Display method for medical equipment, medical system and medical equipment

CN119998889APending Publication Date: 2025-05-13FOURTH MILITARY MEDICAL UNIVERSITY +1
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Patent Information

Application Number
CN202380070316.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2022-09-30
Filing Date
2023-09-28
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

Doctors need to frequently switch between multiple device interfaces to monitor and adjust physiological parameters when administering anesthesia, resulting in low work efficiency and an increased risk of misoperation.

Method used

By providing a user interactive interface, according to the grouping of physiological parameters and control parameters, the medical data and operation interfaces in the same group are associated and displayed, allowing doctors to intuitively view and adjust related physiological parameters and control parameters on one interface, reducing interface switching.

Benefits of technology

It improves doctors' work efficiency, reduces the probability of medical errors, enables doctors to make more timely decisions and adjust treatment plans, and reduces the monitoring and reaction time of physiological status.

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Abstract

The invention discloses a display method for medical equipment, a medical system and the medical equipment. The display method for the medical equipment comprises the following steps: acquiring medical data of a medical object provided by monitoring equipment; data of control parameters of treatment equipment for providing treatment for the medical object is obtained, and the treatment equipment is used for providing treatment for the medical object based on the control parameters so as to influence medical data of the medical object; determining groups of the physiological parameters and the control parameters, wherein each group comprises at least one physiological parameter and at least one control parameter capable of influencing the physiological parameters; providing a user interaction interface, and displaying the medical data in the same group and an operation interface for adjusting control parameters in an associated manner on the user interaction interface; when an adjusting instruction for the control parameters is obtained, the adjusting instruction is fed back to the treatment equipment. The medical data and the control parameters are displayed in groups, so that the working efficiency of medical staff can be improved.
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Description

Display method for medical equipment, medical system and medical equipment

[0001] manual Technical Field

[0002] The present application relates to the field of medical equipment, and more specifically to a display method, a medical system, and a medical device for medical equipment. Background Art

[0003] When administering anesthesia, doctors need to monitor multiple physiological parameters of the patient to ensure safe surgery and anesthesia, and adjust life support and medication administration based on the patient's condition. In traditional anesthesia, the physiological parameters doctors need to monitor and the life support and medications they need to adjust are often located on different devices. This causes the doctor's workflow to switch between the interfaces of multiple devices, causing significant inconvenience. For example, if a doctor observes that a patient's physiological parameters on the monitor are outside the expected range and require adjustment, they must switch to the anesthesia machine to adjust inhaled anesthetics and ventilation, or to the syringe pump to adjust intravenous medications. This switching between multiple devices not only reduces efficiency but also increases the potential risk of misjudgment and misoperation.

[0004] One possible solution is to bring the display interfaces of various devices closer together through screen mirroring, or to display information from multiple devices simultaneously on a single large screen, hoping to make it easier for doctors to switch between interfaces. However, this approach separates the display interfaces by device or information source, such as monitor area, anesthesia machine area, and syringe pump area. This does not organically integrate the information, and doctors still need to search for the information they need in each partitioned interface before switching to another area to perform operations.

[0005] Summary of the Invention

[0006] The Summary of the Invention introduces a series of simplified concepts that will be further described in the Detailed Description of the Invention. The Summary of the Invention of this application is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.

[0007] A first aspect of an embodiment of the present application provides a display method for a medical device, comprising:

[0008] Acquiring medical data of a medical subject provided by a monitoring device, wherein the medical data includes data related to one or more physiological parameters of the medical subject;

[0009] acquiring data of control parameters of a treatment device for providing treatment to the medical subject, wherein the treatment device is configured to provide treatment to the medical subject based on the control parameters so as to affect the medical data of the medical subject;

[0010] Providing a user interaction interface on which, based on the grouping of the physiological parameters and the control parameters, medical data related to the physiological parameters and an operation interface for adjusting the control parameters within the same group are displayed in association; wherein each of the groups includes at least one physiological parameter and at least one control parameter capable of affecting the medical data related to the physiological parameter; and

[0011] When an adjustment instruction for the control parameter is obtained, the adjustment instruction is fed back to the treatment device.

[0012] A second aspect of an embodiment of the present application provides a medical system, the medical system comprising:

[0013] A monitoring device for acquiring medical data of a medical subject, wherein the medical data includes data related to one or more physiological parameters of the medical subject;

[0014] a treatment device, configured to provide treatment to the medical subject based on control parameters to affect the medical data, the monitoring device being communicatively connected to the treatment device;

[0015] A user interaction device, wherein the user interaction device is a user interaction device of the monitoring device, the treatment device, or a third-party device, and the third-party device is communicatively connected with the monitoring device and the treatment device;

[0016] The user interaction device is used to: provide a user interaction interface, on which, based on the grouping of the physiological parameters and the control parameters, the medical data related to the physiological parameters and the operation interface for adjusting the control parameters within the same group are associated and displayed, or the medical data and the control parameters within the same group are associated and displayed, and adjustment instructions for the control parameters are obtained, and the obtained adjustment instructions are fed back to the treatment device; wherein each of the groups includes at least one physiological parameter and at least one control parameter that can affect the medical data related to the physiological parameter.

[0017] A third aspect of the present application provides a display method for a medical device, the method comprising:

[0018] Acquiring medical data of a medical subject, wherein the medical data includes data related to one or more physiological parameters of the medical subject;

[0019] acquiring data of control parameters for providing treatment to the medical subject, the medical device being configured to provide treatment to the medical subject based on the control parameters to affect the medical data of the medical subject;

[0020] determining groups of the physiological parameters and the control parameters, each group including at least one physiological parameter and at least one control parameter capable of influencing medical data related to the physiological parameter;

[0021] Providing a user interaction interface on which medical data related to the physiological parameters and an operation interface for adjusting the control parameters in the same group are displayed in association, or the medical data and the control parameter data in the same group are displayed in association;

[0022] When an adjustment instruction for the control parameter is obtained, the control parameter is adjusted according to the adjustment instruction.

[0023] A fourth aspect of the embodiments of the present application provides a medical device, comprising:

[0024] a monitoring unit, configured to obtain medical data of a medical subject, wherein the medical data includes data related to one or more physiological parameters of the medical subject;

[0025] a treatment unit for providing treatment to the medical subject based on control parameters to affect the medical data;

[0026] A user interaction unit, used to provide a user interaction interface;

[0027] Control unit for:

[0028] Controlling the user interaction unit to display, on the user interaction interface, based on the grouping of the physiological parameters and the control parameters, the medical data related to the physiological parameters and the operation interface for adjusting the control parameters within the same group, or the medical data and the control parameter data within the same group; wherein each of the groups includes at least one physiological parameter and at least one control parameter capable of affecting the medical data related to the physiological parameter; and

[0029] When an adjustment instruction for the control parameter is obtained, the control parameter is adjusted according to the adjustment instruction.

