Monitor setting method and device, electronic equipment, storage medium and program product
By automatically connecting and detecting the monitor with the extended device and reading the information, the monitor can be set up automatically, which solves the shortcomings of manual settings during patient transport, improves efficiency and accuracy, and reduces cost and complexity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GE PRECISION HEALTHCARE LLC
- Filing Date
- 2024-11-08
- Publication Date
- 2026-05-08
AI Technical Summary
During patient transfer, existing monitors need to be manually set up to adapt to the needs of the new nursing unit, resulting in a high risk of operational errors, low efficiency, and suboptimal clinical workflow.
By detecting the connection status between the monitor and the extended device, the system automatically reads the extended device information, generates a location information determination interface, obtains the current location information, and matches it with the target setting information, thereby achieving automated setting of the monitor.
It reduces manual user intervention, lowers the risk of operational errors, improves the efficiency and accuracy of monitor settings during patient transport, optimizes clinical workflows, and reduces the manufacturing and operating costs of expansion equipment.
Smart Images

Figure CN122000008A_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of medical device technology, and in particular to a method for setting up a patient monitor, a device for setting up a patient monitor, an electronic device, a computer-readable storage medium, and a computer program product. Background Technology
[0002] In today's healthcare environment, patient transfer is a common and crucial clinical workflow within hospitals. In this process, patients are typically moved from one nursing unit to another using onboard monitors for further treatment or monitoring. Related technologies require healthcare staff to manually configure the monitors to suit the needs of the new unit when transferring a patient from one nursing unit (e.g., a general ward) to another (e.g., an intensive care unit). Summary of the Invention
[0003] This disclosure provides a technical solution for setting up a patient monitor.
[0004] According to one aspect of this disclosure, a method for setting up a patient monitor is provided, comprising:
[0005] Check the connection status of the monitor and expansion devices;
[0006] In response to detecting that the monitor is connected to the extension device, the device information of the extension device is automatically read from the memory of the extension device;
[0007] Based on the device information of the extended device, it is determined that the extended device has been replaced, and a location information determination interface is automatically generated.
[0008] The current location information of the monitor is obtained from the location information determination interface; and
[0009] Obtain the target setting information of the monitor that matches the current location information, and set the monitor according to the target setting information.
[0010] In one possible implementation, the current location information includes:
[0011] The identification information of the current nursing unit where the monitor is located;
[0012] or,
[0013] The identification information of the current nursing unit where the monitor is located, and the identification information of the current bed of the target patient corresponding to the monitor.
[0014] In one possible implementation, the target setting information includes:
[0015] The target monitoring mode of the monitor.
[0016] In one possible implementation, obtaining the current location information of the monitor includes:
[0017] Obtain the location information of the extended device;
[0018] The current location information of the monitor is determined based on the location information of the extended device.
[0019] In one possible implementation, obtaining the location information of the extended device includes:
[0020] Read the location information of the extended device from the memory;
[0021] or,
[0022] The location information of the extended device is determined based on the device information of the extended device and the device information-location mapping table, wherein the device information-location mapping table is obtained from the server.
[0023] In one possible implementation, obtaining the current location information of the monitor from the location information determination interface includes:
[0024] Obtain the current location information of the monitor that the user inputs or selects in the location information determination interface.
[0025] In one possible implementation, before obtaining the current location information of the monitor input or selected by the user in the location information determination interface, the method further includes:
[0026] The location information determination interface displays the identification information of the nursing unit where the monitor was last located;
[0027] or,
[0028] The location information determination interface displays the identification information of the nursing unit where the monitor was last located, as well as the identification information of the bed to be confirmed. The bed to be confirmed is automatically allocated by the server from the available beds.
[0029] In one possible implementation, after obtaining the current location information of the monitor input or selected by the user in the location information determination interface, the method further includes:
[0030] Based on the current location information, determine the location information of the extended device;
[0031] The memory stores the location information of the extended device; and / or, in the device information and location mapping table, the mapping relationship between the device information and location information of the extended device is recorded, and the updated device information and location mapping table is uploaded to the server.
[0032] In one possible implementation, obtaining the target setting information of the monitor that matches the current location information includes:
[0033] The system reads the setting information corresponding to the extended device from the memory, and determines the target setting information of the monitor based on the setting information corresponding to the extended device.
