Information display method and information display system applied to operating room
By displaying physiological organ diagrams and highlighting target organs or parameters in the operating room information system, the problem of information acquisition caused by data dispersion during surgery is solved, thereby improving the decision-making efficiency of medical staff and the safety of surgery.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHENZHEN MINDRAY BIO MEDICAL ELECTRONICS CO LTD
- Filing Date
- 2024-11-04
- Publication Date
- 2026-05-08
AI Technical Summary
Existing operating room information systems scatter surgical data across different devices and systems, requiring medical staff to frequently switch between interfaces during surgery. This increases the difficulty of information retrieval, may lead to information omissions and errors, and affects decision-making efficiency and patient safety.
An information display method and system are provided, which acquires physiological parameters from multiple data source devices, displays physiological organ diagrams, and highlights target organs or parameters according to the patient's current surgical type, past medical history, or pre-configured parameter tables, using color, outlines, dynamic display, and other methods to distinguish key information.
It enables medical staff to quickly obtain key information, reduces reliance on personal experience, improves decision-making efficiency and surgical outcomes, breaks down data silos, and enhances surgical safety.
Smart Images

Figure CN121987340A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical device technology, and in particular to an information display method and system for use in operating rooms. Background Technology
[0002] With the continuous development of hospital informatization, the collection and application of surgical data has become increasingly important. However, existing surgical information systems handle data from a wide range of sources and in diverse formats during surgery. The complexity of this information not only poses challenges to data storage and display but may also obscure critical data, leading to errors in clinical decision-making by medical staff.
[0003] Existing operating room information systems typically scatter surgical data across different devices and systems, such as HIS, monitors, and surgical equipment. This forces medical staff to frequently switch between interfaces during surgery, increasing the difficulty of information retrieval. This information silo phenomenon not only wastes time but also easily leads to information omissions and errors. Although some systems currently display multiple information sources on a single interface, these systems simply pile information up on one screen, forcing doctors to rely on personal experience to extract key information from the complex data. This information presentation method results in low decision-making efficiency, impacting patient safety and surgical outcomes. 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 an information display method and system for use in operating rooms, enabling medical staff to quickly obtain key information, improving their decision-making efficiency, and enhancing surgical outcomes and safety.
[0006] On one hand, embodiments of this application provide an information display method applied in an operating room, including:
[0007] The system acquires the patient's physiological parameters, controls the display to show the physiological parameters in a first display area, and controls the display to show a physiological organ diagram in the first display area based on the physiological parameters. The physiological organ diagram includes multiple organs, and the physiological parameters come from multiple different data source devices.
[0008] Obtain first information, determine the target organ based on the first information, highlight the target organ in the physiological organ diagram, and / or determine the target parameter from the physiological parameters based on the first information, highlight the target parameter in the first display area;
[0009] Wherein, the first information includes any one of the following:
[0010] The patient's current surgical procedure;
[0011] The patient's past medical history;
[0012] A pre-configured parameter configuration table.
[0013] In one embodiment of this application, highlighting the target organ in the physiological organ diagram includes:
[0014] In the physiological organ diagram, the target organ undergoes at least one of the following display processes:
[0015] Change the color processing;
[0016] Add outline processing;
[0017] Dynamic scaling processing;
[0018] Flashing handling.
[0019] In one embodiment of this application, highlighting the target organ in the physiological organ diagram includes:
[0020] In the physiological organ diagram, the display processing for organs other than the target organ includes at least one of the following:
[0021] Hiding;
[0022] Dilute it.
[0023] In one embodiment of this application, highlighting the target parameter in the first display area includes:
[0024] In the first display area, the target parameter is displayed using at least one of the following methods:
[0025] Change the color processing;
[0026] Bold text;
[0027] Add border lines;
[0028] Dynamic scaling processing;
[0029] Flashing removal;
[0030] Move to the target area for display.
[0031] In one embodiment of this application, highlighting the target parameter in the first display area includes:
[0032] In the first display area, at least one of the following display processing methods is applied to other physiological parameters besides the target parameter:
[0033] Hiding;
[0034] Dilute it.
[0035] In one embodiment of this application, it further includes:
[0036] Obtain surgical progress information and update the target organ and / or the target parameters based on the surgical progress information;
[0037] The surgical progress information is obtained based on the time elapsed since the start of the surgery, or based on the user's input.
[0038] In one embodiment of this application, it further includes:
[0039] Obtain surgical operation information and update the target organ and / or the target parameters based on the surgical operation information;
[0040] The surgical operation information is obtained by the surgical equipment or based on user input.
[0041] In one embodiment of this application, it further includes:
[0042] Obtain medication administration information and update the target organ and / or the target parameters based on the medication administration information;
[0043] The surgical operation information is obtained by the medication administration device or based on the user's input.
[0044] In one embodiment of this application, it further includes:
[0045] When the physiological parameter corresponding to any organ in the physiological organ diagram exceeds the preset range, the organ is identified as a warning organ and the warning organ is highlighted in the physiological organ diagram.
[0046] In one embodiment of this application, the target organ and the warning organ are displayed in different ways.
[0047] In one embodiment of this application, it further includes:
[0048] When the physiological parameter exceeds the preset range, the physiological parameter is determined as a warning parameter and the warning parameter is highlighted in the first display area.
[0049] In one embodiment of this application, the target parameter and the warning parameter are displayed in different ways.
[0050] In one embodiment of this application, when the target parameter or the warning parameter is associated with an organ in the physiological organ diagram, the target parameter or the warning parameter is displayed near the associated organ.
[0051] In one embodiment of this application, the physiological parameters are displayed in the first display area in at least one of the following formats: text, numerical values, graphics, images, and lists.
[0052] In one embodiment of this application, it further includes:
[0053] A first selection box is displayed in the second display area of the display;
[0054] The corresponding target organ is determined based on the click information of the first selection box, and the target organ is highlighted in the physiological organ diagram.
[0055] In one embodiment of this application, it further includes:
[0056] A second selection box is displayed in the third display area of the display;
[0057] The target parameter is determined based on the click information of the second selection box, and the target parameter is highlighted in the first display area.
