WO2021035536A1 - 试剂位信息设置的方法、装置、存储介质和样本分析仪 - Google Patents

试剂位信息设置的方法、装置、存储介质和样本分析仪 Download PDF

Info

Publication number
WO2021035536A1
WO2021035536A1 PCT/CN2019/102863 CN2019102863W WO2021035536A1 WO 2021035536 A1 WO2021035536 A1 WO 2021035536A1 CN 2019102863 W CN2019102863 W CN 2019102863W WO 2021035536 A1 WO2021035536 A1 WO 2021035536A1
Authority
WO
WIPO (PCT)
Prior art keywords
reagent
information
user
setting
barcode
Prior art date
Application number
PCT/CN2019/102863
Other languages
English (en)
French (fr)
Inventor
刘洋
田志超
舒雪燕
丁云峰
刘鹤
代洋
Original Assignee
深圳迈瑞生物医疗电子股份有限公司
上海长岛生物技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳迈瑞生物医疗电子股份有限公司, 上海长岛生物技术有限公司 filed Critical 深圳迈瑞生物医疗电子股份有限公司
Priority to PCT/CN2019/102863 priority Critical patent/WO2021035536A1/zh
Priority to CN201980098842.6A priority patent/CN114207446A/zh
Publication of WO2021035536A1 publication Critical patent/WO2021035536A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N35/00Automatic analysis not limited to methods or materials provided for in any single one of groups G01N1/00 - G01N33/00; Handling materials therefor
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations

Definitions

  • This application relates to the technical field of sample analyzers, and more specifically to a method, device, storage medium, and sample analyzer for setting reagent position information.
  • the sample analyzer as a necessary inspection equipment in the laboratory of hospitals, has higher and higher requirements for efficiency in clinical use.
  • some sample analyzers adopt a reagent tray device that can automatically scan the barcode of the reagent bottle.
  • the device can automatically identify the barcode information on the reagent bottle located on the reagent position, and then realize the relevant control of reagent loading.
  • the reagent tray cannot automatically identify the barcode of the reagent bottle, and the user needs to manually set the reagent information of the reagent position on the application software, which is inconvenient to operate.
  • a reagent bottle identification device such as a sensor
  • the analytical information is bound to the position information to complete the function of setting the reagent position information.
  • This application is made in order to solve the above-mentioned problems.
  • This application provides a solution for setting reagent position information, which is based on an external handheld barcode scanner to scan the barcode on the reagent bottle, and the binding of reagent information and reagent position information is implemented through software operation, without the need for the sample analyzer device itself to have a barcode
  • the scanner and the reagent bottle identification device can realize the setting of reagent position information, which can reduce equipment cost and design difficulty, and has a wide range of applications.
  • a method for setting reagent position information includes: obtaining barcode information of a reagent bottle to be placed in a reagent position of a sample analyzer, and parsing the barcode information to obtain the reagent
  • the reagent information sets an instruction of the reagent position corresponding to the reagent bottle, and in response to the instruction set by the user, the reagent information is combined with the reagent position information of the reagent position set by the user. Binding.
  • the display of the reagent information includes a real-time display mode
  • the real-time display mode is: every time the barcode information of a reagent bottle is parsed, the real-time display is associated with the reagent in the one reagent bottle. And start the countdown to remind the user to set the reagent position within the countdown time.
  • the reagent information is automatically invalidated and automatically deleted.
  • the display of the reagent information includes a batch display mode
  • the batch display mode is: after the barcode information of a plurality of reagent bottles is parsed in batch, the batch display is related to the plurality of reagent bottles.
  • the reagent information associated with each of the reagents can be used by the user to input instructions for setting the reagent position of each reagent bottle in the plurality of reagent bottles one by one.
  • the display mode for displaying the reagent information is preset or based on user selection.
  • the setting of the reagent position includes an icon setting mode
  • the icon setting mode is: each reagent position is simulated and displayed in the form of an icon, so that the user can input the pair by clicking.
  • Setting instructions for reagent positions are:
  • the setting of the reagent position includes an edit setting mode
  • the edit setting mode is: receiving the reagent position information edited and input by the user to set the reagent position corresponding to the reagent bottle.
  • the reagent position corresponds to a static reagent tray of the sample analyzer, and each reagent position on the static reagent tray is fixed.
  • the sample analyzer is a coagulation analyzer.
  • a reagent position information setting device comprising: an analysis module for obtaining barcode information of a reagent bottle to be placed in a reagent position of a sample analyzer, and analyzing the barcode information
  • the barcode information is obtained by scanning the barcode of the reagent bottle by a barcode scanner external to the sample analyzer; and a display and binding module, using To display the reagent information to the user, and receive an instruction from the user to set the reagent position corresponding to the reagent bottle based on the reagent information, and in response to the instruction set by the user, send the reagent information Binding with the reagent position information of the reagent position set by the user.
  • a reagent position information setting device includes a memory and a processor.
  • the memory stores a computer program run by the processor, and the computer program is run by the processor. Execute the reagent position information setting method as described in any one of the above.
  • a storage medium is provided, and a computer program is stored on the storage medium, and the computer program executes the reagent position information setting method as described in any one of the above when the computer program is running.
  • a sample analyzer in another aspect of the present application, includes the reagent position information setting device described in any one of the above.
  • the reagent position information setting method, device, storage medium, and sample analyzer scan the barcode on the reagent bottle based on an external handheld barcode scanner, and implement the binding of reagent information and reagent position information through software operation, It is not necessary for the sample analyzer device to have a barcode scanner and a reagent bottle identification device to realize the setting of reagent position information, which can reduce equipment cost and design difficulty, and has a wide range of applications.
  • Fig. 1 shows a schematic block diagram of an exemplary electronic device for implementing a method for setting reagent position information according to an embodiment of the present application
  • FIG. 2 shows a schematic flowchart of a method for setting reagent position information according to an embodiment of the present application
  • FIG. 3 shows an exemplary interface diagram after binding reagent information and reagent position information by using a reagent position information setting method according to an embodiment of the present invention
  • Fig. 4 shows a schematic block diagram of a reagent position information setting device according to an embodiment of the present application.
  • Fig. 5 shows a schematic block diagram of a reagent position information setting device according to another embodiment of the present application.
  • FIG. 1 an exemplary electronic device 100 for implementing the reagent position information setting method and apparatus according to the embodiment of the present invention will be described.
  • the electronic device 100 includes one or more processors 102, one or more storage devices 104, an input device 106, and an output device 108. These components are connected through a bus system 110 and/or other forms of connection mechanisms (not shown). Show) interconnection. It should be noted that the components and structure of the electronic device 100 shown in FIG. 1 are only exemplary and not restrictive, and the electronic device may also have other components and structures as required.
  • the processor 102 may be a central processing unit (CPU) or another form of processing unit with data processing capability and/or instruction execution capability, and may control other components in the electronic device 100 to perform desired functions.
  • CPU central processing unit
  • the processor 102 may be a central processing unit (CPU) or another form of processing unit with data processing capability and/or instruction execution capability, and may control other components in the electronic device 100 to perform desired functions.
  • the storage device 104 may include one or more computer program products, and the computer program products may include various forms of computer-readable storage media, such as volatile memory and/or non-volatile memory.
  • the volatile memory may include random access memory (RAM) and/or cache memory (cache), for example.
  • the non-volatile memory may include, for example, read-only memory (ROM), hard disk, flash memory, and the like.
  • One or more computer program instructions may be stored on the computer-readable storage medium, and the processor 102 may run the program instructions to implement the reagent position information in the embodiments of the present invention (implemented by the processor) described below. Set up functions and/or other desired functions.
  • Various application programs and various data such as various data used and/or generated by the application program, can also be stored in the computer-readable storage medium.
  • the input device 106 may be a device used by the user to input instructions (for example, in the reagent position information setting method according to the embodiment of the present invention described below, the user may input characters associated with measurement parameters), and may include a keyboard, One or more of mouse, microphone, touch screen, etc. In addition, the input device 106 may also be any interface for receiving information.
  • the output device 108 may output various information to the outside (for example, a user), and may include one or more of a display, a speaker, and the like. In addition, the output device 108 may also be any other device with output function.
  • the example electronic device used to implement the reagent position information setting method and apparatus may be implemented as a terminal such as a desktop computer, a tablet computer, etc., or a medical system including these terminals (such as a sample analyzer). )Wait.
  • the reagent position information setting method 200 may include the following steps:
  • step S210 the barcode information of the reagent bottle to be placed in the reagent position of the sample analyzer is obtained, and the barcode information is parsed to obtain reagent information associated with the reagent in the reagent bottle.
  • the barcode scanner outside the sample analyzer scans the barcode of the reagent bottle.
  • a barcode scanner external to the sample analyzer may be used to scan the barcode on the reagent bottle to be placed on the reagent position of the sample analyzer to obtain the barcode on the reagent bottle.
  • Barcode information can be understood as a barcode scanner connected to the sample analyzer, that is, the barcode scanner itself is not a component of the sample analyzer, but is connected to the sample analyzer through a certain interface On the instrument.
  • the sample analyzer may include an interface for an external device, and a barcode scanner external to the sample analyzer is externally connected to the sample analyzer via the interface.
  • "barcode scanner outside the sample analyzer” can also be understood as connecting to a computing device equipped with sample analysis application software, such as connecting to a computer case equipped with sample analysis application software.
  • the barcode information of the reagent bottle to be placed in the reagent position of the sample analyzer can be obtained, and the barcode information can be parsed to obtain the reagent information associated with the reagent in the reagent bottle.
  • the reagent information associated with it is the parameter information associated with the blood in the reagent bottle.
  • the binding of the reagent information and the reagent position information can be performed, which will be described in the following steps.
  • step S220 the reagent information is displayed to the user, and an instruction from the user to set the reagent position corresponding to the reagent bottle based on the reagent information is received, and in response to the instruction set by the user, The reagent information is bound to the reagent position information of the reagent position set by the user.
  • the reagent information of the reagent in the reagent bottle obtained by the analysis in step S210 can be displayed to the user.
  • the user can set the reagent position corresponding to the reagent bottle through a certain instruction. Based on this instruction, it is possible to bind the reagent information of the reagent in the reagent bottle with the reagent position information of the reagent position corresponding to the reagent bottle.
  • the reagent position information refers to the position information of the reagent position corresponding to the reagent bottle (the reagent bottle may have been placed in the reagent position or may be placed in the reagent position).
  • the binding of reagent information and reagent position information can be understood as associating/corresponding/mapping the reagent information in the reagent bottle with the position information of the reagent position corresponding to the reagent bottle.
  • the display of reagent information may include a real-time display mode, and the real-time display mode is: every time the barcode information of a reagent bottle is parsed, the reagents associated with the reagent in the reagent bottle are displayed in real time. Information and start the countdown to remind the user to set the reagent level within the countdown time.
  • This display mode reminds the user to set the reagent position of the reagent bottle every time the barcode of a reagent bottle is parsed, which can realize the real-time binding operation of reagent information and reagent position information.
  • the reagent information is automatically invalidated and automatically deleted.
  • the display of reagent information may include a batch display mode, where the batch display mode is: after the barcode information of a plurality of reagent bottles is parsed in batch, the batch display is different from the reagents in the plurality of reagent bottles.
  • Associated reagent information so that the user can input the setting instructions for the reagent position of each reagent bottle in the plurality of reagent bottles one by one.
  • the corresponding reagent information is displayed in a certain order (for example, in chronological order). Based on the list of reagent information, the user can check the information of each reagent bottle one by one.
  • the reagent position is set, this kind of batch display mode is conducive to improving the operating efficiency.
  • the parsed reagent information can be cleared to avoid interference or occupation of the subsequent binding of the reagent bottle reagent information and the reagent position information storage.
  • the display mode for displaying reagent information may also include any other suitable display modes, which can be set or selected according to different application scenarios. Further, the display mode for displaying the reagent information may be preset (for example, with a default display operation), or may be based on user selection (for example, including multiple display modes for the user to select).
