific implementation manners for displaying the relevant experimental information of different experimental stages to be displayed in the experimental information management interface. For example, the second area and the third area in the experimental information management interface are implemented as a whole using tabs. That is, corresponding to the experimental stages to be displayed included in the experimental item corresponding to the target experimental batch, label pages corresponding one-to-one to the experimental stages to be displayed are set in the experimental information management interface. One experimental stage to be displayed corresponds to one label page. Each label page includes label options, a second area, and a third area. After determining the target experimental batch, a certain label option is selected in the experimental information management interface. The experimental stage to be displayed corresponding to this label option is the target experimental stage. The experimental information management interface correspondingly displays the label page corresponding to this target experimental stage. The experimental result information corresponding to the target experimental batch in this target experimental stage is displayed in the second area of this label page, and the experimental process information corresponding to the target experimental batch in this target experimental stage is displayed in the third area of this label page.

[0126] It should be noted that in other embodiments, the experimental information management interface may include, in addition to the second area and the third area, a fifth area for providing function controls. After determining the target experimental stage, in addition to displaying the experimental result information corresponding to the target experimental batch in the target experimental stage in the second area and displaying the experimental process information corresponding to the target experimental batch in the target experimental stage in the third area, function controls corresponding to the target experimental stage may also be displayed in the fifth area. Different target experimental stages may correspond to different function controls. For example, the preset amplification stage corresponds to the seven function controls of "Data Import", "Analysis Options", "Details", "Recalculate", "Print", "Upload LIS", and "Delete", while the preset melting stage corresponds to the four function controls of "Details", "Recalculate", "Print", and "Delete".

[0127] Correspondingly, for the specific implementation manner of this embodiment, the second area, the third area, and the fifth area in the experimental information management interface may be regarded as a whole. That is, each tab page corresponding to the experimental stage to be displayed includes a tab option, a second area, a third area, and a fifth area. After determining the target experimental batch, when a certain tab option is selected in the experimental information management interface, the experimental stage to be displayed corresponding to the tab option is the target experimental stage, and the experimental information management interface correspondingly displays the tab page corresponding to the target experimental stage. The experimental result information corresponding to the target experimental batch in the target experimental stage is displayed in the second area of the tab page, the experimental process information corresponding to the target experimental batch in the target experimental stage is displayed in the third area of the tab page, and the function controls corresponding to the target experimental stage are displayed in the fifth area of the tab page.

[0128] For ease of understanding, an example is given where the target experimental batch detects an experimental project of the genotyping type based on the melting curve method. For this type of experimental project, the preset experimental stages to be displayed include an amplification stage and a melting stage. In this regard, as Figure 8As shown in the upper figure in [reference], candidate experiment batches are displayed in the first area 801 of the experiment information management interface 800. The user selects a target experiment batch (experiment batch ID: 5555) from them. The target experiment batch detects an experimental item of the genotyping type based on the melting curve method. Therefore, the experiment information management interface displays two label options C1 and C2, namely "amplification curve" and "melting curve", and by default, the label option C2, i.e., "melting curve", is selected, which means the melting stage is the default target experiment stage. Thus, the label page 802 corresponding to the melting stage is defaultly displayed on the experiment information management interface 800. In the second area 8021 of the label page 802 corresponding to the melting stage, the experimental result information corresponding to the target experiment batch in the melting stage is displayed. In the third area 8022, the experimental process information corresponding to the target experiment batch in the melting stage is displayed. And in the fifth area 8023, four function controls, namely "detailed information", "recalculate", "print", and "delete", corresponding to the melting stage are displayed. Then, as Figure 8 As shown in the lower figure in [reference], when the user changes to select the label option C1, i.e., "amplification curve", the amplification stage is taken as the target experiment stage. Thus, the experiment information management interface 800 switches to display the label page 803 corresponding to the amplification stage. In the second area 8031 of the label page 803 corresponding to the amplification stage, the experimental result information corresponding to the target experiment batch in the amplification stage is displayed. In the third area 8032, the experimental process information corresponding to the target experiment batch in the amplification stage is displayed. And in the fifth area 8033, seven function controls, namely "data import", "analysis option", "detailed information", "recalculate", "print", "upload LIS", and "delete", corresponding to the amplification stage are displayed.