[0034] or,
[0035] Based on the current location information and the location-setting information mapping table, the target setting information of the monitor that matches the current location information is determined, wherein the location-setting information mapping table is obtained from the server.
[0036] In one possible implementation, obtaining the target setting information of the monitor that matches the current location information includes:
[0037] Displays the settings information input interface;
[0038] Obtain the target settings information of the monitor that the user enters or selects in the settings information input interface.
[0039] In one possible implementation, the display settings information input interface includes:
[0040] In response to the absence of setting information corresponding to the extended device in the memory and / or the absence of setting information matching the current location information in the location-to-setting information mapping table, a setting information input interface is displayed.
[0041] In one possible implementation, after obtaining the target settings information of the monitor inputted or selected by the user in the settings information input interface, the method further includes:
[0042] Based on the target setting information, determine the setting information corresponding to the extended device, and store the setting information corresponding to the extended device in the memory;
[0043] And / or,
[0044] The location and setting information mapping table records the mapping relationship between the current location information and the target setting information, and the updated location and setting information mapping table is uploaded to the server.
[0045] In one possible implementation, the method further includes:
[0046] In response to the status change of the target patient corresponding to the monitor being discharged, the monitor is configured according to the default settings.
[0047] In one possible implementation, the method further includes:
[0048] Based on the device information of the extended device, it is determined that the extended device has not been replaced, and the location information determination interface is not generated.
[0049] According to one aspect of this disclosure, a monitor setting device is provided, comprising:
[0050] The detection module is used to detect the connection status of the monitor and the expansion device;
[0051] A reading module is configured to automatically read device information of the extended device from the memory of the extended device in response to detecting that the monitor is connected to the extended device;
[0052] The generation module is used to determine that the extended device has been replaced based on the device information of the extended device, and automatically generate a location information determination interface;
[0053] The acquisition module is used to obtain the current location information of the monitor from the location information determination interface; and
[0054] The setting module is used to obtain target setting information of the monitor that matches the current location information, and to set the monitor according to the target setting information.
[0055] In one possible implementation, the current location information includes:
[0056] The identification information of the current nursing unit where the monitor is located;
[0057] or,
[0058] The identification information of the current nursing unit where the monitor is located, and the identification information of the current bed of the target patient corresponding to the monitor.
[0059] In one possible implementation, the target setting information includes:
[0060] The target monitoring mode of the monitor.
[0061] In one possible implementation, the obtaining module is used for:
[0062] Obtain the location information of the extended device;
[0063] The current location information of the monitor is determined based on the location information of the extended device.
[0064] In one possible implementation, the obtaining module is used for:
[0065] Read the location information of the extended device from the memory;
[0066] or,
[0067] The location information of the extended device is determined based on the device information of the extended device and the device information-location mapping table, wherein the device information-location mapping table is obtained from the server.
[0068] In one possible implementation, the obtaining module is used for:
[0069] Obtain the current location information of the monitor that the user inputs or selects in the location information determination interface.
[0070] In one possible implementation, the device further includes a display module, the display module being used for:
[0071] The location information determination interface displays the identification information of the nursing unit where the monitor was last located;
[0072] or,
[0073] The location information determination interface displays the identification information of the nursing unit where the monitor was last located, as well as the identification information of the bed to be confirmed. The bed to be confirmed is automatically allocated by the server from the available beds.
[0074] In one possible implementation, the device further includes:
[0075] The determining module is used to determine the location information of the extended device based on the current location information;
[0076] The first storage module is used to store the location information of the extended device in the memory; and / or, in the device information and location mapping table, record the mapping relationship between the device information and location information of the extended device, and upload the updated device information and location mapping table to the server.
[0077] In one possible implementation, the setting module is used to:
[0078] The system reads the setting information corresponding to the extended device from the memory, and determines the target setting information of the monitor based on the setting information corresponding to the extended device.
[0079] or,
[0080] Based on the current location information and the location-setting information mapping table, the target setting information of the monitor that matches the current location information is determined, wherein the location-setting information mapping table is obtained from the server.
[0081] In one possible implementation, the setting module is used to:
[0082] Displays the settings information input interface;
[0083] Obtain the target settings information of the monitor that the user enters or selects in the settings information input interface.