  • the user can input a command for setting the reagent position of the reagent bottle.
  • the setting of the reagent position may include an icon setting mode.
  • the icon setting mode is to simulate and display each reagent position in the form of an icon, so that the user can input the reagent position by clicking.
  • the setting instructions are to simulate and display each reagent position in the form of an icon, so that the user can input the reagent position by clicking.
  • the setting instructions is to simulate and display each reagent position in the form of an icon, so that the user can input the reagent position by clicking.
  • the setting instructions In this embodiment, each reagent position is simulated and displayed in the form of an icon, and the user can click the corresponding icon to realize the setting of the reagent position corresponding to the reagent bottle. This method is simple to operate and easy to implement.
  • the setting of the reagent position may include an edit setting mode
  • the edit setting mode is: receiving the reagent position information edited and input by the user to set the reagent position corresponding to the reagent bottle.
  • the user manually enters the reagent position information, thereby realizing the setting of the reagent position corresponding to the reagent bottle. This method is also simple to operate and easy to implement.
  • the setting mode for the reagent position may also include any other suitable setting modes, which can provide suitable setting modes according to different application scenarios.
  • the display mode of the reagent information and the setting mode of the reagent position can be arbitrarily combined among the aforementioned modes (or other possible modes) to realize convenient, efficient, and highly reliable reagent position information setting .
  • the user can click the reagent position icon on the interface and select the reagent information from the pop-up reagent information list to realize the binding of the reagent information and the reagent position information. After all selection operations are completed, click the Save button to complete the reagent position information setting function.
  • the operation of the embodiment combining the real-time display mode and the icon setting mode, the operation of the embodiment combining the real-time display mode and the edit setting mode, and the implementation of the combination of the batch display mode and the edit setting mode can be understood based on the foregoing description.
  • the operation of the example and the operation of any other suitable combination of the reagent information display mode and the reagent position setting mode are not described here as examples.
  • the reagent position bound to the reagent position information may correspond to the static reagent disk of the sample analyzer, and each reagent position on the static reagent disk is fixed.
  • the reagent tray is static, and each reagent position on the reagent tray is fixed.
  • the reagent position bound to the reagent position information may also correspond to the dynamic reagent tray of the sample analyzer, or any other reagent position of the sample analyzer.
  • the following describes an exemplary interface diagram after binding reagent information and reagent position information by using the reagent position information setting method according to an embodiment of the present invention with reference to FIG. 3.
  • the upper left area shows the reagent level of the diluent in the normal temperature zone. Since the number of reagent levels in the diluent in the normal temperature zone is small (only 4 in the example in Figure 3), it is not necessary to do so. The numbering is also clear at a glance (of course this is only exemplary).
  • the middle area on the left shows different colors representing different reagent types. For example, the color on the left represents the trigger reagent, the middle color represents the mixed reagent 1, and the right color represents the mixed reagent 2.
  • the lower left area shows specific reagent information, including measurement items, reagent types, reagent lot numbers, etc. (this is only exemplary).
  • the right area shows the reagent position in the refrigeration zone.
  • the reagent corresponding to the reagent position number 5 is FDP, and the remaining amount is 532;
  • the reagent corresponding to the reagent position number 12 is D_D , The remaining amount is 211;
  • the reagent corresponding to the reagent position numbered 24 is needle washing liquid, and the remaining amount is 456;
  • the reagent corresponding to the reagent position numbered 11 is D_D, and the remaining amount is 52; and the reagent numbered 22
  • the reagent corresponding to the position is PT, and the remaining amount is 55;
  • the reagent corresponding to the reagent position numbered 20 is APTT, and the remaining amount is 563;
  • the reagent corresponding to the reagent position number 2 is TT, and the remaining amount is 451;
  • the reagent corresponding to the reagent position 1 is APTT, and the remaining amount is 99;
  • the font color of the above reagents also reflects their reagent type. It is not difficult to see from the figure that the reagents on reagent positions 5, 12, 22, 2 and 1 are all trigger reagents, the reagents on reagent positions 24 and 18 are mixed reagent 1, while reagents on reagent positions No. 24 and No. The reagent on reagent position 20 is mixed reagent 2. In addition, there are other numbered reagent positions that have not yet been bound to the reagent information.
  • the reagent position information setting method according to the embodiment of the present invention can conveniently realize the binding of reagent information and reagent position information through software.
  • the interface diagram is only exemplary.
  • the reagent position information setting method according to the embodiment of the present invention can also be implemented as other interfaces.
  • the method 200 may further include (not shown in FIG. 2): After completing the binding of the reagent information and the reagent position information, the corresponding relationship between the reagent information and the reagent position information is included. The binding information is transmitted to the sample analyzer. In this embodiment, by transmitting the binding information including the corresponding relationship between the reagent information and the reagent position information to the sample analyzer, the sample analyzer obtains information about what kind of reagent information is placed on each reagent position. This will be of great benefit to the subsequent sample analysis process. Of course, the sample analyzer can itself implement the application or module of the above method 200.
  • binding information transmission process including the corresponding relationship between the reagent information and the reagent position information, or only need to perform the sample analysis
  • the binding information including the corresponding relationship between the reagent information and the reagent position information can be transmitted between the contents of each module of the instrument.
  • the reagent position information setting method is based on an external handheld barcode scanner to scan the barcode on the reagent bottle, and the binding of reagent information and reagent position information is implemented through software operation, without the need for a sample analyzer
  • the equipment itself is equipped with a barcode scanner and a reagent bottle identification device, which can realize the setting of reagent position information, which can reduce equipment cost and design difficulty, and has a wide range of applications.
  • the reagent position information setting method according to the embodiment of the present application may be implemented in a device, device, or system having a memory and a processor.
  • the reagent position information setting method according to the embodiment of the present invention can be conveniently deployed on mobile devices such as smart phones, tablet computers, and personal computers.
  • the reagent position information setting method according to the embodiment of the present invention can also be deployed on the server side (or the cloud).
  • the reagent position information setting method according to the embodiment of the present invention can also be deployed in a distributed manner on the server side (or the cloud) and the personal terminal.
  • FIG. 4 shows a schematic block diagram of a reagent position information setting device 400 according to an embodiment of the present invention.
  • the reagent position information setting device 400 includes an analysis module 410 and a display and binding module 420.
  • the analysis module 410 is used to obtain the barcode information of the reagent bottle to be placed in the reagent position of the sample analyzer, and analyze the barcode information to obtain the reagent information associated with the reagent in the reagent bottle, the barcode The information is obtained by scanning the barcode of the reagent bottle by a barcode scanner outside the sample analyzer.
  • the display and binding module 420 is used to display the reagent information to the user, and receive an instruction from the user to set the reagent position corresponding to the reagent bottle based on the reagent information, and respond to the user setting Instruction to bind the reagent information with the reagent position information of the reagent position set by the user.
  • the modules can respectively execute the steps/functions of the reagent position information setting method described above in conjunction with FIG. 2. In the following, only the main functions of the modules of the reagent position information setting device 400 are described, and the detailed content that has been described above is omitted.
  • a barcode scanner external to the sample analyzer may be used to scan the barcode on the reagent bottle to be placed on the reagent position of the sample analyzer to obtain the barcode on the reagent bottle.
  • Barcode information can be understood as a barcode scanner connected to the sample analyzer, that is, the barcode scanner itself is not a component of the sample analyzer, but is connected to the sample analyzer through a certain interface On the instrument.
  • the sample analyzer may include an interface for an external device, and a barcode scanner external to the sample analyzer is externally connected to the sample analyzer via the interface.
  • "barcode scanner outside the sample analyzer” can also be understood as connecting to a computing device equipped with sample analysis application software, such as connecting to a computer case equipped with sample analysis application software.
  • the analysis module 410 can obtain the barcode information of the reagent bottle to be placed in the reagent position of the sample analyzer, and analyze the barcode information to obtain the reagent information associated with the reagent in the reagent bottle.
  • the reagent information associated with it is the parameter information associated with the blood in the reagent bottle.
  • the display and binding module 420 can bind the reagent information and the reagent position information.
  • the display and binding module 420 can display the reagent information of the reagent in the reagent bottle obtained by the analysis module 410 to the user. Based on the reagent information, the user can set the reagent position corresponding to the reagent bottle through a certain instruction. Based on the instruction, the display and binding module 420 can realize the binding of the reagent information of the reagent in the reagent bottle with the reagent position information of the reagent position corresponding to the reagent bottle.
  • the reagent position information refers to the position information of the reagent position corresponding to the reagent bottle (the reagent bottle may have been placed in the reagent position or may be placed in the reagent position).
  • the binding of reagent information and reagent position information can be understood as associating/corresponding/mapping the reagent information in the reagent bottle with the position information of the reagent position corresponding to the reagent bottle.
  • the display and binding module 420 may display the reagent information in a real-time display mode.
  • the real-time display mode is: every time the barcode information of a reagent bottle is parsed, the information in the reagent bottle is displayed in real time. And start the countdown timer to remind the user to set the reagent position within the countdown time.
  • This display mode reminds the user to set the reagent position of the reagent bottle every time the barcode of a reagent bottle is parsed, which can realize the real-time binding operation of reagent information and reagent position information.
  • the reagent information is automatically invalidated and automatically deleted.
  • the display and binding module 420 may display the reagent information in a batch display mode.
  • the batch display mode is: after the barcode information of a plurality of reagent bottles is parsed in batch, the batch display and the plurality of reagent bottles are displayed in batches.
  • the reagent information associated with each of the reagents in the reagent bottles is used by the user to input one by one the setting instructions for the reagent position of each reagent bottle in the plurality of reagent bottles.
  • the corresponding reagent information is displayed in a certain order (for example, in chronological order). Based on the list of reagent information, the user can check the information of each reagent bottle one by one.
  • the reagent position is set, this kind of batch display mode is conducive to improving the operating efficiency.
  • the parsed reagent information can be cleared to avoid interference or occupation of the subsequent binding of the reagent bottle reagent information and the reagent position information storage.
  • the display mode for displaying reagent information may also include any other suitable display modes, which can be set or selected according to different application scenarios. Further, the display mode for displaying the reagent information may be preset (for example, with a default display operation), or may be based on user selection (for example, including multiple display modes for the user to select).
  • the user can input a command for setting the reagent position of the reagent bottle.
  • the setting of the reagent position may include an icon setting mode.
  • the icon setting mode is: the display and binding module 420 simulates and displays each reagent position in the form of an icon, so that the user can click Way to input the setting command of the reagent position.
  • the display and binding module 420 simulates and displays each reagent position in the form of an icon. The user can click the corresponding icon to set the reagent position corresponding to the reagent bottle. This method is simple to operate. ,Easy to implement.