[0058] In one embodiment of this application, it further includes:
[0059] When a playback command is received, the target organ and target parameters at the corresponding moment of the playback command are obtained;
[0060] The target organ is highlighted in the physiological organ diagram, and / or the target parameter is highlighted in the first display area.
[0061] In one embodiment of this application, it further includes:
[0062] When a playback command is received, all physiological parameters at the corresponding moment of the playback command are obtained;
[0063] The target organ is displayed in the physiological organ diagram according to the current display mode, and / or the target parameter is displayed in the first display area.
[0064] In one embodiment of this application, the display method of the current time is determined in the following way:
[0065] A third selection box is displayed in the fourth display area of the display;
[0066] The corresponding target organ and / or target parameters are determined based on the click information of the third selection box.
[0067] In one embodiment of this application, the corresponding time of the playback instruction is obtained in the following manner:
[0068] The playback timeline is displayed in the fifth display area of the display.
[0069] The corresponding time of the playback command is determined based on the click information of the playback timeline.
[0070] In one embodiment of this application, the playback timeline is provided with a plurality of node icons corresponding to time points or to the surgical process.
[0071] In one embodiment of this application, highlighting the target parameter in the first display area includes:
[0072] The first display area is divided into multiple sub-display areas, each corresponding to one of the multiple data source devices;
[0073] The physiological parameters of the corresponding data source device are displayed in the sub-display area, and the target parameter is highlighted.
[0074] In one embodiment of this application, it further includes:
[0075] A fourth selection box corresponding to the data source device for the physiological parameter is displayed in the sixth display area of the display. The data source device includes at least one of monitoring equipment, surgical equipment, imaging equipment, and in vitro diagnostic equipment.
[0076] Obtain the click information of the fourth selection box, and switch the display screen of the first display area to the information display interface of the data source device corresponding to the click information.
[0077] On the other hand, embodiments of this application provide an information display method applied in an operating room, including:
[0078] The patient's physiological parameters are acquired, and the display is controlled to show a physiological organ diagram in the first display area based on the physiological parameters. The physiological organ diagram includes multiple organs, and the physiological parameters come from multiple different data source devices.
[0079] Obtain first information, determine the target organ based on the first information, highlight the target organ in the physiological organ diagram, and / or determine the target parameter from the physiological parameters based on the first information, and display the target parameter in the first display area;
[0080] Wherein, the first information includes any one of the following:
[0081] The patient's current surgical procedure;
[0082] The patient's past medical history;
[0083] A pre-configured parameter configuration table.
[0084] On the other hand, embodiments of this application provide an information display system, which includes a memory and a processor. The memory stores a computer program, and the processor executes the computer program to implement the information display method as described in any of the above embodiments.
[0085] The embodiments of this application include at least the following beneficial effects:
[0086] On the one hand, an embodiment of this application provides an information display method for use in an operating room. For physiological parameters obtained from multiple different data source devices, the method first displays the physiological parameters and a diagram of the physiological organs in a first display area of the monitor. Then, based on the patient's current surgical type, the patient's past medical history, and any one of a preset parameter configuration table, a target parameter or target organ is determined and highlighted. This allows the parameters and organs needed by medical personnel to be prominently displayed in the first display area. Medical personnel can quickly obtain key information related to the patient's current surgical type, or key information related to the patient's past medical history, or key information related to a pre-configured parameter configuration table. Medical personnel do not need to extract key information from multiple different data source devices based on personal experience, thus improving decision-making efficiency and enhancing surgical outcomes and safety. Furthermore, determining the target parameter or target organ from physiological parameters from multiple different data source devices based on the first information breaks down information silos between different data source devices, reducing reliance on the personal experience of medical personnel when extracting key information.
[0087] On the one hand, an embodiment of this application provides an information display method for use in an operating room. For physiological parameters obtained from multiple different data source devices, a physiological organ diagram is first displayed in a first display area of the monitor based on the physiological parameters. Then, a target parameter or target organ is determined based on any one of the patient's current surgical type, the patient's past medical history, and a preset parameter configuration table. The target parameter or target organ is then displayed or highlighted. This allows the parameters and organs needed by medical staff to be highlighted in the first display area, enabling medical staff to quickly obtain key information related to the patient's current surgical type, or key information related to the patient's past medical history, or key information related to a pre-configured parameter configuration table. Medical staff do not need to extract key information from multiple different data source devices based on personal experience, improving decision-making efficiency and enhancing surgical outcomes and safety. Furthermore, determining the target parameter or target organ from physiological parameters from multiple different data source devices based on the first information breaks down information silos between different data source devices, reducing reliance on the personal experience of medical staff when extracting key information.
[0088] Other features and advantages 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 application. Attached Figure Description
[0089] 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.
[0090] Figure 1 A module block diagram of an information display system provided in an embodiment of this application;
[0091] Figure 2 A flowchart illustrating an information display method applied in an operating room, as provided in Embodiment 1 of this application;
[0092] Figure 3 A schematic diagram of physiological parameters and physiological organ diagrams displayed in a first display area according to an embodiment of this application;
[0093] Figure 4 A schematic diagram showing the connection of the interface display mode configuration module, the highlighting module, and the user configuration module included in the display module provided in the embodiments of this application;
[0094] Figure 5 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment 2 of this application;
[0095] Figure 6 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment 3 of this application;
[0096] Figure 7 A schematic diagram of physiological parameters and physiological organ diagrams displayed in a first display area provided in another embodiment of this application;
[0097] Figure 8 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment 4 of this application;
[0098] Figure 9 A schematic diagram showing the layout of a first selection box displayed in a second display area according to an embodiment of this application;
[0099] Figure 10 A schematic diagram of the layout of a first selection box displayed in a second display area provided for another embodiment of this application;
[0100] Figure 11 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment 5 of this application;
[0101] Figure 12 A schematic diagram showing the layout of a second selection box displayed in a third display area according to an embodiment of this application;
[0102] Figure 13 A schematic diagram showing the layout of the second selection box displayed in the third display area according to another embodiment of this application;
[0103] Figure 14 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment Six of this application;
[0104] Figure 15 The playback command provided in this application corresponds to a display diagram of a single moment;
[0105] Figure 16 A schematic diagram showing the playback command provided in this application corresponding to another moment;
[0106] Figure 17 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment 7 of this application;
[0107] Figure 18 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment 8 of this application;
[0108] Figure 19 This is a schematic diagram illustrating the display effect of dividing a sub-display area within a first display area, as provided in an embodiment of this application.
