Quality control liquid information correction device and method, sample analyzer, and readable storage medium
By using a quality control liquid information correction device and method, a quality control correction import interface is generated and the correction results are displayed, which solves the problem of low accuracy of the mean and standard deviation set by the manufacturer and achieves more accurate quality control judgment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZYBIO INC
- Filing Date
- 2022-09-01
- Publication Date
- 2026-07-24
AI Technical Summary
In existing technologies, the accuracy of the mean and standard deviation set by manufacturers as quality control judgment standards is low, which easily leads to misjudgments when judging quality control rules.
A quality control liquid information calibration device and method are provided. By acquiring the quality control calibration information of the quality control liquid to be calibrated, a quality control calibration import interface is generated, a quality control calibration result is generated according to the quality control calibration command input by the user, and the calibration result is displayed by detecting the user's query information, so as to realize human-computer interactive calibration of quality control liquid information.
This improves the accuracy of quality control judgment standards, avoids misjudgments caused by excessively large ranges of mean and standard deviation specified by manufacturers, and enhances the accuracy of quality control rule judgments.
Smart Images

Figure CN115327098B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical device technology, and in particular to a quality control fluid information correction device, method, sample analyzer, and readable storage medium. Background Technology
[0002] With the continuous development of the medical device field, chemiluminescence immunoassay technology, which has a high degree of automation, has gradually become the mainstream immunodiagnostic method. For immunoassay sample analysis equipment, quality control tests are required before sample testing. Currently, laboratory staff usually judge the controllable range of quality control by using the mean and standard deviation specified by the manufacturer. However, because the specified range of the mean and standard deviation is too large, misjudgments are prone to occur when judging quality control rules. For example, a quality control sample that is in a stable state may be judged as out of control. Therefore, the accuracy of using the mean and standard deviation set by the manufacturer as the standard for quality control judgment is low. Summary of the Invention
[0003] The main objective of this application is to provide a quality control liquid information correction device, method, sample analyzer, and readable storage medium, aiming to solve the technical problem of low accuracy in the prior art when using the mean and standard deviation set by the manufacturer as the quality control judgment standard.
[0004] To achieve the above objectives, this application provides a quality control liquid information correction device, which is applied to the sample analyzer. The quality control liquid information correction device includes:
[0005] The information acquisition module is used to acquire the quality control calibration information of the control solution to be calibrated;
[0006] The information display module is used to generate a quality control correction import interface in the first display module based on the quality control correction information.
[0007] The result generation module is used to generate the quality control calibration result of the quality control liquid to be calibrated based on the quality control calibration command entered by the user in the quality control calibration import interface. The quality control calibration result is used to characterize the information of the calibrated quality control liquid.
[0008] The result detection module is used to determine whether to display the quality control correction result in the second display module by detecting whether the user has entered the query information corresponding to the quality control correction information in the information display module.
[0009] To achieve the above objectives, this application also provides a method for correcting quality control liquid information, wherein the method is applied to the sample analyzer, and the method includes:
[0010] Obtain the quality control calibration information of the control solution to be calibrated;
[0011] Based on the quality control calibration information, a quality control calibration import interface is generated in the first display module;
[0012] Based on the quality control calibration command entered by the user in the quality control calibration import interface, the quality control calibration result of the quality control solution to be calibrated is generated, wherein the quality control calibration result is used to characterize the information of the calibrated quality control solution;
[0013] By detecting whether the user has entered query information corresponding to the quality control correction information into the information display module, it is determined whether to display the quality control correction result in the second display module.
[0014] This application also provides a quality control liquid information calibration device, which can be a sample analyzer. The quality control liquid information calibration device includes: a memory, a processor, and a program stored in the memory for implementing the quality control liquid information calibration method.
[0015] The memory is used to store the program for implementing the quality control liquid information correction method;
[0016] The processor is used to execute a program that implements the quality control liquid information correction method, so as to implement the steps of the quality control liquid information correction method as described above.
[0017] This application also provides a computer-readable storage medium storing a program for implementing a quality control liquid information correction method, wherein when the program for the quality control liquid information correction method is executed by a processor, it implements the steps of the quality control liquid information correction method as described above.
[0018] This application also provides a computer program product, including a computer program that, when executed by a processor, implements the steps of the quality control liquid information correction method described above.
[0019] This application provides a quality control fluid information calibration device, method, sample analyzer, and readable storage medium, applied in the field of medical device technology. Compared to existing technologies that use the manufacturer-set mean and standard deviation as quality control judgment standards, this application first obtains the quality control calibration information of the quality control fluid to be calibrated; then, based on the quality control calibration information, a quality control calibration import interface is generated in a first display module; and then, based on the quality control calibration command input by the user in the quality control calibration import interface, a quality control calibration result of the quality control fluid to be calibrated is generated. The quality control calibration result is used to characterize the calibrated quality control fluid information. Furthermore, by detecting whether the user inputs query information corresponding to the quality control calibration information in the information display module, it is determined whether to display the quality control calibration result in a second display module. This achieves the purpose of interactively calibrating quality control fluid information through human-computer interaction. Because when the user sets information... When the query information corresponding to the quality control calibration information is input into the display module, the quality control calibration result can be displayed in the information display module. This achieves the purpose of human-computer interaction and interactive calibration of quality control fluid information through the set information display module. Since the quality control fluid information includes the mean and standard deviation of the quality control fluid, the calibrated mean and standard deviation can be used as the quality control judgment standard, rather than relying solely on the mean and standard deviation specified by the manufacturer. Because the quality control calibration result is more in line with the quality control environment, using the quality control calibration result as the quality control judgment standard is more suitable for user needs. Therefore, it overcomes the technical defect that when staff judge the controllable range of quality control using the mean and standard deviation specified by the manufacturer, the large calibration range of the mean and standard deviation can easily lead to misjudgment when making quality control rule judgments. Thus, the accuracy of the quality control judgment standard is improved. Attached Figure Description
[0020] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0021] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is a schematic diagram of the quality control liquid information correction device of this application;
[0023] Figure 2 This is a partial schematic diagram of the quality control rule management interface of the quality control liquid information correction device of this application;
[0024] Figure 3This is a partial schematic diagram of the calibration import interface of the quality control liquid information calibration device of this application;
[0025] Figure 4 This is a flowchart illustrating the quality control fluid information correction method of this application;
[0026] Figure 5 This is a schematic diagram of the equipment structure of the hardware operating environment involved in the quality control liquid information correction method in the embodiments of this application.
