Automatic analysis device
The automatic analyzer enables users to create customized shortcut buttons on a shortcut screen, addressing the challenge of recognizing frequently used menus and reducing operational burden by allowing direct access to preferred operations.
Patent Information
- Application Number
- JP2024545481
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-09-07
- Filing Date
- 2023-07-20
- Publication Date
- 2025-08-21
- Estimated Expiration
- 2043-07-20
AI Technical Summary
Existing automatic analyzers display operation menus hierarchically, making it difficult for users to recognize frequently used menus and lack customization options, increasing operational burden.
An automatic analyzer with a data processing device that allows users to create customized shortcut buttons on a shortcut screen, arranging operations hierarchically based on user preferences and frequency of use.
This customization reduces operation time and enhances user convenience by allowing users to quickly access frequently used operations directly from the shortcut screen.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an automatic analyzer. [Background technology]
[0002] In recent years, data processing devices provided in automated analyzers have come to be equipped with a wide variety of functions, such as report creation and data management, in addition to controlling the automated analyzer, collecting and analyzing data, and as a result, many operation menus are now displayed on the operation screen. Generally, operation menus are hierarchical, and the display order and layout are all fixed. For this reason, there is no problem if the user is aware of the screen display layout of the operation menus, but if the user is not aware of the layout of the displayed operation menus, they will waste a lot of time searching for the operation menu they want to use.
[0003] Furthermore, depending on the user's work, some operation menus are used frequently and others are used only rarely, and if these operation menus are displayed together, the burden on the user increases even further.
[0004] As a means for solving these problems, Patent Document 1 proposes a method in which the number of times an operation menu is used and the ranking of the number of times that it is used are stored in a storage means for each operator who operates the analytical device, and the operation menus with the highest number of times that they are used are displayed on a display means in order. [Prior art documents] [Patent documents]
[0005] [Patent Document 1] International Publication No. 2012 / 070363 Summary of the Invention [Problem to be solved by the invention]
[0006] As described above, according to the disclosure of Patent Document 1, the display priority of the operation menus can be changed depending on the frequency of use of each user who operates the analytical device. However, although the disclosure of Patent Document 1 allows the display priority of the operation menus to be changed depending on the frequency of use, the layout of the operation menus cannot be changed. Therefore, even if operation menus with higher priority are displayed in order, some users may find it difficult to recognize them. Furthermore, it is not possible for users to customize the display of the operation menus by dividing them into items from the wide variety of menus available. [Means for solving the problem]
[0007] An automatic analyzer that is one embodiment of the present invention is an automatic analyzer that is equipped with one or more analysis modules that analyze samples, and has a data processing device that accepts user operation instructions.The data processing device is configured to be able to display on a display device an operation menu screen that displays a hierarchically defined operation menu for the automatic analyzer, and a shortcut screen on which multiple shortcut buttons for performing specific operations included in the operation menu are arranged.When a shortcut button for performing a specified operation is selected on the shortcut screen, the data processing device performs the specified operation included in the operation menu screen, and the arrangement of the shortcut buttons on the shortcut screen is determined by the user. [Effects of the Invention]
[0008] By enabling the automatic analyzer to be operated from a shortcut screen on which shortcut buttons for executing specific operations selected and laid out by the user are arranged, operation time can be shortened and the convenience of the automatic analyzer can be improved. Other objects and novel features will become apparent from the description of this specification and the accompanying drawings. [Brief explanation of the drawings]
[0009] [Figure 1] 1 is a schematic diagram of the basic configuration of an automatic analyzer. [Figure 2]FIG. 1 is a schematic diagram of a data processing device. [Figure 3] 10 is an example of a logon screen for the integrated software. [Figure 4] 10 is an example of an operation menu screen of the integrated software. [Figure 5] 10 is an example of an operation execution screen of the integrated software. [Figure 6] 10 is an example of a shortcut screen. [Figure 7A] This is an example of a shortcut registration screen (before input). [Figure 7B] This is an example of the shortcut registration screen (after input). [Figure 8] 10 is an example of a shortcut addition screen. [Figure 9A] 10 is an example of a shortcut screen after shortcut registration. [Figure 9B] 10 is an example of a data structure of shortcut data. [Figure 10] 10 is another example of a shortcut registration screen. [Figure 11A] 10 is an example of a shortcut registration list screen. [Figure 11B] 10 is an example of a data structure of operation log registration data. [Figure 12] FIG. 10 is a diagram for explaining a method of adding an operation to operation log registration data. [Figure 13] 10 is another example of a shortcut registration screen. [Figure 14] 10 is an example of a shortcut registration list screen. [Figure 15] 10 is an example of a shortcut registration screen. [Figure 16] 10 is a flowchart for generating a shortcut button (registered). DETAILED DESCRIPTION OF THE INVENTION
[0010] Hereinafter, the embodiments will be described with reference to the drawings.