[0109] Figure 20 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment 9 of this application;
[0110] Figure 21 A schematic diagram illustrating one possible way of presenting the tilt angle of the lamp bed tower provided in an embodiment of this application;
[0111] Figure 22 A schematic diagram illustrating another way of presenting the tilt angle of the lamp bed tower provided in the embodiments of this application;
[0112] Figure 23 A flowchart illustrating an information display method applied in an operating room, provided in Embodiment 10 of this application; Figure 24 This is a schematic diagram of the structure of an information display system provided in an embodiment of this application. Detailed Implementation
[0113] 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.
[0114] 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.
[0115] 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.
[0116] During surgery, the efficiency of medical staff's decision-making hinges on their ability to quickly and accurately obtain the necessary patient information. In the operating room, the physiological information of a patient undergoing surgery often comes from multiple different data sources, such as information systems like HIS / LIS / CIS, life support equipment like monitors / ventilators / anesthesia machines, interactive peripherals like recorders / surgical cameras, environmental equipment like lights, beds, endoscopes / thermometers, and surgical equipment. During the procedure, medical staff need to obtain crucial information from these diverse data sources.
[0117] Although there are systems that display multiple information sources on a single interface, these systems simply pile information up on one screen. This forces medical staff to frequently switch between interfaces during surgery and to rely on their personal experience to extract key information from complex data, increasing the difficulty of information acquisition. This method of information presentation leads to low decision-making efficiency for medical staff, affecting patient safety and surgical outcomes.
[0118] like Figure 1 The diagram shown is a block diagram of an information display system according to an embodiment of this application. (Refer to...) Figure 1 The information display system includes a data acquisition module 110, a database 120, a display module 130, and a data playback module 140. The data acquisition module 110 is connected to both the database 120 and the display module 130, and the data playback module 140 is also connected to both the database 120 and the display module 130. The data acquisition module 110 is used to connect to multiple different data source devices to obtain the patient's physiological parameters and transmit these parameters to the display module 130 for display. The data acquisition module 110 also transmits the patient's physiological parameters to the database 120, where the database 120 stores them according to a unified database structure. The data playback module 140 can call up the parameter data stored in the database 120 and transmit it to the display module 130 for playback display.
[0119] It is understood that the information display system of this application embodiment can be deployed on a standalone information display device in the operating room or on an existing device in the operating room, as long as the device can store the corresponding parameter data, process the data, and display the information.
[0120] Figure 2 This is a flowchart illustrating an information display method applied in an operating room, as provided in an embodiment of this application. (Refer to...) Figure 2 The information display method includes, but is not limited to, steps 210 to 220.
[0121] Step 210: Obtain the patient's physiological parameters, control the display to show the physiological parameters in the first display area, and control the display to show a physiological organ diagram in the first display area based on the physiological parameters. The physiological organ diagram includes multiple organs, and the physiological parameters come from multiple different data source devices.
[0122] In this step, it can be done by Figure 1The data acquisition module 110 shown connects to multiple different data source devices, including but not limited to: CIS / HIS / LIS, ventilators / anesthesia machines, monitors, bedside lamp towers, temperature control units, surgical cameras / recorders, etc., to acquire the patient's physiological parameters. It is understood that different data source devices may provide different types of physiological parameters; therefore, the data acquisition module 110 acquires multimodal surgical data, including but not limited to patient physical examination information, medical history / allergy history, biochemical test / auxiliary examination results, real-time information from life support equipment such as monitors / ventilators / anesthesia machines, information from surgical equipment such as ultrasonic scalpels / electrosurgical units, and surgical video information. The data acquisition module 110 can also be configured with a configuration change module. Through this configuration change module, a preset configuration list can be modified. The data acquisition module 110 can collect data according to the configured configuration list, transmit the collected data to the database 120, and store it in the database 120 according to a unified database structure. The data acquisition module 110 also transmits the collected data to the display module 130 for display. By modifying the preset configuration list through this configuration change module, the specific needs of the hospital can be met.
[0123] Understandable, Figure 1 The display module 130 may include the display mentioned in this step. The display is configured with a first display area, which may occupy the entire display screen or only a part of the display screen. The first display area may display physiological parameters transmitted from the data acquisition module 110, and display physiological organ diagrams based on the physiological parameters, such as reference... Figure 3 As shown. Physiological organ diagrams may include, but are not limited to, sensory organs such as the eyes, ears, nose, and tongue, as well as internal organs such as the heart, liver, lungs, stomach, and kidneys.
[0124] Step 220: Obtain first information, determine the target organ based on the first information, highlight the target organ in the physiological organ diagram, and / or, determine the target parameter from the physiological parameters based on the first information, and highlight the target parameter in the first display area;
[0125] The first piece of information includes any one of the following: the patient's current surgical type; the patient's past medical history; or a pre-configured parameter configuration table.
[0126] In some embodiments, Figure 1 In addition to the display mentioned in step S210, the display module 130 may also include an interface display mode configuration module 131, a highlighting module 132, and a user configuration module 133, for example, see reference Figure 4As shown. The interface display mode configuration module 131 is used to configure a first display area on the monitor and display physiological parameters and organ diagrams within that area. It is understood that the interface display mode configuration module 131 can also configure the monitor to other display modes, such as directly displaying the patient's physiological parameters using curves, dividing the monitor into corresponding display areas according to different data source devices to display the physiological parameters collected by different data source devices, or recombining the physiological parameters according to human systems or organs before presenting them on the monitor, etc. The highlighting module 132 is used to determine the target parameters and target organs in the first display area, and to determine the method of highlighting the target parameters and target organs, for example, in open-chest surgery on young patients without complications. The highlighting module 132 highlights the most critical system (respiratory and circulatory system) and the most critical equipment (ventilation and anesthesia machine) based on the type of surgery and the patient's condition. After administering antiarrhythmic drugs, it highlights cardiac-related indicators that need attention, such as heart rate and arrhythmia alarm status. After vascular clamping during surgery, it highlights physiological parameters that need attention, such as blood oxygen and ventricular preload and afterload. In cases of previous hypothermia, it automatically highlights the patient's body temperature and temperature control settings. The user configuration module 133 allows medical staff to modify the pre-configured parameter configuration table so that the parameters and organs of interest can be personalized and highlighted in the first display area.