[0129] In this way, the experiment information management interface can be compatible with the experimental information display requirements of different types of experimental items, has a wide range of application scenarios, and strong interface scalability, and can adapt to future change requirements.

[0130] For the convenience of clear and intuitive understanding, the main content involved in this application will be introduced below in combination with a specific application example:

[0131] In this embodiment, it is applied to the field of nucleic acid detection. The application environment includes a control terminal and a PCR integrated machine, and control software is installed in the control terminal. The control software is provided with main function modules such as a sample module, a result module, a reagent module, a quality control module, a calibration module, and a setting module. The interface of the control software is as Figure 9As shown in the figure, a navigation area 901 is provided on the left side, an experiment control area 902 is provided at the top, and a function area 903 is provided in the middle. Among them, function buttons such as sample, result (9011), reagent, quality control, calibration, settings, and home page are provided in the navigation area 901. When any function button is clicked, the corresponding function interface is displayed in the function area 903; function buttons such as experiment start, pause sample addition, and shutdown are provided in the experiment control area 902. When any function button is clicked, the PCR integrated machine is controlled to enter the corresponding working state.

[0132] When the user clicks the result button 9011 in the navigation area 901, an experiment information management interface is displayed in the function area 903. This interface includes a first area, a second area, a third area, a fourth area, and a fifth area.

[0133] In the fourth area, there are options such as "Today's Results", "Filter Results", "Filter Conditions" button, and a search box. If the user clicks the "Today's Results" option, the control software filters out the experiment batches of the current day from the created experiment batches as candidate experiment batches; if the user clicks the "Filter Conditions" button, the control software displays a pop-up window for setting batch filtering conditions. The user sets the batch filtering conditions as needed through the pop-up window for setting batch filtering conditions, and if the user selects the "Filter Results" option, the control software filters out the experiment batches that meet the batch filtering conditions from the created experiment batches as candidate experiment batches; if the user enters sample information in the search box, the control software filters out the experiment batches associated with the sample information from the created experiment batches as candidate experiment batches.

[0134] After determining the candidate experiment batches through the fourth area, the determined candidate experiment batches are displayed in the first area. Specifically, batch records are displayed in list form in the first area. The batch records correspond one-to-one with the candidate experiment batches. One batch record represents one candidate experiment batch. The batch records include experiment batch ID, label (i.e., validity information), experiment item, batch status, detection module, experiment start time, and experiment completion time. The user can select the batch records, that is, select the candidate experiment batches. The candidate experiment batch corresponding to the selected batch record is the target experiment batch.

[0135] After selecting the target experiment batch through the first area, the experiment information management interface displays label options corresponding one-to-one to the to-be-displayed experiment stages included in the experiment items corresponding to the target experiment batch, such as Figure 9 the two label options of "amplification curve" and "melting curve" in the example.

[0136] Select the "Amplification Curve" label option, then the amplification stage is taken as the target experimental stage. Accordingly, the experimental information management interface displays the label page corresponding to the amplification stage. In the second area of the label page corresponding to the amplification stage, the experimental result information corresponding to the target experimental batch in the amplification stage is displayed. In the third area, the experimental process information corresponding to the target experimental batch in the amplification stage is displayed. And in the fifth area, the seven function controls corresponding to the amplification stage, namely "Data Import", "Analysis Options", "Details", "Recalculate", "Print", "Upload to LIS", and "Delete", are displayed, allowing the user to perform relevant interactive operations on the target experimental batch according to actual needs to obtain data or interface display effects that meet the user's expectations. The specific functions have been described in detail above and will not be elaborated here. Figure 9 The situation of displaying the label page corresponding to the amplification stage is shown as follows.