[0027] The purpose, features, and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0028] To make the above-mentioned objects, features, and advantages of the present invention more apparent and understandable, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0029] Example 1
[0030] First, it should be understood that for laboratory staff in the field of chemiluminescence, to avoid the impact of high costs, it is usually difficult to continuously use third-party quality control. This leads to the following difficulties in judging the controllable range during routine quality control: First, if the quality control provided by the manufacturer is used, the excessively large calibration range of the mean and standard deviation can lead to erroneous quality control judgments. For example, taking the quality control rule "10X" (if 10 consecutive quality control solution measurements are on one side of the mean, it indicates the presence of systematic error), assuming the manufacturer provides a mean of 10 and a standard deviation of 1 for quality control solution A, then within 7-13 days, quality control solution A is considered to be in control. However, if the target values of quality control solution A measured in the laboratory for ten consecutive days are all less than 10 or all greater than 10, and the CV (Coefficient of...) is... When the variance (coefficient of variation) is small, meaning it lies on the same side of the mean, then according to the "10X" quality control rule for judging whether a control solution is out of control, it would be considered that control solution A is out of control. However, in this laboratory, control solution A is actually in control, leading to a misjudgment. Secondly, since most manufacturer-provided quality control systems are single-item systems, to improve efficiency, laboratory staff sometimes create composite quality control products using serum or other control materials. However, composite quality control products also require a mean and standard deviation before quality control. Currently… Typically, laboratory staff determine initial target values based on their experience, and then use these accumulated target values and calculations to judge the controllable range of self-made quality control systems. This method not only makes the setting of the mean and standard deviation overly reliant on the subjective judgment of laboratory staff, resulting in low accuracy of quality control judgment standards, but also requires laboratory staff to use other tools to accumulate and calculate target values, as the accumulated target values cannot be achieved through instrument software. This leads to low efficiency in judging the controllable range of quality control. Therefore, there is an urgent need for a method to improve the accuracy of quality control judgment standards.
[0031] This application provides a quality control liquid information correction device, which is applied to the sample analyzer, with reference to... Figure 1 The quality control liquid information correction device includes:
[0032] The information acquisition module is used to acquire the quality control calibration information of the control solution to be calibrated;
[0033] The information display module is used to generate a quality control correction import interface in the first display module based on the quality control correction information.
[0034] The result generation module is used to generate the quality control calibration result of the quality control liquid to be calibrated based on the quality control calibration command entered by the user in the quality control calibration import interface. The quality control calibration result is used to characterize the information of the calibrated quality control liquid.
[0035] The result detection module is used to determine whether to display the quality control correction result in the second display module by detecting whether the user has entered the query information corresponding to the quality control correction information in the information display module.
[0036] In this embodiment, it should be noted that the information acquisition module, information display module, result generation module, and result detection module are all deployed on the sample analyzer. The sample analyzer can be a fully automated chemiluminescence immunoassay analyzer, which serves as a human-computer interaction carrier for quality control fluid information calibration. The quality control fluid to be calibrated is a quality control fluid awaiting mean and standard deviation calibration, specifically a quality control fluid named "Anti-TOP QC1", "TT3 QC1", and "FT4 QC2". In the quality control fluid name, "Anti-TOP" (thyroid peroxidase autoantibody), "TT3" (triiodothyronine), and "FT4" (free tetraiodothyronine) are used to indicate specific quality control fluid items. "QC1", "QC2", and "QC3" in the quality control fluid name are used to identify different concentrations of the quality control fluid. Different quality control fluids belonging to the same quality control fluid item have different concentrations, and different quality control fluids belonging to different quality control fluid items can have the same or different concentrations.
[0037] Additionally, it should be noted that the quality control calibration information is used to correct the mean and standard deviation of the control solution to be calibrated, specifically including calibration rule information, calibration item information, and calibration cycle information. The calibration rule information is used to characterize the quality control rules applicable to the control solution to be calibrated, and the quality control rules can specifically be 1. 2s 1 3s 2 2s 4 1sIn addition to 10X, the calibration item information is used to characterize the quality control liquid item to which the quality control liquid to be calibrated belongs. The quality control liquid item can specifically be triiodothyronine (TT3), thyroid-stimulating hormone (TSH), and luteinizing hormone (LH), etc. The calibration cycle information is used to characterize the calibration cycle required for the quality control liquid to be calibrated. The calibration cycle can specifically be one month, two months, or three months, etc. For example, in one implementable method, assuming the calibration cycle is one month, the corresponding quality control information is obtained... If the real-time time is June 18th, the quality control liquid information correction device can automatically accumulate the measured target values from June 18th to July 18th. Then, the accumulated measured target values are used to correct the given mean and standard deviation. The given mean and standard deviation are determined by the type of quality control liquid. If the quality control liquid carries the manufacturer's calibration values, the given mean and standard deviation can be the calibration values carried by the manufacturer. If the quality control liquid is a user-made quality control liquid, the given mean and standard deviation can be the mean and standard deviation set by the user.
[0038] Additionally, it should be noted that the first display module is used to display newly added quality control calibration information. The quality control calibration import interface is a quality control rule management interface waiting to trigger a quality control calibration command. The quality control rule management interface is a visual control interface for quality control rules. The quality control calibration command is used to trigger the generation of quality control calibration results. The quality control calibration results are used to characterize the calibrated quality control fluid information, that is, the calibrated mean and standard deviation. The quality control calibration command can be triggered by detecting a user clicking the "Save" button on the quality control rule management interface. The quality control calibration import interface has... The interface can be a quality control rule management interface where the quality control liquid item has been selected and the "quality control calibration" button has been checked. The selected quality control liquid item can be the quality control liquid item selected by default by the quality control liquid information calibration device, or it can be the quality control liquid item selected by detecting the item selection command entered by the user in the quality control rule management interface. For example, in one feasible method, assuming that the default quality control liquid item is B after the user clicks the quality control rule management interface, when the user clicks the button that identifies quality control liquid item C, an item selection command is generated by default, and quality control liquid item C is selected as the quality control liquid item selected by the user.
[0039] Additionally, it should be noted that the query information is used to query the quality control correction results on the quality control result management interface. The quality control result management interface is a visual query interface for quality control results. In one feasible approach, assuming the user enters "Anti-TOP QC3" and a time interval (in days) on the quality control result management interface, the quality control results of the quality control solution named "Anti-TOP QC3" within that time interval will be displayed on the quality control result management interface. The input method can be through a drop-down selection or active input by the user. The quality control results can be quality control solution data or quality control charts, etc.