[0084] In one possible implementation, the setting module is used to:
[0085] In response to the absence of setting information corresponding to the extended device in the memory and / or the absence of setting information matching the current location information in the location-to-setting information mapping table, a setting information input interface is displayed.
[0086] In one possible implementation, the device further includes a second storage module, the second storage module being used for:
[0087] Based on the target setting information, determine the setting information corresponding to the extended device, and store the setting information corresponding to the extended device in the memory;
[0088] And / or,
[0089] The location and setting information mapping table records the mapping relationship between the current location information and the target setting information, and the updated location and setting information mapping table is uploaded to the server.
[0090] In one possible implementation, the setting module is further configured to:
[0091] In response to the status change of the target patient corresponding to the monitor being discharged, the monitor is configured according to the default settings.
[0092] In one possible implementation, the generation module is further configured to:
[0093] Based on the device information of the extended device, it is determined that the extended device has not been replaced, and the location information determination interface is not generated.
[0094] According to one aspect of this disclosure, an electronic device is provided, comprising: one or more processors; a memory for storing executable instructions; wherein the one or more processors are configured to invoke the executable instructions stored in the memory to perform the method described above.
[0095] According to one aspect of this disclosure, a computer-readable storage medium is provided that stores computer program instructions thereon, which, when executed by a processor, implement the above-described method.
[0096] According to one aspect of this disclosure, a computer program product is provided, including computer-readable code, or a non-volatile computer-readable storage medium carrying computer-readable code, wherein when the computer-readable code is run in an electronic device, a processor in the electronic device performs the above-described method.
[0097] In this embodiment, by detecting the connection status of the monitor and the extension device, in response to detecting that the monitor is connected to the extension device, the device information of the extension device is automatically read from the memory of the extension device. Based on the device information, it is determined that the extension device has been replaced. A location information determination interface is automatically generated, and the current location information of the monitor and the target setting information of the monitor matching the current location information are obtained from the location information determination interface. The monitor is then set according to the target setting information. Thus, by automatically detecting the connection status of the monitor and the extension device, intelligently determining the location change based on the device information of the extension device, and automatically generating a location information determination interface for user confirmation, the automatic adjustment of monitor settings is achieved. This embodiment significantly reduces manual intervention by the user, lowers the risk of operational errors, improves the efficiency and accuracy of monitor setting changes during patient transport, and optimizes the clinical workflow.
[0098] In this embodiment, the expansion device does not require a host (e.g., CPU, central processing unit), thereby significantly reducing the manufacturing cost of the expansion device. For medical institutions, this means they can purchase more expansion devices to meet clinical needs without incurring excessive financial burdens. Simultaneously, the hostless design also reduces the complexity and maintenance difficulty of the expansion device, thereby lowering long-term operating costs.
[0099] Furthermore, hostless expansion devices can be easily integrated with different medical devices or systems, improving the interoperability of medical equipment. Medical institutions can flexibly configure and upgrade medical equipment according to actual needs to meet the needs of different departments or patients.
[0100] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and are not intended to limit this disclosure.
[0101] Other features and aspects of this disclosure will become clear from the following detailed description of exemplary embodiments with reference to the accompanying drawings. Attached Figure Description
[0102] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this disclosure and, together with the specification, serve to illustrate the technical solutions of this disclosure.
[0103] Figure 1 A flowchart illustrating the monitor setup method provided in an embodiment of this disclosure is shown.
[0104] Figure 2 A schematic diagram of the expansion device is shown.
[0105] Figure 3 A schematic diagram illustrating an application scenario of the monitor setting method provided in the embodiments of this disclosure.
[0106] Figure 4 This diagram illustrates the location information determination interface in the monitor setting method provided in this embodiment.
[0107] Figure 5 This diagram illustrates the display interface of relevant information of the monitor in the monitor setting method provided in the embodiments of this disclosure.
[0108] Figure 6 A block diagram of a monitor setting device provided in an embodiment of this disclosure is shown.