  • the setting of the reagent position may include an edit setting mode
  • the edit setting mode is: the display and binding module 420 receives the reagent position information edited and input by the user to set the reagent position information corresponding to the reagent bottle.
  • the reagent position In this embodiment, the user manually enters the reagent position information, thereby realizing the setting of the reagent position corresponding to the reagent bottle. This method is also simple to operate and easy to implement.
  • the setting mode for the reagent position may also include any other suitable setting modes, which can provide suitable setting modes according to different application scenarios.
  • the display mode of the reagent information and the setting mode of the reagent position can be arbitrarily combined among the aforementioned modes (or other possible modes) to realize convenient, efficient, and highly reliable reagent position information setting .
  • the user can click the reagent position icon on the interface and select the reagent information from the pop-up reagent information list to realize the binding of the reagent information and the reagent position information. After all selection operations are completed, click the Save button to complete the reagent position information setting function.
  • the operation of the embodiment combining the real-time display mode and the icon setting mode, the operation of the embodiment combining the real-time display mode and the edit setting mode, and the implementation of the combination of the batch display mode and the edit setting mode can be understood based on the foregoing description.
  • the operation of the example and the operation of any other suitable combination of the reagent information display mode and the reagent position setting mode are not described here as examples.
  • the reagent position bound to the reagent position information may correspond to the static reagent disk of the sample analyzer, and each reagent position on the static reagent disk is fixed.
  • the reagent tray is static, and each reagent position on the reagent tray is fixed.
  • the reagent position bound to the reagent position information may also correspond to the dynamic reagent tray of the sample analyzer, or any other reagent position of the sample analyzer.
  • the device 400 may further include a transmission module (not shown in FIG. 4): after the display and binding module 420 completes the binding of the reagent information and the reagent position information, the transmission module may The binding information including the corresponding relationship between the reagent information and the reagent position information is transmitted to the sample analyzer.
  • the sample analyzer obtains information about what kind of reagent information is placed on each reagent position. This will be of great benefit to the subsequent sample analysis process.
  • the sample analyzer can be built-in modules that implement the above-mentioned device 400.
  • binding information transmission process including the corresponding relationship between the reagent information and the reagent position information, or only need to be in each sample analyzer.
  • the binding information including the corresponding relationship between the reagent information and the reagent position information can be transmitted between the contents of the modules.
  • the reagent position information setting device scans the barcode on the reagent bottle based on an external handheld barcode scanner, and implements the binding of the reagent information and the reagent position information through software operation, without the need for a sample analyzer
  • the equipment itself is equipped with a barcode scanner and a reagent bottle identification device, which can realize the setting of reagent position information, which can reduce equipment cost and design difficulty, and has a wide range of applications.
  • FIG. 5 shows a schematic block diagram of a reagent position information setting device 500 according to another embodiment of the present invention.
  • the reagent position information setting device 500 includes a memory 510 and a processor 520.
  • the memory 510 stores a program for realizing the corresponding steps in the reagent position information setting method according to the embodiment of the present invention.
  • the processor 520 is configured to run a program stored in the memory 510 to execute corresponding steps of the reagent level information setting method according to the embodiment of the present invention, and to implement corresponding modules in the reagent level information setting device according to the embodiment of the present invention.
  • the reagent position information setting device 500 executes the following steps: obtain the barcode information of the reagent bottle to be placed in the reagent position of the sample analyzer, and analyze The barcode information is used to obtain reagent information associated with the reagent in the reagent bottle, and the barcode information is obtained by scanning the barcode of the reagent bottle by a barcode scanner external to the sample analyzer; The reagent information, and receive an instruction from the user to set the reagent position corresponding to the reagent bottle based on the reagent information, and in response to the instruction set by the user, compare the reagent information with the user The reagent position information of the set reagent position is bound.
  • the display of the reagent information performed by the reagent position information setting device 500 when the program is run by the processor 520 includes a real-time display mode, and the real-time display mode is:
  • the barcode information of the reagent bottle displays the reagent information associated with the reagent in the one reagent bottle in real time, and starts a countdown to remind the user to set the reagent position within the countdown time.
  • the reagent information is automatically invalidated and automatically deleted.
  • the display of the reagent information performed by the reagent position information setting device 500 includes a batch display mode, and the batch display mode is: After the barcode information of the multiple reagent bottles, the reagent information associated with the reagents in the multiple reagent bottles are displayed in batches, so that the user can input the reagent position of each reagent bottle in the multiple reagent bottles one by one.
  • the setting instructions are:
  • the display mode for displaying the reagent information executed by the reagent position information setting device 500 when the program is executed by the processor 520 is preset or based on user selection.
  • the setting of the reagent position includes an icon setting mode
  • the icon setting mode is: each reagent position is simulated and displayed in the form of an icon, so that the user can input the pair by clicking.
  • Setting instructions for reagent positions are:
  • the setting of the reagent position includes an edit setting mode
  • the edit setting mode is: receiving the reagent position information edited and input by the user to set the reagent position corresponding to the reagent bottle.
  • the reagent position corresponds to a static reagent tray of the sample analyzer, and each reagent position on the static reagent tray is fixed.
  • the sample analyzer is a coagulation analyzer.
  • a storage medium is also provided, and program instructions are stored on the storage medium, and the program instructions are used to execute the reagent position information of the embodiment of the present invention when the program instructions are executed by a computer or a processor.
  • the corresponding steps of the setting method are used to implement the corresponding modules in the reagent position information setting device according to the embodiment of the present invention.
  • the storage medium may include, for example, a memory card of a smart phone, a storage component of a tablet computer, a hard disk of a personal computer, a read-only memory (ROM), an erasable programmable read-only memory (EPROM), a portable compact disk read-only memory (CD-ROM), USB memory, or any combination of the above storage media.
  • the computer-readable storage medium may be any combination of one or more computer-readable storage media.
  • the computer program instructions can realize the various functional modules of the reagent position information setting device according to the embodiment of the present invention when run by the computer, and/or can execute the reagent position information setting method according to the embodiment of the present invention .
  • the computer or the processor executes the following steps: obtain the barcode information of the reagent bottle to be placed in the reagent position of the sample analyzer, and The barcode information is parsed to obtain reagent information associated with the reagent in the reagent bottle, the barcode information is obtained by scanning the barcode of the reagent bottle by a barcode scanner external to the sample analyzer; displaying to the user The reagent information, and receive an instruction from the user to set the reagent position corresponding to the reagent bottle based on the reagent information, and in response to the instruction set by the user, combine the reagent information with the The reagent position information of the reagent position set by the user is bound.
  • the display of the reagent information by the computer or the processor includes a real-time display mode
  • the real-time display mode is:
  • the barcode information of one reagent bottle displays the reagent information associated with the reagent in the one reagent bottle in real time, and starts a countdown to remind the user to set the reagent position within the countdown time.
  • the reagent information is automatically invalidated and automatically deleted.
  • the computer program instructions that cause the computer or processor to execute the display of the reagent information when being executed by the computer or processor include a batch display mode, and the batch display mode is: After parsing the barcode information of the multiple reagent bottles, the reagent information associated with the reagents in the multiple reagent bottles is displayed in batches, so that the user can input the reagent information for each reagent bottle in the multiple reagent bottles one by one. Bit setting instructions.
  • the display mode of the computer or processor for displaying the reagent information that is executed by the computer or processor when the computer program instructions are executed by the computer or processor is preset or based on user selection. .
  • the setting of the reagent position includes an icon setting mode
  • the icon setting mode is: each reagent position is simulated and displayed in the form of an icon, so that the user can input the pair by clicking.
  • Setting instructions for reagent positions are:
  • the setting of the reagent position includes an edit setting mode
  • the edit setting mode is: receiving the reagent position information edited and input by the user to set the reagent position corresponding to the reagent bottle.
  • the reagent position corresponds to a static reagent tray of the sample analyzer, and each reagent position on the static reagent tray is fixed.
  • the sample analyzer is a coagulation analyzer.
  • the modules in the reagent level information setting device can be implemented by the processor of the electronic device for setting the reagent level information according to the embodiment of the present invention running computer program instructions stored in the memory, or can be implemented in accordance with the present invention.
  • the computer instructions stored in the computer-readable storage medium of the computer program product of the embodiment of the invention are implemented when the computer is running.
  • a computer program is also provided, and the computer program can be stored in a cloud or a local storage medium.
  • the computer program is run by a computer or a processor, it is used to execute the corresponding steps of the reagent position information setting method of the embodiment of the present invention, and is used to implement the corresponding modules in the reagent position information setting device according to the embodiment of the present invention.
  • a sample analyzer is also provided, which can implement the reagent position information setting method 200 according to the embodiment of the present application described above.
  • the sample analyzer may include a reagent position information setting device 400 or 500 according to an embodiment of the present application.
  • a person skilled in the art can understand the structure and specific operations of the sample analyzer according to the embodiment of the present application based on the reagent position information setting device 400 or 500 according to the embodiment of the present application described above. For the sake of brevity, details are not described herein again.
  • the sample analyzer may be a coagulation analyzer.
  • the reagent position information setting method, device, storage medium, and sample analyzer are based on an external handheld barcode scanner to scan the barcode on the reagent bottle, and implement the reagent information and reagent position through software operations Information binding can realize the setting of reagent position information without the need for the sample analyzer device itself to have a barcode scanner and reagent bottle identification device, which can reduce equipment cost and design difficulty, and has a wide range of applications.
  • the disclosed device and method may be implemented in other ways.
  • the device embodiments described above are only illustrative.
  • the division of the units is only a logical function division, and there may be other divisions in actual implementation, for example, multiple units or components may be combined or It can be integrated into another device, or some features can be ignored or not implemented.
  • the various component embodiments of the present application may be implemented by hardware, or by software modules running on one or more processors, or by a combination of them.
  • a microprocessor or a digital signal processor (DSP) may be used in practice to implement some or all of the functions of some modules according to the embodiments of the present application.
  • This application can also be implemented as a device program (for example, a computer program and a computer program product) for executing part or all of the methods described herein.
  • Such a program for realizing the present application may be stored on a computer-readable medium, or may have the form of one or more signals.
  • Such a signal can be downloaded from an Internet website, or provided on a carrier signal, or provided in any other form.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • General Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Automatic Analysis And Handling Materials Therefor (AREA)