[0040] As an example, the information acquisition module receives a user-inputted quality control calibration information import command. Based on the quality control calibration information import command, it acquires the quality control calibration information of the quality control solution to be calibrated. The quality control calibration information import command can be triggered by detecting that the user clicked an identifier button for identifying calibration rule information or calibration item information, or by detecting that the user inputs calibration cycle information. Alternatively, it can be triggered by detecting that the identifier button for identifying calibration rule information or calibration item information is selected, or by detecting that the user inputs calibration cycle information. The first display module generates a quality control calibration import interface corresponding to the quality control calibration information. This quality control calibration import interface is a quality control rule management interface where the quality control calibration information has been input. The quality control calibration import interface receives the user-inputted quality control calibration command. Based on the quality control calibration command, the result generation module generates the quality control calibration result of the quality control solution to be calibrated. The quality control calibration result is used to characterize the calibrated quality control fluid information. The quality control calibration command can be triggered by detecting that the user clicks the "Save" button on the quality control calibration import interface. The result detection module detects whether the user has entered the query information corresponding to the quality control fluid calibration information on the information display interface. If the user has entered the query information corresponding to the quality control calibration information on the information display interface, the quality control calibration result is displayed on the second display module. If the user has not entered the query information corresponding to the quality control calibration information on the information display interface, the quality control calibration result is not displayed on the second display module. The display method of the quality control calibration result can be numerical value and quality control judgment criteria, etc. The user not entering the query information corresponding to the quality control calibration information on the information display interface can specifically mean that the user did not enter the query information, or that the query information entered by the user is inconsistent with the quality control calibration information.
[0041] In one feasible approach, refer to Figure 2 , Figure 2 This is a partial schematic diagram of the quality control rule management interface. Figure 2The quality control rule management interface shown includes a list of quality control liquid items, a multi-rule quality control list, and interactive buttons. The quality control liquid item list includes a quality control liquid item identification button and a list header. The quality control liquid item identification button is used to identify quality control liquid items, and this button can only be selected individually. The multi-rule quality control list includes quality control rule checkboxes, joint quality control checkboxes, quality control calibration checkboxes, and quality control liquid information before calibration (name, mean, and standard deviation). The quality control rule checkboxes in the multi-rule quality control list can be selected individually or in multiple ways. When the user clicks the "Quality Control Rule" button on the sample analyzer, the quality control liquid item identification button in a preset position in the quality control liquid item list is selected. For example... Figure 2 The button "NT-proBNP" indicates that when the user selects a quality control fluid item from the list, the corresponding quality control fluid becomes the quality control fluid to be calibrated. This can be one or more fluids. The system will then display the pre-calibration information of the quality control fluid corresponding to the selected item in the multi-rule quality control list; that is, the pre-calibration information of the quality control fluid to be calibrated. Similarly, when the "Quality Control Rule" button is triggered, all quality control rule options are checked. Users can adjust the selection of a specific quality control rule by entering a rule selection command in the quality control rule checkbox of the quality control rule item. For example... Figure 2 Button "1" shown 2s "and button 1" 3s Meanwhile, if the quality control liquid item corresponds to a quality control liquid that participates in joint quality control, the joint quality control option is checked by default. If the quality control liquid item corresponds to a quality control liquid that does not participate in joint quality control, the joint quality control option is grayed out (cannot be checked) by default, and the quality control calibration option is unchecked.
[0042] When the user selects the quality control calibration option, the quality control calibration function is triggered. This triggers the calibration cycle import option, which imports calibration cycle information. The calibration cycle information defaults to "one month," and the user can select the calibration cycle information from the drop-down menu. The quality control calibration function, based on existing quality control rules that use set mean and standard deviation, provides a cumulative target value as the quality control judgment standard. Once the calibration item information, calibration rule information, and calibration cycle information are all obtained—that is, after obtaining the quality control calibration information—a quality control calibration import interface is generated based on this information. Figure 3 , Figure 3To illustrate a partial diagram of the calibration import interface, both the calibration import interface and the quality control rule management interface include a "page turning interaction button" and a "save" interaction button. The "page turning interaction button" allows the user to click and view the quality control liquid items on different pages of the quality control liquid item list. The "save" button is used to trigger quality control rule commands on the quality control rule management interface and to trigger quality control calibration commands on the calibration import interface.
[0043] The first display module includes a quality control rule management interface, and the information acquisition module is further used for:
[0044] Based on the calibration item selection command entered by the user in the quality control rule management interface, obtain calibration item information;
[0045] Based on the calibration rule selection command entered by the user in the quality control rule management interface, obtain calibration rule information;
[0046] Based on the calibration cycle selection command entered by the user in the third display module, obtain the calibration cycle information;
[0047] The calibration project information, the calibration rule information, and the calibration cycle information are collectively used as the quality control calibration information.
[0048] In this embodiment, it should be noted that the calibration item selection command is a command to select a single quality control liquid item, specifically, it can be a command to select by clicking the quality control liquid item icon button. The calibration rule selection command is a command to select one or more quality control rules, specifically, it can be a command to select by checking the quality control rule checkboxes. The calibration cycle selection command is a command to select the quality control cycle of the quality control liquid to be calibrated, specifically, it can be a command to select by clicking the calibration cycle icon module of the calibration cycle management interface. The calibration cycle icon module identifies the calibration cycle corresponding to the calibration cycle information.
[0049] The quality control calibration information includes first calibration item information. When the calibration item information is first calibration item information used to characterize the quality control liquid to be calibrated as a combined quality control liquid, the information display module is further used for:
[0050] Based on the first calibration item information, a first joint quality control item and corresponding joint quality control liquid information corresponding to the first calibration item information are generated in the quality control rule management interface. The first joint quality control item is used to indicate that the joint quality control button in the quality control rule management interface is in the checked state.
[0051] In this embodiment, it should be noted that the first calibration item information is used to characterize the quality control liquid to be calibrated as a joint quality control liquid, and the first joint quality control item is used to characterize that the joint quality control button of the quality control rule management interface is in a checked state. The joint quality control information is used for the quality control liquid information before calibration of the joint quality control liquid. For example, in one implementable method, assuming that the user checks the quality control liquid item marked "C" in the quality control liquid item list of the quality control rule management interface, where the quality control liquid item "C" is a joint quality control item, specifically including quality control liquid x and quality control liquid y, and then the joint quality control button of the rule quality control list of the quality control rule management interface is in a checked state, wherein the joint quality control button being in a checked state means that the check box button of the joint quality control check option is in a checked state.
[0052] The quality control calibration information includes second calibration item information. When the calibration item information is second calibration item information used to characterize the quality control liquid to be calibrated as a monomeric quality control liquid, the information display module is further used for:
[0053] Based on the second calibration item information, a second joint quality control item and corresponding monomeric quality control liquid information corresponding to the second calibration item information are generated in the quality control rule management interface. The second joint quality control item is used to indicate that the joint quality control button in the quality control rule management interface is in an unchecked state.
