Microorganism detection system and management information display method thereof
By designing a data statistics overview and group status display area for the microbial detection system, real-time monitoring and anomaly handling of multiple devices are achieved, solving the problems of information dispersion and status lag in traditional systems and improving the efficiency and accuracy of equipment management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHENGDU SHEN MINDRAY MEDICAL ELECTRONICS TECHNOLOGY RESEARCH INSTITUTE CO LTD
- Filing Date
- 2024-11-29
- Publication Date
- 2026-05-29
AI Technical Summary
Traditional microbial testing equipment monitoring systems cannot achieve real-time data updates and fault warnings, resulting in delayed equipment status information, which affects the efficiency and accuracy of clinical decision-making. Furthermore, existing systems cannot systematically understand the operating status of multiple devices and their interrelationships, affecting resource allocation and emergency response capabilities.
This invention provides a microbial detection system and its management information display method. The system summarizes and displays the equipment status and sample detection information of the microbial detection device through a control device. It adopts a data statistics overview area and a group status display area. The system uses instrument simulation diagrams or real photos to intuitively present the equipment status, thereby realizing unified monitoring and anomaly handling of the overall system operation.
It improves the efficiency of equipment monitoring and anomaly handling, enabling managers to grasp the overall system operation and the specific status of equipment in each group on a single interface, thus solving the problems of scattered information display and delayed status updates.
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Figure CN122117277A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical device technology, and in particular to a microbial detection system and a method for displaying management information thereon. Background Technology
[0002] In the medical field, with the increasing demand for microbial testing, traditional equipment monitoring systems face the challenge of failing to meet the requirements for real-time data updates and fault warnings. This limitation leads to lag in equipment status information, thereby affecting the efficiency and accuracy of clinical decision-making. Especially when multiple devices are operating simultaneously, the rapid identification and handling of abnormal situations has become an urgent problem to be solved.
[0003] Furthermore, many monitoring systems can only monitor the status of a single device. This siloed display of information makes it difficult for managers to fully understand the operating status of various devices and their interrelationships, thus affecting resource allocation and emergency response capabilities. Although some detection systems can monitor the operating status of multiple devices simultaneously, it usually requires cumbersome switching between windows to view the status information of each device, which is not convenient for managers to have a comprehensive understanding of the overall system operation. Summary of the Invention
[0004] The following is an overview of the subject matter described in detail in this application. This overview is not intended to limit the scope of the claims.
[0005] This application provides a microbial detection system and a method for displaying microbial detection information, which can intuitively display the clinical value reference information of patients and facilitate the testing personnel to judge the accuracy of sample test results.
[0006] In a first aspect, embodiments of this application provide a microbial detection system, comprising:
[0007] At least one microbial detection device is used to detect the growth of microorganisms in the sample loaded therein;
[0008] The display device includes a display area, which comprises a data statistics overview area and a grouping status display area. The data statistics overview area is used to display the data statistics overview of at least one microbial detection device. The grouping status display area includes multiple sub-display areas, each of which displays the equipment status information and / or sample detection information of the microbial detection devices within a single group after the at least one microbial detection device has been grouped according to preset rules. Each sub-display area displays an instrument simulation diagram or a photograph of the instrument for some and / or all of the microbial detection devices in its corresponding group.
[0009] In one embodiment of this application, the data type of the data statistics overview includes at least one of the following:
[0010] The total number of devices with at least one microbial detection device;
[0011] The total number of faulty devices, at least one of which is a microbial detection device;
[0012] The total number of abnormal samples from at least one microbial detection device.
[0013] In one embodiment of this application, the data statistics overview area includes multiple overview display cards, each of which corresponds to a data statistics overview of a different data type.
[0014] In one embodiment of this application, in the data statistics overview area, the overview display card corresponding to the data statistics overview area of the fault or abnormal state is first highlighted.
[0015] In one embodiment of this application, the first highlight includes at least one of the following:
[0016] Highlight at least one of the area color, background color, or border of the overview display card;
[0017] Highlight the text displayed in the overview card;
[0018] Highlight the information displayed in the overview display card with color;
[0019] Mark and display the information shown in the overview display card and / or the overview display card;
[0020] Highlight the title bar of the overview display card.
[0021] In one embodiment of this application, the font size of the statistical information displayed in the data statistics overview area is larger than the font size of the device status information and / or sample detection information of the microbial detection device displayed in the sub-display area.
[0022] In one embodiment of this application, the sample status information includes at least one of the following:
[0023] Positive bottle information;
[0024] Anonymous bottle information;
[0025] Missing bottle information.
[0026] In one embodiment of this application, the device status information includes at least one of the following:
[0027] Instrument malfunction information;
[0028] Instrument operating status information;
[0029] Equipment model information;
[0030] Information about the department where the equipment is located.
[0031] In one embodiment of this application, the sub-display area further includes a status information bar corresponding to each microbial detection device in a single group, where the sample status information and / or device status information of the microbial detection device are displayed.
[0032] In another embodiment of this application, the sub-display area further includes at least one status information bar, which is used to statistically display the device status information and / or sample detection information of the microbial detection device that meets the target preset conditions in the sub-display area, wherein one status information bar corresponds to one target preset condition.
[0033] In one embodiment of this application, the target preset condition is that the microbial detection devices are of the same type and / or the same department's microbial detection devices. Optionally, the instrument simulation diagrams or actual photographs of the microbial detection devices in the sub-display area are sorted or grouped according to the target preset condition.
[0034] In one embodiment of this application, a status information bar is displayed for microbial detection devices that exhibit abnormal instrument or sample status, while no status information bar is displayed for microbial detection devices that exhibit normal instrument and sample status.
[0035] In one embodiment of this application, the sample status information and device status information are displayed in separate columns in the status information column.
[0036] In one embodiment of this application, in response to a user's selection instruction for sample status information, a sample information management interface of the microbial detection device is displayed in the display area;
[0037] Alternatively, in response to the user's selection instruction for sample status information, the sample information management interface of all microbial detection devices is displayed in the display area, and the sample and / or sample carrier container corresponding to the sample status information selected by the user is located in the sample information management interface.
[0038] In one embodiment of this application, in response to a user's selection instruction for device status information, the device fault log interface of the microbial detection device is displayed in the display area.
[0039] In one embodiment of this application, a second highlight is provided for the sub-display area where the abnormal microbial detection device is located in the display area.
[0040] In one embodiment of this application, the second highlighting is performed differently based on the different types of abnormalities detected by the microbial detection device.
[0041] In one embodiment of this application, the second highlight includes at least one of the following:
[0042] Highlight the background color and / or border of the title bar in the sub-display area;
[0043] Highlight the background color and / or border of the entire sub-display area.
[0044] In one embodiment of this application, the various microbial detection devices in the sub-display area are displayed in an ordered manner according to a preset arrangement rule. In one embodiment, the preset arrangement rule includes at least one of the following:
[0045] Sort by department where the equipment is located;
[0046] Sort by equipment type;
[0047] Sort the equipment malfunctions according to their priority.
[0048] Sort the samples according to the priority of their anomalies;
[0049] Equipment is sorted according to its failure priority, and for equipment with the same failure priority, it is sorted according to the priority of sample anomalies.
[0050] In one embodiment of this application, the instrument simulation diagram or the actual photograph of the instrument displays the fault mark or working status mark of the corresponding microbial detection device.
[0051] In one embodiment of this application, the microbial detection device includes multiple working components, and the instrument simulation diagram or actual photograph of the instrument includes local area images corresponding to the multiple working components. Displaying the corresponding fault indicator or working status indicator of the microbial detection device includes: displaying the working status of the corresponding working component in the local area image.