[0011] The basic configuration of an automatic analyzer will be outlined using Figure 1. Note that the basic configuration described here is an example and is not limited to this. The automatic analyzer 100 is an apparatus that measures a reaction liquid obtained by reacting a sample with a reagent, and is mainly equipped with a sample transport mechanism 105, a reaction disk 112, a reagent disk 110, a sample dispensing mechanism 101, a reagent dispensing mechanism 107, a stirring mechanism 114, a measuring unit (108, 109), a cleaning mechanism 106, a controller 102, and a data processing device 103. Here, the sample refers to a patient's blood, urine, or the like.
[0012] Sample analysis processing by the automated analyzer 100 is generally performed in the following order: First, a rack 104 is placed in a loading device or the like, and is then carried to the sample dispensing position of the automated analyzer 100 by the sample transport mechanism 105 in response to instructions from the data processing device 103. When the rack 104 arrives at the sample dispensing position, the sample dispensing mechanism 101 dispenses the sample into reaction vessels 113 on the reaction disk 112. The sample dispensing mechanism 101 dispenses the sample as many times as necessary depending on the analysis items requested for that sample. Meanwhile, the reagent dispensing mechanism 107 dispenses reagent to be used for analysis from reagent bottles 111 on the reagent disk 110 into the reaction vessels 113 from which the sample was previously dispensed. Next, the stirring mechanism 114 stirs the reaction liquid prepared by mixing the sample and reagent in the reaction vessels 113. Thereafter, light emitted from light source 108 is transmitted through reaction vessel 113 containing the stirred reaction solution, and the luminous intensity of the transmitted light is measured by spectrophotometer 109. The luminous intensity measured by spectrophotometer 109 is sent to controller 102. Controller 102 performs calculations to determine the concentration of a predetermined component in the sample, and displays the result on a display device or the like or stores it in data processing device 103.
[0013] FIG. 2 shows a schematic diagram of the data processing device 103. A personal computer 201 is generally used for the data processing device 103. The personal computer 201 includes a CPU 202 that processes data, a RAM 203 that provides a temporary data storage area, and a storage device 204 that provides a data saving area. The personal computer 201 is also connected to a display 205 such as an LCD monitor and an input device 206 such as a keyboard or mouse. Integrated software is installed in the storage device 204. The integrated software is software that enables the user to operate the automated analyzer, and one of its functions is to display a GUI (graphical user interface) on the display 205 and provide an interface for the user to operate the automated analyzer via, for example, a mouse or keyboard.
[0014] First, the user starts the integrated software stored in the storage device 204 via the input device 206. When the integrated software is started, a logon screen 300 shown in FIG. 3 is displayed on the display 205. The user operates the input device 206 to input an operator ID in an operator ID input box 301 and a password in a password input box 302. After that, when the user selects the logon button 303, an operation menu for the data processing device 103 is displayed. The user is mainly a system administrator, an analytical method (method) developer, an operator, etc. Note that the logon screen 300 requests the user to input a password in order to enhance security, and password input is not necessarily required. The operation menu screen displayed after logon can be different for each operator ID.
[0015] FIG. 4 shows an example of the operation menu screen of the integrated software that is displayed after the user logs on. The operation menu screen 400 includes a main tab area 401, a subtab area 402, an operation menu area 403, and a selection button 404. The main tab area 401 and the subtab area 402 are toolbars on which the operation menu is located. The subtab area 402 displays a subtab corresponding to the main tab selected in the main tab area 401. The operation menu area 403 displays an operation menu corresponding to the subtab selected in the subtab area 402. The operation menu includes, for example, performing maintenance and setting parameters for analysis conditions. In FIG. 4, "Utility" is selected in the main tab area 401 and "Maintenance" is selected in the subtab area 402, and specific maintenance items are displayed in the operation menu area 403. For example, if the user wants to perform reagent priming during maintenance, the user selects "Maintenance" from the maintenance type and "Reagent Prime" from the maintenance name in the operation menu area 403 and then selects the selection button 404. This transition to the operation execution screen shown in FIG. 5 is displayed.