[0127] In this embodiment, the target organ is determined based on the first information, or the target parameter is determined from physiological parameters based on the first information. Specifically, the target parameter or target organ is determined based on any one of the patient's current surgical type, the patient's past medical history, or a pre-configured parameter table. This target parameter or target organ is then highlighted, allowing medical staff to quickly obtain key information related to the patient's current surgical type, past medical history, or pre-configured parameter table. Medical staff do not need to extract key information from multiple different data source devices based on personal experience, thus improving decision-making efficiency and enhancing surgical outcomes and safety. Furthermore, determining the target parameter or target organ from physiological parameters from multiple different data source devices based on the first information breaks down information silos between different data source devices, reducing reliance on the medical staff's personal experience when extracting key information.
[0128] In one embodiment, highlighting the target organ in the physiological organ diagram in step S220 includes:
[0129] In the physiological organ diagram, the target organ is subjected to at least one of the following display processing: color change processing; contour line addition processing; dynamic scaling processing; flashing processing.
[0130] In this embodiment, the target organ is highlighted in the physiological organ diagram by processing it. For example, the color of the target organ can be changed to be different from the colors of other organs; an outline can be added around the target organ while no outline is added around other organs, making the target organ clearly distinguishable; the target organ can be continuously zoomed in and out, or flashed, giving it a dynamic display effect that clearly distinguishes it from other organs with static displays. It is understood that the above methods of processing the target organ can be used in combination.
[0131] In one embodiment, highlighting the target organ in the physiological organ diagram in step S220 includes:
[0132] In the physiological organ diagram, organs other than the target organ are displayed using at least one of the following methods: hiding; dimming.
[0133] In this embodiment, the target organ is highlighted in the physiological organ diagram by processing other organs besides the target organ. For example, other organs are hidden and only the target organ is displayed; or other organs are faded so that there is a clear difference in color depth between the target organ and other organs.
[0134] In one embodiment, highlighting the target parameter in the first display area in step S220 includes:
[0135] In the first display area, the target parameter is subjected to at least one of the following display processing: color change; bolding; adding borders; dynamic scaling; blinking; or moving to the target area for display.
[0136] In this embodiment, the target parameter is processed to highlight the organ relative to other physiological parameters. For example, the color of the target parameter can be changed to be different from the colors of other physiological parameters; a border can be added around the target parameter while other parameters are not, making the target parameter clearly distinguishable; the target parameter can be continuously zoomed in and out, or flashed, giving it a dynamic display effect that clearly distinguishes it from other physiological parameters with static displays; a highlighting area can be defined within the first display area, and the physiological parameter to be highlighted can be moved from its original display position to this target area for display. It is understood that the above methods of processing the target parameter can be used in combination.
[0137] In one embodiment, highlighting the target parameter in the first display area in step S220 includes:
[0138] In the first display area, other physiological parameters besides the target parameter are displayed using at least one of the following methods: hiding; dimming.
[0139] In this embodiment, other physiological parameters besides the target parameter are processed to highlight the target parameter in the physiological parameter graph compared to other physiological parameters. For example, other physiological parameters are hidden and only the target parameter is displayed; or other physiological parameters are diluted so that there is a clear difference in color depth between the target parameter and other physiological parameters.
[0140] Reference Figure 5 In one embodiment, the information display method of this application further includes step S510:
[0141] Step S510: Obtain surgical progress information and update the target organ and / or target parameters based on the surgical progress information.
[0142] The surgical progress information is obtained based on the time elapsed since the start of the surgery, or based on the user's input.
[0143] In this embodiment, since the target organs or parameters that medical staff need to focus on differ as the surgical procedure progresses, the target organs or parameters are updated according to the changing surgical information. This allows medical staff to promptly monitor the patient's key information at different stages, accurately assess the patient's condition, and make decisions regarding surgical actions. Furthermore, depending on the type of surgery, for surgeries with relatively stable durations at each stage, the corresponding surgical progress information can be obtained directly after the preset time has elapsed since the start of the surgery. For surgeries with indistinct durations at each stage, the user can input information to obtain the corresponding surgical progress information; for example, medical staff can send signals by touching physical buttons, clicking on the display screen, or operating a remote control.
[0144] Reference Figure 5 In one embodiment, the information display method of this application further includes step S520:
[0145] Step S520: Obtain surgical operation information and update the target organ and / or target parameters based on the surgical operation information; wherein, the surgical operation information is obtained by the surgical device or based on the user's input operation.
[0146] In this embodiment, after performing surgical procedures on a patient, medical staff may need to focus on certain organs and physiological parameters. Therefore, updating the target organs or parameters based on the surgical procedure information allows medical staff to promptly monitor the patient's key information after the procedure, accurately assess the patient's condition, and make subsequent surgical decisions. If medical staff use surgical equipment capable of communicating with the information display system of this embodiment, they can directly obtain the corresponding surgical procedure information from the equipment. For surgical equipment that cannot communicate with the information display system of this embodiment, medical staff need to perform input operations such as touching physical buttons, clicking the display screen, or operating a remote control.
[0147] Reference Figure 5 In one embodiment, the information display method of this application further includes step S530:
[0148] Step S530: Obtain medication operation information and update the target organ and / or target parameters based on the medication operation information; wherein, the surgical operation information is obtained by the medication device or based on the user's input operation.
[0149] Similarly, in this embodiment, after administering medication to a patient, medical staff may need to focus on certain organs and physiological parameters. Therefore, updating the target organ or parameters based on the medication administration information allows medical staff to promptly monitor the patient's key information after administration, accurately assess the patient's condition, and make subsequent surgical decisions. If medical staff use a medication administration device that can communicate with the information display system of this embodiment, they can directly obtain the corresponding medication administration information from the device. For medication administration devices that cannot communicate with the information display system of this embodiment, medical staff need to perform input operations such as touching physical buttons, clicking the display screen, or operating a remote control.