[0052] In one embodiment of this application, the plurality of working components include at least one of the following:
[0053] Incubator;
[0054] Sample identification code scanning component;
[0055] Detection components.
[0056] In one embodiment of this application, displaying the working status of a corresponding working component in a local area image includes at least one of the following:
[0057] Displays the working parameter information of the working components;
[0058] The local area image corresponding to the abnormal working component is highlighted. Preferably, at least one of the area color, background color, or border in the local area image is highlighted.
[0059] In one embodiment of this application, in response to a selection instruction for a local area image, a sample information management interface of a microbial detection device corresponding to the local area image is displayed in the display area.
[0060] In one embodiment of this application, at least one microbial detection device connected to the microbial detection system includes at least two microbial detection devices from different departments, and / or includes at least two microbial detection devices of different types.
[0061] In one embodiment of this application, the preset rules include a first grouping rule, which groups at least one microbial detection device according to the department where the device is located, and the sub-display area displays the devices in the group according to the first grouping rule;
[0062] And / or, the preset rules include a second grouping rule, which groups at least one microbial detection device according to the device type, and the sub-display area displays the devices in groups according to the second grouping rule.
[0063] Secondly, embodiments of this application provide a method for displaying management information in a microbial detection system. The microbial detection system includes at least one microbial detection device and a display device. The display device includes a display area. The method for displaying management information includes:
[0064] The control display device displays a data statistics overview area and a grouping status display area in the display area. The data statistics overview area is used to display the data statistics overview of at least one microbial detection device. The grouping status display area includes multiple sub-display areas. Each sub-display area is used to display the equipment status information and / or sample detection information of the microbial detection devices in a single group after the at least one microbial detection device is grouped according to preset rules. Each sub-display area displays the instrument simulation diagram or actual photograph of the microbial detection device corresponding to its group.
[0065] Thirdly, embodiments of this application provide an electronic device, including a memory and a control component. The memory stores a computer program, and the control component executes the computer program to implement the management information display method as described in any of the above embodiments.
[0066] Fourthly, embodiments of this application provide a computer storage medium storing a computer program thereon, characterized in that: it is applied to a production line system, and when the computer program is executed by a control component, it implements the management information display method as described in any of the above embodiments.
[0067] Fifthly, embodiments of this application provide a computer program product or computer program that includes computer instructions stored in a computer-readable storage medium. A control component of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the computer device to perform the management information display method described in any of the above embodiments.
[0068] In some embodiments of this application, a data statistics overview area is set in the display device to display the overall data statistics overview of at least one microbial detection device. Simultaneously, a group status display area is set, which groups the microbial detection devices according to preset rules through multiple sub-display areas. Each sub-display area not only displays the equipment status information and sample testing information of the detection devices in that group, but also visually presents the detection devices in the corresponding group through instrument simulation diagrams or actual photographs. This allows managers to grasp the overall system operation and testing data on a single interface, while also clearly understanding the specific status of the equipment and the testing status of samples in each group. This effectively solves the technical problems of scattered information display and delayed status updates in traditional monitoring systems, improving the efficiency of equipment monitoring and anomaly handling.
[0069] Other features and advantages of the embodiments of this application will be set forth in the following description, and will be apparent in part from the description, or may be learned by practicing the embodiments of this application. The objects and other advantages of the embodiments of this application may be realized and obtained by means of the structures particularly pointed out in the description, claims and drawings. Attached Figure Description
[0070] The accompanying drawings are used to provide a further understanding of the technical solutions of this application and constitute a part of the specification. They are used together with the embodiments of this application to explain the technical solutions of this application and do not constitute a limitation on the technical solutions of this application.
[0071] Figure 1 This is a system architecture block diagram of a microbial detection system provided in one embodiment of this application;
[0072] Figure 2 This is a schematic diagram of the display area provided in one embodiment of this application;
[0073] Figure 3 This is a schematic diagram of a sample information management interface provided in one embodiment of this application;
[0074] Figure 4 This is a schematic diagram of a device fault log interface provided in one embodiment of this application;
[0075] Figure 5 yes Figure 2A magnified view of a portion of the instrument simulation diagram;
[0076] Figure 6 This is a flowchart of a management information display method for a microbial detection system provided in one embodiment of this application. Detailed Implementation
[0077] The present application will be further described below with reference to the accompanying drawings and specific embodiments. The described embodiments should not be considered as limitations on the present application, and all other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of the present application.
[0078] In the following description, references are made to “some embodiments,” which describe a subset of all possible embodiments. However, it is understood that “some embodiments” may be the same subset or different subsets of all possible embodiments and may be combined with each other without conflict.
[0079] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing embodiments of this application only and is not intended to limit this application.
[0080] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a particular order or sequence. It should be understood that such data can be interchanged where appropriate so that embodiments of the application described herein can be implemented, for example, in orders other than those illustrated or described herein. Furthermore, the terms “comprising” and “having,” and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0081] It should be understood that in this application, "at least one (item)" means one or more, and "more than" means two or more. "And / or" is used to describe the relationship between related objects, indicating that three relationships can exist. For example, "A and / or B" can represent three cases: only A exists, only B exists, and both A and B exist simultaneously, where A and B can be singular or plural. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship. "At least one (item) of the following" or similar expressions refer to any combination of these items, including any combination of single or plural items. For example, at least one (item) of a, b, or c can represent: a, b, c, "a and b", "a and c", "b and c", or "a and b and c", where a, b, and c can be single or multiple.
[0082] It should be understood that in the description of the embodiments of this application, "multiple" means two or more, "greater than", "less than", "exceeding" etc. are understood to exclude the number itself, and "above", "below", "within" etc. are understood to include the number itself.
[0083] In the medical field, microbial detection devices are used to detect the presence or species of bacteria in samples. Types of microbial detection devices include blood culture analyzers, mass spectrometers, and antimicrobial susceptibility testing instruments. Blood culture analyzers, in particular, are microbiological devices used to detect the presence of bacteria in blood samples, playing a crucial role in determining the presence of bacteria in a patient's blood for diagnostic purposes. During use, blood culture analyzers incubate and test blood samples, obtaining microbial growth curves to aid in diagnosis. Mass spectrometers, high-precision analytical instruments widely used in microbial detection, analyze the mass of proteins and other molecules in microbial cells to quickly identify bacterial species in samples and provide information on bacterial characteristics, including species information. This provides vital information for clinical diagnosis and treatment planning. An antimicrobial susceptibility analyzer is a device specifically designed to assess the response of microorganisms to antibiotics. By culturing bacterial samples and adding different concentrations of antibiotics, it can determine which antibiotics are effective against specific bacteria and generate detailed antimicrobial susceptibility profiles. This helps doctors understand the antibiotic resistance of bacteria, thereby developing personalized treatment plans to improve treatment outcomes. Generally, in microbial testing, a blood culture analyzer is first used to culture the patient's blood sample to detect the presence of bacterial growth. If the blood culture shows bacterial growth (e.g., the sample is positive), a mass spectrometer is used to identify the type of bacteria, which helps doctors identify the specific pathogen causing the infection. Finally, based on the mass spectrometry results, an antimicrobial susceptibility analyzer is used to assess the bacteria's sensitivity to different antibiotics in order to develop an appropriate treatment plan. The blood culture analyzer, mass spectrometer, and antimicrobial susceptibility analyzer mentioned above may be distributed across different departments or laboratories within a hospital.