[0030] According to the display method, medical system and medical device for medical equipment in the embodiments of the present application, the medical data related to physiological parameters and the operation interface for adjusting control parameters in the same group are displayed in association with each other, which can enable users to more intuitively judge the current physiological state of the medical object and make more timely decisions on whether to adjust the control parameters and how to adjust the control parameters. At the same time, after the control parameters are adjusted, the reaction of the physiological state of the medical object to it can be observed in time, thereby improving the work efficiency of doctors and reducing the probability of medical errors. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0032] In the attached figure:

[0033] FIG1 is a schematic flowchart of a display method for a medical device according to an embodiment of the present application;

[0034] FIG2 is a schematic diagram showing an associated display of medical data in the same group and an operation interface for adjusting control parameters according to an embodiment of the present application;

[0035] FIG3 is a schematic diagram showing a user interaction interface according to an embodiment of the present application;

[0036] FIG4 shows a schematic block diagram of a medical system according to an embodiment of the present application;

[0037] FIG5 is a schematic flowchart showing a display method for a medical device according to another embodiment of the present application;

[0038] FIG6 is a schematic flowchart showing a display method for a medical device according to another embodiment of the present application;

[0039] FIG7 shows a schematic block diagram of a medical device according to an embodiment of the present application. DETAILED DESCRIPTION

[0040] In order to make the purpose, technical solutions and advantages of the present application more apparent, the following is a detailed description of example embodiments of the present application with reference to the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application, and it should be understood that the present application is not limited to the example embodiments described herein. Based on the embodiments of the present application described in this application, all other embodiments obtained by those skilled in the art without creative work should fall within the scope of protection of this application.

[0041] In the following description, a large number of specific details are provided to provide a more thorough understanding of the present application. However, it will be apparent to those skilled in the art that the present application can be implemented without one or more of these details. In other examples, some technical features well known in the art are not described in order to avoid confusion with the present application.

[0042] It should be understood that the present application can be implemented in different forms and should not be interpreted as being limited to the embodiments set forth herein. On the contrary, providing these embodiments will make the disclosure thorough and complete and will fully convey the scope of the present application to those skilled in the art.

[0043] The purpose of the terms used herein is only to describe specific embodiments and is not intended to limit the present application. When used herein, the singular forms "a", "an" and "said / the" are also intended to include the plural forms, unless the context clearly indicates otherwise. It should also be understood that the terms "comprising" and / or "comprising", when used in this specification, determine the presence of the features, integers, steps, operations, elements and / or parts, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, parts and / or groups. When used herein, the term "and / or" includes any and all combinations of the relevant listed items. In addition, the present application can be implemented in a variety of different forms and is not limited to the embodiments described in this embodiment. The purpose of providing the following specific embodiments is to facilitate a clearer and more thorough understanding of the disclosure of the present application, wherein words indicating directions such as up, down, left, right, etc. are only with respect to the position of the structure shown in the corresponding drawings.

[0044] In order to fully understand the present application, a detailed structure will be provided in the following description to illustrate the technical solution proposed by the present application. The optional embodiments of the present application are described in detail below. However, in addition to these detailed descriptions, the present application may also have other implementation methods.

[0045] Below, the display method for medical devices according to an embodiment of the present application will be described with reference to the accompanying drawings. First, refer to Figure 1, which is a schematic flow chart of a display method 100 for medical devices according to an embodiment of the present application. As shown in Figure 1, the display method 100 for medical devices according to an embodiment of the present application includes the following steps:

[0046] In step S110, medical data of the medical subject provided by the monitoring device is obtained, wherein the medical data includes data related to one or more physiological parameters of the medical subject. Specifically, the medical data may be monitoring data of one or more physiological parameters of the medical subject, or monitoring results obtained based on the monitoring data of one or more physiological parameters, or both.

[0047] At step S120, data of control parameters of a treatment device for providing treatment to the medical subject is acquired, wherein the treatment device is used to provide treatment to the medical subject based on the control parameters to affect the medical data of the medical subject;

[0048] In step S130, a user interaction interface is provided. Based on the grouping of physiological parameters and control parameters, medical data related to the physiological parameters and an operation interface for adjusting the control parameters within the same group are displayed in association on the user interaction interface; wherein each group includes at least one physiological parameter and at least one control parameter capable of affecting the medical data related to the physiological parameter;

[0049] In step S140, when an adjustment instruction for the control parameter is obtained, the adjustment instruction is fed back to the treatment device.

[0050] The display method 100 for medical equipment in an embodiment of the present application can be implemented in a monitoring device, a treatment device, or a third-party device that is communicatively connected to the monitoring device and the treatment device. By providing a user interaction interface on the user interaction device of the above-mentioned device, and associating and displaying medical data in the same group and an operation interface for adjusting control parameters on the user interaction interface, the user can quickly find the operation interface associated with the medical data of interest and perform operations, thereby completing the entire workflow of intraoperative monitoring, drug administration, life support, etc. more simply and smoothly.

[0051] The medical data of a medical subject may include monitoring data of the subject's physiological parameters, or monitoring results derived from the monitoring data of the physiological parameters. The monitoring data of the subject's physiological parameters include, but are not limited to, values ​​of physiological parameters such as electrocardiogram (ECG), blood pressure, pulse oximetry, respiration, body temperature, cardiac output, carbon dioxide, respiratory mechanics parameters, hemodynamic parameters, oxygen metabolism parameters, EEG parameters, bispectral index, and microcirculatory parameters. Monitoring results derived from the monitoring data of physiological parameters may include parameter alarm information derived from the monitoring data of physiological parameters, such as an over-limit alarm message triggered when the value of a physiological parameter exceeds a preset threshold. Monitoring results derived from the monitoring data of physiological parameters may also be a patient's physiological state derived from the monitoring data of multiple physiological parameters. The patient's physiological state may include at least one of the patient's overall state, the state of a physiological system, the state of an organ, the state of a physiological part, and the state of a tissue. The monitoring data of physiological parameters may be acquired by a monitoring device. Exemplarily, the monitoring device may be any medical device capable of monitoring physiological parameters, including but not limited to a monitor, a ventilator, an anesthesia machine, etc. The monitoring device is used to detect the physiological parameters of the medical subject. For example, the physiological parameters detected by the monitor include but are not limited to basic vital signs parameters such as electrocardiogram, heart rate, blood pressure, and blood oxygen; the physiological parameters monitored by the anesthesia machine include but are not limited to sedation and muscle relaxation parameters such as EEG signals, BIS (bispectral index), and neuromuscular electrical signals; the physiological parameters monitored by the ventilator include but are not limited to respiratory mechanics parameters such as airway pressure, respiratory flow rate, and respiratory rate.

[0052] When the display method 100 for medical devices is implemented in a monitoring device itself, the monitoring device can collect physiological parameter monitoring data through its own sensors, and process and display the data. When the display method 100 for medical devices is implemented in a treatment device or a third-party device, the treatment device or third-party device can obtain the physiological parameter monitoring data collected by the monitoring device in real time through a communication connection with the monitoring device.