[0150] Reference Figure 6 In one embodiment, the information display method of this application further includes step S610:
[0151] Step S610: When the physiological parameters corresponding to any organ in the physiological organ diagram exceed a preset range, the organ is identified as a warning organ and highlighted in the physiological organ diagram. In some embodiments, the display methods of the target organ and the warning organ are different.
[0152] In this embodiment, by setting a preset range for each physiological parameter, if the physiological parameter corresponding to any organ exceeds the preset range during the operation, it indicates that the patient may face risks and requires close attention from medical staff. Therefore, this organ is designated as a warning organ and highlighted to facilitate timely detection of abnormalities and appropriate responses by medical staff. It is understood that the highlighted warning organ in this step can be either a target organ or a non-target organ. Furthermore, to facilitate further differentiation between the pre-highlighted target organ and the warning organ, the highlighting method used for the warning organ and the target organ should be different. For example, other organs besides the target and warning organs are displayed in gray, the target organ is highlighted in yellow, and the warning organ can be highlighted in a brighter red to more easily attract the attention of medical staff and draw their focus to it.
[0153] Reference Figure 6 In one embodiment, the information display method of this application further includes step S620:
[0154] Step S620: When a physiological parameter exceeds a preset range, the physiological parameter is identified as an alarm parameter and highlighted in the first display area. In some embodiments, the target parameter and the alarm parameter are displayed differently.
[0155] In this embodiment, by setting a preset range for each physiological parameter, if any physiological parameter exceeds the preset range during the operation, it indicates that the patient may face risks and requires close attention from medical staff. Therefore, this physiological parameter is designated as a warning parameter and highlighted to facilitate timely detection of abnormalities by medical staff and prompt appropriate action. It is understood that the highlighted warning parameter in this step can be either a target parameter or a non-target parameter. Furthermore, to facilitate further differentiation by medical staff from the pre-highlighted target parameters, the highlighting method used for the warning parameter in this step should differ from that of the target parameter. For example, organs other than the target and warning parameters can be displayed in black or gray, while target organs can be highlighted in yellow or with added outlines. Warning parameters can be highlighted using a brighter red or dynamic display effects to more easily attract the attention of medical staff and draw their focus to the warning parameter.
[0156] In one embodiment, when a target parameter or warning parameter is associated with an organ in a physiological organ diagram, the target parameter or warning parameter is displayed near the associated organ.
[0157] In this embodiment, refer to Figure 3 As shown, the target parameter for urine volume in the physiological parameters is associated with the kidney in the physiological organ diagram. Therefore, the target parameter for urine volume can be displayed near the kidney. Similarly, the target parameter for the bispectral index (BIS) in the physiological parameters is associated with the brain in the physiological organ diagram. Therefore, the target parameter for BIS can be displayed near the brain. This allows medical staff to simultaneously view the organ status and related physiological parameters, improving the efficiency of medical staff in obtaining key information.
[0158] In one embodiment, the physiological parameters are displayed in the first display area in at least one of the following formats: text, numerical values, graphics, images, and lists, such as reference... Figure 3 and Figure 7 As shown.
[0159] In this embodiment, physiological parameters are displayed in text or numerical form, which can be referred to as... Figure 3 The human body temperature displayed in the upper left corner, whether as text or numerical value, is a commonly used display method; physiological parameters can be displayed graphically, as shown in [reference needed]. Figure 7 The graph shown in the lower center is an example; physiological parameters can be displayed graphically for reference. Figure 7 The long bar chart shown in the lower left corner can also be used, or a pie chart could also be used; physiological parameters can also be displayed in a list format. Figure 3 The table of parameters related to the circulatory and respiratory systems is shown below.
[0160] Reference Figure 8 In one embodiment, the information display method of this application further includes steps S810 to S820:
[0161] Step S810: Display the first selection box in the second display area of the display.
[0162] In this step, the second display area can be either a portion of the first display area or an area outside the first display area. Furthermore, the first selection boxes displayed in the second display area correspond to various organs, and these first selection boxes can be as follows: Figure 9 Multiple primary selection boxes can be displayed in a typical tiled manner, or as follows: Figure 10 Generally, multiple primary selection boxes are displayed using a drop-down filter list.
[0163] Step S820: Determine the corresponding target organ based on the click information of the first selection box, and highlight the target organ in the physiological organ diagram.
[0164] In this embodiment, steps S810 and S820 can be performed by... Figure 4 The user configuration module 133 of the display module 130 enables medical staff to directly select some organs as target organs through the user configuration module 133, allowing medical staff to personalize the display based on the actual situation of the patient, so as to better present the organs that medical staff are most concerned about.
[0165] Reference Figure 11 In one embodiment, the information display method of this application further includes steps S1110 to S1120:
[0166] Step S1110: Display the second selection box in the third display area of the monitor;
[0167] In this step, the third display area can be either a portion of the first display area or an area outside the first display area. Furthermore, the second selection boxes displayed in the third display area correspond to various physiological parameters, such as... Figure 12 Multiple selection boxes can be displayed in a typical tiled manner, or as follows: Figure 13 Multiple secondary selection boxes are typically displayed using a drop-down filter list.
[0168] Step S1120: Determine the corresponding target parameter based on the click information of the second selection box, and highlight the target parameter in the first display area.
[0169] In this embodiment, steps S1110 and S1120 can be performed by... Figure 4The user configuration module 133 of the display module 130 enables medical staff to directly select some physiological parameters as target parameters through the user configuration module 133. This allows medical staff to personalize the display based on the patient's actual situation, so as to better present the parameters that medical staff are most concerned about.
[0170] Reference Figure 14 In one embodiment, the information display method of this application further includes steps S1410 to S1420:
[0171] Step S1410: When a playback command is received, obtain the target organ and target parameters at the corresponding moment of the playback command;
[0172] Step S1420: Highlight the target organ in the physiological organ diagram, and / or highlight the target parameter in the first display area.