[0137] When changing to select the "Melting Curve" label option, the melting stage is taken as the target experimental stage. Accordingly, the experimental information management interface displays the label page corresponding to the melting stage. In the second area of the label page corresponding to the melting stage, the experimental result information corresponding to the target experimental batch in the melting stage is displayed. In the third area, the experimental process information corresponding to the target experimental batch in the melting stage is displayed. And in the fifth area, the four function controls corresponding to the melting stage, namely "Details", "Recalculate", "Print", and "Delete" (not shown in the figure), are displayed.

[0138] Among them, the experimental result information corresponding to the target experimental batch in the amplification stage is displayed in the second area. Specifically, it includes the sample result data corresponding to each sample in the target experimental batch. The samples and the sample result data are in one-to-one correspondence, that is, one sample corresponds to a set of sample result data. And the sample result data can specifically include the Ct value, concentration value, and qualitative test results (negative, positive, and gray zone) of the target in the corresponding sample. In addition, the experimental result information also includes other information related to the samples in the target experimental batch, such as sample number, sample attribute, sample type, review flag, etc. The display of the experimental result information corresponding to the target experimental batch in the melting stage in the second area has been described relatedly above and will not be elaborated here.

[0139] The third area displays the experimental process information corresponding to the target experimental batch in the amplification stage. Specifically, a drop-down box is provided in the third area, and there are 4 information options in the drop-down box that correspond one-to-one to the temperature curve chart, original amplification curve chart, normalized amplification curve chart, and standard curve chart. The user selects an information option. For example, if the user selects the information option corresponding to the temperature curve chart, the temperature curve chart corresponding to the target experimental batch is displayed in the third area. Another example is that if the user selects the information option corresponding to the normalized amplification curve chart, the normalized amplification curve chart corresponding to the target experimental batch is displayed in the third area.

[0140] Moreover, in the third region, there are also target selection controls corresponding one-to-one to the targets corresponding to the target experimental batch. When the original amplification curve chart or the normalized amplification curve chart is displayed in the third region, if the user performs a selection operation on the target selection control, the target corresponding to the selected target selection control is the target to be hidden. Furthermore, the software is controlled to hide the amplification curve corresponding to the target to be hidden in the original amplification curve chart or the normalized amplification curve chart displayed in the third region. In addition, when the normalized amplification curve chart is displayed in the third region, a threshold line and the amplification curve of the calibrator corresponding to the target experimental batch are displayed in the normalized amplification curve chart. The user can drag the threshold line and adjust its position with reference to the normalized amplification curve chart and the amplification curve of the calibrator, so as to set the reference threshold corresponding to the target experimental batch.

[0141] Under reasonable conditions, it should be understood that although the steps in the flowcharts involved in the foregoing embodiments are sequentially displayed according to the indications of the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless there is a clear indication in this article, the execution of these steps has no strict order limit, and these steps can be executed in other orders. Moreover, at least a part of the steps in each flowchart may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily executed at the same moment, but can be executed at different moments. The execution order of these sub-steps or stages is not necessarily sequential, but can be executed alternately or in turn with at least a part of other steps or sub-steps or stages of other steps.

[0142] In one embodiment, as Figure 10 shown, there is also provided a display device 1000 for experimental information, which may include the following modules 1002 to 1006.

[0143] An interface display module 1002, configured to display an experimental information management interface; wherein, the experimental information management interface includes a first region, a second region, and a third region;

[0144] A target batch determination module 1004, configured to determine a target experimental batch based on a selection operation on the candidate experimental batches in the first region;

[0145] An information display module 1006, configured to display the experimental result information corresponding to the target experimental batch in the second region, and display the experimental process information corresponding to the target experimental batch in the third region.