[0016] In addition to the toolbar that was displayed on the operation menu screen 400, the operation execution screen 500 displays an execution screen corresponding to the selected subtab. The reagent prime operation execution screen 500 displays an execution module selection screen 501. The user selects the module to be executed from the execution module selection screen 501 and selects the execute button 502. In this case, the electrolyte analysis module (ISE) is selected, and the reagent prime operation is executed for the electrolyte analysis module. On the other hand, if the cancel button 503 is selected, the module selection is canceled and the screen transitions to the operation menu screen 400.
[0017] As described above, to operate an automated analyzer, it is common to select and execute an operation menu by navigating through a hierarchical menu. In contrast, in the automated analyzer of this embodiment, a shortcut tab 405 is provided in the main tab area 401 of the operation menu screen 400 (see FIG. 4). In the automated analyzer of this embodiment, a user can create shortcuts for frequently used operations and use the shortcuts from a shortcut screen accessed from the shortcut tab 405. This shortcut screen can be customized for each user, further enhancing user convenience.
[0018] First, a method for registering a shortcut will be described. When the shortcut tab 405 is selected from the operation menu screen 400 (see FIG. 4), the screen transitions to the shortcut screen. An example of the shortcut screen 600 is shown in FIG. 6. The user can use the shortcut screen 600 to register / cancel shortcuts and perform operations registered as shortcuts.
[0019] The shortcut screen 600 displays the toolbar that was displayed on the operation menu screen 400 and a group of shortcut buttons arranged in a matrix. The shortcut screen 600 includes toolbars 401 and 402, coordinate information 602, a shortcut button 603, a shortcut registration button 604, and a deregistration button 605. Sheet tabs 601 are displayed in the subtab area 402, and selecting one of the sheet tabs 601 allows switching between the matrix of shortcut buttons 603 arranged based on the coordinate information 602. Note that none of the shortcut buttons 603 in FIG. 6 have shortcuts registered, so nothing is displayed on the shortcut buttons. Selecting the shortcut registration button 604 transitions to the shortcut registration screen shown in FIG. 7A.
[0020] A shortcut registration screen 700 shown in Fig. 7A includes a registration shortcut display area 701, a first registration method selection button 702, a sheet name selection button 703, a coordinate information (X coordinate) selection button 704, a coordinate information (Y coordinate) selection button 705, and a registration button 706. Fig. 7A shows the screen before detailed information is entered. The first registration method selection button 702 is a button for executing a registration method that selects an operation to be registered as a shortcut from an operation menu, and when the user selects the first registration method selection button 702, the screen transitions to a shortcut addition screen shown in Fig. 8.
[0021] The shortcut addition screen 800 is a screen for selecting an operation menu and displays the same operation menu as the operation menu screen 400. The user selects an operation to register as a shortcut from the main tab area 401, subtab area 402, or operation menu area 403, and selects the Add button 801. The integrated software stores in the storage device 204 an operation log in which the user selects the operation menu performed by the user on the shortcut addition screen 800. At the same time, as shown in FIG. 7B, the operation name selected on the shortcut addition screen 800 (in this example, "Reagent Prime") is displayed in the registered shortcut display area 701. Then, as shown in FIG. 7B, the user selects the sheet to be registered from the sheet name selection button 703, and the coordinate information (X coordinate) selection button 704 and the coordinate information (Y coordinate) selection button 705, each using a pull-down menu. Finally, by selecting the registration button 706, the shortcut button is linked to the operation log stored in the storage device 204, completing the registration of the shortcut button.