[0053] Therapeutic equipment is used to provide treatment for medical subjects. Treatment refers to the process of intervening in or changing specific physiological parameters. The treatment methods that therapeutic equipment can provide include but are not limited to drug administration, respiratory support, etc., that is, therapeutic equipment mainly includes two types of ventilation equipment and drug delivery equipment. Ventilation equipment includes ventilators, anesthesia machines, etc., and drug delivery equipment includes anesthesia machines, infusion pumps, etc. Among them, ventilation equipment is responsible for providing respiratory and oxygenation support to medical subjects; drug delivery equipment is responsible for inputting drugs into medical subjects, including but not limited to volatile anesthetics administered by inhalation, sedatives administered intravenously, analgesics, muscle relaxants, pressor drugs, vasodilators, colloids, liquids, etc.

[0054] It is understandable that some medical devices can both monitor physiological parameters and provide treatment to patients, thus serving as both monitoring and treatment devices. For example, a ventilator can provide respiratory support while also collecting respiratory mechanics parameters; anesthesia machines can also collect sedation and muscle relaxation parameters while releasing anesthetic gas and providing respiratory support to patients. Therefore, ventilators and anesthesia machines can be implemented as both monitoring and treatment devices.

[0055] Therapeutic equipment needs to provide treatment to medical subjects based on certain control parameters. Control parameters usually allow medical staff to adjust them, and medical staff can affect the medical data of medical subjects by adjusting the specified control parameters. Among them, the control parameters used to control the ventilator include ventilation parameters, such as the pressure and flow rate of the respiratory gas; the control parameters used to control the anesthesia machine, in addition to ventilation parameters, can also include drug administration control parameters, such as the flow rate and concentration of the anesthetic gas. The control parameters used to control the infusion pump mainly include drug administration control parameters, such as the infusion rate. Medical staff usually determine whether it is necessary to adjust the control parameters of the therapeutic equipment based on the monitoring data of physiological parameters or the monitoring results of the medical subject, and observe the changes in the relevant physiological parameters of the medical subject in real time when adjusting the control parameters of the therapeutic equipment to avoid operational errors.

[0056] Therefore, the embodiments of the present application integrate relevant physiological parameters and control parameters and display them in a coordinated manner, so that medical staff can more intuitively judge the current physiological state of the medical subject, make decisions on how to adjust relevant control parameters more promptly, find the operation interface of the control parameters more conveniently, and observe the reactions of the medical subject in more real time, thereby improving the work efficiency of medical staff and reducing the probability of medical errors. In order to integrate physiological parameters and control parameters according to user needs, it is necessary to determine the grouping of physiological parameters and control parameters, each group including at least one physiological parameter and at least one control parameter that can affect medical data related to at least one physiological parameter. By determining the grouping of physiological parameters and control parameters related to medical data, it is possible to establish associations between different types of physiological parameters and control parameters.

[0057] Specifically, physiological parameters and control parameters can be grouped according to actual clinical needs, and the physiological parameters that medical staff need to pay attention to in certain scenarios and the control parameters that need to be adjusted can be divided into one group to optimize the workflow of medical staff.

[0058] For example, physiological parameters and control parameters can be grouped according to physiological state, with at least one physiological parameter reflecting the target physiological state and at least one control parameter that can affect the target physiological state being grouped together. For example, in anesthesia, during anesthesia, medical staff need to focus on the patient's anesthetic state, hemodynamic state, and oxygenation state, and adjust the control parameters associated with each state as needed. Therefore, the target physiological state can include at least one of the anesthetic state, oxygenation state, and hemodynamic state.

[0059] Among them, the physiological parameters reflecting the state of anesthesia specifically include physiological parameters reflecting the sedation state, analgesia state and muscle relaxation (muscle relaxation) state of the medical subject. Exemplarily, the physiological parameters reflecting the sedation state (referred to as sedation parameters) include but are not limited to BIS (Bispectral Index, EEG bispectral index), entropy index, MAC (Minimum Alveolar Concentration, minimum alveolar gas effective concentration) monitoring value, EEG signal, EEG spectrum or power spectrum, etc.; the physiological parameters reflecting the analgesia state (referred to as analgesia parameters) include but are not limited to ANI index, electrocardiogram variability, etc.; the physiological parameters reflecting the muscle relaxation state (referred to as muscle relaxation parameters) include but are not limited to TOF, PTC, etc. The control parameters that can affect the anesthetic state include the drug administration control parameters of the anesthesia machine and the infusion pump. The drug administration control parameters of the anesthesia machine include the delivery setting parameters of inhaled anesthetic drugs, including N2O, Hal (halothane), Iso (isoflurane), Sev (sevoflurane), Enf (enflurane), Des (desflurane), etc.; the drug administration control parameters of the infusion pump include the delivery setting parameters of intravenous sedatives (such as propofol, etc.), intravenous analgesics (such as opioids, etc.), intravenous muscle relaxants (such as rocuronium, etc.), etc.

[0060] For example, physiological parameters reflecting hemodynamic status include, but are not limited to, cardiovascular system hemodynamic parameters such as electrocardiogram (ECG), heart rate, blood pressure, cardiac output, and preload and postload. Control parameters that can influence hemodynamic status include medication control parameters for anesthesia machines and infusion pumps, such as the delivery settings for vasoactive and pressor drugs.

[0061] Illustratively, physiological parameters reflecting oxygenation status include blood oxygen, CO2 content, ventilation-perfusion ratio, oxygenation index, tissue oxygen saturation, etc. Control parameters that can affect oxygenation status include ventilation control parameters of an anesthesia machine or ventilator, such as ventilation setting parameters such as gas flow rate and oxygen concentration.

[0062] In another embodiment, physiological parameters and control parameters are grouped together by grouping at least one physiological parameter reflecting a target physiological structure with at least one control parameter that can affect the target physiological structure. The target physiological structure includes target physiological systems, such as the respiratory system, metabolic system, and circulatory system. The target physiological structure may also include target physiological organs such as the heart, brain, and lungs. When diagnosing or treating the target physiological structure, medical personnel can view medical data reflecting the state of the target physiological structure or adjust control parameters that affect the target physiological structure.

[0063] In some embodiments, at least one physiological parameter related to the target surgical type and at least one control parameter involved in the target surgical type can also be divided into a group, so that the medical data related to the target surgical type and the operation interface of the control parameters related to the target surgical type are associated and displayed, making it convenient for medical staff to view the medical data that needs attention when performing the target surgical type, and to adjust the control parameters related to the target surgical type.

[0064] In some embodiments, at least one physiological parameter related to the target condition and at least one control parameter that can affect these medical data can also be divided into a group, so that the medical data related to the target condition and the operation interface of the control parameter related to the target condition are associated and displayed, which makes it convenient for medical staff to view the relevant medical data when diagnosing or treating the target condition, and to adjust the relevant control parameters when intervention is needed on these medical data.

[0065] In addition to automatically grouping physiological parameters and control parameters according to the above rules, users can also customize the grouping of physiological parameters and control parameters as needed. Specifically, a grouping setting interface is provided, through which a grouping setting operation is obtained, and at least one physiological parameter and at least one control parameter selected in the grouping setting operation are grouped into the same group. Users can customize the various combinations of physiological parameters and control parameters that require attention based on the patient, condition, surgical requirements, etc., and associate medical data reflecting the patient's condition with the corresponding control parameters for display, resulting in a user interaction interface that better suits the workflow of specific patient types.