[0146] The above-mentioned display device for experimental information displays an experimental information management interface, which includes a first area, a second area, and a third area. Based on the selection operation of the candidate experimental batch in the first area, the target experimental batch is determined, and then the experimental result information corresponding to the target experimental batch is displayed in the second area, and the experimental process information corresponding to the target experimental batch is displayed in the third area. In this way, an experimental information management interface is provided, and multiple areas are divided into one interface. The user selects the candidate experimental batch as needed in the first area, and can view the corresponding experimental result information and experimental process information in the second area and the third area. The information related to the experimental batch, experimental result, and experimental process is displayed in a centralized and clearly layered manner in one interface, and the linkage display of different areas is realized, which can help users to efficiently, conveniently, intuitively, and comprehensively access experimental information. Moreover, due to the addition of the display of experimental process information, it can help users observe whether the entire experimental process meets expectations, further analyze the reliability of the results, and thus promptly discover experimental detection anomalies and avoid adverse effects.

[0147] In one embodiment, the experimental information display device 1000 of the present application may include: a batch selection control display module, configured to display a batch selection control in the experimental information management interface after the first area is hidden; the batch selection control includes batch options that correspond one-to-one to the candidate experimental batches in the first area, and the size of the batch selection control is smaller than the size of the first area. Based on this, the target batch determination module 1004 is further configured to determine the candidate experimental batch corresponding to the selected batch option as the target experimental batch based on the selection operation on the batch option.

[0148] In one embodiment, the apparatus 1000 for displaying experimental information in the present application may include: an area enlarging module for adaptively enlarging the second area and the third area in the experimental information management interface.

[0149] In one embodiment, the first region displays validity information for candidate experimental batches. The validity information corresponds one-to-one with the candidate experimental batches and is used to characterize the overall validity of the experimental results for the corresponding candidate experimental batches. Based on this, the apparatus 1000 for displaying experimental information in this application may include: a guidance triggering module for displaying explanatory information in response to a triggering operation on a guidance control in the first region; the explanatory information is used to explain the meaning of the validity information.

[0150] In one embodiment, the experimental information management interface further includes a fourth area. Based on this, the experimental information display device 1000 may include a candidate batch screening module, specifically configured to perform at least one of the following:

[0151] First item: Based on a selection operation for setting a control for the first screening mode in the fourth area, screen out experimental batches that meet the batch screening conditions from the created experimental batches as candidate experimental batches; wherein, the batch screening conditions are determined based on a setting operation for a screening condition setting control.

[0152] Second item: Based on a selection operation for setting a control for the second screening mode in the fourth area, screen out the experimental batches of the current day from the created experimental batches as candidate experimental batches.

[0153] Third item: Based on the sample information input in the search control in the fourth area, use the experimental batches associated with the sample information as candidate experimental batches.

[0154] In one embodiment, the experimental result information includes the sample result data corresponding to each sample in the target experimental batch; the experimental process information includes the amplification curve chart corresponding to the target experimental batch, and the amplification curve chart includes the amplification curves corresponding to each sample in the target experimental batch. Based on this, the display device 1000 of the experimental information may include a highlighting module, which is specifically configured to perform at least one of the following:

[0155] First item: Based on a selection operation for the sample result data displayed in the second area, determine a first target sample from the samples of the target experimental batch, and highlight the amplification curve corresponding to the first target sample in the amplification curve chart displayed in the third area;

[0156] Second item: Based on a selection operation for the amplification curve in the amplification curve chart displayed in the third area, determine a second target sample from the samples of the target experimental batch, and highlight the sample result data corresponding to the second target sample in the second area.

[0157] In one embodiment, the experimental process information includes the amplification curve chart corresponding to the target experimental batch. Based on this, the display device 1000 of the experimental information may include: a threshold element display module, which displays the threshold line corresponding to the target experimental batch and the amplification curve of the calibrator corresponding to the target experimental batch in the amplification curve chart displayed in the third area; a threshold determination module, which is configured to determine the reference threshold corresponding to the target experimental batch based on a position adjustment operation for the threshold line.

[0158] In one embodiment, the third region includes target selection controls, and each target selection control corresponds one-to-one to a target corresponding to a target experimental batch; the experimental process information includes an amplification curve chart corresponding to the target experimental batch, and the amplification curve chart includes amplification curves corresponding to each sample in the target experimental batch, and each amplification curve corresponding to a sample includes an amplification curve corresponding one-to-one to the target of the sample. Based on this, the display device 1000 of the experimental information may include: a curve hiding module, configured to determine a target to be hidden from the targets corresponding to the target experimental batch based on a selection operation on the target selection control, and hide the amplification curve corresponding to the target to be hidden in the amplification curve chart displayed in the third region.

