Reagent processing method, sample analyzer, and computer-readable storage medium
By setting the reagent delay function in the sample analyzer, the problems of unverified reagents and insufficient margin are solved, allowing users to continue using reagents under abnormal prompts, reducing waste and improving user experience and efficiency.
Patent Information
- Application Number
- CN202011503052.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-12-17
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2040-12-17
AI Technical Summary
During the use of the sample analyzer, the problem of not verifying the use of the sample analyzer during the initial assembly or replacement of the reagent is insufficient, but the inability to continue to be used, resulting in waste of reagents and a decrease in user experience.
Provide reagent treatment methods, by setting the reagent delay function, banning related functions after abnormal prompts, resuming the function within a preset time after receiving activation instructions, and limiting the number of activations, including the operation of voice, virtual buttons and physical buttons.
Users can continue to use reagents within the preset time, reducing waste, improving user experience, ensuring the interests of reagent manufacturers, and improving the efficiency of sample analyzers.
Smart Images

Figure CN114648187B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of medical devices, and particularly to a method for processing reagents, a sample analyzer, and a computer-readable storage medium. Background Art
[0002] When a sample analyzer is working, it usually needs to use reagents in combination with the samples to be detected in order to analyze the samples to be detected. The sample analyzer needs to be bound to specific reagents. Before using the reagents, it is necessary to verify the reagent cards supporting the reagents to complete the binding relationship with the reagents.
[0003] However, there are still some problems in the use of reagents. For example, when the reagent is used for the first time, after the reagent is assembled, there is no corresponding reagent card for verification operation, resulting in the sample analyzer being unable to use the reagent. And when the reagent needs to be replaced, after the reagent is replaced, there is no corresponding reagent card for verification operation, resulting in the sample analyzer being unable to use the reagent. When the sample analyzer has prompted that the reagent remaining amount is insufficient and the reagent needs to be replaced, but there is actually still a part of the reagent in the reagent bottle, and at this time, it cannot be used continuously and a new reagent needs to be replaced, which will cause reagent waste. Summary of the Invention
[0004] The main technical problem to be solved by this application is to provide a method for processing reagents, a sample analyzer, and a computer-readable storage medium, which can provide users with the option to continue using the reagents and continue to use the reagents after selection, improving the user experience.
[0005] One technical solution adopted by this application is to provide a method for processing reagents, the method including: after obtaining an abnormal prompt based on a target reagent, prohibiting reagent functions related to the target reagent; when receiving an activation instruction for the reagent delay function, activating the reagent delay function to restore reagent functions related to the target reagent within a preset time period; wherein, the number of activations of the reagent delay function is limited.
[0006] Wherein, the method further includes: after the target reagent is replaced, if it is detected that the reagent functions related to the target reagent are not activated, an abnormal prompt is generated based on the target reagent; the prohibiting reagent functions related to the target reagent after obtaining an abnormal prompt based on the target reagent includes: after obtaining an abnormal prompt based on the target reagent, prohibiting reagent functions related to the target reagent and displaying a reagent delay function button, and setting the reagent delay function button to an operable state.
[0007] When receiving the activation instruction for the reagent delay function, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period, including: when receiving the trigger instruction to click the reagent delay function button, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period.
[0008] When obtaining the abnormal prompt based on the target reagent, prohibit the reagent functions related to the target reagent, including: when detecting that the remaining amount of at least one target reagent is insufficient, generate an abnormal prompt based on the at least one target reagent; prohibit the reagent functions related to the at least one target reagent; display a reagent delay function button and set the reagent delay function button to an operable state.
[0009] When receiving the activation instruction for the reagent delay function, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period, including: when receiving the trigger instruction to click the reagent delay function button, display a confirmation window; wherein, a confirmation button is displayed in the confirmation window; when receiving the trigger instruction to click the confirmation button, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period.
[0010] When obtaining the abnormal prompt based on the target reagent, prohibit the reagent functions related to the target reagent, including: when obtaining the abnormal prompt based on the target reagent, prohibit the reagent functions related to the target reagent and trigger a voice interface; when receiving the activation instruction for the voice interface, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period.
[0011] After activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period when receiving the activation instruction for the reagent delay function, including: after the preset time arrives, prohibit the reagent functions related to the target reagent again.