[0066] It should be noted that when grouping physiological parameters and control parameters, any one standard may be used for grouping, or two or more standards may be used for grouping, and the same physiological parameter or the same control parameter may exist in multiple groups.

[0067] Based on the grouping of physiological parameters and control parameters, a user interaction interface can be provided, and on the user interaction interface, medical data related to the physiological parameters in the same group and an operation interface for adjusting the control parameters in the group are associated and displayed. When an adjustment instruction for the control parameter is obtained, the adjustment instruction is fed back to the treatment device to control the treatment device accordingly. The adjustment instruction for the control parameter can be directly obtained based on the operation interface displayed on the display interface, for example, the operation interface can be operated by touch to obtain the adjustment instruction for the control parameter. The adjustment instruction for the control parameter can also be obtained by other means, for example, the adjustment instruction for the control parameter can be obtained by voice or gesture.

[0068] On the user interaction interface, medical data and control parameters are presented in combination according to the grouping results. By associating and displaying the medical data related to physiological parameters and the operating interface for adjusting the control parameters in the same group, medical staff can observe the medical data and the corresponding control parameters at the same time, and intuitively judge the current physiological state of the medical subject based on the medical data. When the medical data does not meet the preset requirements, for example, the monitoring data of the physiological parameters is not within the expected range, it can make timely decisions on whether to adjust the control parameters and how to adjust the control parameters. At the same time, after the control parameters are adjusted, the reaction of the medical subject's physiological state to it can be observed in time, thereby improving the doctor's work efficiency and reducing the probability of medical errors.

[0069] The user interaction interface is displayed on a user interaction device. The user interaction device can be a user interaction device of a monitoring device, a treatment device, or a third-party device that is communicatively connected to the monitoring device and the treatment device. The user interaction device includes a display. Each group of medical data related to physiological parameters and an operation interface for adjusting control parameters are displayed on the same user interaction interface. Different groups of medical data related to physiological parameters and operation interfaces for adjusting control parameters can be displayed on the same user interaction interface or on different user interaction interfaces. For example, medical data related to hemodynamic status and an operation interface for adjusting control parameters can be displayed on the user interaction device of a monitor; medical data related to oxygenation status and an operation interface for adjusting control parameters can be displayed on the user interaction device of an anesthesia machine, or can also be displayed on the user interaction device of a monitor.

[0070] Exemplarily, the user interaction interface may include at least one display unit, each display unit corresponding to a group, for displaying medical data related to physiological parameters within the group and an operating interface for adjusting control parameters within the group. Exemplarily, in each display unit, the medical data and the operating interface for adjusting control parameters within the same group may be displayed adjacent to each other, allowing the user to intuitively observe a related set of medical data and control parameters. Adjacent display methods include, but are not limited to, vertical adjacent display as shown in FIG. 2A , horizontal adjacent display as shown in FIG. 2B , and circular adjacent display as shown in FIG. 2C .

[0071] In another embodiment, the method for associating and displaying medical data related to physiological parameters and an operation interface for adjusting control parameters within the same group includes: displaying the medical data related to the physiological parameters, and upon receiving a selection instruction for medical data within a target group, displaying an operation interface for adjusting the control parameters within the target group in response to the received selection instruction. For example, the operation interface for the control parameters may be displayed in a pop-up window adjacent to the medical data.

[0072] In this embodiment, when the user does not need to adjust the control parameters, the operation interface of the control parameters is hidden and only the medical data is displayed, thereby making the layout of the user interaction interface more concise. When it is necessary to affect the relevant medical data by adjusting the control parameters, the user can select the medical data of interest to call up the operation interface of the corresponding control parameters. The operation interface of the control parameters displayed at this time can be the operation interface of all control parameters in the target group, so that the user can select the control parameters that need to be adjusted; or, the operation interface of the control parameters displayed at this time can also be the operation interface of the control parameters directly related to the selected medical data, that is, the operation interface that can directly intervene in the control parameters of the selected medical data to prompt the user of the control parameters that currently need to be adjusted.

[0073] Optionally, the user interface may display the medical data for the target group by default. When it is detected that the medical data for the target group does not meet preset requirements, such as when the monitored data for a physiological parameter exceeds a preset range or when a parameter alarm occurs, an operation interface for adjusting the control parameters for the target group may be displayed. Conversely, if the monitored data for all physiological parameters for the target group are within normal ranges, the user may not need to adjust the control parameters, and thus the operation interface for adjusting the control parameters for the target group may not be displayed.

[0074] In some embodiments, it is possible to determine whether the control parameters need to be adjusted based on the medical data, and when it is determined that the control parameters need to be adjusted, a prompt message indicating that the control parameters need to be adjusted is output. The method of outputting the prompt message includes but is not limited to displaying a prompt message indicating that the control parameters need to be adjusted on the user interaction interface. For example, when it is determined that the medical data in the target group exceeds a preset range, a prompt message can be displayed in the display unit corresponding to the target group to prompt the user to adjust the control parameters in the target group. At this time, the medical data that exceeds the preset range can also be highlighted to prompt the user to pay attention to the abnormal medical data.

[0075] Furthermore, when it is determined that a certain medical data within a target group is abnormal, a target control parameter that can be used to intervene in the medical data can be determined from the control parameters within the target group, and a prompt message indicating that the target control parameter needs to be adjusted is output, prompting the user to adjust the target control parameter. This prompt message can provide a reference for the user, and can especially help inexperienced medical personnel determine which control parameter adjustment can improve the abnormal medical data when the medical data is abnormal.

[0076] Furthermore, the system can determine a method for adjusting the control parameters based on the medical data and output prompt information regarding the adjustment method. The adjustment methods for adjusting the control parameters include, but are not limited to, increasing or decreasing the dosage of inhaled anesthetics or intravenous medications, increasing or decreasing the respiratory gas flow rate, etc. This prompt information can further assist the user in deciding how to adjust the control parameters to improve abnormal medical data.

[0077] In some embodiments, the changing trend of medical data can also be displayed in association with the operating interface for adjusting the control parameters on the user interaction interface. Referring to Figure 3, Figure 3 shows an exemplary user interaction interface for use in anesthesia. The user interaction interface currently displays a display unit corresponding to the anesthesia state, and the user can switch it to a display unit corresponding to the oxygenation state or a display unit corresponding to the hemodynamic state. In the display unit corresponding to the anesthesia state, sedation parameters, analgesia parameters and muscle relaxation parameters reflecting the anesthesia state are specifically displayed, as well as an operating interface for sedative drug delivery settings, analgesia drug delivery settings and muscle relaxation drug delivery settings that can affect the anesthesia state. In addition, in the display unit corresponding to the anesthesia state, the changing trend of physiological parameters reflecting the anesthesia state is also displayed. The user can refer to the changing trend of physiological parameters reflecting the anesthesia state to understand the changes in the user's anesthesia state during the anesthesia process.