[0109] Figure 7 A block diagram of an electronic device 1900 provided in an embodiment of this disclosure is shown. Detailed Implementation
[0110] Various exemplary embodiments, features, and aspects of this disclosure will now be described in detail with reference to the accompanying drawings. The same reference numerals in the drawings denote elements that have the same or similar functions. Although various aspects of the embodiments are shown in the drawings, they are not necessarily drawn to scale unless specifically indicated otherwise.
[0111] The term “exemplary” as used herein means “serving as an example, embodiment, or illustration.” Any embodiment illustrated herein as “exemplary” is not necessarily to be construed as superior to or better than other embodiments.
[0112] In this document, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A alone, A and B simultaneously, and B alone. Furthermore, the term "at least one" in this document means any combination of at least two of any one or more elements. For example, including at least one of A, B, and C can mean including any one or more elements selected from the set consisting of A, B, and C.
[0113] Furthermore, to better illustrate this disclosure, numerous specific details are set forth in the following detailed description. Those skilled in the art will understand that this disclosure can be practiced without certain specific details. In some instances, methods, means, components, and circuits well known to those skilled in the art have not been described in detail in order to highlight the main points of this disclosure.
[0114] This disclosure provides a method, apparatus, electronic device, computer-readable storage medium, and computer program product for setting up a patient monitor. By detecting the connection status between the patient monitor and an extension device, in response to detecting that the patient monitor is connected to the extension device, the method automatically reads the device information of the extension device from its memory, determines that the extension device has been replaced based on the device information, automatically generates a location information determination interface, obtains the current location information of the patient monitor from the location information determination interface, and obtains the target setting information of the patient monitor that matches the current location information. The method then sets the patient monitor according to the target setting information. Thus, by automatically detecting the connection status between the patient monitor and the extension device, intelligently determining the location change based on the device information of the extension device, and automatically generating a location information determination interface for user confirmation, the method achieves automated adjustment of patient monitor settings. This disclosure significantly reduces manual intervention by the user, lowers the risk of operational errors, improves the efficiency and accuracy of patient monitor setting changes during patient transport, and optimizes clinical workflows.
[0115] In this embodiment, the expansion device does not require a host (e.g., CPU, central processing unit), thereby significantly reducing the manufacturing cost of the expansion device. For medical institutions, this means they can purchase more expansion devices to meet clinical needs without incurring excessive financial burdens. Simultaneously, the hostless design also reduces the complexity and maintenance difficulty of the expansion device, thereby lowering long-term operating costs.
[0116] Furthermore, hostless expansion devices can be easily integrated with different medical devices or systems, improving the interoperability of medical equipment. Medical institutions can flexibly configure and upgrade medical equipment according to actual needs to meet the needs of different departments or patients.
[0117] The monitor setup method provided in the embodiments of this disclosure will be described in detail below with reference to the accompanying drawings.
[0118] Figure 1A flowchart illustrating a patient monitor setting method provided in an embodiment of this disclosure is shown. In one possible implementation, the subject executing the patient monitor setting method can be a patient monitor setting device; for example, the patient monitor setting method can be executed by a patient monitor or other electronic equipment. In some possible implementations, the patient monitor setting method can be implemented by a processor calling computer-readable instructions stored in memory. Figure 1 As shown, the monitor setting method includes steps S11 to S15.
[0119] In step S11, the connection status of the monitor and the extended device is detected.
[0120] In step S12, in response to detecting that the monitor is connected to the extended device, the device information of the extended device is automatically read from the memory of the extended device.
[0121] In step S13, based on the device information of the extended device, it is determined that the extended device has been replaced, and a location information determination interface is automatically generated.
[0122] In step S14, the current location information of the monitor is obtained from the location information determination interface.
[0123] In step S15, target setting information of the monitor that matches the current location information is obtained, and the monitor is set according to the target setting information.
[0124] A patient monitor, also known as a medical device, is primarily used to monitor a patient's vital signs and physiological parameters. Monitors typically display key data such as heart rate, blood pressure, blood oxygen saturation, respiratory rate, and body temperature in real time, and issue alarms when these values exceed preset ranges, allowing medical staff to respond promptly. Patient monitors are widely used in various medical environments, including hospitals, emergency centers, and intensive care units (ICUs), playing a crucial role, especially during patient transport, surgery, and rehabilitation.