[0159] In one embodiment, the experimental result information includes sample result data corresponding to each sample in the target experimental batch, and the experimental information management interface further includes a fifth region. Based on this, the display device 1000 of the experimental information may include a function control module, specifically configured to perform at least one of the following:

[0160] The first item: determining a third target sample from the samples of the target experimental batch based on a selection operation on the sample result data displayed in the second region; in response to a triggering operation on the first function control in the fifth region, displaying a detailed information viewing window; the detailed information viewing window displays basic information, sample result data, and an amplification curve chart of the third target sample;

[0161] The second item: determining a fourth target sample from the samples of the target experimental batch based on a selection operation on the sample result data displayed in the second region; in response to a triggering operation on the second function control in the fifth region, recalculating the sample result data corresponding to the fourth target sample, obtaining updated sample result data, and displaying it in the second region;

[0162] The third item: in response to a triggering operation on the third function control in the fifth region, displaying an analysis option setting window; the analysis option setting window includes a data preprocessing rule setting region, a calculation rule setting region, and a display content setting region.

[0163] In one embodiment, the experimental information management interface displays label options, and each label option corresponds one-to-one to a to-be-displayed experimental stage included in the experimental item corresponding to the target experimental batch, and the to-be-displayed experimental stages included in the experimental item are determined based on the item type of the experimental item. Based on this, the information display module 1006 may include: an experimental stage information display module, configured to display experimental result information corresponding to the target experimental batch in a target experimental stage in the second region and display experimental process information corresponding to the target experimental batch in the target experimental stage in the third region based on a selection operation on the label option; the target experimental stage includes the to-be-displayed experimental stage corresponding to the selected label option.

[0164] It should be noted that for the specific limitations of the experimental information display device 1000, reference can be made to the limitations on the experimental information display method in the above text, which will not be elaborated here. Each module in the above experimental information display device 1000 can be implemented in whole or in part by software, hardware, and their combination. Each of the above modules can be embedded in the processor of the computer device in hardware form or be independent of it, or can be stored in the memory of the computer device in software form, so as to facilitate the processor to call and execute the operations corresponding to each of the above modules.

[0165] In one embodiment, a control terminal is provided, including a memory and a processor. The memory stores a computer program. When the processor executes the computer program, the steps of the experimental information display method provided in any embodiment of the present application are implemented.

[0166] Specifically, the internal structure of the control terminal can be as Figure 11 shown, including a processor, a memory, a network interface, a display screen, an input device, and a sound collection device connected through a system bus. Among them, the processor is used to provide computing and control capabilities. The memory includes a non-volatile storage medium and an internal memory. The non-volatile storage medium of the control terminal stores an operating system and a computer program. When the computer program is executed by the processor, the processor can implement the experimental information display method provided in any embodiment of the present application; the internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The network interface is used to communicate with an external terminal through a network connection. The display screen can be a liquid crystal display screen or an electronic ink display screen. The input device can be a touch layer covered on the display screen, or a button, a trackball, or a touchpad set on the shell of the computer device, or an external keyboard, touchpad, or mouse. Those skilled in the art can understand that Figure 11 the structure shown in Figure 11 is only a block diagram of some structures related to the solution of the present application, and does not constitute a limitation on the control terminal to which the solution of the present application is applied. The specific control terminal may include more or fewer components than those shown in

[0167] In one embodiment, the experimental information display device provided by the present application can be implemented in the form of a computer program, and the computer program can run on the control terminal as shown in Figure 11 The memory of the control terminal can store each program module that constitutes the device. For example, Figure 10 the interface display module 1002 and the target batch determination module 1004 shown in Figure 11The control terminal shown can execute step S202 through the interface display module 1002 in the experimental information display device 1000 shown in Figure 10 and execute step S204 through the target batch determination module 1004, and so on.