[0078] For example, when an adjustment instruction for a control parameter is received, an event marker corresponding to the adjustment instruction can be displayed on the change trend of the medical data to indicate that the user adjusted the relevant control parameter at the time corresponding to the event marker, making it easier for the user to understand the reason for the change in the medical data. Furthermore, in response to an instruction to select the event marker, a description of the adjustment instruction associated with the event marker can be displayed, including but not limited to the type of control parameter adjusted and the adjustment method.

[0079] Furthermore, the changing trend of the control parameter and the changing trend of the medical data can be displayed adjacent to each other to reflect the adjustment process of the control parameter. For example, in the display unit corresponding to the anesthesia state shown in FIG3 , the changing trend of the control parameter related to the anesthesia state is also displayed. In one embodiment, the changing trend of the control parameter displayed can be the changing trend of the adjusted control parameter; accordingly, the changing trend of the medical data displayed can be the changing trend of the medical data related to the adjusted control parameter. For example, if the setting parameters for the delivery of intravenous sedatives such as propofol are adjusted during the anesthesia process, the changing trend of the delivery setting parameters of the intravenous sedatives can be displayed in the display unit corresponding to the anesthesia state, and the changing trend of sedation parameters such as BIS reflecting the sedation state can be displayed accordingly. By comparing the changing trends of the medical data and the control parameters, the user can judge the responsiveness of the medical subject to the drug.

[0080] Continuing with FIG. 3 , in some embodiments, a physiological structure diagram may also be displayed on the user interface. The physiological structure diagram includes multiple physiological structures, which may include physiological organs or physiological systems. The physiological structure diagram can be used to reflect the comprehensive physiological state of the medical subject. For example, if medical data related to certain physiological structures is abnormal, the corresponding physiological structure in the physiological structure diagram may be highlighted.

[0081] In addition, the physiological structure diagram can also be used to select the group of physiological parameters and control parameters displayed on the current user interaction interface. Specifically, a selection instruction for a target physiological structure in the physiological structure diagram can be received, and in response to the received selection instruction, the monitoring data of the physiological parameters and the operation interface for adjusting the control parameters in the group related to the target physiological structure are displayed. For example, the currently selected target physiological structure in the physiological structure diagram shown in Figure 3 is the head, and the display unit presented on the right side of the physiological structure diagram is the display unit related to the anesthesia state. Similarly, if a selection instruction for the respiratory system in the physiological structure diagram is received, the display unit related to the oxygenation state can be displayed; if a selection instruction for the circulatory system in the physiological structure diagram is received, the display unit related to the hemodynamic state can be displayed. Conversely, after determining the currently displayed group through other means, the physiological structures related to the group can be displayed in the physiological structure diagram. For example, after determining that the display unit currently displayed is related to the anesthesia state, the head position in the physiological structure diagram is highlighted.

[0082] To sum up, the display method 100 for medical equipment in the embodiment of the present application associates and displays medical data related to physiological parameters and the operation interface for adjusting control parameters in the same group, which can enable users to more intuitively judge the current physiological state of the medical object and make more timely decisions on whether to adjust the control parameters and how to adjust the control parameters. At the same time, after the control parameters are adjusted, the reaction of the physiological state of the medical object to it can be observed in time, thereby improving the work efficiency of doctors and reducing the probability of medical errors.

[0083] On the other hand, an embodiment of the present application provides a medical system, which can be used to implement the above-mentioned display method 100 for medical equipment.

[0084] 4 , a medical system 400 includes: a monitoring device 410 for acquiring medical data of a medical subject, wherein the medical data includes data related to one or more physiological parameters of the medical subject, such as monitoring data of the physiological parameters of the medical subject and / or monitoring results obtained based on the monitoring data; a treatment device 420 for providing treatment to the medical subject based on control parameters to affect the physiological parameters; a user interaction device, wherein the user interaction device is a user interaction device of the monitoring device 410, the treatment device 420, or a third-party device 430. When the user interaction device is a user interaction device of the monitoring device 410 or the treatment device 420, the monitoring device 410 and the treatment device 420 are connected. The device 420 is communicatively connected. When the user interaction device is a user interaction device of a third-party device 430, the third-party device 430 is communicatively connected with the monitoring device 410 and the treatment device 420. The user interaction device is used to provide a user interaction interface. On the user interaction interface, according to the grouping of medical data and control parameters, the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group are associated and displayed, and the adjustment instructions for the control parameters are obtained, and the obtained adjustment instructions are fed back to the treatment device 420. Each group includes at least one type of physiological parameter and at least one control parameter that can affect the medical data related to the physiological parameters.

[0085] Exemplarily, the monitoring device 410 can be any medical device that can provide a physiological parameter monitoring function. The monitoring device 410 mainly includes a processor, a user interaction device and a sensor. The processor controls the sensor to collect data on physiological parameters and controls the user interaction device to present the data on physiological parameters. The sensor and the processor can be connected via a wired communication protocol or a wireless communication protocol to exchange data. The monitoring device 410 includes but is not limited to a monitor, a ventilator, an anesthesia machine, etc. Different monitoring devices 410 can monitor different physiological parameters of the medical subject. For example, the monitor can monitor basic vital sign parameters, the ventilator can monitor respiratory parameters, and the anesthesia machine can monitor physiological parameters reflecting the anesthetic state, such as sedation parameters, analgesia parameters and muscle relaxation parameters.

[0086] The therapeutic device 420 is used to provide treatment for the medical subject to intervene in or change specific physiological parameters. The treatment methods that the therapeutic device 420 can provide include but are not limited to drug administration, respiratory support, etc., that is, the therapeutic device 420 mainly includes two types of ventilation equipment and drug delivery equipment. Among them, the ventilation equipment is responsible for providing respiratory and oxygenation support to the medical subject; the drug delivery equipment is responsible for inputting drugs into the medical subject. The ventilation equipment mainly includes a processor, a user interaction device and a ventilation unit. The processor controls the ventilation unit to provide mechanical ventilation for the medical subject. The drug delivery equipment includes a processor, a user interaction device and a drive mechanism. The processor controls the drive mechanism to inject the drug into the body of the medical subject. Exemplarily, the ventilation equipment includes a ventilator or an anesthesia machine, and the drug delivery equipment includes an anesthesia machine or an infusion pump, that is, the anesthesia machine can be both a ventilation device and a drug delivery device.

[0087] In one example, the medical system 400 includes a monitor, an anesthesia machine, and an infusion pump, and has physiological parameter monitoring, respiratory support, and drug delivery functions, enabling the coordinated operation of multiple devices. The user interaction device of the medical system 400 can be a user interaction device of the monitor, or a user interaction device of the anesthesia machine, and is used to group and integrate the monitoring data of the physiological parameters collected by the monitor, the data of the physiological parameters collected by the anesthesia machine, the ventilation control interface of the anesthesia machine, the drug delivery setting interface of the anesthesia machine, and the drug delivery setting interface of the infusion pump for display. When the user interaction device is a user interaction device of the monitor, the monitor is connected to the anesthesia machine and the infusion pump for communication, and is used to obtain the data of the physiological parameters collected by the anesthesia machine and send adjustment instructions for the control parameters to the anesthesia machine and the infusion pump. When the user interaction device is a user interaction device of the anesthesia machine, the anesthesia machine is connected to the monitor and the infusion pump for communication, and is used to obtain the data of the physiological parameters collected by the monitor and send adjustment instructions for the control parameters to the infusion pump.