[0054] In this embodiment, it should be noted that the second calibration item information is used to characterize the control liquid to be calibrated as a single control liquid, and the second joint control item is used to characterize the joint control button of the quality control rule management interface as being in an unchecked state. The joint control information is used for the control liquid information of the single control liquid before calibration. For example, in one implementable method, suppose the user clicks the control liquid item "D" in the control liquid item list of the quality control rule management interface, where the control liquid item "C" is a single control item, specifically including control liquid z. Then, the joint control button of the rule control list of the quality control rule management interface is in an unchecked state, where the joint control button being in a checked state means that the check box button of the joint control check option is in an unchecked state.
[0055] The information display module is further used for:
[0056] The system receives a first checkmark command input by the user in the quality control correction item of the quality control rule management interface, and generates a corresponding correction cycle import item in the quality control rule management interface based on the first checkmark command, wherein the first checkmark command is used to check the quality control correction item.
[0057] In this embodiment, it should be noted that the first selection command is used to select the quality control calibration item, specifically, it can be to select the checkbox of the quality control calibration option in the quality control rule management interface. The calibration cycle import item is used to import calibration cycle information. For example, in one feasible method, when the calibration cycle import item is generated, the default calibration cycle will be marked in the default identifier box of the calibration cycle import item. Specifically, it can be "one month", "two months" and "three months", etc. The quality control results of the corresponding quality control liquid item can be calibrated by selecting the calibration cycle.
[0058] The third display module includes a calibration cycle management interface, and the information display module is further used for:
[0059] Based on the calibration cycle selection command entered by the user in the calibration cycle import item, a corresponding calibration cycle selection item is generated in the calibration cycle management interface.
[0060] In this embodiment, it should be noted that the calibration cycle selection command is a selection command for selecting the specific calibration time of the quality control liquid to be calibrated. It can be triggered by detecting that the user clicks on the calibration cycle import item, and then the calibration cycle management interface pops up in the third display module to select the calibration cycle information. The calibration cycle management interface includes a preset number of calibration cycle selection items, which are used to identify different calibration cycles. For example, in one implementable method, when the user clicks on the calibration cycle import item, a preset number of calibration cycle selection items will pop up in the calibration cycle management interface. Each of the calibration cycle selection items identifies a calibration cycle, and the cycle time difference between the calibration cycles identified by different calibration cycle selection items is set by the user according to the quality control calibration requirements.
[0061] The result generation module includes a first determination module, which determines whether historical quality control data exists for the quality control liquid to be calibrated corresponding to the input quality control calibration command. If historical quality control data exists for the quality control liquid to be calibrated, a second determination module determines whether the quality control liquid to be calibrated meets a first preset summary condition. If the historical quality control data does not exist for the quality control liquid to be calibrated, a third determination module determines whether the quality control liquid to be calibrated meets a second preset summary condition.
[0062] In this embodiment, it should be noted that the historical quality control data refers to the test data of the control solution to be calibrated before the quality control calibration command is triggered. Specifically, it includes historical valid quality control data and historical invalid quality control data, specifically one or more. Among them, historical valid quality control data refers to the quality control valid data of the control solution to be calibrated before the quality control calibration command is triggered, and historical invalid quality control data refers to the control solution data that is not historical valid quality control data before the quality control calibration command is triggered. The quality control valid data refers to the latest test result of the control solution to be calibrated on the current day and the test result does not exceed ±3SD. The second determination module and the third determination module are parallel modules. That is, when the control solution to be calibrated is a single control solution, if the control solution to be calibrated is determined by the second determination module to determine whether it meets the first preset summary condition, it indicates that the control solution to be calibrated has historical quality control data, and therefore does not need to be determined by the third determination module to determine whether it meets the second preset summary condition.
[0063] The first preset aggregation condition is:
[0064] The test cycle of the quality control liquid to be calibrated is detected to meet the first test cycle, and the effective quality control data of the quality control liquid to be calibrated in the first test cycle is detected to be not less than the first preset data threshold. The first test cycle is a time period with the test time of the first effective quality control data as the start time and the real-time time corresponding to the quality control calibration command as the end time.
[0065] The second preset aggregation condition is:
[0066] The effective data of the quality control liquid to be calibrated in the second test cycle is not less than the second preset data threshold. The second test cycle is a time period with the real-time time corresponding to the quality control calibration command as the start time and the calibration cycle corresponding to the calibration cycle information as the time interval.
[0067] In this embodiment, it should be noted that the first preset data threshold is the preset effective data threshold for the quality control liquid to be calibrated that has historical quality control data, and the second preset data threshold is the preset effective data threshold for the quality control liquid to be calibrated that does not have historical quality control data. The first preset data threshold and the second preset data threshold may be the same or different, specifically 20, 30 or 40, etc.
[0068] Additionally, it should be noted that the quality control calibration result needs to be generated by summarizing the valid quality control data of the quality control tests within a certain period of time. Therefore, for the quality control solution to be calibrated that does not have historical quality control data, the valid quality control data needs to be accumulated. For the quality control solution to be calibrated that has historical quality control data, the historical valid quality control data needs to be accumulated when the calibration period is met. If the calibration period is not met, the valid quality control data needs to be accumulated when the calibration period is met. The valid quality control data can be historical valid quality control data, current test valid data, or a combination of current test valid data and historical valid quality control data. The current test valid data is used to represent the valid quality control data tested within the period from the time corresponding to the triggering of the quality control calibration command to the time when the calibration period is met.
[0069] In one feasible approach, assuming both the first and second preset data thresholds are 20, the trigger date for the quality control calibration command is July 7th, and the calibration period corresponding to the calibration period information is one month, if the quality control liquid to be calibrated has no historical quality control data, then the time interval from July 7th to August 7th is designated as the second test period. The third determination module then determines whether the quality control liquid to be calibrated has at least 20 valid quality control data points during the period from July 7th to August 7th. If the quality control liquid to be calibrated has historical quality control data, then the quality control liquid to be calibrated and the non-existent historical data are considered valid. The processing logic for the quality control solution to be calibrated is the same and will not be repeated here. If the quality control solution to be calibrated has historical valid quality control data, and the test time corresponding to the first historical valid quality control data of the quality control solution to be calibrated is July 2, then the second determination module is used to determine whether the quality control solution to be calibrated has at least 20 valid quality control data during the period from July 2 to August 2. If the quality control solution to be calibrated has historical valid quality control data, and the test time corresponding to the first historical valid quality control data of the quality control solution to be calibrated is May 2, then the second determination module is used to determine whether the quality control solution to be calibrated has at least 20 valid quality control data during the period from May 2 to August 2.