[0168] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The program can be stored in a non-volatile computer-readable storage medium. When the program is executed, it can include the processes of the embodiments of the above methods. Among them, any reference to a memory, storage, database, or other medium used in the various embodiments provided in the present application can include non-volatile and / or volatile memories. Non-volatile memories can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memories can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), Rambus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and Rambus dynamic RAM (RDRAM), etc.

[0169] Accordingly, in one embodiment, a computer-readable storage medium is provided, storing a computer program, which when executed by a processor causes the processor to execute the steps of the experimental information display method provided in any embodiment of the present application.

[0170] In one embodiment, a sample analysis system is provided, including a sample analysis instrument and the above control terminal, and the sample analysis instrument is communicatively connected to the control terminal.

[0171] Among them, the sample analysis instrument can be used to perform corresponding experimental operations on the experimental batches to be detected created by the control terminal, obtain the experimental detection data corresponding to the experimental batches to be detected, and send it to the control terminal. The control terminal is used to analyze and process the received experimental detection data to obtain the experimental result information and experimental process information corresponding to the experimental batches to be detected.

[0172] Moreover, the control terminal is further configured to provide an experimental information management interface, which includes a first area, a second area, and a third area. Based on the selection operation of the candidate experimental batches in the first area, the target experimental batch is determined, and the experimental result information corresponding to the target experimental batch is displayed in the second area, and the experimental process information corresponding to the target experimental batch is displayed in the third area.

[0173] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification. [[ID=!]]

[0174] The above embodiments only represent several implementation manners of the present application. The description is relatively specific and detailed, but it should not be construed as a limitation on the patent scope of the present application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several modifications and improvements can still be made, and these all belong to the protection scope of the present application. Therefore, the protection scope of the patent of the present application shall be subject to the appended claims.

Claims

1. A method for displaying experimental information, characterized in that, Including: Display an experimental information management interface; wherein, the experimental information management interface includes a first area, a second area, and a third area; Based on a selection operation on the candidate experimental batches in the first area, determine a target experimental batch; In the second area, display the experimental result information corresponding to the target experimental batch, and in the third area, display the experimental process information corresponding to the target experimental batch.

2. The method according to claim 1, wherein The method includes: After the first area is hidden, display a batch selection control in the experimental information management interface; the batch selection control includes batch options corresponding one-to-one to the candidate experimental batches in the first area, and the size of the batch selection control is smaller than the size of the first area; The manner of determining the target experimental batch includes: Based on a selection operation on the batch options, determine the candidate experimental batch corresponding to the selected batch option as the target experimental batch.

3. The method according to claim 2, characterized in that, After the first area is hidden, the method includes: Appropriately increase the second area and the third area in the experimental information management interface.

4. The method according to claim 1, wherein In the first area, the validity information of the candidate experimental batches is displayed, and the validity information corresponds one-to-one to the candidate experimental batches. The validity information is used to characterize the overall validity of the experimental results of the corresponding candidate experimental batches; The method further includes: In response to a trigger operation on the guidance control in the first area, display explanatory information; The explanatory information is used to explain the meaning of the validity information.

5. The method according to claim 1, characterized in that The experimental information management interface further includes a fourth area, and the method includes at least one of the following: The first item; Based on a selection operation on the first screening mode setting control in the fourth area, screen out the experimental batches that meet the batch screening conditions from the already created experimental batches as candidate experimental batches; wherein, the batch screening conditions are determined based on a setting operation on the screening condition setting control; The second item: Based on a selection operation on the second screening mode setting control in the fourth area, screen out the experimental batches of the current day from the already created experimental batches as candidate experimental batches; The third item: Based on the sample information input in the search control in the fourth area, use the experimental batches associated with the sample information as candidate experimental batches.