[0088] Alternatively, the device providing the user interaction mechanism may be a third-party device 430, distinct from monitoring device 410 and treatment device 420. Third-party device 430 may be another electronic device capable of receiving, processing, and displaying data, and may include, but is not limited to, a central station or a mobile terminal such as a mobile phone, tablet computer, or personal computer, in communication with monitoring device 410 and treatment device 420. Third-party device 430 obtains medical data from monitoring device 410 through a communication connection with monitoring device 410 and obtains control parameter data for treatment device 420 through a communication connection with treatment device 420. The third-party device 430 groups and displays the data in a fused form, and transmits received control parameter adjustment instructions back to treatment device 420.

[0089] For example, the communication method between the monitoring device 410 and the treatment device 420 or the communication method between the third-party device 43 and the monitoring device 410 and the treatment device 420 includes, but is not limited to, Wi-Fi, Bluetooth, NFC, ZigBee, ultra-wideband (UWB), or 2G, 3G, 4G, 5G, or other mobile communication methods. The communication method may also be a wired communication method via a cable.

[0090] Monitoring device 410, treatment device 420, or third-party device 430 is further configured to group physiological parameters and control parameters. The device used for grouping can be the device providing a user interface among monitoring device 410, treatment device 420, and third-party device 430. For example, monitoring device 410 obtains the subject's medical data, obtains control parameter data from treatment device 420, groups the physiological parameters and control parameters, and provides a user interface on its own user interface device to associate and display related medical data within the same group and an operation interface for adjusting the control parameters. The device used for grouping can also be different from the device providing the user interface; the device can send the grouping results to the device providing the user interface.

[0091] Among them, each group may include at least one physiological parameter reflecting the target physiological state and at least one control parameter that can affect the target physiological state, at least one physiological parameter reflecting the target physiological system and at least one control parameter that can affect the target physiological system, at least one physiological parameter related to the target surgical type and at least one control parameter involved in the target surgical type, or at least one physiological parameter related to the target disease condition and at least one control parameter that can affect at least one physiological parameter related to the target disease condition.

[0092] When the user interaction device displays the medical data and the operation interface for adjusting the control parameters in the same group in an associated manner, the medical data and the operation interface for adjusting the control parameters in the same group can be displayed adjacent to each other. Alternatively, the medical data can be displayed, and in response to a selection instruction for the medical data in the target group, the operation interface for adjusting the control parameters in the target group can be displayed. The user interaction device can also display the medical data and, when it detects that the medical data in the target group exceeds a preset range, display the operation interface for adjusting the control parameters in the target group. For more specific details about the display of medical data and control parameters in groups, please refer to the relevant description of the display method 100 for medical equipment, which will not be repeated here.

[0093] The medical system 400 of the embodiment of the present application associates and displays the medical data within the same group with the operating interface for adjusting the control parameters, thereby realizing efficient system operation of the monitoring equipment and the treatment equipment. It allows users to more intuitively judge the current physiological state of the medical subject and make more timely decisions on whether to adjust the control parameters and how to adjust the control parameters. At the same time, after the control parameters are adjusted, the physiological state of the medical subject can be observed in time to respond to it, thereby improving the doctor's work efficiency and reducing the probability of medical errors.

[0094] 5 , another embodiment of the present application provides a display method 500 for a medical device, comprising the following steps:

[0095] In step S510, medical data of a medical subject is obtained; the medical data is related to one or more physiological parameters;

[0096] At step S520, data of control parameters of a treatment device for providing treatment to the medical subject is obtained, wherein the treatment device is used to provide treatment to the medical subject based on the control parameters to affect the medical data of the medical subject;

[0097] At step S530, groups of the physiological parameters and the control parameters are determined, each group including at least one physiological parameter and at least one control parameter capable of affecting the medical data related to the physiological parameter;

[0098] In step S540, a user interaction interface is provided, on which the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group are displayed in association with each other, or the medical data and the control parameter data in the same group are displayed in association with each other; and

[0099] In step S550, when an adjustment instruction for the control parameter is obtained, the adjustment instruction is fed back to the treatment device.

[0100] The display method 500 for medical devices is generally similar to the display method 100 for medical devices, except that, first, the medical data of a medical subject is not limited to monitoring data of physiological parameters or monitoring results obtained based on the monitoring data, but may also be other data that can reflect the characteristics or status of the medical subject. For example, the medical data may also be the medical subject's medical history data, nursing data, test data, etc. Second, on the user interaction interface, medical data within the same group and an operation interface for adjusting control parameters can be displayed in association, or medical data within the same group and control parameter data can be displayed in association. When the medical data and the operation interface are displayed in association, the operation interface can be controlled by touch to obtain adjustment instructions for the control parameters through the operation interface; when the medical data and control parameter data are displayed in association, the control parameters can be adjusted by voice, gestures, or physical buttons, and the control parameters displayed on the display interface are updated in real time, so that the user can adjust the control parameters by referring to the control parameter data displayed on the display interface. More specific details of the display method 500 for medical devices can be found in the relevant description of the display method 100 for medical devices and are not repeated here.

[0101] 6 , another embodiment of the present application provides a display method 600 for a medical device. As shown in FIG6 , the display method 600 for a medical device includes the following steps:

[0102] In step S610, medical data of a medical subject is acquired, wherein the medical data includes data of physiological parameters of the medical subject and / or processing results obtained based on the data of the physiological parameters, that is, the medical data is data related to one or more physiological parameters;

[0103] At step S620, data of control parameters for providing treatment to the medical subject is used, and the medical device is used to provide treatment to the medical subject based on the control parameters to affect the medical data of the medical subject;

[0104] In step 6S630, groups of the physiological parameters and the control parameters are determined, each group including at least one physiological parameter and at least one control parameter capable of affecting medical data related to the physiological parameter;

[0105] In step 6S640, a user interaction interface is provided, on which the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group are displayed in association with each other, or the medical data and the control parameter data in the same group are displayed in association with each other;

[0106] In step 6S650, when an adjustment instruction for the control parameter is obtained, the control parameter is adjusted according to the adjustment instruction.

[0107] The display method 600 for medical devices is substantially similar to the display method 100 for medical devices, except that the display method 600 for medical devices involves a separate medical device that is used both to obtain medical data of a medical subject and to provide treatment for the medical subject based on control parameters. For example, the medical device that implements the display method 600 for medical devices may be a ventilator or an anesthesia machine. The display method 600 for medical devices groups medical data and control parameters, and associates and displays the medical data in the same group with the operating interface for adjusting the control parameters, which can optimize the user interaction interface of the medical device, improve the work efficiency of doctors, and reduce the probability of medical errors. For more specific details of the display method 600 for medical devices, please refer to the relevant description of the display method 100 for medical devices, which will not be repeated here.