[0012] When receiving the activation instruction for the reagent delay function, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period, including: when receiving the activation instruction for the reagent delay function, determine whether the activation times of the reagent delay function reach the threshold; if so, prompt that the reagent delay function cannot be activated; if not, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period.
[0013] Another technical solution adopted by the present application is to provide a sample analyzer, which includes a processor and a memory connected to the processor; wherein, the memory is used to store program data, and the processor is used to execute the program data to implement the method provided by the above technical solution.
[0014] Another technical solution adopted by the present application is to provide a computer-readable storage medium, which is used to store program data. When the program data is executed by a processor, it is used to implement the method provided by the above technical solution.
[0015] The beneficial effect of the present application is: Different from the prior art, a method for processing a reagent in the present application includes: after obtaining an abnormal prompt based on a target reagent, prohibiting the reagent function related to the target reagent; when receiving an activation instruction for a reagent delay function, activating the reagent delay function to restore the reagent function related to the target reagent within a preset time period; wherein, the number of activations of the reagent delay function is limited. By setting and activating the reagent delay function, the target reagent can continue to be used within the preset time period under the premise of an abnormal prompt, which can provide the user with the option to continue using the reagent and continue to use the reagent after selection, improving the user experience; on the other hand, setting a limit on the number of activations can effectively control the abnormal use of the target reagent by the sample analyzer, such as using reagents produced by non-designated manufacturers, and ensure the interests of reagent manufacturers. Description of the Drawings
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. Among them:
[0017] Figure 1 is a schematic flowchart of an embodiment of the method for processing a reagent provided by the present application;
[0018] Figure 2 is provided by the present application Figure 1 specific flowchart of step 12 in;
[0019] Figure 3 is a schematic flowchart of another embodiment of the method for processing a reagent provided by the present application;
[0020] Figures 4 - 6 is a schematic diagram of an application scenario provided by the present application;
[0021] Figure 7 is a schematic flowchart of another embodiment of the method for processing a reagent provided by the present application;
[0022] Figure 8 is a schematic structural diagram of an embodiment of a sample analyzer provided by the present application;
[0023] Figure 9 is a schematic structural diagram of an embodiment of a computer-readable storage medium provided by the present application. Detailed implementation manners
[0024] Next, the technical solutions in the embodiments of the present application will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present application. It can be understood that the specific embodiments described herein are only used to explain the present application, rather than limiting the present application. In addition, it should be noted that, for the sake of description, only some structures related to the present application are shown in the drawings, rather than all structures. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0025] Referring to "embodiment" herein means that a specific feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present application. The phrase appears in various places in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.
[0026] In the field of sample analysis, the analysis of samples is usually combined with the use of reagents. For example, blood cell counting requires the use of blood cell reagents. Different problems may occur during the use of reagents, such as insufficient reagents, inability to use reagents, etc., which may cause the sample analyzer to be unable to continue using the reagent for subsequent work.
[0027] Based on this, the following embodiments are proposed:
[0028] Refer to Figure 1 , Figure 1 is a schematic flowchart of an embodiment of a method for processing reagents provided by the present application. The method includes:
[0029] Step 11: After obtaining an abnormal prompt based on a target reagent, disable the reagent functions related to the target reagent.
[0030] In some embodiments, the method of this embodiment is applied to a sample analyzer. The abnormal prompt based on the target reagent can be "insufficient remaining amount of xx reagent", "xx reagent is not activated and cannot be used", and at this time, it can be reminded by voice playback. At this time, disable the reagent functions related to the target reagent. For example, control the sampling needle not to collect the target reagent, and stop the related work of the items that require the target reagent for detection, such as collecting samples and cleaning the pipeline.
[0031] In some embodiments, a physical button is provided on the sample analyzer, for example, on the operation panel of the sample analyzer. When there is no reagent abnormality prompt, this button has no function, and even if it is pressed or other operations are performed on it, they are all invalid operations. After obtaining an abnormality prompt based on the target reagent, the function of this physical button is activated, and when this button is pressed, there will be corresponding functions. Specifically, this physical button is not powered on and there is no current loop when the sample analyzer is working properly. After the sample analyzer obtains an abnormality prompt based on the target reagent, the physical button is powered on to form a current loop, and when this button is pressed, an electrical signal is generated.