[0084] With the increasing demand for microbial testing, traditional equipment monitoring systems face the challenge of failing to meet real-time data updates and fault warnings. This limitation leads to lagging equipment status information, affecting the efficiency and accuracy of clinical decision-making. Especially when multiple devices are operating simultaneously, how to quickly identify and handle abnormal situations becomes a pressing issue. Although existing technologies provide individual display devices (such as displays on the control unit) to monitor the operational status of each microbial testing device, this siloed approach of monitoring individual devices cannot systematically provide information on the operational status of various microbial testing devices within the hospital or track the whereabouts of samples. This makes it difficult for managers to fully understand the operational status of various devices and their interrelationships, thus affecting resource allocation and emergency response capabilities. While some testing systems can monitor the operational status of multiple devices simultaneously, this usually requires cumbersome switching between windows to view the status information of each device, which is inconvenient for managers to have a comprehensive understanding of the overall system operation.
[0085] Based on this, embodiments of this application provide a microbial detection system and a method for displaying management information thereon, which can intuitively display the clinical value reference information of patients and facilitate testing personnel in judging the accuracy of sample test results.
[0086] Firstly, see [the following] Figure 1 The microbial detection system 100 provided in one embodiment of this application includes at least one microbial detection device 10, a display device 20, and a control device 30. In one embodiment, these microbial detection devices 10 may come from different departments, such as a central laboratory, emergency department, ICU, etc., or from departments like laboratory medicine, internal medicine, surgery, obstetrics and gynecology, pediatrics, ophthalmology, otolaryngology, dentistry, dermatology, etc. The specific departmental classification can be determined according to actual needs, and this application embodiment does not limit this; this application embodiment is applicable to various departmental classifications. Alternatively, at least one microbial detection device 10 of the microbial detection system 100 may all come from the same department.
[0087] On the other hand, these microbial detection devices 10 can come from the same or different departments, and can also be different types or models of microbial detection devices. For example, these microbial detection devices 10 can be different types of microbial detection devices such as blood culture instruments, mass spectrometers, or identification and drug sensitivity analyzers. The microbial detection system 100 can have different types of microbial detection devices 10, for example, multiple blood culture instruments, mass spectrometers, or identification and drug sensitivity analyzers can be used simultaneously. In one embodiment, the individual microbial detection devices 10 in the microbial detection system 100 are not fixed. For example, when a blood culture instrument in the microbial detection system 100 is not connected to the system (e.g., it is turned off or malfunctions), this will not affect the operation of other microbial detection devices 10. Therefore, at least one microbial detection device 10 in the microbial detection system 100 can be a portion of the currently connected microbial detection devices 10 among all registered microbial detection devices 10. Similarly, a new microbial detection device 10 can also be connected to the microbial detection system 100, so that the microbial detection system 100 also includes this newly connected microbial detection device 10.
[0088] The microbial detection device 10 has different detection items depending on the type or model, but they are all used to detect the growth of microorganisms in the sample loaded inside it and obtain sample detection information.
[0089] For example, a blood culture instrument includes an incubation module and a detection module. The incubation module is used to load at least one sample carrier container corresponding to the sample and to culture the microorganisms in the sample carrier container. The detection module is used to detect the growth of microorganisms in the sample carrier container to obtain sample detection information.
[0090] For example, a mass spectrometer includes an ion source module and a detection module. The ion source module is used to ionize microbial proteins in the sample to form charged ions, and the detection module is used to separate and detect the ions based on their mass-to-charge ratio. By comparing the results with standard spectra in a database, the identification results of the microorganisms are obtained as sample detection information.
[0091] For example, an antimicrobial susceptibility analyzer includes a culture module and a detection module. The culture module loads a sample plate containing the test strain and different concentrations of antibiotics and incubates it at a specific temperature. The detection module uses optical methods to detect the growth of microorganisms under different antibiotic concentrations, thereby obtaining antimicrobial susceptibility analysis results such as the minimum inhibitory concentration (MIC) value as sample detection information. This detection module may also include an image acquisition unit to acquire images of microbial colony growth during the culture process and use image analysis algorithms to determine the sensitivity of microorganisms to antibiotics, thus obtaining sample detection information.
[0092] The control device 30 acquires sample detection information and / or equipment status information of each microbial detection device 10 connected to the microbial detection system 100. The equipment status information may include instrument malfunction information, instrument operating status information, equipment model information, and department information of the microbial detection device 10. Specifically, instrument malfunction information indicates whether any working component of the microbial detection device 10 is malfunctioning, such as abnormal temperature of the incubator, scanning failure of the sample identification code scanning component, or detection abnormality of the detection component. Instrument operating status information indicates the working status of the microbial detection device 10, including idle state, detection in progress, and malfunction state. Equipment model information identifies the specific model of the microbial detection device 10, such as a blood culture instrument, mass spectrometer, or antimicrobial susceptibility analyzer. Department information identifies the specific department to which the microbial detection device 10 belongs, such as a clinical microbiology laboratory or a molecular diagnostic laboratory. By collecting and analyzing this equipment status information, the control device 30 can monitor the real-time operation of each microbial detection device 10, promptly detect and handle equipment abnormalities, and ensure the normal operation of the detection work.
[0093] The control device 30 controls the display device 20 to display the acquired device status information and / or sample testing information of each microbial detection device 10. The control device 30 can communicate with each microbial detection device 10 via wired (e.g., Ethernet, serial port) or wireless (e.g., WiFi, Bluetooth) communication technologies to obtain device status information and / or sample testing information. In another embodiment, each microbial detection device 10 in the microbial detection system 100 can upload its device status information and / or sample testing information to medical service systems such as Laboratory Information System (LIS), Clinical Information System (CIS), and Hospital Information System (HIS), and then the control device 30 accesses the medical service system to obtain the device status information and / or sample testing information of each microbial detection device 10. In another embodiment, each microbial detection device 10 uploads sample testing information to the medical service system and sends device status information to the control device 30. The control device 30 obtains the sample testing information of each microbial detection device 10 from the medical service system and also receives the device status information sent by each microbial detection device 10 for display on the display device 20.
[0094] In one embodiment, the control device 30 is a control device independent of each microbial detection device 10 in the microbial detection system 100. For example, it can be a monitoring host for monitoring the microbial detection devices 10. The monitoring host controls the display device 20 so that the user can view the working status of each microbial detection device 10 and the sample detection status through the display device 20. In one embodiment, the monitoring host can be a terminal device such as a computer, laptop, tablet, or mobile phone. In another embodiment, the monitoring host can also be a server device, such as a monitoring server or a device sharing hardware with the aforementioned medical service system. When the monitoring host is a server device, the display device 20 can be a monitoring module of the server device or a module of other terminal devices, such as the display screen of a mobile phone terminal. In this case, the user can access the data of the monitoring server using a mobile phone terminal and view it through the display screen of the mobile phone terminal.
[0095] In another embodiment, the control device 30 and the display device 20 can be built into a terminal. This terminal accesses the medical service system or each microbial detection device 10 via the Internet or a local area network to obtain the device status information and / or sample detection information of each microbial detection device 10. The difference between this terminal and the monitoring host is that the monitoring host is a device specifically used to monitor the microbial detection devices 10, while the terminal is not a dedicated device and can be a terminal with monitoring software installed, such as a laptop, tablet, or mobile phone. Through the terminal device of this embodiment, remote monitoring of the device status information and / or sample detection information of each microbial detection device 10 can be achieved.
[0096] In another embodiment, the control device 30 can be a control module of a specific or any microbial detection device 10 in the microbial detection system 100, and correspondingly, the display device 20 is also a display module of that microbial detection device 10. This allows for monitoring of other microbial detection devices 10 in the microbial detection system 100 from within one microbial detection device 10.
[0097] Based on the hardware framework of any of the above embodiments, in one embodiment, the control device 30 controls the display device 20 to perform display, wherein, see... Figure 2 As shown, the display device 20 includes a display area 200, which includes a data statistics overview area 210 and a group status display area 220.