[0022] By selecting the registration button 706 in FIG. 7B, a reagent prime operation is registered in the shortcut button at coordinates (A, 1) on sheet 1. This is shown in FIG. 9A. An operation name indicating the registered content is displayed on the shortcut button (registered) 901 at coordinates (A, 1) on sheet 1. By selecting the shortcut button (registered) 901, the user executes processing of the associated operation log and transitions to the execution screen shown in FIG. 5. In other words, the series of operations described in FIG. 4, such as selecting an operation from the main tab area 401, subtab area 402, and operation menu area 403 and selecting the select button 404, can be omitted. FIG. 9B shows the data structure of shortcut data 910 created by the above processing. The shortcut data 910 is stored in the storage device 204. The operator ID of the user who created the shortcut is registered in operator ID 911, and the sheet 912, X coordinate 913, Y coordinate 914, and operation name 915 respectively register the contents selected in the sheet name selection button 703, coordinate information (X coordinate) selection button 704, coordinate information (Y coordinate) selection button 705, and registered shortcut display area 701 of the shortcut registration screen 700. In operation log 916, a corresponding operation log may be registered, or the address of the storage device 204 in which the operation log is stored may be registered.
[0023] After selecting the deregistration button 605, the registration can be cancelled by selecting the shortcut button (registered) 901. In this case, the information about the shortcut is also deleted from the shortcut data 910.
[0024] FIG. 16 shows a flowchart of the above-described shortcut button (registered) generation. This flowchart is executed by the integrated software. The operator ID entered from the logon screen 300 (see FIG. 3) is determined (S01). When the shortcut tab 405 is selected from the operation menu screen 400 (see FIG. 4), the screen transitions to the shortcut screen 600 (see FIG. 6) (S02). When the shortcut registration button 604 is selected, the screen transitions to the shortcut registration screen 700 (see FIG. 7A) (S03). When the first registration method selection button 702 is selected, the screen transitions to the shortcut addition screen 800 (S04), where the operation to be registered is selected (S05). The operation log on the shortcut addition screen 800 is stored in the storage device 204 (S06), and the selected operation name is displayed in the registered shortcut display area 701 of the shortcut registration screen 700 (S07). Furthermore, the user's input of the sheet name and coordinate information to the shortcut registration screen 700 (FIG. 7B) is received (S08-S10). When the user selects the registration button 706, the display position of the shortcut button and the operation to be registered are confirmed (S11). On the shortcut screen 600, the shortcut button (registered) displays the registered operation name (S12, see FIG. 9A).
[0025] In this way, by executing an operation from the shortcut button (registered) 901, the effort of searching for an operation from the main tab area 401, subtab area 402, and operation menu area 403 can be reduced, and users who are not familiar with screen operations can achieve a time-saving effect. Furthermore, since the layout of shortcut buttons can be specified based on the coordinate information 602, shortcut buttons can be freely laid out. For example, the user can arrange related buttons side by side, which has the effect of improving visibility through their own ingenuity. Furthermore, as shown in shortcut data 910 (see FIG. 9B), shortcuts are created for each user, so the shortcut screen can be displayed in a layout corresponding to the operator ID entered on the log-on screen.
[0026] The method for registering a shortcut is not limited to the above, and other methods for registering a shortcut will be described below.
[0027] FIG. 10 is another example of a shortcut registration screen. The shortcut registration screen 700b is provided with a second registration method selection button 1001 in addition to the shortcut registration screen shown in FIG. 7A. The user creates a registration list in which operation logs are registered in advance. By selecting the second registration method selection button 1001, the operations registered in the registration list are associated with shortcut buttons. When the second registration method selection button 1001 is selected, the screen transitions to a shortcut registration list screen 1100 shown in FIG. 11A. The shortcut registration list screen 1100 includes a registration list 1101 and a selection button 1102, and the registration list 1101 displays a list of operations added by the user to register shortcuts. The operation list is displayed based on operation log registration data 1110 created in advance by the user. FIG. 11B shows the data structure of the operation log registration data 1110. The operator ID 1111 is the operator ID of the user who created the operation log registration data, the date and time 1112 is the creation date and time, the operation name 1113 is the selected operation name, and the operation log 1114 may register the corresponding operation log or the address of the storage device 204 in which the operation log is stored.
[0028] To add a new operation to the operation log registration data 1110, the operation logs accumulated in the RAM 203 are used when the user selects an operation menu on the operation menu screen 400. This is shown in FIG. 12. When the user selects an operation menu from the main tab area 401, subtab area 402, or operation menu area 403, the user right-clicks the mouse, which is the input device 206, on the operation menu. The user selects the add registration button 1201, which is displayed by the right-click operation. This operation causes the operation log of the selected operation to be stored in the storage device 204, and the information can be added to the operation log registration data 1110. In this way, every time the user performs an operation on the operation menu screen 400, the user selectively adds an operation log to the operation log registration data 1110 for the operation for which the user wishes to register a shortcut.