[0032] In another embodiment, the function of this physical button is activated after the sample analyzer is started, and this physical button can be pressed at any time. It can be understood that when the sample analyzer is working properly, the user will not perform pressing operations on it.
[0033] In some embodiments, a virtual button is provided on the display interface of the operation panel of the sample analyzer. When there is no reagent abnormality prompt, this virtual button has no function, and is displayed in gray and cannot be operated. Even if operations such as clicking on it are performed, they are all invalid operations. After obtaining an abnormality prompt based on the target reagent, the function of this virtual button is activated and it is displayed in a preset brightness or color, such as green or red. When this virtual button is clicked, there will be corresponding functions.
[0034] In another embodiment, the function of this virtual button is activated after the sample analyzer is started, and this virtual button can be clicked at any time. It can be understood that when the sample analyzer is working properly, the user will not perform clicking operations on it.
[0035] In another embodiment, this virtual button is displayed on the display interface after the sample analyzer obtains an abnormality prompt based on the target reagent, the function of this virtual button is activated, and when this virtual button is clicked, there will be corresponding functions.
[0036] In some embodiments, a voice interface is provided on the sample analyzer. When there is no reagent abnormality prompt, this voice interface is in a dormant state and cannot respond. After obtaining an abnormality prompt based on the target reagent, the reagent functions related to the target reagent are prohibited, and the voice interface is triggered; when an activation instruction of the voice interface is received, the reagent delay function is activated to restore the reagent functions related to the target reagent within a preset time period. Specifically, when the voice interface is activated, it can be prompted by voice that the voice interface has been activated and the corresponding command should be input.
[0037] Step 12: When an activation instruction of the reagent delay function is received, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period.
[0038] Before step 12, usually after an exception prompt, the corresponding personnel are required to perform maintenance according to the exception prompt. If the exception prompt is "insufficient margin", and the corresponding personnel find that the actual remaining amount of the target reagent is sufficient, the reagent delay function can be activated to restore the reagent function related to the target reagent within a preset time period.
[0039] In some embodiments, the sample analyzer is provided with a voice interface, and the activation instruction is input by voice input. When the activation instruction for the reagent delay function is received, all the prohibited reagent functions related to the target reagent are activated, and a preset time is set. Within this preset time, the reagent functions related to the target reagent can be used normally. After the preset time arrives, the reagent functions related to the target reagent are prohibited, and an exception prompt for the target reagent is made again.
[0040] In some embodiments, the sample analyzer is provided with a virtual button, and the activation instruction is generated by clicking the virtual button. When the activation instruction for the reagent delay function is received, all the prohibited reagent functions related to the target reagent are activated, and a preset time is set. Within this preset time, the reagent functions related to the target reagent can be used normally. After the preset time arrives, the reagent functions related to the target reagent are prohibited, and an exception prompt for the target reagent is made again.
[0041] In some embodiments, the sample analyzer is provided with a physical button, and the activation instruction is generated by pressing the physical button. When the activation instruction for the reagent delay function is received, all the prohibited reagent functions related to the target reagent are activated, and a preset time is set. Within this preset time, the reagent functions related to the target reagent can be used normally. After the preset time arrives, the reagent functions related to the target reagent are prohibited, and an exception prompt for the target reagent is made again.
[0042] In this embodiment, the activation times of the reagent delay function are limited. For example, a threshold is set when the sample analyzer leaves the factory, and this threshold can be any value from 5 to 20, such as 5, 10, 20. Each time the reagent delay function is activated, a reminder is made for the usage times and remaining times of the reagent delay function. For example, when the threshold is 10 times, when the reagent delay function is activated for the first time, a voice prompt is given. Specifically, the content of the voice can be "The reagent delay function can be used 10 times in total. This is the 1st use, and there are 9 times remaining"; when the reagent delay function is activated for the 5th time, the content of the voice can be "The reagent delay function can be used 10 times in total. This is the 5th use, and there are 5 times remaining". The preset time for each use of the reagent delay function is also set in advance. For example, the range of the preset time can be between 24 hours and 72 hours, and specifically, it can be set to 24 hours, 36 hours, 48 hours, 72 hours.