[0098] The data statistics overview area 210 is used to display the data statistics overview of at least one microbial detection device. The control device 30 acquires the device status information and / or sample detection information of each microbial detection device 10, summarizes the device status information of each microbial detection device 10, and summarizes the sample detection information of each microbial detection device 10 to obtain the data statistics overview, which is then displayed in the data statistics overview area 210. The data statistics overview area can display data statistics overviews of different data types. That is, information from each microbial detection device can be summarized and statistically analyzed from different dimensions. For example, it can count the total number of microbial detection devices in the microbial detection system 100, the total number of faulty microbial detection devices in the microbial detection system 100, or the total number of abnormal samples among all samples from each microbial detection device 10.
[0099] For example, see Figure 2 As shown, the data statistics overview area 210 displays the total number of microbial detection devices (7 units), the total number of abnormal samples (10), and the total number of faulty devices (3 units) of the microbial detection system 100. Through the data statistics overview area 210, users can intuitively understand the overall status of the microbial detection device 10 of the microbial detection system 100 (e.g., including the status of the instrument itself and / or the detection status of the samples).
[0100] The group status display area 220 includes multiple sub-display areas 221, each sub-display area 221 corresponding to a group. Each sub-display area 221 is used to display the device status information and / or sample detection information of the microbial detection devices within a single group after at least one microbial detection device has been grouped according to preset rules. In other words, after the various microbial detection devices 10 connected to the microbial detection system 100 are grouped according to preset rules in the group status display area 220, the microbial detection devices 10 in different groups are concentrated in the sub-display area 221 of the corresponding group for display.
[0101] In one embodiment, grouping can be performed using either a first grouping rule or a second grouping rule. The first grouping rule groups at least one microbial testing device according to the department where it is located. This means that information related to microbial testing devices 10 from the same department is displayed in the same sub-display area 221. For example, if one sub-display area 221 corresponds to the central laboratory department, then all microbial testing devices 10 displayed in that sub-display area 221 belong to the central laboratory department. Conversely, the second grouping rule groups devices according to their type. This means that information related to microbial testing devices 10 of the same device type is displayed in the same sub-display area 221. See, for example... Figure 2As shown, the group status display area 220 includes multiple sub-display areas 221, each corresponding to a different device type, including a first display area 2210 corresponding to a blood culture device, a second display area 2220 corresponding to a mass spectrometer, and a third display area 2230 corresponding to an identification and drug sensitivity analyzer. For example, the device status information and / or sample detection information of the multiple microbial detection devices 10 displayed in the first display area 2210 are all information from the blood culture device.
[0102] In another embodiment, both the first grouping rule and the second grouping rule can be used simultaneously for grouping. For example, microbial detection devices 10 of the same type in the same department can be grouped into a sub-display area 221 of the same group. In another embodiment, the second grouping rule can be further used under the first grouping rule for further grouping, or the first grouping rule can be further used under the second grouping rule for further grouping.
[0103] See Figure 2 As shown, each sub-display area 221 displays a simulation diagram or a photograph of the instrument for the microbial detection device corresponding to its group. See, for example... Figure 2 As shown, in one embodiment, the sub-display area 221 displays simulation diagrams 400 of the microbial detection devices belonging to its group. Specifically, the first display area 2210 for blood culture equipment displays simulation diagrams 400 of each blood culture instrument. In one embodiment, the simulation diagrams 400 correspond to specific models of the microbial detection devices; different models of microbial detection devices have different simulation diagrams 400. Since users are very familiar with the appearance of the microbial detection devices on site, this allows them to quickly locate or identify the microbial detection device they need to view when observing the display area 200. See, for example, [link to relevant documentation]. Figure 2 The simulation diagrams of the blood culture instruments, models N120 and N60, are different. In one embodiment, if there are not many microbial detection devices in the sub-display area 221, the instrument simulation diagrams or actual photographs of all microbial detection devices in the corresponding group can be displayed in the sub-display area 221. If there are many microbial detection devices in the sub-display area 221 and their simulation diagrams or actual photographs are large, only some of the microbial detection devices' instrument simulation diagrams or actual photographs can be displayed in the sub-display area 221. Users can switch between displaying other microbial detection device's instrument simulation diagrams or actual photographs using page turning controls or page scrolling controls.
[0104] The microbial detection system of this application embodiment features a data statistics overview area on a display device for showing the overall data statistics of at least one microbial detection device. Simultaneously, a group status display area is provided, which groups the microbial detection devices according to preset rules through multiple sub-display areas. Each sub-display area not only displays the device status information and sample testing information of the detection device in that group, but also visually presents the detection devices in the corresponding group through instrument simulation diagrams or actual photographs. This allows managers to grasp the overall system operation and testing data on a single interface, while also clearly understanding the specific status of the devices and the testing status of samples in each group. This effectively solves the technical problems of scattered information display and delayed status updates in traditional monitoring systems, improving the efficiency of device monitoring and anomaly handling.
[0105] In one embodiment, device status information and / or sample detection information are displayed in the sub-display area 221. These information can be displayed separately in the display areas corresponding to each microbial detection device, or near the instrument simulation diagram or actual photograph of the corresponding microbial detection device, or uniformly summarized and displayed in any place in the sub-display area 221 in a data aggregation manner.
[0106] In one embodiment, the data statistics overview area 210 and the group status display area 220 are displayed in the same partitioned section within the display area 200, for example... Figure 2 In the display area 200 shown, the data statistics overview area 210 and the group status display area 220 are displayed vertically. To allow users to see the content of the data statistics overview area 210 first, the data statistics overview area 210 is positioned above the group status display area 220. In other embodiments, the data statistics overview area 210 and the group status display area 220 may also be arranged in other ways, such as displaying them in left and right partitions.
[0107] In one embodiment, to facilitate user observation of data statistics overviews of different data types in the data statistics overview area 210, the data statistics overview area 210 includes multiple overview display cards 211. Each overview display card 211 corresponds to a data statistics overview of a different data type. For example, see... Figure 2As shown, the data statistics overview area 210 includes three overview display cards 211, which are arranged horizontally and display, from left to right, the total number of microbial detection devices in the microbial detection system 100, the total number of abnormal samples, and the total number of faulty devices. The control device 30, by summarizing the device status information of each microbial detection device 10 within the microbial detection system 100, can determine the total number of microbial detection devices based on the number of collected device status information, and can determine which microbial detection devices are faulty based on the device status information, thereby determining the total number of faulty devices. The control device 30, by summarizing the sample detection information of each microbial detection device 10 within the microbial detection system 100, can determine the abnormal samples, and thus determine the total number of abnormal samples. The control device 30 displays the determined total number of devices, the total number of faulty devices, and the total number of abnormal samples in the corresponding overview display cards 211. See, for example, [link to relevant documentation]. Figure 2 As shown, from left to right, the overview display card 211 shows the total number of devices (7), the total number of abnormal samples (10), and the total number of faulty devices (3).
[0108] In one embodiment, to allow the user to prioritize viewing the content in the overview display card 211, the font size of the statistical information in the data statistics overview area is larger than the font size of the device status information and / or sample detection information of the microbial detection device displayed in the sub-display area. See, for example, [link to relevant documentation]. Figure 2 As shown, the font size of the total number of devices "7", the total number of abnormal samples "10", and the total number of faulty devices "3" displayed in each overview display card 211 is larger than the font size displayed in the group status display area 220.