[0029] The added operation is selected from the registration list 1101 on the shortcut registration list screen 1100 (see FIG. 11A) and selected as a selection button 1102, which causes the operation to be displayed in the registered shortcut display area 701 on the shortcut registration screen 700b (see FIG. 10). After that, the sheet name and coordinate information are entered, and the registration button 706 is selected to complete the registration of the shortcut button.
[0030] In this registration method, shortcuts can be registered based on operations on a normal operation menu screen, thereby improving the operability of shortcut registration.
[0031] Another shortcut registration method will now be described, in which the integrated software prompts the user to register a shortcut.
[0032] FIG. 13 is another example of a shortcut registration screen. The shortcut registration screen 700c includes a third registration method selection button 1301 in addition to the shortcut registration screen shown in FIG. 10. The integrated software automatically stores an operation log related to the user's operation menu selection on the operation menu screen 400 in the storage device 204, and creates operation log registration data. The data structure of the operation log registration data may be the same as the data structure shown in FIG. 11B. When the third registration method selection button 1301 is selected, the screen transitions to a shortcut registration list screen 1400 shown in FIG. 14. The shortcut registration list screen 1400 includes an operation history list 1401, an operation date and time search 1402, a display number search 1403, a reflect button 1404, and a select button 1405. The operation history list 1401 displays a list of the user's operation history stored in the storage device 204 as operation log registration data. Thereafter, by selecting the operation for which you want to register a shortcut from operation history list 1401 and selecting selection button 1405, the operation will be displayed in registered shortcut display area 701 of shortcut registration screen 700c (see FIG. 13). Thereafter, by entering the sheet name and coordinate information and selecting registration button 706, registration of the shortcut button is completed.
[0033] Furthermore, the operation history list 1401 of the shortcut registration list screen 1400 has a filter function. For example, by setting a filter in the item of the operation name tab in FIG. 14, it is possible to display each operation separately. This makes it possible to visualize which operations are used frequently. Also, an operation date and time search function 1402 is provided, which makes it possible to display the operation history for a specified time by entering the start and end dates and times and selecting the reflect button 1404. This makes it possible to extract and display the operations that are used frequently by the user by time period, thereby increasing the options for shortcuts to be registered. Furthermore, a display number search function 1403 is provided, which makes it possible to specify the number of items to display. By using this in combination with the filter function of the operation history list 1401 and the operation date and time search 1402, it is possible to further improve the user's searchability.
[0034] This registration method allows the user to select a shortcut to register from their operation history, thereby expanding the options for shortcut registration.
[0035] In the above embodiment, one shortcut button 603 is described as being capable of registering one operation. In an automated analyzer, various maintenance operations, management of measurement results, registration of remaining amounts of each reagent, calibration measurement, control measurement, etc. are required before the start of measurement, and the integrated software operations are diverse. Depending on the operation, there are items for which it is desired to operate the device continuously without stopping the device. Therefore, it would be convenient if one shortcut button could be used to execute multiple operations in sequence.
[0036] FIG. 15 is an example of a shortcut registration screen that allows a single shortcut button to successively execute multiple operations. The shortcut registration screen 700d includes a registered shortcut list 1501 including the execution order and a cancel button 1502 in addition to the shortcut registration screen shown in FIG. 13. The names of the operations to be registered as shortcuts are added to the registered shortcut list 1501 using the first to third registration method selection buttons 702, 1001, and 1301. The operation name added to the registered shortcut list 1501 is then selected, and the execution order is specified in the execution order tab (1 if it is the first, 2 if it is the second, etc.). To cancel an operation added to the registered shortcut list 1501, the user selects the operation name to be canceled and selects the cancel button 1502. Then, the user inputs the sheet name and coordinate information and selects the register button 706, thereby completing the registration of a shortcut button that can successively execute a series of operations.
[0037] This registration method eliminates the need to perform multiple operations from the main tab area 401, subtab area 402, and operation menu area 403, or the need to select multiple shortcut buttons (registered) 901, thereby improving user operability.
[0038] Below, a modified example that improves user convenience will be described.