Abstract

一种试剂位信息设置方法(200)、装置、存储介质和样本分析仪,该方法(200)包括:获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,并解析条码信息以得到与试剂瓶中的试剂相关联的试剂信息,条码信息是样本分析仪外部的条码扫描仪对试剂瓶的条码扫描得到的(S210);向用户显示试剂信息,并接收用户基于试剂信息设定与试剂瓶相对应的试剂位的指令,并响应于用户设定的指令,将试剂信息与被用户设定的试剂位的试剂位信息进行绑定(S220)。该试剂位信息设置方案基于外接手持条码扫描仪来扫描试剂瓶上的条码,并通过软件操作来实施试剂信息与试剂位信息的绑定,可以降低设备成本和设计难度,适应范围广。

Description

试剂位信息设置的方法、装置、存储介质和样本分析仪
说明书
技术领域
本申请涉及样本分析仪技术领域,更具体地涉及一种试剂位信息设置的方法、装置、存储介质和样本分析仪。
背景技术
样本分析仪作为医院检验科一种必备的检验设备,在临床使用中对效率的要求越来越高。为了完善仪器的自动化程度,提高检测效率,一些样本分析仪采用一种可自动扫描试剂瓶条码的试剂盘装置。该装置可自动识别位于试剂位上的试剂瓶上的条码信息,进而实现试剂加样的相关控制。然而,一些全自动样本分析仪出于对设计上的要求,试剂盘无法自动识别试剂瓶条码,需用户在应用软件上手动设置试剂位的试剂信息,操作不便。
此外,对于不支持自动识别试剂瓶条码的样本分析仪,通常需要在试剂位上安装试剂瓶识别装置(例如传感器)来弥补这一自动化流程上的不足。也就是使用外接手持条码扫描仪扫描试剂瓶上的条码,再将试剂瓶放入分析仪的试剂位,试剂位识别出试剂瓶后将解析信息与位置信息绑定,完成设置试剂位信息功能。这种方法虽然实现了预期功能,但由于需要试剂瓶识别装置,对仪器的设计仍有要求。因此,目前尚未形成一种完善的方法,以在不对仪器设计上提出要求的前提下实现试剂位信息的设置,即实现试剂信息与试剂位信息的绑定。
发明内容
为了解决上述问题而提出了本申请。本申请提供一种试剂位信息设置方案,其基于外接手持条码扫描仪来扫描试剂瓶上的条码,并通过软件操作来实施试剂信息与试剂位信息的绑定,无需样本分析仪设备本身具备条码扫描器和试剂瓶识别装置,就可实现试剂位信息设置,可以降低设备成本和设计难度,适应范围广。
下面简要描述本申请提出的试剂位信息设置方案,更多细节将在后续结 合附图在具体实施方式中加以描述。
本申请一方面,提供了一种试剂位信息设置方法,所述方法包括:获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,并解析所述条码信息以得到与所述试剂瓶中的试剂相关联的试剂信息,所述条码信息是所述样本分析仪外部的条码扫描仪对所述试剂瓶的条码扫描得到的;向用户显示所述试剂信息,并接收所述用户基于所述试剂信息设定与所述试剂瓶相对应的试剂位的指令,并响应于所述用户设定的指令,将所述试剂信息与被所述用户设定的试剂位的试剂位信息进行绑定。
在本申请的一个实施例中,对所述试剂信息的显示包括实时显示模式,所述实时显示模式为:每解析一个试剂瓶的条码信息则实时显示与所述一个试剂瓶中的试剂相关联的试剂信息,并开启倒计时,以提醒所述用户在倒计时间内对试剂位进行设定。
在本申请的一个实施例中,所述倒计时间结束后,所述试剂信息自动失效并自动删除。
在本申请的一个实施例中,对所述试剂信息的显示包括批量显示模式,所述批量显示模式为:在批量解析多个试剂瓶的条码信息后,批量显示与所述多个试剂瓶中的试剂各自相关联的试剂信息,以由所述用户逐个输入对所述多个试剂瓶中每个试剂瓶的试剂位的设定指令。
在本申请的一个实施例中,对所述试剂信息进行显示的显示模式是预先设定的或是基于用户选择的。
在本申请的一个实施例中,对试剂位的设定包括图标设定模式,所述图标设定模式为:以图标形式模拟显示每个试剂位,以由所述用户通过点击方式来输入对试剂位的设定指令。
在本申请的一个实施例中,对试剂位的设定包括编辑设定模式,所述编辑设定模式为:接收用户编辑输入的试剂位信息以设定与试剂瓶相对应的试剂位。
在本申请的一个实施例中,所述试剂位对应样本分析仪的静态试剂盘,所述静态试剂盘上的每个试剂位是固定的。
在本申请的一个实施例中,所述样本分析仪为凝血分析仪。
本申请另一方面,提供了一种试剂位信息设置装置,所述装置包括:解 析模块,用于获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,并解析所述条码信息以得到与所述试剂瓶中的试剂相关联的试剂信息,所述条码信息是所述样本分析仪外部的条码扫描仪对所述试剂瓶的条码扫描得到的;以及显示与绑定模块,用于向用户显示所述试剂信息,并接收所述用户基于所述试剂信息设定与所述试剂瓶相对应的试剂位的指令,并响应于所述用户设定的指令,将所述试剂信息与被所述用户设定的试剂位的试剂位信息进行绑定。
本申请又一方面,提供了试剂位信息设置装置,所述装置包括存储器和处理器,所述存储器上存储有由所述处理器运行的计算机程序,所述计算机程序在被所述处理器运行时执行如上述任一项所述的试剂位信息设置方法。
本申请又一方面,提供了一种存储介质,所述存储介质上存储有计算机程序,所述计算机程序在运行时执行如上述任一项所述的试剂位信息设置方法。
本申请又一方面,提供了一种样本分析仪,所述样本分析仪包括上述任一项所述的试剂位信息设置装置。
根据本申请实施例的试剂位信息设置方法、装置、存储介质和样本分析仪基于外接手持条码扫描仪来扫描试剂瓶上的条码,并通过软件操作来实施试剂信息与试剂位信息的绑定,无需样本分析仪设备本身具备条码扫描器和试剂瓶识别装置,就可实现试剂位信息设置,可以降低设备成本和设计难度,适应范围广。
附图说明
图1示出用于实现根据本申请实施例的试剂位信息设置方法的示例电子设备的示意性框图;
图2示出根据本申请实施例的试剂位信息设置方法的示意性流程图;
图3示出采用根据本发明实施例的试剂位信息设置方法对试剂信息与试剂位信息绑定后的示例性界面图;
图4示出根据本申请一个实施例的试剂位信息设置装置的示意性框图;以及
图5示出根据本申请另一个实施例的试剂位信息设置装置的示意性框 图。
具体实施方式
为了使得本申请的目的、技术方案和优点更为明显,下面将参照附图详细描述根据本申请的示例实施例。显然,所描述的实施例仅仅是本申请的一部分实施例,而不是本申请的全部实施例,应理解,本申请不受这里描述的示例实施例的限制。基于本申请中描述的本申请实施例,本领域技术人员在没有付出创造性劳动的情况下所得到的所有其它实施例都应落入本申请的保护范围之内。
在下文的描述中,给出了大量具体的细节以便提供对本申请更为彻底的理解。然而,对于本领域技术人员而言显而易见的是,本申请可以无需一个或多个这些细节而得以实施。在其他的例子中,为了避免与本申请发生混淆,对于本领域公知的一些技术特征未进行描述。
应当理解的是,本申请能够以不同形式实施,而不应当解释为局限于这里提出的实施例。相反地,提供这些实施例将使公开彻底和完全,并且将本申请的范围完全地传递给本领域技术人员。
在此使用的术语的目的仅在于描述具体实施例并且不作为本申请的限制。在此使用时,单数形式的“一”、“一个”和“所述/该”也意图包括复数形式,除非上下文清楚指出另外的方式。还应明白术语“组成”和/或“包括”,当在该说明书中使用时,确定所述特征、整数、步骤、操作、元件和/或部件的存在,但不排除一个或更多其它的特征、整数、步骤、操作、元件、部件和/或组的存在或添加。在此使用时,术语“和/或”包括相关所列项目的任何及所有组合。
为了彻底理解本申请,将在下列的描述中提出详细的步骤以及详细的结构,以便阐释本申请提出的技术方案。本申请的较佳实施例详细描述如下,然而除了这些详细描述外,本申请还可以具有其他实施方式。
首先,参照图1来描述用于实现本发明实施例的试剂位信息设置方法和装置的示例电子设备100。
如图1所示,电子设备100包括一个或多个处理器102、一个或多个 存储装置104、输入装置106以及输出装置108,这些组件通过总线系统110和/或其它形式的连接机构(未示出)互连。应当注意,图1所示的电子设备100的组件和结构只是示例性的,而非限制性的,根据需要,所述电子设备也可以具有其他组件和结构。
所述处理器102可以是中央处理单元(CPU)或者具有数据处理能力和/或指令执行能力的其它形式的处理单元,并且可以控制所述电子设备100中的其它组件以执行期望的功能。
所述存储装置104可以包括一个或多个计算机程序产品,所述计算机程序产品可以包括各种形式的计算机可读存储介质,例如易失性存储器和/或非易失性存储器。所述易失性存储器例如可以包括随机存取存储器(RAM)和/或高速缓冲存储器(cache)等。所述非易失性存储器例如可以包括只读存储器(ROM)、硬盘、闪存等。在所述计算机可读存储介质上可以存储一个或多个计算机程序指令,处理器102可以运行所述程序指令,以实现下文所述的本发明实施例中(由处理器实现)的试剂位信息设置功能以及/或者其它期望的功能。在所述计算机可读存储介质中还可以存储各种应用程序和各种数据,例如所述应用程序使用和/或产生的各种数据等。
所述输入装置106可以是用户用来输入指令(例如在下文所述的根据本发明实施例的试剂位信息设置方法中用户可以输入与测量参数相关联的字符)的装置,并且可以包括键盘、鼠标、麦克风和触摸屏等中的一个或多个。此外,所述输入装置106也可以是任何接收信息的接口。
所述输出装置108可以向外部(例如用户)输出各种信息,并且可以包括显示器、扬声器等中的一个或多个。此外,所述输出装置108也可以是任何其他具备输出功能的设备。
示例性地,用于实现根据本发明实施例的试剂位信息设置方法和装置的示例电子设备可以被实现为诸如桌面型计算机、平板电脑等终端,或者包括这些终端的医用系统(诸如样本分析仪)等。
下面,将参考图2描述根据本申请一个实施例的试剂位信息设置方法200。如图2所示,试剂位信息设置方法200可以包括如下步骤:
在步骤S210,获取待放入样本分析仪的试剂位上的试剂瓶的条码信 息,并解析所述条码信息以得到与所述试剂瓶中的试剂相关联的试剂信息,所述条码信息是所述样本分析仪外部的条码扫描仪对所述试剂瓶的条码扫描得到的。
在本申请的实施例中,可以首先采用样本分析仪(诸如凝血分析仪)外部的条码扫描仪对待放入样本分析仪的试剂位上的试剂瓶上的条码进行扫描,以得到试剂瓶上的条码信息。此处,“样本分析仪外部的条码扫描仪”可以理解为外接于样本分析仪上的条码扫描仪,即条码扫描仪本身不属于样本分析仪的组件,而是通过一定的接口外接在样本分析仪上。在该示例中,样本分析仪可以包括用于外接设备的接口,且所述样本分析仪外部的条码扫描仪是经由所述接口外接在所述样本分析仪上的。或者,“样本分析仪外部的条码扫描仪”也可以理解为外接在装有样本分析应用软件的计算设备上,诸如外接在装有样本分析应用软件的电脑机箱上。
基于外部条码扫描仪的扫描,可以获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,解析该条码信息,可得到与试剂瓶中的试剂相关联的试剂信息。例如,当试剂瓶中的试剂为血液时,与其相关联的试剂信息即为与该试剂瓶中的血液相关联的参数信息等。基于该试剂信息,可以进行试剂信息与试剂位信息的绑定,这将在下面的步骤中描述。
在步骤S220,向用户显示所述试剂信息,并接收所述用户基于所述试剂信息设定与所述试剂瓶相对应的试剂位的指令,并响应于所述用户设定的指令,将所述试剂信息与被所述用户设定的试剂位的试剂位信息进行绑定。
在本申请的实施例中,可以向用户显示步骤S210中解析得到的试剂瓶中试剂的试剂信息。基于该试剂信息,用户可以通过一定的指令来设定与试剂瓶相对应的试剂位。基于该指令,可以实现将试剂瓶中试剂的试剂信息与该试剂瓶所对应的试剂位的试剂位信息的绑定。其中,试剂位信息是指与试剂瓶所对应的试剂位(试剂瓶可能已放入该试剂位,也可能待放入该试剂位)的位置信息。试剂信息与试剂位信息的绑定可以理解为将试剂瓶中的试剂信息与该试剂瓶所对应的试剂位的位置信息进行关联/对应/映射等。