[0043] In some embodiments, since the activation times of the reagent delay function are limited, refer to Figure 2 , the specific process of step 12 is as follows:
[0044] Step 121: When receiving the activation instruction of the reagent delay function, determine whether the activation times of the reagent delay function reach the threshold.
[0045] If it is determined that the activation times of the reagent delay function reach the threshold, then execute step 122. If it is determined that the activation times of the reagent delay function do not reach the threshold, then execute step 123. For example, if the threshold is 10 times, when receiving the activation instruction of the reagent delay function, confirm that the current activation times is the 5th time, then it does not reach the threshold, and execute step 123.
[0046] Step 122: Prompt that the reagent delay function cannot be activated.
[0047] In some embodiments, after prompting that the reagent delay function cannot be activated, if an abnormal prompt of the target reagent appears subsequently, no activation instruction of the reagent delay function will be generated.
[0048] Step 123: Activate the reagent delay function to restore the reagent function related to the target reagent within a preset time period.
[0049] In some embodiments, after the preset time arrives, the reagent function related to the target reagent is prohibited again, so that the user can activate the high reagent delay function again.
[0050] In an application scenario, when the target reagent is used for the first time in a sample analyzer and when the target reagent needs to be replaced, after assembling or replacing the target reagent, there is no corresponding reagent card for verification operation. At this time, the sample analyzer will generate an abnormal prompt that the reagent is not bound and cannot be used. The sample analyzer will prohibit the reagent function related to the target reagent and display a virtual button on the display screen; after the user clicks the button, the activation instruction of the reagent delay function is triggered, and the sample analyzer activates the reagent delay function to restore the reagent function related to the target reagent within a preset time period; at this time, within the preset time period, the sample analyzer can use the target reagent for sample analysis. In other application scenarios, the activation instruction of the reagent delay function can be triggered by pressing the above physical button and through voice input to activate the reagent delay function of the sample analyzer.
[0051] In this embodiment, after obtaining an abnormal prompt based on a target reagent, the reagent functions related to the target reagent are prohibited; when an activation instruction for the reagent delay function is received, the reagent delay function is activated to restore the reagent functions related to the target reagent within a preset time period; wherein, the number of activations of the reagent delay function is limited. This can provide the user with the option to continue using the reagent and, after selection, continue to use the reagent, enhancing the user experience. On the one hand, it can reduce the waste of reagents caused by replacing the target reagent due to abnormal prompts and improve the working efficiency of the sample analyzer; on the other hand, it can solve the problem that the target reagent cannot be used without a reagent card; on the other hand, setting a limit on the number of activations can effectively control the abnormal use of the target reagent by the sample analyzer, such as using reagents produced by non-designated manufacturers, ensuring the interests of the reagent manufacturers.
[0052] Refer to Figure 3 , Figure 3 is a schematic flowchart of another embodiment of the method for processing reagents provided by this application. The method includes:
[0053] Step 31: After the target reagent is replaced, if it is detected that the reagent functions related to the target reagent are not activated, an abnormal prompt is generated based on the target reagent.
[0054] In this embodiment, the reagent is bound to the reagent card. Only after obtaining the reagent card information can the reagent functions related to the target reagent be activated and the reagent can be used in the sample analyzer. After the target reagent is used up, the target reagent is replaced. After the replacement, the target reagent has no reagent card for activation, so the reagent functions related to the target reagent cannot be activated. If it is detected that the reagent functions related to the target reagent are not activated, an abnormal prompt is generated based on the target reagent.
[0055] In some embodiments, the phenomenon of no reagent card can be caused by the loss of the reagent card or, due to logistics reasons, the reagent card cannot arrive at the same time as the reagent, resulting in the inability to bind to the reagent when using the reagent.
[0056] Step 32: After obtaining the abnormal prompt based on the target reagent, the reagent functions related to the target reagent are prohibited, and a reagent delay function button is displayed, and the reagent delay function button is set to an operable state.