[0070] The result generation module further includes a judgment and summary module, which is used for:
[0071] When it is determined that the quality control liquid to be calibrated meets the first preset summary condition, the valid quality control data of the quality control liquid to be calibrated in the first test cycle are summarized to obtain the first summary data; or
[0072] When it is determined that the quality control liquid to be calibrated meets the second preset summary condition, the valid quality control data of the quality control liquid to be calibrated in the second test cycle are summarized to obtain the second summary data.
[0073] In this embodiment, it should be noted that the first summary data is used to characterize the effective quality control data of the control solution to be calibrated that meets the first preset summary conditions, and the second summary data is used to characterize the effective quality control data of the control solution to be calibrated that meets the second preset summary conditions. Both the first summary data and the second summary data are summary data. The summary data is used to characterize the effective quality control data within the test period. The number of summary data is not less than the preset data threshold corresponding to the test period. For example, in one implementable method, assuming that the second preset data threshold is 30 and the effective quality control data within the second test period is 35, then the summary data is the 35 effective quality control data within the second test period.
[0074] The result generation module further includes a determination and extraction module, which is used for:
[0075] When it is determined that the quality control liquid to be calibrated does not meet the first preset summary condition, the first preset quality control liquid information of the quality control liquid to be calibrated is extracted.
[0076] When it is determined that the quality control liquid to be calibrated does not meet the second preset summary condition, the second preset quality control liquid information of the quality control liquid to be calibrated is extracted.
[0077] In this embodiment, it should be noted that the first preset quality control liquid information is the quality control liquid information before correction that does not meet the first preset summary condition, and the second preset quality control liquid information is the quality control liquid information before correction that does not meet the second preset summary condition. Both the first and second preset quality control liquid information are preset quality control liquid information. Specifically, the preset quality control liquid information can be the mean and standard deviation set by the user. Specifically, not meeting the first preset summary condition can mean that the test period of the quality control liquid to be corrected does not meet the first test period, or that the effective quality control data of the quality control liquid to be corrected in the first test period is less than the first preset data threshold, or that neither of these conditions is met. Not meeting the second summary condition can mean that the effective quality control data of the quality control liquid to be corrected in the second test period is less than the second preset data threshold.
[0078] The result generation module further includes a quality control correction result generation module, which is used for:
[0079] Obtain the summary data from the judgment summary module, and generate the quality control calibration result for the control solution to be calibrated based on the summary data, wherein the summary data includes the first summary data and the second summary data; or
[0080] The preset quality control liquid information of the determination extraction module is obtained, and the quality control correction result of the quality control liquid to be corrected is generated based on the preset quality control liquid information. The preset quality control liquid information includes the first preset quality control liquid information and the second preset quality control liquid information.
[0081] In this embodiment, it should be noted that if the quality control correction result is generated from the summarized data, the quality control correction result can be obtained by substituting the summarized data into the preset calculation formula. If the quality control correction result is generated from the preset quality control liquid information, since the preset quality control liquid information can be the mean and standard deviation preset by the user, the preset quality control liquid information can be directly used as the generated quality control correction result.
[0082] The second display module includes a quality control result management interface, and the result detection module includes a query information detection module, which is used for:
[0083] Receive query information input by the user on the quality control result management interface, wherein the query information includes quality control liquid time query information and quality control liquid item query information;
[0084] The system detects whether the quality control liquid time query information meets a first preset query condition and whether the quality control liquid item query information meets a second preset query condition. The first preset query condition is that the time period corresponding to the quality control liquid time query information is consistent with the correction period corresponding to the correction period information. The second preset query condition is that the quality control liquid item corresponding to the quality control liquid item query information is consistent with the quality control liquid item corresponding to the correction item information.
[0085] In this embodiment, it should be noted that the query information is used to query the quality control calibration results, the quality control liquid time query information is used to represent the query quality control calibration time period entered by the user in the quality control result management interface, which can be "m year n month v day" to "m year n+1 month v day", etc., and the quality control liquid item query information is used to represent the query quality control liquid item entered by the user in the quality control result management interface.
[0086] The second display module includes a quality control calibration result display module, which is used for:
[0087] When it is detected that the query information meets the first preset query condition and the second preset query condition, the query management interface corresponding to the query information is obtained;
[0088] The quality control correction results are displayed on the query management interface in the manner corresponding to the query management interface, wherein the query management interface includes a quality control data management interface and a quality control chart management interface.
[0089] In this embodiment, it should be noted that the query management interface is used to display the quality control correction results. The query information satisfies the first preset query condition and the second preset query condition. That is, the quality control liquid item corresponding to the quality control liquid item query information is consistent with the quality control liquid item corresponding to the correction item information, and the time period corresponding to the quality control liquid time query information is consistent with the correction period corresponding to the correction period information. The quality control data management interface is used to manage the quality control liquid data. The quality control liquid data specifically includes quality control time, quality control item, set mean, and set standard deviation, etc. The quality control chart management interface is used to judge the quality control rules through the quality control chart. The quality control chart can specifically be an LJ quality control chart or a Twin Plot quality control chart.
[0090] Additionally, it should be noted that if a query message entered by a user in the quality control data management interface is detected, and the query message satisfies the first preset query condition and the second preset query condition, the quality control correction result is displayed in the quality control data management interface in the form of a numerical display. If a query message entered by a user in the quality control chart management interface is detected, and the query message satisfies the first preset query condition and the second preset query condition, the quality control correction result is displayed in the quality control data management interface in the form of a quality control judgment standard display.
[0091] Additionally, it should be noted that if the query information entered by the user in the query management interface is detected as only not meeting the first preset query conditions, then the query information entered by the user is determined to be the query information corresponding to the quality control correction information. For example, in one implementable method, if the correction period corresponding to the correction period information is September 5th to October 5th, and the time period corresponding to the quality control liquid query time information entered by the user is June 7th to July 8th, and the queried quality control liquid item is consistent with the corrected quality control liquid item, then the quality control correction result at this time can be the set mean and set standard deviation on the quality control data management interface, or it can be the judgment standard of the set mean and set standard deviation on the quality control chart management interface. If the query information entered by the user in the query management interface is detected as not meeting the second preset query conditions, or if no query information is detected entered in the query management interface, then the query information entered by the user in the information display module is determined to be the query information corresponding to the quality control correction information.