[0173] In this embodiment, step S1410 can be performed by... Figure 1 The data playback module 140 implements this. Upon receiving a playback command, the data playback module 140 retrieves the stored physiological parameters from the database 120 and obtains the target organ and target parameters at the corresponding moment of the playback command. Then, the display module 130 implements step S1420, allowing medical staff to view the patient's historical data or historical status. It is understandable that... Figure 1 The data playback module 140 can replay the patient's condition based on the needs of medical staff, so as to better review the changes in the patient's condition and thus accurately analyze the cause of the disease. Figure 1 Database 120 uses a unified data storage format to store patient physical examination information, surgical information, real-time patient monitoring information collected by devices such as ECG monitors / ventilators / anesthesia machines, intraoperative medication / operation / physiological monitoring information, ECG / biochemical test information, postoperative monitoring information / complication / outcome information, and other surgical data. Data playback module 140 provides a playback mode configuration module to set playback methods, such as jumping according to alarm events, intraoperative operations, timed jumps, or setting playback speed, and performing operations such as pausing and zooming during playback. When playing back the data stored in database 120, the interface displays the complete state at the jump time. Figure 15 and Figure 16 These are schematic diagrams showing the playback command at two different times.
[0174] Reference Figure 17 In one embodiment, the information display method of this application further includes steps S1710 to S1720:
[0175] Step S1710: When a playback command is received, obtain all physiological parameters at the corresponding moment of the playback command;
[0176] Step S1720: Display the target organ in the physiological organ diagram according to the display mode at the current time, and / or display the target parameters in the first display area.
[0177] This embodiment is compared to Figure 14 In terms of the embodiments, the difference is that Figure 14 The display is based on the display method of the corresponding moment of the playback command, while this embodiment displays it according to the display method of the current moment. That is, in this embodiment, only the physiological parameters of the corresponding moment of the playback command are called, and then the target organ or target parameter is determined and highlighted according to the current display method, which makes it easier for medical staff to compare the differences of the same target organ or target parameter at different times.
[0178] In one embodiment, the display method for the current moment is determined in the following way:
[0179] Display the third selection box in the fourth display area of the monitor;
[0180] The corresponding target organ and / or target parameters are determined based on the click information of the third selection box.
[0181] In this embodiment, during playback, a fourth display area is configured on the monitor, and a third selection box is displayed for medical staff to click and select. This allows medical staff to determine the historical data to be viewed based on the patient's actual situation and to highlight it in a personalized manner. Furthermore, the fourth display area can be a portion of the first display area or an area outside the first display area. When using the third selection box to determine the target organ, it can refer to... Figure 9 or Figure 10 As shown, when using the third selection box to determine the target parameters, you can refer to... Figure 12 or Figure 13 As shown.
[0182] In one embodiment, the corresponding time of the playback instruction is obtained in the following way:
[0183] The playback timeline is displayed in the fifth display area of the monitor; the fifth display area can be a portion of the first display area or an area outside the first display area; one implementation of the playback timeline can be found in [reference needed]. Figure 15 and Figure 16 The bottom area is shown;
[0184] The corresponding moment of the playback command is determined based on the click information on the playback timeline.
[0185] In this embodiment, a fifth display area is configured on the display, and a playback timeline is displayed so that medical staff can easily click on the playback timeline to determine the corresponding moment of the playback command, and then view the patient's historical data or historical status on the display.
[0186] In one embodiment, the playback timeline is provided with several node icons corresponding to time points or surgical progress.
[0187] In this embodiment, the time points set on the playback timeline can divide the playback timeline into multiple different time periods. For example, the time points set on the playback timeline correspond to the hour, with an interval of one or two hours between the two time points, allowing medical staff to more easily locate the time they want to view. Similarly, the node icons set on the playback timeline corresponding to the surgical process can also divide the playback timeline into multiple different time periods, with two node icons corresponding to a surgical stage, allowing medical staff to more easily locate the corresponding time in the surgical stage they want to view.
[0188] Reference Figure 18 In one embodiment, highlighting the target parameter in the first display area in step S220 includes steps S1810 to S1820:
[0189] Step S1810: Divide the first display area into multiple sub-display areas, each corresponding to a multiple data source device;
[0190] In step S1820, the physiological parameters of the corresponding data source device are displayed in the sub-display area, and the target parameter is highlighted.
[0191] In this embodiment, sub-display areas are divided into the first display area to display the physiological parameters of the corresponding data source devices, and the display effect is as follows: Figure 19 As shown, Figure 19 The left side of the display is divided into five sub-display areas from top to bottom, which can comprehensively display the physiological parameters obtained from various data source devices. On this basis, the target parameters are highlighted, making it easier for medical staff to extract key information from the target parameters. This display method can take into account both the comprehensive display of physiological parameters and the key display of target parameters, which helps to improve the accuracy of medical staff's decision-making.
[0192] Reference Figure 20 In one embodiment, the information display method of this application further includes steps S2010 to S2020:
[0193] In step S2010, a fourth selection box corresponding to the data source device for the physiological parameters is displayed in the sixth display area of the display. The data source device includes at least one of monitoring equipment, surgical equipment, imaging equipment, and in vitro diagnostic equipment. The sixth display area can be a portion of the first display area or an area outside the first display area.
[0194] Step S2020: Obtain the click information of the fourth selection box, and switch the display screen of the first display area to the information display interface of the data source device corresponding to the click information.
[0195] In this embodiment, the difference is... Figure 19 The illustrated embodiment divides the first display area into sub-display areas to display the physiological parameters of the corresponding data source device. In this embodiment, the fourth selection box displayed in the sixth display area serves as a jump button for switching display interfaces. Medical staff can click the fourth selection box to switch from the display screen of the first display area to the information display interface of the data source device corresponding to the clicked information. This allows them to easily jump to the information display interfaces of different data source devices and thus comprehensively view the patient data collected by the data source device.