其中,在一个实施例中,对试剂信息的显示可以包括实时显示模式, 所述实时显示模式为:每解析一个试剂瓶的条码信息则实时显示与所述一个试剂瓶中的试剂相关联的试剂信息,并开启倒计时,以提醒所述用户在倒计时间内对试剂位进行设定。该种显示方式每解析一个试剂瓶的条码,就通过倒计时的方式提醒用户来设定该试剂瓶的试剂位,可以实现试剂信息与试剂位信息的实时绑定操作。在该实施例进一步的实施例中,在倒计时间结束后,所述试剂信息自动失效并自动删除。在该实施例中,可以在实现实时绑定操作的同时减少不必要试剂信息(即已完成绑定或无需绑定或其他错误操作等)的显示和存储,避免对后续有用信息的显示和操作造成干扰或其他影响。
在另一个实施例中,对试剂信息的显示可以包括批量显示模式,所述批量显示模式为:在批量解析多个试剂瓶的条码信息后,批量显示与所述多个试剂瓶中的试剂各自相关联的试剂信息,以由所述用户逐个输入对所述多个试剂瓶中每个试剂瓶的试剂位的设定指令。在该实施例中,在解析完当前的所有条码信息,再按一定顺序(例如按照时间顺序)依次排列地显示相应的试剂信息,基于该试剂信息的列表,用户可以逐个对每个试剂瓶的试剂位进行设定,这种的批量显示模式有利于提高操作效率。在该实施例进一步的实施例中,在完成试剂信息与试剂位信息的绑定后,可清除解析得到的试剂信息,以避免对后续试剂瓶试剂信息与试剂位信息的绑定造成干扰或占用存储空间。
上述两种显示模式仅是示例性的,应理解,对试剂信息进行显示的显示模式还可以包括其他任何合适的显示模式,可根据不同的应用场景设定或选择合适的显示模式。进一步地,对试剂信息进行显示的显示模式可以是预先设定的(例如具有默认显示操作),也可以是基于用户选择的(例如包括多种显示模式可供用户选择)。
基于对试剂信息的显示,用户可输入对试剂瓶的试剂位的设定指令。在一个实施例中,对试剂位的设定可以包括图标设定模式,所述图标设定模式为:以图标形式模拟显示每个试剂位,以由所述用户通过点击方式来输入对试剂位的设定指令。在该实施例中,将每个试剂位以图标的形式模拟显示出来,用户可以点击相应的图标来实现对试剂瓶相对应的试剂位的设定,该种方式操作简单,易于实现。
在另一个实施例中,对试剂位的设定可以包括编辑设定模式,所述编辑设定模式为:接收用户编辑输入的试剂位信息以设定与试剂瓶相对应的试剂位。在该实施例中,由用户手动录入试剂位信息,从而实现对试剂瓶相对应的试剂位的设定,该种方式同样操作简单,易于实现。
上述两种设定模式仅是示例性的,应理解,对试剂位的设定模式还可以包括其他任何合适的设定模式,可根据不同的应用场景提供合适的设定模式。进一步地,对试剂信息的显示模式和对试剂位的设定模式可以在前述提供的模式(或其他可能的模式)中进行任意的组合,以实现方便、高效、高可靠性的试剂位信息设置。例如,在批量显示模式和图标设定模式组合的实施例中,用户可以点击界面上的试剂位图标,在弹出的试剂信息列表中选择试剂信息,以实现试剂信息与试剂位信息的绑定,全部选择操作完成后点击保存按钮完成试剂位信息设置功能。类似地,可以根据前面的描述理解实时显示模式与图标设定模式组合的实施例的操作、实时显示模式与编辑设定模式组合的实施例的操作、批量显示模式和编辑设定模式组合的实施例的操作、以及任何其他合适的试剂信息显示模式与试剂位设定模式组合的实施例的操作,此处不再一一举例描述。
在本发明的一个实施例中,与试剂位信息绑定的试剂位可以对应样本分析仪的静态试剂盘,所述静态试剂盘上的每个试剂位是固定的。在该实施例中,试剂盘是静态的,试剂盘上的每个试剂位是固定的。在其他实施例中,与试剂位信息绑定的试剂位也可以对应于样本分析仪的动态试剂盘,或者样本分析仪的其他任何试剂位。
下面参考图3描述采用根据本发明实施例的试剂位信息设置方法对试剂信息与试剂位信息绑定后的示例性界面图。如图3所示,左侧上部区域显示了常温区稀释液的试剂位,由于常温区稀释液的试剂位数量较少(在图3的示例中仅示出为4个),因此可以不对其进行编号也一目了然(当然这仅是示例性的)。左侧中部区域示出了不同颜色代表不同的试剂类型,例如左侧颜色代表触发试剂,中间颜色代表混合试剂1,右侧颜色代表混合试剂2。左侧下部区域示出了具体的试剂信息,包括测量项目、试剂类型、试剂批号等(这仅是示例性的)。
继续参考图3,右侧区域显示了制冷区试剂位,如图所示,与编号为 5的试剂位对应的试剂是FDP,其余量为532;与编号为12的试剂位对应的试剂是D_D,其余量为211;与编号为24的试剂位对应的试剂是洗针液,其余量为456;与编号为11的试剂位对应的试剂是D_D,其余量为52;与编号为22的试剂位对应的试剂是PT,其余量为55;与编号为20的试剂位对应的试剂是APTT,其余量为563;与编号为2的试剂位对应的试剂是TT,其余量为451;与编号为1的试剂位对应的试剂是APTT,其余量为99;与编号为18的试剂位对应的试剂是APTT,其余量为123。上述这些试剂的字体颜色也体现了它们的试剂类型。从图中不难看出,5号、12号、22号、2号以及1号试剂位上的试剂均是触发试剂,24号和18号试剂位上的试剂是混合试剂1,而11号和20号试剂位上的试剂是混合试剂2。此外,还有其他编号的试剂位尚未与试剂信息绑定。
从图3所示的界面图明显可知,根据本发明实施例的试剂位信息设置方法可以通过软件便利地实现试剂信息与试剂位信息的绑定。此外,应理解,该界面图仅是示例性的。根据本发明实施例的试剂位信息设置方法还可以实现为其他的界面。
在本发明的进一步的实施例中,方法200还可以包括(未在图2中示出):在完成试剂信息与试剂位信息的绑定之后,将包括试剂信息与试剂位信息的对应关系的绑定信息传送至所述样本分析仪。在该实施例中,通过将包括试剂信息与试剂位信息的对应关系的绑定信息传送至样本分析仪,使得样本分析仪得到关于其每个试剂位上放置的是何种试剂信息的信息,这对于其后的样本分析过程将具有极大的益处。当然,该样本分析仪可以本身自带实施上述方法200的应用或模块,在该情况下,无需实施包括试剂信息与试剂位信息的对应关系的绑定信息的传送过程,或仅需在样本分析仪各模块内容之间传送包括试剂信息与试剂位信息的对应关系的绑定信息即可。
基于上面的描述,根据本申请实施例的试剂位信息设置方法基于外接手持条码扫描仪来扫描试剂瓶上的条码,并通过软件操作来实施试剂信息与试剂位信息的绑定,无需样本分析仪设备本身具备条码扫描器和试剂瓶识别装置,就可实现试剂位信息设置,可以降低设备成本和设计难度,适应范围广。
以上示例性地示出了根据本申请实施例的试剂位信息设置方法。示例性地,根据本发明实施例的试剂位信息设置方法可以在具有存储器和处理器的设备、装置或者系统中实现。
此外,根据本发明实施例的试剂位信息设置方法可以方便地部署到智能手机、平板电脑、个人计算机等移动设备上。替代地,根据本发明实施例的试剂位信息设置方法还可以部署在服务器端(或云端)。替代地,根据本发明实施例的试剂位信息设置方法还可以分布地部署在服务器端(或云端)和个人终端处。
下面结合图4描述本发明另一方面提供的试剂位信息设置装置。图4示出了根据本发明实施例的试剂位信息设置装置400的示意性框图。
如图4所示,根据本发明实施例的试剂位信息设置装置400包括解析模块410和显示与绑定模块420。其中,解析模块410用于获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,并解析所述条码信息以得到与所述试剂瓶中的试剂相关联的试剂信息,所述条码信息是所述样本分析仪外部的条码扫描仪对所述试剂瓶的条码扫描得到的。显示与绑定模块420用于向用户显示所述试剂信息,并接收所述用户基于所述试剂信息设定与所述试剂瓶相对应的试剂位的指令,并响应于所述用户设定的指令,将所述试剂信息与被所述用户设定的试剂位的试剂位信息进行绑定。所述各个模块可分别执行上文中结合图2描述的试剂位信息设置方法的各个步骤/功能。以下仅对试剂位信息设置装置400的各模块的主要功能进行描述,而省略以上已经描述过的细节内容。
在本申请的实施例中,可以首先采用样本分析仪(诸如凝血分析仪)外部的条码扫描仪对待放入样本分析仪的试剂位上的试剂瓶上的条码进行扫描,以得到试剂瓶上的条码信息。此处,“样本分析仪外部的条码扫描仪”可以理解为外接于样本分析仪上的条码扫描仪,即条码扫描仪本身不属于样本分析仪的组件,而是通过一定的接口外接在样本分析仪上。在该示例中,样本分析仪可以包括用于外接设备的接口,且所述样本分析仪外部的条码扫描仪是经由所述接口外接在所述样本分析仪上的。或者,“样本分析仪外部的条码扫描仪”也可以理解为外接在装有样本分析应用软件的计算设备上,诸如外接在装有样本分析应用软件的电脑机箱上。
基于外部条码扫描仪的扫描,解析模块410可以获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,解析该条码信息,可得到与试剂瓶中的试剂相关联的试剂信息。例如,当试剂瓶中的试剂为血液时,与其相关联的试剂信息即为与该试剂瓶中的血液相关联的参数信息等。基于该试剂信息,显示与绑定模块420可以进行试剂信息与试剂位信息的绑定。
在本申请的实施例中,显示与绑定模块420可以向用户显示解析模块410解析得到的试剂瓶中试剂的试剂信息。基于该试剂信息,用户可以通过一定的指令来设定与试剂瓶相对应的试剂位。基于该指令,显示与绑定模块420可以实现将试剂瓶中试剂的试剂信息与该试剂瓶所对应的试剂位的试剂位信息的绑定。其中,试剂位信息是指与试剂瓶所对应的试剂位(试剂瓶可能已放入该试剂位,也可能待放入该试剂位)的位置信息。试剂信息与试剂位信息的绑定可以理解为将试剂瓶中的试剂信息与该试剂瓶所对应的试剂位的位置信息进行关联/对应/映射等。
其中,在一个实施例中,显示与绑定模块420对试剂信息的显示可以包括实时显示模式,所述实时显示模式为:每解析一个试剂瓶的条码信息则实时显示与所述一个试剂瓶中的试剂相关联的试剂信息,并开启倒计时,以提醒所述用户在倒计时间内对试剂位进行设定。该种显示方式每解析一个试剂瓶的条码,就通过倒计时的方式提醒用户来设定该试剂瓶的试剂位,可以实现试剂信息与试剂位信息的实时绑定操作。在该实施例进一步的实施例中,在倒计时间结束后,所述试剂信息自动失效并自动删除。在该实施例中,可以在实现实时绑定操作的同时减少不必要试剂信息(即已完成绑定或无需绑定或其他错误操作等)的显示和存储,避免对后续有用信息的显示和操作造成干扰或其他影响。
在另一个实施例中,显示与绑定模块420对试剂信息的显示可以包括批量显示模式,所述批量显示模式为:在批量解析多个试剂瓶的条码信息后,批量显示与所述多个试剂瓶中的试剂各自相关联的试剂信息,以由所述用户逐个输入对所述多个试剂瓶中每个试剂瓶的试剂位的设定指令。在该实施例中,在解析完当前的所有条码信息,再按一定顺序(例如按照时间顺序)依次排列地显示相应的试剂信息,基于该试剂信息的列表,用户可以逐个对每个试剂瓶的试剂位进行设定,这种的批量显示模式有利于提 高操作效率。在该实施例进一步的实施例中,在完成试剂信息与试剂位信息的绑定后,可清除解析得到的试剂信息,以避免对后续试剂瓶试剂信息与试剂位信息的绑定造成干扰或占用存储空间。
上述两种显示模式仅是示例性的,应理解,对试剂信息进行显示的显示模式还可以包括其他任何合适的显示模式,可根据不同的应用场景设定或选择合适的显示模式。进一步地,对试剂信息进行显示的显示模式可以是预先设定的(例如具有默认显示操作),也可以是基于用户选择的(例如包括多种显示模式可供用户选择)。
基于对试剂信息的显示,用户可输入对试剂瓶的试剂位的设定指令。在一个实施例中,对试剂位的设定可以包括图标设定模式,所述图标设定模式为:显示与绑定模块420以图标形式模拟显示每个试剂位,以由所述用户通过点击方式来输入对试剂位的设定指令。在该实施例中,显示与绑定模块420将每个试剂位以图标的形式模拟显示出来,用户可以点击相应的图标来实现对试剂瓶相对应的试剂位的设定,该种方式操作简单,易于实现。
在另一个实施例中,对试剂位的设定可以包括编辑设定模式,所述编辑设定模式为:显示与绑定模块420接收用户编辑输入的试剂位信息以设定与试剂瓶相对应的试剂位。在该实施例中,由用户手动录入试剂位信息,从而实现对试剂瓶相对应的试剂位的设定,该种方式同样操作简单,易于实现。