[0092] The information display module further includes a fourth display module, which is used to display the preset quality control liquid information of the quality control liquid to be calibrated.
[0093] In this embodiment, it should be noted that the quality control liquid information management interface is used to manage quality control liquid related information, specifically including quality control liquid batch number, quality control liquid expiration date, and quality control liquid status. For example, in one feasible approach, the mean and standard deviation set by the user can be displayed in the item list of the quality control liquid information management interface.
[0094] The quality control liquid information correction device further includes a quality control correction result update module, and the fourth display module includes a quality control liquid information management interface. The quality control correction result update module is used for:
[0095] When it is detected that a user has modified the preset quality control fluid information of the quality control fluid to be calibrated in the quality control fluid information management interface, a quality control calibration result update command is generated.
[0096] Update the quality control calibration result of the control solution to be calibrated according to the quality control calibration result update command.
[0097] In this embodiment, it should be noted that modifying any parameter among the user-defined mean and standard deviation can be considered as modifying the preset quality control fluid information of the quality control fluid to be calibrated. The quality control calibration result update command is used to update the quality control calibration result corresponding to the quality control fluid to be calibrated. The quality control calibration result can be a quality control calibration result that is being generated or a quality control calibration result that has already been generated. For example, in one feasible approach, assuming that the quality control calibration result is a quality control calibration result that has already been generated, the quality control calibration result is invalidated after any parameter among the user-defined mean and standard deviation is modified. If the quality control calibration result is a quality control calibration result that is being generated, the valid quality control data is re-accumulated starting from the real-time time corresponding to the quality control calibration result update command, thereby generating a new quality control calibration result.
[0098] This application provides a quality control fluid information calibration device, applied in the field of medical device technology. Compared to existing technologies that use the manufacturer-set mean and standard deviation as quality control judgment standards, this application first obtains the quality control calibration information of the quality control fluid to be calibrated; then, based on the quality control calibration information, a quality control calibration import interface is generated in a first display module; and then, based on the quality control calibration command input by the user in the quality control calibration import interface, a quality control calibration result of the quality control fluid to be calibrated is generated. The quality control calibration result is used to characterize the calibrated quality control fluid information. Furthermore, by detecting whether the user inputs query information corresponding to the quality control calibration information in the information display module, it is determined whether to display the quality control calibration result in the second display module. This achieves the purpose of interactively calibrating quality control fluid information through human-computer interaction. Because when the user inputs... When querying information corresponding to quality control calibration, the calibration results can be displayed in the information display module. This enables human-computer interaction and interactive calibration of quality control fluid information through the set information display module. Since the quality control fluid information includes the mean and standard deviation of the quality control fluid, the calibrated mean and standard deviation can be used as the quality control judgment standard, rather than relying solely on the mean and standard deviation specified by the manufacturer. Because the quality control calibration results are more consistent with the quality control environment, using the calibration results as the quality control judgment standard is more suitable for user needs. This overcomes the technical defect that when staff judge the controllable range of quality control using the mean and standard deviation specified by the manufacturer, the large calibration range of the mean and standard deviation can easily lead to misjudgments when making quality control rule judgments. Therefore, the accuracy of the quality control judgment standard is improved.
[0099] Example 2
[0100] This application embodiment also provides a quality control liquid information correction method, which is applied to the sample analyzer, with reference to... Figure 4 The quality control fluid information correction method includes:
[0101] Step S10: Obtain the quality control calibration information of the control solution to be calibrated;
[0102] Step S20: Based on the quality control correction information, generate a quality control correction import interface in the first display module;
[0103] Step S30: Based on the quality control calibration command entered by the user in the quality control calibration import interface, generate the quality control calibration result of the quality control solution to be calibrated, wherein the quality control calibration result is used to characterize the information of the calibrated quality control solution;
[0104] Step S40: By detecting whether the user has entered query information corresponding to the quality control correction information in the information display module, determine whether to display the quality control correction result in the second display module.
[0105] As an example, steps S10 to S40 include: acquiring calibration item information, calibration rule information, and calibration cycle information of the quality control liquid to be calibrated; generating a quality control calibration import interface in a first display module based on the calibration item information, the calibration rule information, and the calibration cycle information, wherein the quality control calibration import interface is a quality control rule management interface in which the calibration item information, the calibration rule information, and the calibration cycle information are input; receiving a quality control calibration command input by a user in the quality control calibration import interface, and generating a quality control calibration result for the quality control liquid to be calibrated based on the quality control calibration command, wherein the quality control calibration result is used to characterize the information of the calibrated quality control liquid; if it is detected that a user inputs query information corresponding to the quality control calibration information in the information display module, then the quality control calibration result is displayed in a second display module; if it is detected that a user does not input query information corresponding to the quality control calibration information in the information display module, then the quality control calibration result is not displayed in the second display module.
[0106] The quality control fluid information correction method provided by this invention employs the technical means corresponding to the quality control fluid information correction device in the above embodiments, solving the technical problem of low accuracy when using the mean and standard deviation set by the manufacturer as the quality control judgment standard. Compared with the prior art, the beneficial effects of the quality control fluid information correction method provided by this invention are the same as those of the quality control fluid information correction device provided in the above embodiments, and other technical features in this quality control fluid information correction method are the same as those disclosed in the methods of the above embodiments, and will not be repeated here.
[0107] Example 3
[0108] This invention provides an electronic device, which includes: at least one processor; and a memory communicatively connected to the at least one processor; wherein the memory stores instructions executable by the at least one processor, which are executed by the at least one processor to enable the at least one processor to perform the quality control liquid information correction method in Embodiment 1 above.
[0109] The following is for reference. Figure 5 The diagram illustrates a structural schematic of an electronic device suitable for implementing embodiments of the present disclosure. The electronic devices in the embodiments of the present disclosure may include, but are not limited to, mobile terminals such as mobile phones, laptops, digital broadcast receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), in-vehicle terminals (e.g., in-vehicle navigation terminals), and fixed terminals such as digital TVs and desktop computers. Figure 5 The electronic device shown is merely an example and should not be construed as limiting the functionality and scope of the embodiments disclosed herein.
[0110] like Figure 5 As shown, an electronic device may include a processing unit (such as a central processing unit, graphics processing unit, etc.) that can perform various appropriate actions and processes based on a program stored in read-only memory (ROM) or a program loaded from a storage device into random access memory (RAM). The RAM also stores various programs and data required for the operation of the electronic device. The processing unit, ROM, and RAM are interconnected via a bus. Input / output (I / O) interfaces are also connected to the bus.