[0109] In one embodiment, to facilitate user awareness of equipment malfunctions and / or abnormal sample conditions in the microbial detection system 100, the overview display card corresponding to the malfunction or abnormal status in the data statistics overview area is highlighted first in the data statistics overview area. For example, participants Figure 2 As shown, if the total number of abnormal samples and the total number of faulty devices are not zero, their corresponding overview display cards can be highlighted first, so that users are aware that the current microbial detection system 100 has experienced instrument malfunctions and / or sample detection abnormalities, thus reminding users to take further action on these abnormal instruments and / or samples. Correspondingly, if the total number of devices is less than a preset number, the total number of devices is abnormal, and therefore its corresponding overview display card 211 can also be highlighted first. Figure 2 As shown, in one embodiment, the first highlight can be a background color that highlights the overview display card 211 corresponding to the fault or abnormal state data. For example, participating in... Figure 2As shown, the overview display card 211 corresponding to "Total number of abnormal samples: 10" and "Total number of faulty devices: 3" is displayed with a red background, making it more prominent and easier for the user to see compared to the overview display card 211 for the total number of devices with normal data. In addition, various possible highlighting methods can be applied to the embodiments of this application, and the embodiments of this application are not limited in this regard, including but not limited to at least one of the following:
[0110] Highlight at least one of the area color or border of the overview display card, such as thickening the card border or highlighting the border color to red;
[0111] Highlight the text displayed in the overview card, for example, by using bold, italic, or underline to highlight abnormal information.
[0112] Highlight the information displayed in the overview display card with color, for example, change the text color of abnormal information, such as using red to indicate a fault or abnormality;
[0113] Mark and display the information shown in the overview display card and / or the overview display card;
[0114] Highlight the title bar of the overview display card.
[0115] In one embodiment, the first highlight can be further differentiated, for example, by highlighting different types of faults or different types of sample anomalies, or by highlighting different types of anomalies according to the level of the anomaly type or the priority of the fault, for example, by distinguishing the type or degree of fault / sample anomaly by using yellow background color and red background color.
[0116] In one embodiment, see Figure 2 As shown, the sub-display areas 221 in the group status display area 220 are mutually partitioned, which can be done by area division or card division. In one embodiment, the sub-display areas 221 can be arranged in the group status display area 220 according to preset rules. The display proportion of the sub-display area 221 in the group status display area 220 is determined according to the number of microbial detection devices 10 in its group or the amount of information to be displayed. In some embodiments, there may be at least two sub-display areas 221 with different display areas. The sub-display areas 221 in the group status display area 220 can be dynamically adjusted. For example, when the number of microbial detection devices 10 connected to the current group of the sub-display area 221 increases, the display area of the sub-display area 221 is adaptively expanded. Or, when the number of microbial detection devices 10 connected to the current group of the sub-display area 221 decreases, the display area of the sub-display area 221 is adaptively reduced.
[0117] In one embodiment, each group status display area 220 is further provided with a title bar 240, which displays the group identifier corresponding to the current sub-display area 221. For example, if grouping is performed according to the first grouping rule, the title bar of the sub-display area 221 displays the department name; or, if grouping is performed according to the second grouping rule, the title bar of the sub-display area 221 displays the equipment type. See also... Figure 2 As shown, the title bar of the first display area 2210 displays "Blood Culture", the title bar of the second display area 2220 displays "Mass Spectrometry", and the title bar of the third display area 2230 displays "Identification and Drug Sensitivity".
[0118] In one embodiment, in the group status display area 220, a second highlight is given to the sub-display area 221 where the microbial detection device with abnormal information is located, to indicate to the user which group has experienced instrument malfunction or sample detection abnormality, so that the user can quickly find the microbial detection device with instrument malfunction or sample detection abnormality in the corresponding group. In one embodiment, see... Figure 2 As shown, for the sub-display area 221 where the microbial detection device with abnormal information is located, the background color of its title bar 240 is highlighted. When the microbial detection device in the group corresponding to this sub-display area 221 malfunctions, the control device 30 can determine the malfunction information based on the equipment status information and control the background color of the title bar 240 of the sub-display area 221 to change from the normal green to red for highlighting (red is easier for the user to observe than green). In another embodiment, different highlighting can also be performed according to different types of malfunctions / abnormalities or different levels / priorities of abnormality. For example, the title bar 240 of the instrument with a fault alarm is displayed in red, and the title bar 240 of the instrument with an alarm is displayed in yellow. Red indicates that the current instrument has malfunctioned and cannot work, requiring immediate handling (e.g., the barcode scanning component malfunctions and cannot scan). Yellow indicates that the current instrument's working status is abnormal but can still maintain operation for a period of time (e.g., the current instrument's reagent balance is insufficient).
[0119] In one embodiment, the second highlight, in addition to highlighting the background color of its title bar 240, may also have at least one of the following display methods, including:
[0120] Highlight the border of the title bar in the sub-display area;
[0121] Highlight the background color and / or border of the entire sub-display area.
[0122] join Figure 2As shown, the sub-display area 221 is provided with status information columns 230 corresponding to different microbial detection devices. The status information of the microbial detection device and / or sample detection information are displayed in the corresponding status information column 230. In one embodiment, the status information column 230 may display at least one of the following sample status information:
[0123] Positive bottle information, such as displaying the number of positive bottles detected by the corresponding microbial detection device;
[0124] Anonymous bottle information, such as displaying the number of anonymous bottles whose identities cannot be identified by the corresponding microbial detection device;
[0125] Information on lost bottles, such as the number of lost bottles that cannot be located by the microbial detection device or system.
[0126] In one embodiment, the status information bar 230 may also display at least one of the following device status information:
[0127] Instrument malfunction information, such as displaying the number of malfunctions, the content of the malfunction, or the location of the malfunction for the corresponding microbial detection device;
[0128] Instrument operating status information, such as displaying the operating parameters of the corresponding microbial detection device, such as displaying the incubator temperature of the blood culture instrument;
[0129] Equipment model information, for example Figure 2 The first display area 2210 displays device model information such as "N120" and "N60";
[0130] Information about the department where the equipment is located, such as Figure 2 The first display area 2210 displays information about departments such as "Central Laboratory", "Emergency Department", and "ICU".
[0131] join Figure 2 As shown, the status information bar 230 is positioned above the instrument simulation diagram or actual photograph of the microbial detection device, making it easier for users to observe. In one embodiment, the sample status information and device status information are displayed separately in the status information bar. Figure 2 As shown, the number of positive bottles, anonymous bottles, and lost bottles, representing sample status information, are grouped into one column, while the number of instrument malfunctions, representing instrument malfunction information, is grouped into another column. This columnar display of the status information allows for two controls: a sample viewing control 231 for corresponding sample status information and a malfunction viewing control 232 for corresponding instrument status information. These controls enable users to navigate to different detail display interfaces to observe more specific sample and instrument malfunction information.
[0132] In one embodiment, when a user triggers the sample viewing control 231, the control device 30 receives the user's selection instruction for sample status information. In response to the selection instruction, the control device 30 controls the display device 20 to display the sample status information in the display area 200. Figure 3 The sample information management interface 500 of the microbial detection device is shown. The sample information management interface 500 is used to display more detailed sample information.
[0133] In one embodiment, the sample information management interface 500 can display a sample list related to sample testing information, such as the sample corresponding to the positive bottle and the sample corresponding to the anonymous bottle shown in the status information bar 230. Additionally, the sample information management interface 500 can locate the sample and / or sample container selected by the user in the sample list. The sample information management interface 500 also displays detailed information about the selected sample and / or sample container, such as detailed sample information, patient information corresponding to the sample, and microbial growth curve information of the sample.
[0134] In another embodiment, the sample information management interface 500 can display not only the sample list of samples related to sample detection information, but also the sample list of all samples of the current microbial detection device.