[0057] In some embodiments, when the sample analyzer replaces multiple target reagents at the same time and each target reagent has no reagent card for activation, multiple abnormal prompts based on different target reagents will be generated. After obtaining multiple abnormal prompts based on the target reagents, the reagent functions related to the multiple target reagents are prohibited, and a reagent delay function button is displayed, and the reagent delay function button is set to an operable state.
[0058] Step 33: When receiving a trigger instruction for clicking the reagent delay function button, activate the reagent delay function to restore the reagent function related to the target reagent within a preset time period.
[0059] In an application scenario, refer to Figures 4 - 6 , after the target reagent is replaced and it is detected that the reagent function related to the target reagent is not activated, an abnormal prompt is generated based on the target reagent, and the following screen as shown in Figure 4 is displayed on the display interface of the sample analyzer. The text information of the corresponding abnormal prompt is displayed on the display interface as the abnormal prompt A as shown in Figure 4 . After the user clicks on the abnormal prompt A, the display interface switches to the screen as shown in Figure 5 . The specific content of the displayed abnormal prompt A is "There is no reagent card for XX reagent and it cannot be used" and a reagent delay function button. After clicking on this reagent delay function button, the display interface switches to the screen as shown in Figure 6 , and a confirmation window is displayed. The confirmation window displays an OK button and a Cancel button; after clicking on the OK button, an activation instruction is triggered to activate the reagent delay function to restore the reagent function related to the target reagent within a preset time period, and the confirmation window is closed to eliminate the abnormal prompt A. At the same time, the remaining activation times of the reagent delay function are reduced by one. If the Cancel button is clicked, the confirmation window is closed and the screen switches back to the screen as shown in Figure 5 .
[0060] In this embodiment, the activation times of the reagent delay function are limited. After the activation times reach the threshold, even if the above abnormal prompt appears, the reagent delay function cannot be activated.
[0061] In this embodiment, by setting and activating the reagent delay function, the target reagent can continue to be used within a preset time period without a reagent card, which can improve the working efficiency of the sample analyzer, reduce the losses caused by the inability to use the target reagent due to the lack of a reagent card, and at the same time, by setting a limit on the activation times, it can effectively control the abnormal use of reagents by the sample analyzer, such as using reagents produced by non-designated manufacturers, to ensure the interests of the reagent manufacturers.
[0062] Refer to Figure 7 , Figure 7 is a schematic flowchart of another embodiment of the reagent processing method provided by this application. The method includes:
[0063] Step 71: When detecting that the remaining amount of at least one target reagent is insufficient, generate an abnormal prompt based on the at least one target reagent.
[0064] Step 72: Prohibit the reagent functions related to the at least one target reagent.
[0065] Step 73: Display a reagent delay function button and set the reagent delay function button to an operable state.
[0066] In this embodiment, when it is detected that the reagent reserve is insufficient, a fault of "Insufficient reserve of XX reagent" or "XX reagent is nearly used up or there are bubbles in the pipeline" is reported. At this time, the reagent delay function button in the reagent management interface of the sample analyzer is displayed, but this reagent delay function cannot be used.
[0067] In this embodiment, when the manufacturer fills the target reagent, a certain reserve is pre-stored in the target reagent bottle. When the sample analyzer detects that the target reagent is insufficient, there is still a part of the target reagent in the target reagent bottle, and a reagent delay function button is displayed.
[0068] In this embodiment, when the user selects the specific target reagent that needs to be delayed, the reagent delay function button is set to an operable state and is associated with the delay function activation interface.
[0069] Step 74: When receiving a trigger instruction to click the reagent delay function button, display a confirmation window; wherein, a confirmation button is displayed in the confirmation window.
[0070] In this way, it can be avoided that the user accidentally clicks the reagent delay function button, resulting in the misuse of the delay function and wasting the usage opportunity under the limited number of times of the reagent delay function.
[0071] In some embodiments, a prompt message may also be displayed in the confirmation window. The prompt message can be "The reagent delay function can be used x times in total, and the current is the yth time". Wherein, y is less than or equal to x.
[0072] Step 75: When receiving a trigger instruction to click the confirmation button, activate the reagent delay function to restore the reagent function related to the target reagent within a preset time period.
[0073] In some embodiments, due to the limited number of activations of the reagent delay function, when receiving a trigger instruction to click the confirmation button, it is necessary to confirm the number of activations. If the current activation exceeds the limit, it is prompted that the number of activations has been used up and the delay function cannot be performed.