[0111] Typically, the following systems can be connected to the I / O interface: input devices including, for example, touchscreens, touchpads, keyboards, mice, image sensors, microphones, accelerometers, gyroscopes, etc.; output devices including, for example, liquid crystal displays (LCDs), speakers, vibrators, etc.; storage devices including, for example, magnetic tapes, hard disks, etc.; and communication devices. Communication devices allow electronic devices to communicate wirelessly or wiredly with other devices to exchange data. Although electronic devices with various systems are shown in the figures, it should be understood that it is not required to implement or possess all the systems shown. More or fewer systems may be implemented alternatively.
[0112] In particular, according to embodiments of this disclosure, the processes described above with reference to the flowcharts can be implemented as computer software programs. For example, embodiments of this disclosure include a computer program product comprising a computer program carried on a computer-readable medium, the computer program containing program code for performing the methods shown in the flowcharts. In such embodiments, the computer program can be downloaded and installed from a network via a communication device, or installed from a storage device, or installed from a ROM. When the computer program is executed by a processing device, it performs the functions defined in the apparatus of embodiments of this disclosure.
[0113] The electronic device provided by this invention employs the quality control liquid information correction device in the above embodiments, solving the technical problem of low accuracy when using the mean and standard deviation set by the manufacturer as the quality control judgment standard. Compared with the prior art, the beneficial effects of the electronic device provided by the embodiments of this invention are the same as those of the quality control liquid information correction device provided in the above embodiments, and other technical features of this electronic device are the same as those disclosed in the devices of the above embodiments, and will not be repeated here.
[0114] It should be understood that various parts of this disclosure can be implemented using hardware, software, firmware, or a combination thereof. In the description of the above embodiments, specific features, structures, materials, or characteristics may be combined in any suitable manner in one or more embodiments or examples.
[0115] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
[0116] Example 4
[0117] This embodiment provides a computer-readable storage medium having computer-readable program instructions stored thereon, which are used to execute the quality control liquid information correction method in Embodiment 3 above.
[0118] The computer-readable storage medium provided in this embodiment of the invention may be, for example, a USB flash drive, but is not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device, or any combination thereof. More specific examples of a computer-readable storage medium may include, but are not limited to: an electrical connection having one or more wires, a portable computer disk, a hard disk, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fiber, portable compact disk read-only memory (CD-ROM), optical storage device, magnetic storage device, or any suitable combination thereof. In this embodiment, the computer-readable storage medium may be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system, system, or device. The program code contained on the computer-readable storage medium may be transmitted using any suitable medium, including but not limited to: wires, optical cables, RF (radio frequency), etc., or any suitable combination thereof.
[0119] The aforementioned computer-readable storage medium may be included in an electronic device or may exist independently without being assembled into an electronic device.
[0120] The aforementioned computer-readable storage medium carries one or more programs. When the aforementioned one or more programs are executed by an electronic device, the electronic device causes the electronic device to: acquire quality control calibration information of the quality control liquid to be calibrated; generate a quality control calibration import interface in a first display module based on the quality control calibration information; generate a quality control calibration result of the quality control liquid to be calibrated based on the quality control calibration command input by the user in the quality control calibration import interface, wherein the quality control calibration result is used to characterize the information of the calibrated quality control liquid; and determine whether to display the quality control calibration result in a second display module by detecting whether the user has input query information corresponding to the quality control calibration information in the information display module.
[0121] Computer program code for performing the operations of this disclosure can be written in one or more programming languages or a combination thereof, including object-oriented programming languages such as Java, Smalltalk, and C++, and conventional procedural programming languages such as the "C" language or similar programming languages. The program code can be executed entirely on the user's computer, partially on the user's computer, as a standalone software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In cases involving remote computers, the remote computer can be connected to the user's computer via any type of network—including a local area network (LAN) or a wide area network (WAN)—or can be connected to an external computer (e.g., via the Internet using an Internet service provider).
[0122] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of the present invention. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions indicated in the blocks may occur in a different order than those indicated in the drawings. For example, two consecutively indicated blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, can be implemented using a dedicated hardware-based system that performs the specified function or operation, or using a combination of dedicated hardware and computer instructions.
[0123] The modules described in the embodiments of this disclosure can be implemented in software or hardware. The names of the modules are not, in some cases, limiting the scope of the module itself.
[0124] The computer-readable storage medium provided by this invention stores computer-readable program instructions for executing the above-described quality control liquid information correction method, thus solving the technical problem of low accuracy when using the manufacturer-set mean and standard deviation as quality control judgment criteria. Compared with the prior art, the beneficial effects of the computer-readable storage medium provided in this invention are the same as those of the quality control liquid information correction method provided in the above-described embodiments, and will not be repeated here.
[0125] Example 5
[0126] This application also provides a computer program product, including a computer program that, when executed by a processor, implements the steps of the quality control liquid information correction method described above.
[0127] The computer program product provided in this application solves the technical problem of low accuracy when using the manufacturer-set mean and standard deviation as quality control judgment criteria. Compared with the prior art, the beneficial effects of the computer program product provided in this embodiment are the same as those of the quality control liquid information correction method provided in the above embodiments, and will not be repeated here.
[0128] The above are merely preferred embodiments of this application and do not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent scope of this application.