[0039] In the above embodiment, an example has been described in which a shortcut button is registered by transitioning between input screens. The method of transitioning between input screens is not limited to the above. For example, a shortcut button (before registration) 603 arranged on the shortcut screen 600 (see FIG. 6) may be transitioned to a shortcut registration screen 700 (see FIG. 7A) by, for example, double-clicking with a mouse on the shortcut button (before registration) 603. In this case, the coordinate information of the sheet tab 601 and the shortcut button (before registration) 603 may be stored in shortcut data 910 (see FIG. 9B), and the sheet name 703 and coordinate information 704 and 705 on the shortcut registration screen 700 may be automatically input. This modification allows the user to visually directly select the location (coordinates) to be registered and register the shortcut while reducing the operation time on the shortcut registration screen 700.
[0040] 12 shows an example in which, in order to add an operation log to the operation log registration data 1110, the right click of the mouse is selected to display the add registration button 1201. This operation method can also be substituted by a long press on the operation menu, or by providing a button equivalent to the add registration button 1201 on the operation menu itself. For example, the input device 206 is not limited to a mouse, and a touch panel on a monitor may also be used. Since the input device 206 used varies depending on the device and the operating user, providing an easy-to-operate method for each device and operating user can have the effect of further improving operability.
[0041] In the above embodiment, an example was shown in which shortcut buttons are used to perform operations on an automated analyzer, such as maintenance. However, with an automated analyzer, there are cases in which operations on the integrated software are required, without performing any device operations themselves, such as managing measurement results, inputting calibration and control request information, and registering sample measurement items. Since such operations are also performed by opening screens from the main tab area 401, subtab area 402, and operation menu area 403, shortcuts can be created in the same way. In this way, by making it possible to register not only functions for performing device operations but also functions for transitioning to screens to the shortcut button (registered) 901, it is possible to reduce the operation time required to open a screen from the operation menu.
[0042] This also applies to the registration of multiple operations described with reference to Figure 15, and by registering a shortcut that combines a device operation and a screen transition operation, it is possible to obtain the effect of further improving user operability.
[0043] 9A shows an example in which an operation name indicating the registered content is displayed on the shortcut button (registered) 901. Furthermore, the color of the shortcut button (registered) 901 may be changeable on the shortcut screen 600. For example, the color scheme may be changed according to the frequency of use for one month, one week, or one day. This improves the visibility for the user.
[0044] It may also be possible to change the names of the shortcut button (registered) 901 and the sheet tab 601. This allows the shortcut selection screen to be customized, which has the effect of improving user operability.
[0045] The present invention is not limited to the above-described embodiments and includes various modifications. For example, the above-described embodiments and modifications have been described in detail to make the present invention easier to understand, and are not necessarily limited to those including all of the described configurations. Furthermore, it is possible to replace part of the configuration of one embodiment or modification with the configuration of another embodiment or modification, and it is also possible to add the configuration of another embodiment or modification to the configuration of one embodiment or modification. Furthermore, it is possible to add, delete, or replace part of the configuration of each embodiment or modification with other configurations. [Explanation of symbols]
[0046] 100: automatic analyzer, 101: sample dispensing mechanism, 102: controller, 103: data processing device, 104: rack, 105: sample transport mechanism, 106: cleaning mechanism, 107: reagent dispensing mechanism, 108: light source, 109: spectrophotometer, 110: reagent disk, 111: reagent bottle, 112: reaction disk, 113: reaction vessel, 114: stirring mechanism, 201: personal computer, 202: CPU, 203: RAM, 204: storage device, 205: display, 206: input device, 300: log-on screen, 301: operator ID input box , 302: Password input box, 303: Logon button, 400: Operation menu screen, 401: Main tab area, 402: Subtab area, 403: Operation menu area, 404: Selection button, 405: Shortcut tab, 500: Operation execution screen, 501: Execution module selection screen, 502: Execution button, 503: Cancel button, 600: Shortcut screen, 601: Sheet tab, 602: Coordinate information, 603: Shortcut button, 604: Shortcut registration button, 605: Unregistration button, 700, 700b, 700c ,700d: Shortcut registration screen, 701: Registered shortcut display area, 702: First registration method selection button, 703: Sheet name selection button, 704: Coordinate information (X coordinate) selection button, 705: Coordinate information (Y coordinate) selection button, 706: Registration button, 800: Shortcut addition screen, 801: Add button, 901: Shortcut button (registered), 910: Shortcut data, 911: Operator ID, 912: Sheet, 913: X coordinate, 914: Y coordinate, 915: Operation name, 916: Operation log, 1001: Second registration method selection selection button, 1100: Shortcut registration list screen, 1101: Registration list, 1102: Selection button, 1110: Operation log registration data, 1111: Operator ID, 1112: Date and time, 1113: Operation name, 1114: Operation log, 1201: Add registration button, 1301: Third registration method selection button, 1400: Shortcut registration list screen, 1401: Operation history list, 1402: Operation date and time search, 1403: Display number search, 1404: Reflect button, 1405: Selection button, 1501: Registered shortcut list, 1502: Cancel button.