[0074] In an application scenario, when the remaining amount of a reagent is insufficient, an abnormal prompt of "Insufficient remaining amount of XX reagent" or "XX reagent is nearly used up or there are bubbles in the pipeline" is reported. At this time, the reagent delay function button on the reagent management interface of the sample analyzer is displayed. When the user selects the target reagent that specifically needs to be delayed, the reagent delay function button is displayed in a preset brightness or color, indicating that it is operable. When the user clicks the reagent delay button, a confirmation pop-up window will appear on the interface to let the user confirm whether to use the reagent delay function. The prompt information is: How many times can the reagent delay function be used in total and which time it is currently. After the user confirms to use it, the remaining amount of the target reagent information on the reagent management interface changes from a numerical value to "a countdown of the delay expiration date displayed in red font". The sample analyzer automatically enters a 72-hour countdown state, and the "Delaying" is displayed in the interface navigation bar. The abnormal prompt of "Insufficient remaining amount of XX reagent" or "Nearly used up or there are bubbles in the pipeline" is automatically eliminated, and another abnormal prompt of "XX reagent not replaced" is reported. The user can eliminate this abnormal prompt with one click, and the sample analyzer can be used normally at this time. When the countdown of the target reagent expires, the sample analyzer clears the reagent delay information of the target reagent and reports the abnormal prompt of insufficient reagent remaining amount again.
[0075] In this embodiment, through the above method, it is possible to reduce the reagent waste caused by replacing the target reagent due to abnormal prompts, save the time consumed for replacing the reagent, and improve the working efficiency of the sample analyzer.
[0076] Refer to Figure 8 , Figure 8 FIG. is a schematic structural diagram of an embodiment of a sample analyzer provided by the present application. The sample analyzer 80 includes a processor 81 and a memory 82 coupled to the processor 81. Among them, the memory 82 is used to store program data, and the processor 81 is used to execute the program data to implement the following method:
[0077] After obtaining an abnormal prompt based on a target reagent, the reagent functions related to the target reagent are prohibited; when an activation instruction for the reagent delay function is received, the reagent delay function is activated to restore the reagent functions related to the target reagent within a preset time period; the activation times of the reagent delay function are limited.
[0078] It can be understood that the processor 81 in this embodiment can also implement any method of the above embodiment, which will not be elaborated here.
[0079] In the sample analyzer 80 of this embodiment, by implementing the above method, by setting the reagent delay function and activating the reagent delay function, the target reagent can continue to be used within a preset time period under the premise of an abnormal prompt, which can provide the user with the option to continue using the reagent, and continue to use the reagent after selection, improving the user experience. On the one hand, it can reduce the reagent waste caused by replacing the target reagent due to an abnormal prompt and improve the working efficiency of the sample analyzer; on the other hand, it can solve the problem that the target reagent cannot be used without a reagent card; on the other hand, by setting a limit on the activation times, it can effectively control the abnormal use of the target reagent by the sample analyzer, such as using reagents produced by non-designated manufacturers, and ensure the interests of reagent manufacturers.
[0080] Refer to Figure 9 , Figure 9 FIG. is a schematic structural diagram of an embodiment of a computer-readable storage medium provided by the present application. The computer-readable storage medium 90 is used to store program data 91. When the program data 91 is executed by a processor, it is used to implement the following method:
[0081] After obtaining an abnormal prompt based on the target reagent, prohibit the reagent functions related to the target reagent; when receiving an activation instruction for the reagent delay function, activate the reagent delay function to restore the reagent functions related to the target reagent within a preset time period; wherein, the activation times of the reagent delay function are limited.
[0082] It can be understood that the computer-readable storage medium 90 in this embodiment can also implement any of the methods in the above embodiments, which will not be elaborated here.