Claims
1. A quality control liquid information correction device, characterized in that, The quality control liquid information correction device includes: The information acquisition module is used to acquire the quality control calibration information of the quality control liquid to be calibrated, including calibration cycle information, calibration item information and calibration rule information; The information display module is used to generate a quality control correction import interface in the first display module based on the quality control correction information. The result generation module includes a first determination module, which determines whether historical quality control data exists for the quality control liquid to be calibrated corresponding to the input quality control calibration command. If historical quality control data exists for the quality control liquid to be calibrated, a second determination module determines whether the quality control liquid to be calibrated meets a first preset summary condition. If the historical quality control data does not exist for the quality control liquid to be calibrated, a third determination module determines whether the quality control liquid to be calibrated meets a second preset summary condition. The first preset summary condition is: the test cycle of the quality control liquid to be calibrated is detected to meet the first test cycle, and the effective quality control data of the quality control liquid to be calibrated in the first test cycle is not less than the first preset data threshold. The first test cycle is a time period with the test time of the first effective quality control data as the start time and the real-time time corresponding to the quality control calibration command as the end time. The second preset summary condition is: the effective quality control data of the quality control liquid to be calibrated in the second test cycle is not less than the second preset data threshold, wherein the second test cycle is a time period with the real-time time corresponding to the quality control calibration command as the start time and the calibration cycle corresponding to the calibration cycle information as the time interval. The historical quality control data refers to the test data of the quality control solution to be calibrated before the quality control calibration command is triggered. Specifically, it includes historical valid quality control data and historical invalid quality control data. The valid quality control data is the latest test result of the quality control solution to be calibrated on the same day and the test result does not exceed ±3SD. The second and third determination modules are parallel modules. If the quality control liquid to be corrected is determined by the second determination module to determine whether it meets the first preset summary condition, it indicates that the quality control liquid to be corrected has historical quality control data, and therefore does not need to be determined by the third determination module to determine whether it meets the second preset summary condition. The result generation module further includes a judgment and summary module, which is used for: When it is determined that the quality control liquid to be calibrated meets the first preset summary condition, the valid quality control data of the quality control liquid to be calibrated in the first test cycle are summarized to obtain the first summary data; or When it is determined that the quality control liquid to be calibrated meets the second preset summary condition, the valid quality control data of the quality control liquid to be calibrated in the second test cycle are summarized to obtain the second summary data; The first summary data is used to characterize the effective quality control data of the control solution to be calibrated that meets the first preset summary conditions, and the second summary data is used to characterize the effective quality control data of the control solution to be calibrated that meets the second preset summary conditions. The number of the first summary data or the second summary data is not less than the preset data threshold corresponding to the test cycle. The result generation module further includes a determination and extraction module, which is used for: When it is determined that the quality control liquid to be calibrated does not meet the first preset summary condition, the first preset quality control liquid information of the quality control liquid to be calibrated is extracted. When it is determined that the quality control liquid to be calibrated does not meet the second preset summary condition, the second preset quality control liquid information of the quality control liquid to be calibrated is extracted; The first preset quality control fluid information is the quality control fluid information before correction that does not meet the first preset summary conditions, and the second preset quality control fluid information is the quality control fluid information before correction that does not meet the second preset summary conditions. Both the first preset quality control fluid information and the second preset quality control fluid information are preset quality control fluid information, and the preset quality control fluid information is the mean and standard deviation set by the user. The result generation module further includes a quality control correction result generation module, which is used for: Obtain the summary data from the judgment summary module, and generate the quality control calibration result for the control solution to be calibrated based on the summary data, wherein the summary data includes the first summary data and the second summary data; or The preset quality control liquid information of the determination extraction module is obtained, and the quality control correction result of the quality control liquid to be corrected is generated based on the preset quality control liquid information. The preset quality control liquid information includes the first preset quality control liquid information and the second preset quality control liquid information. If the quality control correction result is generated from the aggregated data, the quality control correction result can be obtained by calculating the aggregated data. If the quality control correction result is generated from the preset quality control liquid information, since the preset quality control liquid information is the mean and standard deviation preset by the user, the preset quality control liquid information can be directly used as the generated quality control correction result. The quality control correction result is used to characterize the corrected quality control liquid information. The result detection module is used to determine whether to display the quality control correction result in the second display module by detecting whether the user has entered the query information corresponding to the quality control correction information in the information display module.
2. The quality control liquid information correction device as described in claim 1, characterized in that, The first display module includes a quality control rule management interface, and the information acquisition module is further used for: Based on the calibration item selection command entered by the user in the quality control rule management interface, obtain calibration item information; Based on the calibration rule selection command entered by the user in the quality control rule management interface, obtain calibration rule information; Based on the calibration cycle selection command entered by the user in the third display module, obtain the calibration cycle information; The calibration project information, the calibration rule information, and the calibration cycle information are collectively used as the quality control calibration information.
3. The quality control liquid information correction device as described in claim 2, characterized in that, The quality control calibration information includes first calibration item information. When the calibration item information is first calibration item information used to characterize the quality control liquid to be calibrated as a combined quality control liquid, the information display module is further used for: Based on the first calibration item information, a first joint quality control item and corresponding joint quality control liquid information corresponding to the first calibration item information are generated in the quality control rule management interface. The first joint quality control item is used to indicate that the joint quality control button in the quality control rule management interface is in the checked state.
4. The quality control liquid information correction device as described in claim 2, characterized in that, The quality control calibration information includes second calibration item information. When the calibration item information is second calibration item information used to characterize the quality control solution to be calibrated as a monomeric quality control solution, the information display module is further configured to: Based on the second calibration item information, a second joint quality control item and corresponding monomeric quality control liquid information corresponding to the second calibration item information are generated in the quality control rule management interface. The second joint quality control item is used to indicate that the joint quality control button in the quality control rule management interface is in an unchecked state.
5. The quality control liquid information correction device as described in claim 2, characterized in that, The information display module is also used for: The system receives a first checkmark command input by the user in the quality control correction item of the quality control rule management interface, and generates a corresponding correction cycle import item in the quality control rule management interface based on the first checkmark command, wherein the first checkmark command is used to check the quality control correction item.
6. The quality control liquid information correction device as described in claim 5, characterized in that, The third display module includes a calibration cycle management interface, and the information display module is further used for: Based on the calibration cycle selection command entered by the user in the calibration cycle import item, a corresponding calibration cycle selection item is generated in the calibration cycle management interface.
7. The quality control liquid information correction device as described in claim 1, characterized in that, The information display module further includes a fourth display module, which is used to display the preset quality control liquid information of the quality control liquid to be calibrated.
8. The quality control liquid information correction device as described in claim 7, characterized in that, The quality control liquid information correction device further includes a quality control correction result update module, and the fourth display module includes a quality control liquid information management interface. The quality control correction result update module is used for: When it is detected that a user has modified the preset quality control fluid information of the quality control fluid to be calibrated in the quality control fluid information management interface, a quality control calibration result update command is generated. Update the quality control calibration result of the control solution to be calibrated according to the quality control calibration result update command.
9. A method for correcting quality control fluid information, characterized in that, The quality control liquid information correction method, applied to the quality control liquid information correction device as described in any one of claims 1 to 8, comprises: Obtain the quality control calibration information of the quality control liquid to be calibrated, wherein the quality control calibration information includes calibration cycle information; Based on the quality control calibration information, a quality control calibration import interface is generated in the first display module; Based on the quality control calibration command entered by the user in the quality control calibration import interface, the quality control calibration result of the quality control solution to be calibrated is generated, wherein the quality control calibration result is used to characterize the information of the calibrated quality control solution, including the calibrated mean and standard deviation; By detecting whether the user has entered query information corresponding to the quality control correction information into the information display module, it is determined whether to display the quality control correction result in the second display module.
10. A sample analyzer, characterized in that, Includes the quality control liquid information correction device as described in any one of claims 1 to 8.
11. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a program for implementing a quality control liquid information correction method, which is executed by a processor to implement the steps of the quality control liquid information correction method as described in claim 9.