6. The method according to claim 1, wherein The experimental result information includes the sample result data corresponding to each sample in the target experimental batch; the experimental process information includes the amplification curve chart corresponding to the target experimental batch, and the amplification curve chart includes the amplification curves corresponding to each sample in the target experimental batch; The method includes at least one of the following: Based on a selection operation on the sample result data displayed in the second area, determine a first target sample from the samples of the target experimental batch, and prominently mark the amplification curve corresponding to the first target sample in the amplification curve chart displayed in the third area; Based on a selection operation on the amplification curves in the amplification curve chart displayed in the third area, determine a second target sample from the samples of the target experimental batch, and prominently mark the sample result data corresponding to the second target sample in the second area.

7. The method according to claim 1, characterized in that The experimental process information includes the amplification curve chart corresponding to the target experimental batch; The method includes: Displaying the threshold line corresponding to the target experimental batch and the amplification curve of the calibrator corresponding to the target experimental batch in the amplification curve chart displayed in the third area; Determining the reference threshold corresponding to the target experimental batch based on the position adjustment operation for the threshold line.

8. The method according to claim 1, wherein The third area includes target selection controls, and each target selection control corresponds one-to-one to the target corresponding to the target experimental batch; the experimental process information includes the amplification curve chart corresponding to the target experimental batch, and the amplification curve chart includes the amplification curves corresponding to the respective samples in the target experimental batch, and each amplification curve corresponding to a sample includes an amplification curve corresponding one-to-one to the target of the sample; The method includes: Based on the selection operation on the target selection control, determining the target to be hidden from the targets corresponding to the target experimental batch, and hiding the amplification curve corresponding to the target to be hidden in the amplification curve chart displayed in the third area.

9. The method according to claim 1, characterized in that, The experimental result information includes the sample result data corresponding to the respective samples in the target experimental batch, and the experimental information management interface further includes a fifth area. The method includes at least one of the following: The first item: Based on the selection operation on the sample result data displayed in the second area, determining a third target sample from the samples of the target experimental batch; In response to the triggering operation on the first function control in the fifth area, displaying a detailed information viewing window; the basic information, sample result data, and amplification curve chart of the third target sample are displayed in the detailed information viewing window; The second item: Based on the selection operation on the sample result data displayed in the second area, determining a fourth target sample from the samples of the target experimental batch; In response to the triggering operation on the second function control in the fifth area, recalculating the sample result data corresponding to the fourth target sample, obtaining the updated sample result data, and displaying it in the second area; The third item: In response to the triggering operation on the third function control in the fifth area, displaying an analysis option setting window; the analysis option setting window includes a data preprocessing rule setting area, a calculation rule setting area, and a display content setting area.

10. The method according to claim 1, wherein The experimental information management interface displays label options, and each label option corresponds one-to-one to the experimental stage to be displayed included in the experimental project corresponding to the target experimental batch, and the experimental stage to be displayed is determined based on the project type of the experimental project; Displaying the experimental result information corresponding to the target experimental batch in the second area and displaying the experimental process information corresponding to the target experimental batch in the third area includes: Based on the selection operation for the label option, display the experimental result information corresponding to the target experimental batch in the target experimental stage in the second area, and display the experimental process information corresponding to the target experimental batch in the target experimental stage in the third area; the target experimental stage includes the experimental stage to be displayed corresponding to the selected label option.

11. A display device for experimental information, characterized in that, Comprising: An interface display module for displaying an experimental information management interface; wherein, the experimental information management interface includes a first area, a second area, and a third area; A target batch determination module for determining a target experimental batch based on the selection operation for the candidate experimental batches in the first area; An information display module for displaying the experimental result information corresponding to the target experimental batch in the second area, and displaying the experimental process information corresponding to the target experimental batch in the third area.

12. A computer-readable storage medium storing a computer program, characterized in that, When the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 10 are implemented.

13. A control terminal, comprising a memory and a processor, the memory storing a computer program, characterized in that, When the processor executes the computer program, the steps of the method according to any one of claims 1 to 10 are implemented.

14. A sample analysis system, characterized in that, Comprising a sample analysis instrument and a control terminal as claimed in claim 13, the sample analysis instrument being communicatively connected to the control terminal.