上述两种设定模式仅是示例性的,应理解,对试剂位的设定模式还可以包括其他任何合适的设定模式,可根据不同的应用场景提供合适的设定模式。进一步地,对试剂信息的显示模式和对试剂位的设定模式可以在前述提供的模式(或其他可能的模式)中进行任意的组合,以实现方便、高效、高可靠性的试剂位信息设置。例如,在批量显示模式和图标设定模式组合的实施例中,用户可以点击界面上的试剂位图标,在弹出的试剂信息列表中选择试剂信息,以实现试剂信息与试剂位信息的绑定,全部选择操作完成后点击保存按钮完成试剂位信息设置功能。类似地,可以根据前面的描述理解实时显示模式与图标设定模式组合的实施例的操作、实时显示模式与编辑设定模式组合的实施例的操作、批量显示模式和编辑设定模式 组合的实施例的操作、以及任何其他合适的试剂信息显示模式与试剂位设定模式组合的实施例的操作,此处不再一一举例描述。
在本发明的一个实施例中,与试剂位信息绑定的试剂位可以对应样本分析仪的静态试剂盘,所述静态试剂盘上的每个试剂位是固定的。在该实施例中,试剂盘是静态的,试剂盘上的每个试剂位是固定的。在其他实施例中,与试剂位信息绑定的试剂位也可以对应于样本分析仪的动态试剂盘,或者样本分析仪的其他任何试剂位。
在本发明的进一步的实施例中,装置400还可以包括传送模块(未在图4中示出):在显示与绑定模块420完成试剂信息与试剂位信息的绑定之后,传送模块可以将包括试剂信息与试剂位信息的对应关系的绑定信息传送至所述样本分析仪。在该实施例中,通过将包括试剂信息与试剂位信息的对应关系的绑定信息传送至样本分析仪,使得样本分析仪得到关于其每个试剂位上放置的是何种试剂信息的信息,这对于其后的样本分析过程将具有极大的益处。当然,该样本分析仪可以本身自带实现上述装置400的模块,在该情况下,无需实施包括试剂信息与试剂位信息的对应关系的绑定信息的传送过程,或仅需在样本分析仪各模块内容之间传送包括试剂信息与试剂位信息的对应关系的绑定信息即可。
基于上面的描述,根据本申请实施例的试剂位信息设置装置基于外接手持条码扫描仪来扫描试剂瓶上的条码,并通过软件操作来实施试剂信息与试剂位信息的绑定,无需样本分析仪设备本身具备条码扫描器和试剂瓶识别装置,就可实现试剂位信息设置,可以降低设备成本和设计难度,适应范围广。
图5示出了根据本发明另一实施例的试剂位信息设置装置500的示意性框图。试剂位信息设置装置500包括存储器510以及处理器520。
其中,存储器510存储用于实现根据本发明实施例的试剂位信息设置方法中的相应步骤的程序。处理器520用于运行存储器510中存储的程序,以执行根据本发明实施例的试剂位信息设置方法的相应步骤,并且用于实现根据本发明实施例的试剂位信息设置装置中的相应模块。
在本发明的一个实施例中,在所述程序被处理器520运行时使得试剂位信息设置装置500执行以下步骤:获取待放入样本分析仪的试剂位上的试剂 瓶的条码信息,并解析所述条码信息以得到与所述试剂瓶中的试剂相关联的试剂信息,所述条码信息是所述样本分析仪外部的条码扫描仪对所述试剂瓶的条码扫描得到的;向用户显示所述试剂信息,并接收所述用户基于所述试剂信息设定与所述试剂瓶相对应的试剂位的指令,并响应于所述用户设定的指令,将所述试剂信息与被所述用户设定的试剂位的试剂位信息进行绑定。
在本申请的一个实施例中,在所述程序被处理器520运行时使得试剂位信息设置装置500执行的对所述试剂信息的显示包括实时显示模式,所述实时显示模式为:每解析一个试剂瓶的条码信息则实时显示与所述一个试剂瓶中的试剂相关联的试剂信息,并开启倒计时,以提醒所述用户在倒计时间内对试剂位进行设定。
在本申请的一个实施例中,所述倒计时间结束后,所述试剂信息自动失效并自动删除。
在本申请的一个实施例中,在所述程序被处理器520运行时使得试剂位信息设置装置500执行的对所述试剂信息的显示包括批量显示模式,所述批量显示模式为:在批量解析多个试剂瓶的条码信息后,批量显示与所述多个试剂瓶中的试剂各自相关联的试剂信息,以由所述用户逐个输入对所述多个试剂瓶中每个试剂瓶的试剂位的设定指令。
在本申请的一个实施例中,在所述程序被处理器520运行时使得试剂位信息设置装置500执行的对所述试剂信息进行显示的显示模式是预先设定的或是基于用户选择的。
在本申请的一个实施例中,对试剂位的设定包括图标设定模式,所述图标设定模式为:以图标形式模拟显示每个试剂位,以由所述用户通过点击方式来输入对试剂位的设定指令。
在本申请的一个实施例中,对试剂位的设定包括编辑设定模式,所述编辑设定模式为:接收用户编辑输入的试剂位信息以设定与试剂瓶相对应的试剂位。
在本申请的一个实施例中,所述试剂位对应样本分析仪的静态试剂盘,所述静态试剂盘上的每个试剂位是固定的。
在本申请的一个实施例中,所述样本分析仪为凝血分析仪。
此外,根据本发明实施例,还提供了一种存储介质,在所述存储介质上存储了程序指令,在所述程序指令被计算机或处理器运行时用于执行本发明实施例的试剂位信息设置方法的相应步骤,并且用于实现根据本发明实施例的试剂位信息设置装置中的相应模块。所述存储介质例如可以包括智能电话的存储卡、平板电脑的存储部件、个人计算机的硬盘、只读存储器(ROM)、可擦除可编程只读存储器(EPROM)、便携式紧致盘只读存储器(CD-ROM)、USB存储器、或者上述存储介质的任意组合。所述计算机可读存储介质可以是一个或多个计算机可读存储介质的任意组合。
在一个实施例中,所述计算机程序指令在被计算机运行时可以实现根据本发明实施例的试剂位信息设置装置的各个功能模块,并且/或者可以执行根据本发明实施例的试剂位信息设置方法。
在本发明的一个实施例中,所述计算机程序指令在被计算机或处理器运行时使计算机或处理器执行以下步骤:获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,并解析所述条码信息以得到与所述试剂瓶中的试剂相关联的试剂信息,所述条码信息是所述样本分析仪外部的条码扫描仪对所述试剂瓶的条码扫描得到的;向用户显示所述试剂信息,并接收所述用户基于所述试剂信息设定与所述试剂瓶相对应的试剂位的指令,并响应于所述用户设定的指令,将所述试剂信息与被所述用户设定的试剂位的试剂位信息进行绑定。
在本申请的一个实施例中,所述计算机程序指令在被计算机或处理器运行时使计算机或处理器执行的对所述试剂信息的显示包括实时显示模式,所述实时显示模式为:每解析一个试剂瓶的条码信息则实时显示与所述一个试剂瓶中的试剂相关联的试剂信息,并开启倒计时,以提醒所述用户在倒计时间内对试剂位进行设定。
在本申请的一个实施例中,所述倒计时间结束后,所述试剂信息自动失效并自动删除。
在本申请的一个实施例中,所述计算机程序指令在被计算机或处理器运行时使计算机或处理器执行的对所述试剂信息的显示包括批量显示模式,所述批量显示模式为:在批量解析多个试剂瓶的条码信息后,批量显示与所述多个试剂瓶中的试剂各自相关联的试剂信息,以由所述用户逐个输入对所述 多个试剂瓶中每个试剂瓶的试剂位的设定指令。
在本申请的一个实施例中,所述计算机程序指令在被计算机或处理器运行时使计算机或处理器执行的对所述试剂信息进行显示的显示模式是预先设定的或是基于用户选择的。
在本申请的一个实施例中,对试剂位的设定包括图标设定模式,所述图标设定模式为:以图标形式模拟显示每个试剂位,以由所述用户通过点击方式来输入对试剂位的设定指令。
在本申请的一个实施例中,对试剂位的设定包括编辑设定模式,所述编辑设定模式为:接收用户编辑输入的试剂位信息以设定与试剂瓶相对应的试剂位。
在本申请的一个实施例中,所述试剂位对应样本分析仪的静态试剂盘,所述静态试剂盘上的每个试剂位是固定的。
在本申请的一个实施例中,所述样本分析仪为凝血分析仪。
根据本发明实施例的试剂位信息设置装置中的各模块可以通过根据本发明实施例的试剂位信息设置的电子设备的处理器运行在存储器中存储的计算机程序指令来实现,或者可以在根据本发明实施例的计算机程序产品的计算机可读存储介质中存储的计算机指令被计算机运行时实现。
此外,根据本发明实施例,还提供了一种计算机程序,该计算机程序可以存储在云端或本地的存储介质上。在该计算机程序被计算机或处理器运行时用于执行本发明实施例的试剂位信息设置方法的相应步骤,并且用于实现根据本发明实施例的试剂位信息设置装置中的相应模块。
此外,根据本申请实施例,还提供了一种样本分析仪,该样本分析仪可以实施上文中描述的根据本申请实施例的试剂位信息设置方法200。该样本分析仪可以包括根据本申请实施例的试剂位信息设置装置400或500。本领域技术人员可以基于上文描述的根据本申请实施例的试剂位信息设置装置400或500来理解根据本申请实施例的样本分析仪的结构和具体操作,为了简洁,此处不再赘述。示例性地,该样本分析仪可以为凝血分析仪。
基于上面的描述,根据本申请实施例的试剂位信息设置方法、装置、存储介质和样本分析仪基于外接手持条码扫描仪来扫描试剂瓶上的条码,并通过软件操作来实施试剂信息与试剂位信息的绑定,无需样本分析仪设 备本身具备条码扫描器和试剂瓶识别装置,就可实现试剂位信息设置,可以降低设备成本和设计难度,适应范围广。
尽管这里已经参考附图描述了示例实施例,应理解上述示例实施例仅仅是示例性的,并且不意图将本申请的范围限制于此。本领域普通技术人员可以在其中进行各种改变和修改,而不偏离本申请的范围和精神。所有这些改变和修改意在被包括在所附权利要求所要求的本申请的范围之内。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本申请的范围。
在本申请所提供的几个实施例中,应该理解到,所揭露的设备和方法,可以通过其它的方式实现。例如,以上所描述的设备实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个设备,或一些特征可以忽略,或不执行。
在此处所提供的说明书中,说明了大量具体细节。然而,能够理解,本申请的实施例可以在没有这些具体细节的情况下实践。在一些实例中,并未详细示出公知的方法、结构和技术,以便不模糊对本说明书的理解。
类似地,应当理解,为了精简本申请并帮助理解各个发明方面中的一个或多个,在对本申请的示例性实施例的描述中,本申请的各个特征有时被一起分组到单个实施例、图、或者对其的描述中。然而,并不应将该本申请的方法解释成反映如下意图:即所要求保护的本申请要求比在每个权利要求中所明确记载的特征更多的特征。更确切地说,如相应的权利要求书所反映的那样,其发明点在于可以用少于某个公开的单个实施例的所有特征的特征来解决相应的技术问题。因此,遵循具体实施方式的权利要求书由此明确地并入该具体实施方式,其中每个权利要求本身都作为本申请的单独实施例。
本领域的技术人员可以理解,除了特征之间相互排斥之外,可以采用 任何组合对本说明书(包括伴随的权利要求、摘要和附图)中公开的所有特征以及如此公开的任何方法或者设备的所有过程或单元进行组合。除非另外明确陈述,本说明书(包括伴随的权利要求、摘要和附图)中公开的每个特征可以由提供相同、等同或相似目的的替代特征来代替。
此外,本领域的技术人员能够理解,尽管在此所述的一些实施例包括其它实施例中所包括的某些特征而不是其它特征,但是不同实施例的特征的组合意味着处于本申请的范围之内并且形成不同的实施例。例如,在权利要求书中,所要求保护的实施例的任意之一都可以以任意的组合方式来使用。
本申请的各个部件实施例可以以硬件实现,或者以在一个或者多个处理器上运行的软件模块实现,或者以它们的组合实现。本领域的技术人员应当理解,可以在实践中使用微处理器或者数字信号处理器(DSP)来实现根据本申请实施例的一些模块的一些或者全部功能。本申请还可以实现为用于执行这里所描述的方法的一部分或者全部的装置程序(例如,计算机程序和计算机程序产品)。这样的实现本申请的程序可以存储在计算机可读介质上,或者可以具有一个或者多个信号的形式。这样的信号可以从因特网网站上下载得到,或者在载体信号上提供,或者以任何其他形式提供。
应该注意的是上述实施例对本申请进行说明而不是对本申请进行限制,并且本领域技术人员在不脱离所附权利要求的范围的情况下可设计出替换实施例。在权利要求中,不应将位于括号之间的任何参考符号构造成对权利要求的限制。本申请可以借助于包括有若干不同元件的硬件以及借助于适当编程的计算机来实现。在列举了若干装置的单元权利要求中,这些装置中的若干个可以是通过同一个硬件项来具体体现。单词第一、第二、以及第三等的使用不表示任何顺序。可将这些单词解释为名称。
以上所述,仅为本申请的具体实施方式或对具体实施方式的说明,本申请的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本申请的保护范围之内。本申请的保护范围应以权利要求的保护范围为准。