[0108] Another aspect of the present application embodiment provides a medical device for implementing the above-mentioned display method 600 for medical devices. Referring to FIG7 , the medical device 700 includes: a monitoring component 710 for acquiring medical data of a medical subject, wherein the medical data includes data of physiological parameters of the medical subject and / or processing results obtained based on the data of the physiological parameters; a treatment component 720 for providing treatment to the medical subject based on control parameters to affect the medical data; a user interaction device 740 for providing a user interaction interface; and a controller 730 for controlling the user interaction unit 740 to associate and display the medical data and the operation interface for adjusting the control parameters in the same group on the user interaction interface according to the grouping of the physiological parameters and the control parameters, or associate and display the medical data and the control parameter data in the same group; and when an adjustment instruction for the control parameter is obtained, adjusting the control parameter according to the adjustment instruction. Each group includes at least one physiological parameter and at least one control parameter that can affect the medical data related to the physiological parameter.

[0109] In one embodiment, the medical device 700 includes a ventilator or an anesthesia machine, wherein the monitoring component 710 of the ventilator is used to collect data on the medical subject's respiratory parameters, and the treatment component 720 is used to provide respiratory support for the medical subject. The monitoring component 710 of the anesthesia machine is used to collect data on the medical subject's physiological parameters reflecting the anesthesia state, and the treatment component 720 is used to provide respiratory support and anesthetic drug delivery to the medical subject. The medical device 700 can also be other medical devices with monitoring functions and treatment functions. Because the medical device 700 can implement the above-mentioned display method 600 for medical devices, it also has similar advantages.

[0110] Although example embodiments have been described herein with reference to the accompanying drawings, it should be understood that the above example embodiments are merely illustrative and are not intended to limit the scope of the present application. Various changes and modifications may be made therein by those skilled in the art without departing from the scope and spirit of the present application. All such changes and modifications are intended to be included within the scope of the present application as required by the appended claims.

[0111] Those skilled in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professional and technical personnel can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this application.

[0112] In the several embodiments provided in this application, it should be understood that the disclosed devices and methods can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the division of the units described is merely a logical function division. In actual implementation, other division methods may be used, such as combining or integrating multiple units or components into another device, or ignoring or not performing some features.

[0113] In the description provided herein, a large number of specific details are described. However, it is understood that the embodiments of the present application can be practiced without these specific details. In some instances, well-known methods, structures, and techniques are not shown in detail so as not to obscure the understanding of this description.

[0114] Similarly, it should be understood that in order to streamline the present application and aid in understanding one or more of the various inventive aspects, in the description of the exemplary embodiments of the present application, the various features of the present application are sometimes grouped together into a single embodiment, figure, or description thereof. However, this approach of the present application should not be interpreted as reflecting the intention that the application claimed for protection requires more features than those explicitly recited in each claim. More precisely, as reflected in the corresponding claims, the inventive point is that the corresponding technical problem can be solved with fewer features than all the features of a single disclosed embodiment. Therefore, the claims following the detailed description are hereby expressly incorporated into the detailed description, with each claim itself serving as a separate embodiment of the present application.

[0115] It will be understood by those skilled in the art that, except where mutually exclusive, all features disclosed in this specification (including the accompanying claims, abstract, and drawings) and all processes or units of any method or apparatus disclosed herein may be combined in any combination. Unless expressly stated otherwise, each feature disclosed in this specification (including the accompanying claims, abstract, and drawings) may be replaced by an alternative feature providing the same, equivalent, or similar purpose.

[0116] Furthermore, those skilled in the art will appreciate that although some embodiments described herein include certain features included in other embodiments but not other features, combinations of features from different embodiments are intended to be within the scope of this application and to form different embodiments. For example, in the claims, any of the claimed embodiments may be used in any combination.

[0117] The various component embodiments of the present application can be implemented in hardware, or in a software module running on one or more processors, or in a combination thereof. Those skilled in the art will appreciate that a microprocessor or digital signal processor (DSP) can be used in practice to implement some or all of the functions of some modules according to the embodiments of the present application. The application can also be implemented as a part or all of a device program (e.g., a computer program and a computer program product) for performing the method described herein. Such a program implementing the present application can be stored on a computer-readable medium, or can have the form of one or more signals. Such a signal can be downloaded from an Internet website, or provided on a carrier signal, or provided in any other form.

[0118] It should be noted that the above embodiments illustrate rather than limit the present application, and that those skilled in the art may devise alternative embodiments without departing from the scope of the appended claims. In the claims, any reference symbols placed between brackets should not be construed as limiting the claims. The present application may be implemented by means of hardware comprising several different elements and by means of a suitably programmed computer. In a unit claim enumerating several means, several of these means may be embodied by the same item of hardware. The use of the words first, second, and third, etc. does not indicate any order. These words may be interpreted as names.

[0119] The above description is merely a specific embodiment or illustration of a specific embodiment of the present application, and the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present application should be included in the scope of protection of the present application. The scope of protection of the present application should be based on the scope of protection of the claims.

Claims

1. A display method for medical equipment, characterized in that: The method comprises: Acquiring medical data of a medical subject provided by a monitoring device, wherein the medical data includes data related to one or more physiological parameters of the medical subject; acquiring data of control parameters of a treatment device for providing treatment to the medical subject, wherein the treatment device is configured to provide treatment to the medical subject based on the control parameters so as to affect the medical data of the medical subject; Providing a user interaction interface on which, based on the grouping of the physiological parameters and the control parameters, medical data related to the physiological parameters and an operation interface for adjusting the control parameters within the same group are displayed in association; wherein each of the groups includes at least one physiological parameter and at least one control parameter capable of affecting the medical data related to the physiological parameter; and When an adjustment instruction for the control parameter is obtained, the adjustment instruction is fed back to the treatment device.

2. The method according to claim 1, characterized in that The monitoring device includes at least one of a monitor, a ventilator and an anesthesia machine; The therapeutic device includes at least one of a ventilator, an anesthesia machine, and an infusion pump.

3. The method according to claim 2, characterized in that The control parameters for controlling the ventilator include ventilation parameters; The control parameters for controlling the anesthesia machine include ventilation parameters and / or drug administration control parameters; The control parameters for controlling the infusion pump include drug administration control parameters.

4. The method according to claim 1, wherein The group includes: at least one physiological parameter reflecting a target physiological state and at least one control parameter capable of affecting the target physiological state.

5. The method according to claim 1, wherein The grouping includes: at least one physiological parameter reflecting a target physiological structure and at least one control parameter capable of influencing the target physiological structure, wherein the target human body structure includes a target physiological system and / or a target physiological organ.

6. The method according to claim 1, characterized in that The group includes: at least one physiological parameter related to a target surgery type and at least one control parameter involved in the target surgery type.

7. The method according to claim 1, characterized in that The grouping includes: At least one physiological parameter related to a target condition and at least one control parameter capable of influencing the at least one physiological parameter related to the target condition.

8. The method according to claim 1, characterized in that The method further includes determining grouping of the physiological parameters and the control parameters; wherein determining grouping of the physiological parameters and the control parameters includes: Provide a group setting interface, through which group setting operations are obtained; The at least one physiological parameter and the at least one control parameter selected by the group setting operation are divided into the same group.