[0083] When the computer-readable storage medium 90 of this embodiment is applied to the above sample analyzer, by setting the reagent delay function and activating the reagent delay function, the target reagent can continue to be used within a preset time period under the premise of an abnormal prompt, which can provide the user with the option to continue using the reagent, and continue to use the reagent after selection, improving the user experience. On the one hand, it can reduce the reagent waste caused by replacing the target reagent due to an abnormal prompt and improve the working efficiency of the sample analyzer; on the other hand, it can solve the problem that the target reagent cannot be used without a reagent card; on the other hand, by setting a limit on the activation times, it can effectively control the abnormal use of the target reagent by the sample analyzer, such as using reagents produced by non-designated manufacturers, and ensure the interests of reagent manufacturers.
[0084] In several embodiments provided in the present application, it should be understood that the disclosed methods and devices can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the division of the modules or units is only a logical function division. In actual implementation, there may be other division methods. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed.
[0085] The units described as separate components may or may not be physically separated. The components shown as units may or may not be physical units, that is, they can be located in one place or distributed to multiple network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
[0086] In addition, in each embodiment of the present application, the functional units can be integrated in a processing unit, or each unit can exist physically alone, or two or more units can be integrated in one unit. The above-mentioned integrated units can be implemented in the form of hardware or in the form of software functional units.
[0087] If the integrated units in the above-mentioned other embodiments are implemented in the form of software functional units and sold or used as independent products, they can be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor to execute all or part of the steps of the methods described in each embodiment of the present application. The foregoing storage medium includes: various media such as USB flash drives, mobile hard disks, read-only memories (ROM, Read-Only Memory), random access memories (RAM, Random Access Memory), magnetic disks, or optical discs that can store program codes.
[0088] The above is only the embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present application, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present application.
Claims
1. A method for treating a reagent, characterized in that, The method includes: After obtaining an exception prompt based on a target reagent, disabling the reagent functions related to the target reagent, displaying a reagent delay function button, and setting the reagent delay function button to an operable state; or After obtaining an exception prompt based on a target reagent, disabling the reagent functions related to the at least one target reagent; displaying a reagent delay function button, and setting the reagent delay function button to an operable state; or After obtaining an exception prompt based on a target reagent, disabling the reagent functions related to the target reagent and triggering a voice interface; when receiving an activation instruction of the voice interface, activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period; wherein, after the target reagent is replaced, if it is detected that the reagent functions related to the target reagent are not activated, an exception prompt is generated based on the target reagent; or, when it is detected that the remaining amount of at least one target reagent is insufficient, an exception prompt is generated based on the at least one target reagent; wherein, when the remaining amount of the at least one target reagent is insufficient, there is still a part of the reagent in the target reagent bottle; When receiving the activation instruction of the reagent delay function, activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period; Wherein, the activation times of the reagent delay function are limited; After the preset time arrives, disabling the reagent functions related to the target reagent and re-performing the exception prompt for the target reagent.
2. The method according to claim 1, wherein The step of, when receiving the activation instruction of the reagent delay function, activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period includes: When receiving a trigger instruction to click the reagent delay function button, activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period.
3. The method according to claim 2, wherein The step of, when receiving the activation instruction of the reagent delay function, activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period includes: When receiving a trigger instruction to click the reagent delay function button, displaying a confirmation window; wherein, a confirmation button is displayed in the confirmation window; When receiving a trigger instruction to click the confirmation button, activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period.
4. The method according to claim 1, wherein After the step of, when receiving the activation instruction of the reagent delay function, activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period, includes: After the preset time arrives, disabling the reagent functions related to the target reagent again.
5. The method according to claim 1, wherein The step of, when receiving the activation instruction of the reagent delay function, activating the reagent delay function to restore the reagent functions related to the target reagent within a preset time period includes: When receiving an activation instruction for the reagent delay function, determine whether the activation count of the reagent delay function reaches a threshold; If so, prompt that the reagent delay function cannot be activated; If not, activate the reagent delay function to restore the reagent function related to the target reagent within a preset time period.
6. A sample analyzer, characterized in that, The sample analyzer includes a processor and a memory connected to the processor; Wherein, the memory is used to store program data, and the processor is used to execute the program data to implement the method according to any one of claims 1-5.
7. A computer-readable storage medium, characterized in that, The computer-readable storage medium is used to store program data, and the program data, when executed by a processor, is used to implement the method according to any one of claims 1-5.
Citation Information
Patent Citations
Biochemical analyzer as well as reagent residue refreshing method and device thereof
CN103675248A