[0135] In another embodiment, when the user triggers the fault viewing control 232, the control device 30 obtains the user's selection instruction for device status information. In response to the selection instruction, the control device 30 controls the display device 20 to display, in the display area 200, information such as... Figure 4 The device fault log interface shown is 600. (See also...) Figure 4 In one embodiment shown, the device fault log interface 600 displays alarm information of the faulty device corresponding to the device status information, including alarm time, alarm content description, and recommended processing information for clearing the alarm.
[0136] See Figure 2 As shown, each microbial detection device corresponds to a status information bar 230, which displays the device status information and / or sample detection information. The status information bar 230 is only displayed when the device status information and / or sample detection information of the microbial detection device are abnormal. When the device status information and / or sample detection information of the microbial detection device are normal, the status information bar 230 is not displayed. For example, in... Figure 2In the first display area 2210, two blood culture instruments in the central laboratory are malfunctioning. Therefore, a status information bar 230 is displayed above the simulation diagram 400 of these two devices in the first display area 2210. The N120 blood culture instrument displays both sample viewing controls 231 and fault viewing controls 232, indicating that both the device status and sample test results are abnormal. The N60 blood culture instrument only displays sample viewing control 231, indicating that the sample test results are abnormal but the device status is normal (no malfunction). For the N120 blood culture instrument in the emergency department, where both device status and sample test results are normal, the corresponding status information bar 230 is not displayed. This setting allows users to quickly identify malfunctioning microbial detection devices, improving the efficiency of handling equipment failures and sample abnormalities.
[0137] In another optional embodiment, a status information bar 230 can correspond to multiple microbial detection devices. The control device 30 summarizes the device status information and / or sample detection information of each microbial detection device in its group and displays the summarized device status information and / or sample detection information in the status information bar 230. In one embodiment, a sub-display area 221 is provided with a status information bar 230 for summarizing and displaying the device status information and / or sample detection information of all microbial detection devices in the sub-display area 221.
[0138] In another optional embodiment, the status information bar 230 may correspond to all microbial detection devices in the sub-display area 221, or only some microbial detection devices. The device status information and / or sample detection information of some microbial detection devices in the sub-display area 221 that meet the target preset conditions are displayed in the status information bar 230. For example, the device status information and / or sample detection information of microbial detection devices that have experienced instrument malfunctions and / or abnormal sample detection are statistically analyzed and summarized in the status information bar 230.
[0139] In another embodiment, the sub-display area 221 includes multiple status information columns 230, each corresponding to a target preset condition. Each status information column 230 is used to summarize and display the equipment status information and / or sample testing information of microbial detection devices that meet their respective target preset conditions. For example, the first display area 2210 may display blood culture instruments from different departments, where the target preset condition is different departments. That is, the first display area 2210 includes a status information column corresponding to the central laboratory, a status information column for the emergency department, and a status information column corresponding to the ICU. The status information column corresponding to the central laboratory is used to summarize and display the equipment status information and / or sample testing information of the blood culture instruments in the central laboratory. Similarly, the status information column for the emergency department is used to summarize and display the equipment status information and / or sample testing information of the blood culture instruments in the emergency department, and the status information column corresponding to the ICU is used to summarize and display the equipment status information and / or sample testing information of the blood culture instruments in the ICU. Therefore, the target preset condition can be microbial detection devices of the same type and / or microbial detection devices from the same department.
[0140] In one embodiment, the instrument simulation diagram or actual photograph of the microbial detection device in the sub-display area 221 is sorted or grouped according to the target preset conditions.
[0141] See Figure 2 As shown, in one embodiment, the display area 200 displays three levels of information display modules: a data statistics overview area 210, a sub-display area 221, and a status information bar 230. This design can greatly and intuitively remind users to observe and monitor the operating status of the entire microbial detection system 100. The data statistics overview area 210, the sub-display area 221, and the status information bar 230 provide reminders to the user from three dimensions: "far," "medium," and "near," where "far distance," "medium distance," and "near distance" refer to the distance between the user and the display device 20.
[0142] The data statistics overview area 210 displays an overall data statistics overview of the microbial detection devices 10 connected to the entire microbial detection system 100. The data statistics overview area 210 uses multiple overview display cards, with corresponding data statistics overview information displayed on different cards. This interface setup allows users to easily observe the information displayed in the data statistics overview area 210 even from a distance. Furthermore, by placing the data statistics overview area 210 above the group status display area 220, and making the font size of the statistical information in the data statistics overview area larger than the font size of the device status information and / or sample detection information of the microbial detection devices displayed in the sub-display area 221, it is even more convenient for users to observe the information displayed in the data statistics overview area 210 from a distance. Since the data statistics overview area 210 uses multiple overview display cards 211, when the data statistics overview area 210 malfunctions or sample detection anomalies, the alert is given on a per-card basis, that is, the card corresponding to the data type is given an independent alert. For example, the overview display card 211 with a total number of faulty devices that is not zero is highlighted (for example, the background color of the overview display card 211 is set to red). This makes it convenient for users to see the instrument malfunction or sample detection anomaly of the microbial detection system 100 from a distance, thereby attracting users to approach the display device 20 for further inspection.
[0143] When the user approaches at a medium distance, the sub-display areas 221 within the grouped status display area 220 further distinguish the source of the fault. Since the sub-display areas 221 are grouped according to preset rules (e.g., by equipment type or department), and when any microbial detection device in a sub-display area 221 experiences an instrument malfunction or sample detection abnormality, a notification will be issued for each sub-display area 221. This may involve highlighting the sub-display area 221, highlighting the background color and / or border of the sub-display area's title bar 240, or highlighting the overall background color and / or border of the sub-display area. In this way, the user, at a medium distance from the display device 20, can identify the sub-display area 221 where the abnormality occurred and then examine it more closely.
[0144] Once the user approaches the device, they can view the equipment status information and / or sample testing information for each group of microbial detection devices in the specific abnormality display area 221. The instrument simulation diagrams or actual photographs of each microbial detection device in the sub-display area 221 allow the user to quickly identify the type of abnormal device. A status information bar 230 (see, for example, next to the instrument simulation diagram or actual photograph) is provided for this purpose. Figure 2The status information bar 230 shown above the instrument simulation diagram 400 can help users determine the cause of abnormalities in the microbial detection device (such as abnormal sample detection or instrument malfunction, number of positive bottles, number of anonymous bottles, and number of lost bottles, etc.).
[0145] In addition to the partitioned display settings that allow users to observe from three dimensions—"far," "medium," and "near"—users can also use the sample viewing control 231 in the status information bar 230 to directly jump to the sample information management interface 500, and use the fault viewing control 232 to directly jump to the equipment fault log interface 600. This provides a very intuitive, convenient, and smooth way to view the sample testing details and instrument fault details.
[0146] In one embodiment, the instrument simulation diagram or actual photograph of the microbial detection device in the sub-display area 221 can be sorted not only according to preset target conditions, but also according to at least one of the following sorting rules:
[0147] In one embodiment, the sorting rule can be based on the department where the equipment is located, for example, see [link to relevant documentation]. Figure 2 As shown, the microbial detection devices in the first display area 2210 are sorted according to the department. In the first display area 2210, the priority of the central laboratory is higher than that of the emergency department, and the priority of the emergency department is higher than that of the ICU.
[0148] In another embodiment, the sorting rule can be based on the type of equipment, for example, a blood culture instrument has a higher priority than a mass spectrometer.
[0149] In another embodiment, the sorting rule can be based on the priority of equipment failure, that is, microbial detection devices that have experienced equipment failures are displayed first.
[0150] Similarly, in another embodiment, the sorting rule can be based on the priority of sample anomalies, that is, microbial detection devices that detect sample anomalies are displayed first.