9. The method according to claim 1, characterized in that The associative display of the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group includes: The medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group are displayed adjacent to each other.

10. The method according to claim 1, characterized in that The associative display of the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group includes: The medical data is displayed, and in response to a selection instruction for the medical data in a target group, an operation interface for adjusting the control parameters in the target group is displayed.

11. The method according to claim 1, wherein The associative display of the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group includes: The medical data is displayed, and when it is detected that the medical data in the target group exceeds a preset range, an operation interface for adjusting the control parameters in the target group is displayed.

12. The method according to claim 4, characterized in that The target physiological state includes an anesthetic state, and the control parameters that can affect the anesthetic state include drug administration control parameters of an anesthesia machine and / or an infusion pump.

13. The method according to claim 12, characterized in that The physiological parameters reflecting the anesthetic state include physiological parameters reflecting the sedation state, analgesia state and muscle relaxation state of the medical subject.

14. The method according to claim 4, characterized in that The target physiological state includes a hemodynamic state, and the control parameters that can affect the hemodynamic state include drug administration control parameters of an anesthesia machine and / or an infusion pump.

15. The method according to claim 4, characterized in that The target physiological state includes an oxygenation state, and the control parameters that can affect the oxygenation state include ventilation control parameters of an anesthesia machine or a ventilator.

16. The method according to claim 1, wherein It also includes displaying the change trend of the medical data in the same group together with the medical data and the operation interface for adjusting the control parameters.

17. The method according to claim 16, characterized in that Also includes: When an adjustment instruction for the control parameter is received, an event mark corresponding to the adjustment instruction is displayed on the change trend of the medical data.

18. The method according to claim 17, characterized in that Also includes: In response to a selection instruction for the event mark, descriptive information of an adjustment instruction related to the event mark is displayed.

19. The method according to claim 1, wherein The invention also includes displaying a physiological structure diagram on the user interaction interface, wherein the physiological structure diagram includes a plurality of physiological structures; The association displays the medical data related to the physiological parameters and the operating interface for adjusting the control parameters within the same group, including: receiving a selection instruction for the target physiological structure in the physiological structure diagram, and in response to the selection instruction, displaying the medical data in the group related to the target physiological structure and the operating interface for adjusting the control parameters.

20. The method according to claim 1, wherein Also includes: determining, based on the medical data, whether the control parameter needs to be adjusted; When it is determined that the control parameter needs to be adjusted, a prompt message indicating that the control parameter needs to be adjusted is output.

21. The method according to claim 1, wherein Also includes: determining target control parameters that need to be adjusted based on the medical data; Outputting prompt information indicating that the target control parameter needs to be adjusted.

22. The method according to claim 1, wherein Also includes: determining, based on the medical data, a method for adjusting the control parameter; Output prompt information about the adjustment method.

23. The method according to claim 1, wherein The medical data includes monitoring data of physiological parameters of the medical subject and / or monitoring results obtained based on the monitoring data.

24. A medical system, characterized in that The medical system includes: A monitoring device for acquiring medical data of a medical subject, wherein the medical data includes data related to one or more physiological parameters of the medical subject; a treatment device for providing treatment to the medical subject based on control parameters to affect the medical data; The user interaction device is a user interaction device of the monitoring device, the treatment device or a third-party device. When the user interaction device is a user interaction device of the monitoring device or the treatment device, the monitoring device and the treatment device are in communication connection. When the user interaction device is a user interaction device of the third-party device, the third-party device is in communication connection with the monitoring device. The protective device is communicatively connected to the treatment device; The user interaction device is used to: provide a user interaction interface, on which, according to the grouping of the physiological parameters and the control parameters, the medical data related to the physiological parameters and the operation interface for adjusting the control parameters within the same group are associated and displayed, or the medical data related to the physiological parameters and the data of the control parameters within the same group are associated and displayed, and adjustment instructions for the control parameters are obtained, and the obtained adjustment instructions are fed back to the treatment device; wherein each of the groups includes at least one physiological parameter and at least one control parameter that can affect the medical data related to the physiological parameter.

25. The system according to claim 24, wherein: The monitoring device includes at least one of a monitor, a ventilator and an anesthesia machine; The therapeutic device includes at least one of a ventilator, an anesthesia machine, and an infusion pump.

26. The system according to claim 24, wherein: The group includes at least one physiological parameter reflecting a target physiological state and at least one control parameter capable of affecting the target physiological state.

27. The system according to claim 24, wherein: The group includes at least one physiological parameter reflecting a target physiological system and at least one control parameter capable of influencing the target physiological system.

28. The system according to claim 24, wherein: The group includes at least one physiological parameter related to a target surgery type and at least one control parameter involved in the target surgery type.

29. The system according to claim 24, wherein: The group includes at least one physiological parameter related to a target condition and at least one control parameter capable of influencing the at least one physiological parameter related to the target condition.

30. The system according to claim 24, wherein: The user interaction device associates and displays the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group, including: The medical data and the operation interface for adjusting the control parameters in the same group are displayed adjacent to each other.

31. The system according to claim 24, wherein: The user interaction device associates and displays the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group, including: The medical data is displayed, and in response to a selection instruction for the medical data in a target group, an operation interface for adjusting the control parameters in the target group is displayed.

32. The system according to claim 24, wherein: The user interaction device associates and displays the medical data related to the physiological parameters and the operation interface for adjusting the control parameters in the same group, including: The medical data is displayed, and when it is detected that the medical data in the target group exceeds a preset range, an operation interface for adjusting the control parameters in the target group is displayed.

33. A display method for medical equipment, characterized in that: The method comprises: Acquiring medical data of a medical subject, wherein the medical data includes data related to one or more physiological parameters of the medical subject; acquiring data of control parameters for providing treatment to the medical subject, the medical device being configured to provide treatment to the medical subject based on the control parameters to affect the medical data of the medical subject; determining groups of the physiological parameters and the control parameters, each group including at least one physiological parameter and at least one control parameter capable of influencing medical data related to the physiological parameter; Providing a user interaction interface on which medical data related to the physiological parameters and an operation interface for adjusting the control parameters in the same group are displayed in association, or the medical data and the control parameter data in the same group are displayed in association; When an adjustment instruction for the control parameter is obtained, the control parameter is adjusted according to the adjustment instruction.

34. A medical device, characterized in that The medical equipment includes: a monitoring component for acquiring medical data of a medical subject, wherein the medical data includes data related to one or more physiological parameters of the medical subject; a treatment component for providing treatment to the medical subject based on control parameters to affect the medical data; A user interaction device for providing a user interaction interface; Controller for: Controlling the user interaction device to display, on the user interaction interface, based on the grouping of the physiological parameters and the control parameters, the medical data related to the physiological parameters and the operation interface for adjusting the control parameters within the same group, or the medical data and the control parameter data within the same group; wherein each of the groups includes at least one physiological parameter and at least one control parameter capable of affecting the medical data related to the physiological parameter; and When an adjustment instruction for the control parameter is obtained, the control parameter is adjusted according to the adjustment instruction.