Claims
1. An automated analyzer comprising one or more analysis modules for analyzing samples, a data processing device that accepts operation instructions from a user; the data processing device is configured to be able to display, on a display device, an operation menu screen that displays a hierarchically defined operation menu for the automated analyzer, and a shortcut screen on which a plurality of shortcut buttons for executing specific operations included in the operation menu are arranged; when a shortcut button for executing a predetermined operation is selected on the shortcut screen, the data processing device executes the predetermined operation included in the operation menu screen; the data processing device is configured to be able to display, on a display device, a shortcut registration screen for registering the specific operation to the shortcut button; the data processing device is configured to be able to display, on a display device, a shortcut addition screen that displays the same operation menu as the operation menu screen; the data processing device sets the specific operation on the shortcut registration screen by selecting the specific operation on the shortcut addition screen transitioned from the shortcut registration screen, and stores an operation log for selecting the specific operation on the shortcut addition screen in a storage device; The data processing device is an automatic analyzer that, when the shortcut button is selected, executes the specific operation included in the operation menu based on the operation log.
2. An automated analyzer comprising one or more analysis modules for analyzing samples, a data processing device that accepts operation instructions from a user; the data processing device is configured to be able to display, on a display device, an operation menu screen that displays a hierarchically defined operation menu for the automated analyzer, and a shortcut screen on which a plurality of shortcut buttons for executing specific operations included in the operation menu are arranged; when a shortcut button for executing a predetermined operation is selected on the shortcut screen, the data processing device executes the predetermined operation included in the operation menu screen; the data processing device is configured to be able to display, on a display device, a shortcut registration screen for registering the specific operation to the shortcut button; When the user selects an operation on the operation menu screen and selects to register the operation in a registration list, the data processing device stores in a storage device an operation name of the operation and an operation log for selecting the operation on the operation menu screen; the registration list is displayed on the shortcut registration screen, and the specific operation to be executed by the shortcut button is set by selecting the specific operation from the registration list; The data processing device is an automatic analyzer that, when the shortcut button is selected, executes the specific operation included in the operation menu based on the operation log.
3. An automated analyzer comprising one or more analysis modules for analyzing samples, a data processing device that accepts operation instructions from a user; the data processing device is configured to be able to display, on a display device, an operation menu screen that displays a hierarchically defined operation menu for the automated analyzer, and a shortcut screen on which a plurality of shortcut buttons for executing specific operations included in the operation menu are arranged; when a shortcut button for executing a predetermined operation is selected on the shortcut screen, the data processing device executes the predetermined operation included in the operation menu screen; the data processing device is configured to be able to display, on a display device, a shortcut registration screen for registering the specific operation to the shortcut button; the data processing device stores, in a storage device, an operation name of the operation and an operation log for selecting the operation on the operation menu screen as an operation history each time the user selects an operation on the operation menu screen; On the shortcut registration screen, the specific operation is selected based on the operation history, thereby setting the specific operation to be executed by the shortcut button; The data processing device is an automatic analyzer that, when the shortcut button is selected, executes the specific operation included in the operation menu based on the operation log.
4. In claim 3, the data processing device is configured to be able to display a shortcut registration list screen displaying the operation history on a display device; The operation history can be searched for according to predetermined conditions on the shortcut registration list screen transitioned from the shortcut registration screen.
5. In any one of claims 1 to 4, the operation menu screen includes a shortcut tab, When the shortcut tab is selected, the automatic analyzer transitions from the operation menu screen to the shortcut screen.
6. In any one of claims 1 to 4, The shortcut screen includes shortcut buttons for executing a plurality of operations included in the operation menu.
7. In any one of claims 1 to 4, An automatic analyzer in which a position on the shortcut screen is set on the shortcut registration screen.
8. In any one of claims 1 to 4, The color of the shortcut button on the shortcut screen is changeable.
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