Claims (13)

  1. 一种试剂位信息设置方法,其特征在于,所述方法包括:
    获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,并解析所述条码信息以得到与所述试剂瓶中的试剂相关联的试剂信息,所述条码信息是所述样本分析仪外部的条码扫描仪对所述试剂瓶的条码扫描得到的;
    向用户显示所述试剂信息,并接收所述用户基于所述试剂信息设定与所述试剂瓶相对应的试剂位的指令,并响应于所述用户设定的指令,将所述试剂信息与被所述用户设定的试剂位的试剂位信息进行绑定。
  2. 根据权利要求1所述的方法,其特征在于,对所述试剂信息的显示包括实时显示模式,所述实时显示模式为:每解析一个试剂瓶的条码信息则实时显示与所述一个试剂瓶中的试剂相关联的试剂信息,并开启倒计时,以提醒所述用户在倒计时间内对试剂位进行设定。
  3. 根据权利要求2所述的方法,其特征在于,所述倒计时间结束后,所述试剂信息自动失效并自动删除。
  4. 根据权利要求1所述的方法,其特征在于,对所述试剂信息的显示包括批量显示模式,所述批量显示模式为:在批量解析多个试剂瓶的条码信息后,批量显示与所述多个试剂瓶中的试剂各自相关联的试剂信息,以由所述用户逐个输入对所述多个试剂瓶中每个试剂瓶的试剂位的设定指令。
  5. 根据权利要求2-4中的任一项所述的方法,其特征在于,对所述试剂信息进行显示的显示模式是预先设定的或是基于用户选择的。
  6. 根据权利要求2-4中的任一项所述的方法,其特征在于,对试剂位的设定包括图标设定模式,所述图标设定模式为:以图标形式模拟显示每个试剂位,以由所述用户通过点击方式来输入对试剂位的设定指令。
  7. 根据权利要求2-4中的任一项所述的方法,其特征在于,对试剂位的设定包括编辑设定模式,所述编辑设定模式为:接收用户编辑输入的试剂位信息以设定与试剂瓶相对应的试剂位。
  8. 根据权利要求1-7中的任一项所述的方法,其特征在于,所述试剂位对应样本分析仪的静态试剂盘,所述静态试剂盘上的每个试剂位是固定的。
  9. 根据权利要求1-8中的任一项所述的方法,其特征在于,所述样本分析仪为凝血分析仪。
  10. 一种试剂位信息设置装置,其特征在于,所述装置包括:
    解析模块,用于获取待放入样本分析仪的试剂位上的试剂瓶的条码信息,并解析所述条码信息以得到与所述试剂瓶中的试剂相关联的试剂信息,所述条码信息是所述样本分析仪外部的条码扫描仪对所述试剂瓶的条码扫描得到的;以及
    显示与绑定模块,用于向用户显示所述试剂信息,并接收所述用户基于所述试剂信息设定与所述试剂瓶相对应的试剂位的指令,并响应于所述用户设定的指令,将所述试剂信息与被所述用户设定的试剂位的试剂位信息进行绑定。
  11. 一种试剂位信息设置装置,其特征在于,所述装置包括存储器和处理器,所述存储器上存储有由所述处理器运行的计算机程序,所述计算机程序在被所述处理器运行时执行如权利要求1-9中的任一项所述的试剂位信息设置方法。
  12. 一种存储介质,其特征在于,所述存储介质上存储有计算机程序,所述计算机程序在运行时执行如权利要求1-9中的任一项所述的试剂位信息设置方法。
  13. 一种样本分析仪,其特征在于,所述样本分析仪包括如权利要求10或11所述的试剂位信息设置装置。
PCT/CN2019/102863 2019-08-27 2019-08-27 试剂位信息设置的方法、装置、存储介质和样本分析仪 WO2021035536A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/CN2019/102863 WO2021035536A1 (zh) 2019-08-27 2019-08-27 试剂位信息设置的方法、装置、存储介质和样本分析仪
CN201980098842.6A CN114207446A (zh) 2019-08-27 2019-08-27 试剂位信息设置的方法、装置、存储介质和样本分析仪

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2019/102863 WO2021035536A1 (zh) 2019-08-27 2019-08-27 试剂位信息设置的方法、装置、存储介质和样本分析仪

Publications (1)

Publication Number Publication Date
WO2021035536A1 true WO2021035536A1 (zh) 2021-03-04

Family

ID=74683961

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/102863 WO2021035536A1 (zh) 2019-08-27 2019-08-27 试剂位信息设置的方法、装置、存储介质和样本分析仪

Country Status (2)

Country Link
CN (1) CN114207446A (zh)
WO (1) WO2021035536A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117741172A (zh) * 2024-02-19 2024-03-22 深圳市帝迈生物技术有限公司 凝血分析仪及样本分析仪
CN117741172B (zh) * 2024-02-19 2024-06-04 深圳市帝迈生物技术有限公司 凝血分析仪及样本分析仪

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101537412A (zh) * 2008-03-18 2009-09-23 上海理工大学 临床化验样本辅助分拣装置
CN102539661A (zh) * 2010-11-24 2012-07-04 希森美康株式会社 样本分析装置
KR20120087347A (ko) * 2011-01-25 2012-08-07 한국원자력연구원 보안을 위한 이동형 시료 관리 장치 및 이를 포함하는 시료 통합 관리 시스템
CN203329756U (zh) * 2013-06-28 2013-12-11 曹颖 具有二维码的试管标本储存系统
CN203508062U (zh) * 2013-10-19 2014-04-02 中国人民解放军兰州军区兰州总医院 血液标本存档托盘
CN108318480A (zh) * 2017-12-26 2018-07-24 深圳德夏生物医学工程有限公司 生化检测关联信息处理方法、装置及生化分析设备

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101537412A (zh) * 2008-03-18 2009-09-23 上海理工大学 临床化验样本辅助分拣装置
CN102539661A (zh) * 2010-11-24 2012-07-04 希森美康株式会社 样本分析装置
KR20120087347A (ko) * 2011-01-25 2012-08-07 한국원자력연구원 보안을 위한 이동형 시료 관리 장치 및 이를 포함하는 시료 통합 관리 시스템
CN203329756U (zh) * 2013-06-28 2013-12-11 曹颖 具有二维码的试管标本储存系统
CN203508062U (zh) * 2013-10-19 2014-04-02 中国人民解放军兰州军区兰州总医院 血液标本存档托盘
CN108318480A (zh) * 2017-12-26 2018-07-24 深圳德夏生物医学工程有限公司 生化检测关联信息处理方法、装置及生化分析设备

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117741172A (zh) * 2024-02-19 2024-03-22 深圳市帝迈生物技术有限公司 凝血分析仪及样本分析仪
CN117741172B (zh) * 2024-02-19 2024-06-04 深圳市帝迈生物技术有限公司 凝血分析仪及样本分析仪

Also Published As

Publication number Publication date
CN114207446A (zh) 2022-03-18

Similar Documents

Publication Publication Date Title
US11043284B2 (en) Methods and systems for biological data analysis
US10956291B2 (en) Method, computer apparatus, and user interface for performing automatic test upon storage devices
Plebani Harmonization in laboratory medicine: requests, samples, measurements and reports
JP5319631B2 (ja) 生体サンプルの分析システム、方法及びコンピュータプログラム製品
JP2022519647A (ja) 診断検査を容易にするための、患者idおよび試料idのワークフローの方法および装置
EP3132264B1 (en) Method and apparatus for collecting test data from use of a disposable test kit
CN108830383B (zh) 用于展示机器学习建模过程的方法及系统
JP2009539078A (ja) サンプルテスト結果およびそれぞれの結果コンテキスト情報を管理するシステムおよび方法
CN106291334A (zh) 一种通用fpga测试系统
CN1932733B (zh) 响应于热键输入而输出图标的系统和方法
US20190244695A1 (en) Test order processing apparatus, computer program therefor and test system
US11804294B2 (en) Contextually adaptive digital pathology interface
CN106453778B (zh) 一种联系人头像设置方法及移动终端
JP6768688B2 (ja) 検査オーダー処理装置およびそれを用いた検査システム
WO2021035536A1 (zh) 试剂位信息设置的方法、装置、存储介质和样本分析仪
WO2021135367A1 (zh) 样本测试项的排布方法及装置
CN103257243A (zh) 自动分析装置
WO2021174528A1 (zh) 分析仪及其控制方法、检测系统及存储介质
JP6403197B2 (ja) 自動分析装置及び動作指定方法
WO2020014965A1 (zh) 样本检测数据的处理方法及装置、计算机存储介质
CN109492032A (zh) 质量检测结果的展示方法、装置、电子设备及存储介质
CN115343488A (zh) 样本分析系统及稀释参数配置方法
CN113724813A (zh) 基于lis系统的数据传输方法、装置、设备及存储介质
US20240079094A1 (en) Method and system for providing genetic information analysis results
JP7333216B2 (ja) 表示装置、プログラム及び表示方法

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19943800

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 10-08-2022)

122 Ep: pct application non-entry in european phase

Ref document number: 19943800

Country of ref document: EP

Kind code of ref document: A1