[0151] In another embodiment, any of the above-mentioned sorting rules can be combined to perform sorting. For example, a first sorting rule is set, and a second sorting rule is then executed based on the first sorting rule. For example, devices are first sorted according to the priority of their faults, and then devices with the same fault priority are sorted according to the priority of their sample anomalies.
[0152] In one embodiment, the instrument simulation diagram or actual photograph of the instrument displays the corresponding fault identifier or operating status identifier of the microbial detection device. By marking fault identifiers or operating status identifiers in the instrument simulation diagram or actual photograph of the instrument, users can directly understand the cause of the fault or abnormality through a graphical representation. For example, the fault identifier can mark the location or cause of the fault in the instrument simulation diagram or actual photograph of the instrument (e.g., marked with text or icons), and the operating status identifier can mark the current operating status of the instrument (e.g., temperature, reagent balance, sample volume to be tested, etc.).
[0153] In one embodiment, the instrument simulation diagram or the actual instrument photograph is not a fixed image, but can dynamically change according to the equipment status and / or sample detection status of the microbial detection device. For example, the instrument simulation diagram displayed when the instrument is malfunctioning is different from the instrument simulation diagram displayed when the instrument is normal. For example, if the microbial detection device includes multiple working components, the instrument simulation diagram or the actual instrument photograph also displays local area images of the corresponding working components. That is, the instrument simulation diagram or the actual instrument photograph can be composed of multiple local area images. Therefore, the display status of the local area images can be changed to mark the working components that are malfunctioning (e.g., displaying the working status of the corresponding working component in the local area image), allowing users to intuitively understand the working status of each specific working component of the microbial detection device, and to quickly locate the malfunctioning and / or malfunctioning working components.
[0154] In one embodiment, the working status of a corresponding working component can be displayed on a local area image basis. For example, the working parameter information of the working component can be displayed. The local area image corresponding to the working component that is malfunctioning can be highlighted (e.g., highlighting at least one of the area color, background color, or border in the local area image).
[0155] For example, see Figure 2 and Figure 5 As shown, the instrument simulation diagram 400 of the first blood culture instrument in the first display area 2210 consists of multiple local area images 410, including a sample identification code scanning component 411 and multiple incubators 412. The incubators 412 display the operating parameter information of their corresponding components, i.e., the current temperature of each incubator. Users can intuitively observe the temperature of each incubator 412 through the instrument simulation diagram 400. When some components of the blood culture instrument malfunction, this is reflected in the local area images, allowing users to understand which specific component is faulty. Because the simulation diagram matches the actual appearance of the instrument, the faulty component can be directly located on-site by comparing the local area images, facilitating further processing. For example, see... Figure 2As shown, in the instrument simulation diagram 400 of the first display area 2210, the sample identification code scanning component 411 and one of the target incubators 4121 are highlighted (e.g., overlaid with a red background color or a foreground color), so that the user can understand at a glance that the identification code scanning component 411 and the target incubator 4121 have malfunctioned without having to look at the specific text information.
[0156] In one embodiment, each local area image 410 may also have a control function. When the control device 30 receives a user's selection instruction for the local area image 410, it displays the sample information management interface or equipment fault log interface of the microbial detection device corresponding to the local area image in the display area.
[0157] Secondly, embodiments of this application provide a method for displaying management information in a microbial detection system, wherein the microbial detection system refers to... Figure 1 The above embodiments, as described above, include at least one microbial detection device and a display device. The display device includes a display area, and the management information display method includes the following steps:
[0158] The control display device displays a data statistics overview area and a grouping status display area in the display area. The data statistics overview area is used to display the data statistics overview of at least one microbial detection device. The grouping status display area includes multiple sub-display areas. Each sub-display area is used to display the equipment status information and / or sample detection information of the microbial detection devices in a single group after the at least one microbial detection device is grouped according to preset rules. Each sub-display area displays the instrument simulation diagram or actual photograph of the microbial detection device corresponding to its group.
[0159] The specific content and related functions displayed in the display area in the above embodiments can be found by referring to... Figures 2 to 4 And the description of the display area 200 in the microbial detection system of the first aspect of the above embodiments. Any embodiment of the microbial detection system of the first aspect can be directly incorporated into the management information display method of the microbial detection system of the second aspect of this embodiment.
[0160] The management information display method of this application embodiment can be executed by the control device 30 of the microbial detection system 100. The control device 30 acquires sample detection information and / or device status information of each microbial detection device 10 connected to the microbial detection system 100. By collecting and analyzing this device status information, the control device 30 can monitor the real-time operation of each microbial detection device 10, promptly detect and handle device malfunctions, and ensure the normal operation of the detection work. The control device 30 controls the display device 20 to display the information based on the acquired device status information and / or sample detection information of each microbial detection device 10.
[0161] By setting up a data statistics overview area in the display device to show the overall data statistics of at least one microbial detection device, and setting up a group status display area, this area displays the microbial detection devices in groups according to preset rules through multiple sub-display areas. Each sub-display area not only displays the equipment status information and sample testing information of the detection devices in that group, but also visually presents the detection devices in the corresponding group through instrument simulation diagrams or actual photographs. This allows managers to grasp the overall system operation and testing data on a single interface, and clearly understand the specific status of the equipment and the testing status of samples in each group. This effectively solves the technical problems of scattered information display and delayed status updates in traditional monitoring systems, and improves the efficiency of equipment monitoring and anomaly handling.
[0162] In one embodiment, the user can further interact with the elements displayed in the display area 200 to view more detailed sample information and / or device fault information. Accordingly, the management information display method includes the following steps:
[0163] Step 610: Control the display device to display a data statistics overview area and a group status display area in the display area. The group status display area includes multiple sub-display areas. Each sub-display area displays the equipment status information and / or sample testing information of the microbial detection devices within a single group after grouping at least one microbial detection device according to preset rules. Each sub-display area displays an instrument simulation diagram or a photograph of the instrument corresponding to its group and / or the microbial detection device. Each sub-display area includes a corresponding status information bar, which includes sample viewing controls and / or fault viewing controls for the corresponding equipment status information.
[0164] Step 620: Obtain the user's selection instruction for sample status information.
[0165] Step 630: Control the display device to display the sample information management interface of the microbial detection device in the display area according to the selection instruction of the sample status information.
[0166] Step 640: Obtain the user's selection instruction for device status information.
[0167] Step 650: Control the display device to display the equipment fault log interface in the display area according to the selection command of the equipment status information.
[0168] Thirdly, embodiments of this application provide an electronic device, including a memory and a control component. The memory stores a computer program, and the control component executes the computer program to implement the management information display method as described in any of the above embodiments.
[0169] Fourthly, embodiments of this application provide a computer storage medium storing a computer program thereon, characterized in that: it is applied to a production line system, and when the computer program is executed by a control component, it implements the management information display method as described in any of the above embodiments.
[0170] Fifthly, embodiments of this application provide a computer program product or computer program that includes computer instructions stored in a computer-readable storage medium. A control component of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the computer device to perform the management information display method described in any of the above embodiments.
[0171] A ninth aspect of the present invention provides a computer program product or computer program including computer instructions stored in a computer-readable storage medium. A control component of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the computer device to perform the sample information display method described in the fourth to sixth aspects above.
[0172] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate to describe embodiments of this application, for example, those that can be implemented in orders other than those illustrated or described herein. Furthermore, the terms “comprising” and “having,” and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatuses.