[0196] In some embodiments, medical staff can... Figure 4 The interface display mode configuration module 131 is used to select the display mode of the monitor. For example, the first display mode can be the display method commonly used in current hand anesthesia systems in the industry, which only displays a few physiological parameter curves and a small amount of medication information on the display area of the monitor. For example, refer to Figure 7 The first type is the right-hand display area shown in the image; the second type is a multi-device display mode, which, based on the first display mode, adds several sub-display windows corresponding to different devices such as monitors to the display area of the monitor. Each sub-display window displays the patient data collected by one device, allowing medical staff to simultaneously view the device display information of different devices on the monitor interface. For example, refer to... Figure 19The third type is a display mode based on treatment operations. In this mode, key physiological indicators affected by manual operations and medication operations are grouped together. For example, during atrial fibrillation ablation surgery, information strongly related to the surgery, such as heart rate and arrhythmia status, is grouped together for display, making it easier for medical staff to assess the impact of surgical and medication operations. The fourth type is a display mode based on system or organ classification. The patient's physiological parameters are not classified according to the source of the data acquisition device, but are recombined and presented according to system or organ classification. For example, blood oxygen, heart rate, blood pressure, and inhaled oxygen concentration / terminal carbon dioxide, although they come from different devices such as monitors and ventilators, are all related to the circulatory system / heart from a physiological perspective and reflect the state of the circulatory system. Therefore, they are grouped together to facilitate medical staff to view all related information and assess the state of the system or organ. For the fourth display mode, key parameters of detection devices such as lamp bed towers and temperature control stations can be presented indirectly. For example, for a temperature control station, icons such as snowflakes (for low temperatures) and flames (for high temperatures) can be displayed outside the organ / human body diagram based on the measured room temperature. For lamp bed towers, two states can be presented: one is by adding an angle tilt icon next to the physiological organ diagram as a virtual bed image, changing the tilt angle, folding degree, etc., according to the current lamp bed tower settings, for example, referring to... Figure 21 As shown; another method is to directly adjust the display angle of the physiological organ diagram based on the tilt angle detected by the lamp bed tower, for example, referring to... Figure 22 As shown.
[0197] The information display method for operating rooms provided in this application can completely save and display various physiological parameters, biochemical indicators, risk assessments, medication / treatment information, etc. of patients during surgery. It can also present the patient's vital signs / position (to understand the patient's real-time status during surgery), real-time surgical video (to reproduce the surgical scene), and the current working status of various surgical equipment (to understand the operational details of the surgery), enabling medical staff to have a comprehensive understanding of patient information and surgical conditions. At the same time, by changing the configuration of the user configuration module, the patient's information display can be comprehensive, the overall status can be intuitive, and key information can be highlighted. This can meet the needs of different hospitals and different medical staff to highlight key information for different patients, thereby better serving intraoperative decision support, postoperative teaching, and scientific research.
[0198] Additionally, refer to Figure 23 This application embodiment also provides an information display method for use in an operating room, including but not limited to steps S2310 to S2320:
[0199] Step S2310: Acquire the patient's physiological parameters, and control the display to show a physiological organ diagram in the first display area based on the physiological parameters. The physiological organ diagram includes multiple organs, and the physiological parameters come from multiple different data source devices. In this step, it is possible to... Figure 1 The data acquisition module 110 shown connects to multiple different data source devices, including but not limited to: CIS / HIS / LIS, ventilators / anesthesia machines, monitors, bedside lamp towers, temperature control units, surgical cameras / recorders, etc., to acquire the patient's physiological parameters. It is understood that different data source devices may provide different types of physiological parameters; therefore, the data acquisition module 110 acquires multimodal surgical data, including but not limited to patient physical examination information, medical history / allergy history, biochemical test / auxiliary examination results, real-time information from life support equipment such as monitors / ventilators / anesthesia machines, information from surgical equipment such as ultrasonic scalpels / electrosurgical units, and surgical video information. The data acquisition module 110 can also be configured with a configuration change module. Through this configuration change module, a preset configuration list can be modified. The data acquisition module 110 can collect data according to the configured configuration list, transmit the collected data to the database 120, and store it in the database 120 according to a unified database structure. The data acquisition module 110 also transmits the collected data to the display module 130 for display. By modifying the preset configuration list through this configuration change module, the specific needs of the hospital can be met.
[0200] Step S2320: Obtain first information, determine the target organ based on the first information, highlight the target organ in the physiological organ diagram, and / or, determine the target parameter from the physiological parameters based on the first information, and display the target parameter in the first display area;
[0201] The first piece of information includes any one of the following: the patient's current surgical type; the patient's past medical history; or a pre-configured parameter configuration table.
[0202] Compared to Figure 2 The information display method shown in this embodiment does not display the patient's physiological parameters in the first display area of the display, but only displays the physiological organ diagram, which makes the initial display interface more concise and intuitive.
[0203] In this embodiment, for physiological parameters obtained from multiple different data source devices, a physiological organ diagram is first displayed in the first display area of the monitor based on the physiological parameters. Then, the target parameter or target organ is determined based on the patient's current surgical type, the patient's past medical history, or any one of the preset parameter configuration tables. The target parameter or target organ is then displayed or highlighted, allowing the parameters and organs needed by medical staff to be highlighted in the first display area. Medical staff can quickly obtain key information related to the patient's current surgical type, or key information related to the patient's past medical history, or key information related to the pre-configured parameter configuration table. Medical staff do not need to extract key information from multiple different data source devices based on personal experience, improving the decision-making efficiency of medical staff and enhancing surgical outcomes and safety. In addition, determining the target parameter or target organ from physiological parameters from multiple different data source devices based on the first information breaks down the information silos between different data source devices and reduces the dependence on the personal experience of medical staff when extracting key information.
[0204] Additionally, it should be noted that, with Figure 2 The various embodiments of the information display method shown can also be similarly associated with other methods. Figure 23 The information display method shown can achieve the same effect, and will not be elaborated on here.
[0205] Reference Figure 24 This application provides an information display system 2400, which includes a memory 2410 and a processor 2420. The memory 2410 stores a computer program, and the processor 2420 executes the computer program to implement the information display method as described in any of the above embodiments, for example, executing... Figure 2 Method steps S210 to S230, execution Figure 5 Method steps S210 to S530, execution Figure 6 Method steps S610 to S620, execution Figure 8 Method steps S810 to S820, execution Figure 11 Method steps S1110 to S1120, execution Figure 14 Method steps S1410 to S1420, execution Figure 17 Method steps S1710 to S1720, execution Figure 18 Method steps S1810 to S1820, execution Figure 20 Method steps S2010 to S2020 or execution Figure 23 Method steps S2310 to S2320.
[0206] 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.
[0207] 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.
[0208] 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.
[0209] 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.
[0210] It should also be understood that the various implementation methods provided in this application can be combined arbitrarily to achieve different technical effects.
[0211] 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. An information display method applied in an operating room, characterized in that, include: The system acquires the patient's physiological parameters, controls the display to show the physiological parameters in a first display area, and controls the display to show a physiological organ diagram in the first display area based on the physiological parameters. The physiological organ diagram includes multiple organs, and the physiological parameters come from multiple different data source devices. Obtain first information, determine the target organ based on the first information, highlight the target organ in the physiological organ diagram, and / or determine the target parameter from the physiological parameters based on the first information, highlight the target parameter in the first display area; Wherein, the first information includes any one of the following: The patient's current surgical procedure; The patient's past medical history; A pre-configured parameter configuration table.
2. The information display method according to claim 1, characterized in that, Highlighting the target organ in the physiological organ diagram includes: In the physiological organ diagram, the target organ undergoes at least one of the following display processes: Change the color processing; Add outline processing; Dynamic scaling processing; Flashing handling.
3. The information display method according to claim 1, characterized in that, Highlighting the target organ in the physiological organ diagram includes: In the physiological organ diagram, the display processing for organs other than the target organ includes at least one of the following: Hiding; Dilute it.
4. The information display method according to claim 1, characterized in that, Highlighting the target parameter in the first display area includes: In the first display area, the target parameter is displayed using at least one of the following methods: Change the color processing; Bold text; Add border lines; Dynamic scaling processing; Flashing removal; Move to the target area for display.
5. The information display method according to claim 1, characterized in that, Highlighting the target parameter in the first display area includes: In the first display area, at least one of the following display processing methods is applied to other physiological parameters besides the target parameter: Hiding; Dilute it.
6. The information display method according to claim 1, characterized in that, Also includes: Obtain surgical progress information and update the target organ and / or the target parameters based on the surgical progress information; The surgical progress information is obtained based on the time elapsed since the start of the surgery, or based on the user's input.
7. The information display method according to claim 1, characterized in that, Also includes: Obtain surgical operation information and update the target organ and / or the target parameters based on the surgical operation information; The surgical operation information is obtained by the surgical equipment or based on user input.
8. The information display method according to claim 1, characterized in that, Also includes: Obtain medication administration information and update the target organ and / or the target parameters based on the medication administration information; The surgical operation information is obtained by the medication administration device or based on the user's input.
9. The information display method according to claim 1, characterized in that, Also includes: When the physiological parameter corresponding to any organ in the physiological organ diagram exceeds the preset range, the organ is identified as a warning organ and the warning organ is highlighted in the physiological organ diagram.
10. The information display method according to claim 9, characterized in that, The target organ and the warning organ are displayed in different ways.
11. The information display method according to claim 1, characterized in that, Also includes: When the physiological parameter exceeds the preset range, the physiological parameter is determined as a warning parameter and the warning parameter is highlighted in the first display area.
12. The information display method according to claim 11, characterized in that, The target parameters and the warning parameters are displayed in different ways.
13. The information display method according to claim 11, characterized in that, When the target parameter or the warning parameter is associated with an organ in the physiological organ diagram, the target parameter or the warning parameter is displayed near the associated organ.
14. The information display method according to claim 1, characterized in that, The physiological parameters are displayed in the first display area in at least one of the following ways: text, numerical values, graphics, images, and lists.
15. The information display method according to claim 1, characterized in that, Also includes: A first selection box is displayed in the second display area of the display; The corresponding target organ is determined based on the click information of the first selection box, and the target organ is highlighted in the physiological organ diagram.
16. The information display method according to claim 1, characterized in that, Also includes: A second selection box is displayed in the third display area of the display; The target parameter is determined based on the click information of the second selection box, and the target parameter is highlighted in the first display area.
17. The information display method according to claim 1, characterized in that, Also includes: When a playback command is received, the target organ and target parameters at the corresponding moment of the playback command are obtained; The target organ is highlighted in the physiological organ diagram, and / or the target parameter is highlighted in the first display area.
18. The information display method according to claim 1, characterized in that, Also includes: When a playback command is received, all physiological parameters at the corresponding moment of the playback command are obtained; The target organ is displayed in the physiological organ diagram according to the current display mode, and / or the target parameter is displayed in the first display area.
19. The information display method according to claim 18, characterized in that, The display method for the current moment is determined in the following way: A third selection box is displayed in the fourth display area of the display; The corresponding target organ and / or target parameters are determined based on the click information of the third selection box.
20. The information display method according to claim 17 or 18, characterized in that, The corresponding time of the playback command is obtained in the following way: The playback timeline is displayed in the fifth display area of the display. The corresponding time of the playback command is determined based on the click information of the playback timeline.
21. The information display method according to claim 20, characterized in that, The playback timeline has several node icons corresponding to time points or surgical progress.
22. The information display method according to claim 1, characterized in that, Highlighting the target parameter in the first display area includes: The first display area is divided into multiple sub-display areas, each corresponding to one of the multiple data source devices; The physiological parameters of the corresponding data source device are displayed in the sub-display area, and the target parameter is highlighted.
23. The information display method according to claim 1, characterized in that, Also includes: A fourth selection box corresponding to the data source device for the physiological parameter is displayed in the sixth display area of the display. The data source device includes at least one of monitoring equipment, surgical equipment, imaging equipment, and in vitro diagnostic equipment. Obtain the click information of the fourth selection box, and switch the display screen of the first display area to the information display interface of the data source device corresponding to the click information.
24. An information display method applied in an operating room, characterized in that, include: The patient's physiological parameters are acquired, and the display is controlled to show a physiological organ diagram in the first display area based on the physiological parameters. The physiological organ diagram includes multiple organs, and the physiological parameters come from multiple different data source devices. Obtain first information, determine the target organ based on the first information, highlight the target organ in the physiological organ diagram, and / or determine the target parameter from the physiological parameters based on the first information, and display the target parameter in the first display area; Wherein, the first information includes any one of the following: The patient's current surgical procedure; The patient's past medical history; A pre-configured parameter configuration table.
25. An information display system, characterized in that, The information display system includes a memory and a processor. The memory stores a computer program, and the processor executes the computer program to implement the information display method as described in any one of claims 1 to 24.