[0173] It should be understood that in this application, "at least one (item)" means one or more, and "more than" means two or more. "And / or" is used to describe the relationship between related objects, indicating that three relationships can exist. For example, "A and / or B" can represent three cases: only A exists, only B exists, and both A and B exist simultaneously, where A and B can be singular or plural. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship. "At least one (item) of the following" or similar expressions refer to any combination of these items, including any combination of single or plural items. For example, at least one (item) of a, b, or c can represent: a, b, c, "a and b", "a and c", "b and c", or "a and b and c", where a, b, and c can be single or multiple.
[0174] It should be understood that in the description of the embodiments of this application, "multiple" means two or more, "greater than", "less than", "exceeding" etc. are understood to exclude the number itself, and "above", "below", "within" etc. are understood to include the number itself.
[0175] In the several embodiments provided in this application, it should be understood that the disclosed systems, apparatuses, and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be through some interfaces, or indirect coupling or communication connection between apparatuses or units, and may be electrical, mechanical, or other forms.
[0176] The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.
[0177] Furthermore, the functional units in the various embodiments of this application can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The integrated unit can be implemented in hardware or as a software functional unit.
[0178] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods of the various embodiments of this application. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0179] It should also be understood that the various implementation methods provided in this application can be combined arbitrarily to achieve different technical effects.
[0180] The above provides a detailed description of the preferred embodiments of this application. However, this application is not limited to the above-described embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of this application. All such equivalent modifications or substitutions are included within the scope defined by the claims of this application.
Claims
1. A microbial detection system, characterized in that, include: At least one microbial detection device is used to detect the growth of microorganisms in the sample loaded therein; The display device includes a display area, which comprises a data statistics overview area and a grouping status display area. The data statistics overview area is used to display the data statistics overview of the at least one microbial detection device. The grouping status display area includes multiple sub-display areas, each of which displays the device status information and / or sample detection information of the microbial detection device within a single group after the at least one microbial detection device has been grouped according to preset rules. Each sub-display area displays an instrument simulation diagram or a photograph of the instrument for some and / or all of the microbial detection devices in its corresponding group.
2. The microbial detection system according to claim 1, characterized in that, The data The data types of the statistical overview include at least one of the following: The total number of devices including at least one microbial detection device; The total number of faulty devices, including at least one microbial detection device; The total number of abnormal samples from at least one microbial detection device.
3. The microbial detection system according to claim 2, characterized in that, The data statistics overview area includes multiple overview display cards, each of which corresponds to a data statistics overview of a different data type. Preferably, in the data statistics overview area, the overview display card corresponding to the data statistics overview area in a fault or abnormal state is highlighted. Optionally, the first highlight includes at least one of the following: Highlight at least one of the area color, background color, or border of the overview display card; Highlight the font of the information displayed in the overview display card; The information displayed in the overview display card is highlighted with color; The overview display card and / or the information displayed in the overview display card are marked and displayed; Highlight the title bar of the overview display card.
4. The microbial detection system according to claim 1, characterized in that, The font size of the statistical information displayed in the data statistics overview area is larger than the font size of the equipment status information and / or sample detection information of the microbial detection device displayed in the sub-display area.
5. The microbial detection system according to claim 1, characterized in that, The sample status information includes at least one of the following: Positive bottle information; Anonymous bottle information; Lost bottle information; The device status information includes at least one of the following: Instrument malfunction information; Instrument operating status information; Equipment model information; Information about the department where the equipment is located.
6. The microbial detection system according to claim 1, characterized in that, The sub-display area also includes a status information bar corresponding to each of the microbial detection devices in a single group, where the sample status information and / or the device status information of the microbial detection device are displayed. Alternatively, the sub-display area may include at least one status information bar, which is used to statistically display the equipment status information and / or sample detection information of the microbial detection devices that meet the target preset conditions in the sub-display area. Each status information bar corresponds to one target preset condition. Optionally, the target preset condition is the same type of microbial detection device and / or the microbial detection device in the same department. Optionally, the instrument simulation diagram or the actual photograph of the instrument of the microbial detection device in the sub-display area is sorted or grouped according to the target preset conditions. Optionally, the status information bar is displayed for microbial detection devices that have abnormal instrument status or abnormal sample status, and the status information bar is not displayed for microbial detection devices that have normal instrument status and normal sample status. Optionally, the sample status information and the device status information can be displayed in separate columns in the status information bar.
7. The microbial detection system according to claim 6, characterized in that, In response to the user's selection instruction for the sample status information, the sample information management interface of the microbial detection device is displayed in the display area; Alternatively, in response to a user's selection instruction for the sample status information, the sample information management interface of all the microbial detection devices is displayed in the display area, and the sample and / or sample carrier container corresponding to the sample status information selected by the user is located in the sample information management interface.
8. The microbial detection system according to claim 6, characterized in that, In response to the user's selection instruction for the device status information, the device fault log interface of the microbial detection device is displayed in the display area.
9. The microbial detection system according to claim 1, characterized in that, In the display area, a second highlight is given to the sub-display area where the abnormal microbial detection device is located. Preferably, the second highlight is given differently depending on the type of abnormality of the microbial detection device. Optionally, the second highlight includes at least one of the following: Highlight the background color and / or border of the title bar of the sub-display area; Highlight the background color and / or border of the entire sub-display area.
10. The microbial detection system according to claim 1, characterized in that, The microbial detection devices in the sub-display area are displayed in an ordered manner according to a preset arrangement rule, wherein the preset arrangement rule includes at least one of the following: Sort by department where the equipment is located; Sort by equipment type; Sort the equipment malfunctions according to their priority. Sort the samples according to the priority of their anomalies; Equipment is sorted according to its failure priority, and for equipment with the same failure priority, it is sorted according to the priority of sample anomalies.
11. The microbial detection system according to claim 1, characterized in that, The instrument simulation diagram or the actual photograph of the instrument displays the corresponding fault indicator or working status indicator of the microbial detection device; preferably, the microbial detection device includes multiple working components, and the instrument simulation diagram or the actual photograph of the instrument includes local area images corresponding to the multiple working components, and displaying the corresponding fault indicator or working status indicator of the microbial detection device includes: displaying the working status of the corresponding working component in the local area image; preferably, the multiple working components include at least one of the following: Incubator; Sample identification code scanning component; Detection components.
12. The microbial detection system according to claim 11, characterized in that, The local area image displays the working status of the corresponding working component, including at least one of the following: Displays the operating parameter information of the working component; The local area image corresponding to the abnormal working component is highlighted, preferably, at least one of the area color, background color or border in the local area image is highlighted; Preferably, in response to a selection instruction for the local area image, the sample information management interface of the microbial detection device corresponding to the local area image is displayed in the display area.
13. The microbial detection system according to claim 1, characterized in that, At least one of the microbial detection devices connected to the microbial detection system includes at least two microbial detection devices from different departments, and / or includes at least two microbial detection devices of different types.
14. The microbial detection system according to any one of claims 1 to 13, characterized in that, The preset rules include a first grouping rule, which groups the at least one microbial detection device according to the department where the device is located, and the sub-display area displays the devices in groups according to the first grouping rule; And / or, the preset rules include a second grouping rule, which groups the at least one microbial detection device according to the device type, and the sub-display area displays the devices in groups according to the second grouping rule.
15. A method for displaying management information in a microbial detection system, characterized in that, The microbial detection system includes at least one microbial detection device and a display device, the display device including a display area, and the management information display method including: The display device is controlled to display a data statistics overview area and a grouping status display area in the display area. The data statistics overview area is used to display the data statistics overview of the at least one microbial detection device. The grouping status display area includes multiple sub-display areas. Each sub-display area is used to display the equipment status information and / or sample detection information of the microbial detection device in a single group after the at least one microbial detection device is grouped according to preset rules. Each sub-display area displays the instrument simulation diagram or the actual photograph of the microbial detection device corresponding to its group.