[0125] Docks can be used to expand or enhance the functionality of a monitor. For example, a dock can include a larger display, more connection ports, or other auxiliary devices, making the monitor system easier to use and expand. In some designs, docks can serve as the monitor's display and control interface, providing a user interface and data display.
[0126] In some application scenarios, expansion devices can also be called expansion units, docking stations, etc., without limitation here.
[0127] Figure 2 A schematic diagram of the expansion device is shown. (Example) Figure 2 As shown, the expansion device can include a larger display screen.
[0128] In this embodiment of the disclosure, the connection status between the monitor and the expansion device is detected. For example, it can be checked whether the physical interface between the monitor and the expansion device is connected. The monitor can detect parameters such as the interface level, signal strength, or impedance through internal circuitry or sensors to ensure the validity of the physical connection.
[0129] Once the connection is confirmed, the monitor can automatically read the device information of the expansion device from its memory. This device information can be information that uniquely identifies the expansion device. For example, the device information could be the expansion device's ID, serial number, etc. In some application scenarios, the device information can also be referred to as the expansion device's identification information, etc., without limitation here. This configuration method, as described above in the embodiments of this disclosure, can significantly reduce the manufacturing cost of the expansion device and improve the interoperability of medical devices.
[0130] After reading the device information of the currently connected expansion device, the monitor can compare the newly read device information with the previously recorded device information. If the device information of the currently connected expansion device is found to be inconsistent with the previously recorded device information, it can be determined that the expansion device has been replaced. This replacement may be because the target patient has been transferred to a new care unit and needs to be connected to a new expansion device.
[0131] After confirming the replacement of the extended equipment, the monitor can automatically generate a location information confirmation interface. This interface can be used to automatically obtain the monitor's current location information or to request the monitor's current location information from the user. The location information confirmation interface can be a graphical user interface (GUI) and may include fields that require user input, selection, or confirmation, such as nursing unit identification information or bed identification information.
[0132] In one possible implementation, the current location information includes: identification information of the current care unit where the monitor is located.
[0133] Nursing units are specific areas within a hospital designated according to patients' treatment needs, used to provide specific types of medical services. Each nursing unit typically has a clearly defined function and patient group, such as general wards, step-down wards, intensive care units (ICUs), and pediatric wards.
[0134] As an example of this implementation, the identification information for a nursing unit can include an identifier for that unit. In this example, each nursing unit can have a unique identifier for differentiation and identification within the system. This identifier can be numbers, letters, or a combination of numbers and letters, depending on the naming rules of the hospital or healthcare system.
[0135] As another example of this implementation, the identification information of a nursing unit can include the unit's name or description. The name or description can more intuitively represent its location or function. Examples include "Cardiovascular Medicine Ward" or "Surgical Intensive Care Unit."
[0136] In another possible implementation, the current location information includes: the identification information of the current nursing unit where the monitor is located, and the identification information of the current bed of the target patient corresponding to the monitor.
[0137] In this implementation, in addition to the identification information of the current nursing unit where the monitor is located, the monitor's current location information also includes the identification information of the current bed of the target patient corresponding to the monitor. The bed identification information can be a bed number, location number, etc., which can be used to uniquely identify the bed where the patient is currently lying.
[0138] By taking into account the identification information of the current bed of the target patient corresponding to the monitor, the system can be adjusted more finely according to the specific configurations or needs that may exist for different beds (such as specific monitoring parameters, alarm thresholds, etc.).
[0139] It should be noted that although the current location information of the monitor has been described above using the two implementation methods described above, those skilled in the art will understand that this disclosure is not limited to this. For example, in other possible implementation methods, the current location information of the monitor may include at least some of the following information: room number, floor information, building or area name (e.g., main campus, east campus, etc.), coordinates, identification information of the nursing team or responsible nurse, etc.
[0140] In one possible implementation, obtaining the current location information of the monitor includes: obtaining the location information of the extended device; and determining the current location information of the monitor based on the location information of the extended device.
[0141] In this implementation, the monitor can automatically obtain the location information of the extended device, and can automatically determine the current location information of the monitor based on the location information of the extended device.
[0142] As an example of this implementation, the location information of the extended device can be used to determine the current location information of the monitor.
[0143] As another example of this implementation, the location information of the extended device and the pre-defined mapping relationship between the location information of the extended device and the location information of the monitor can be used to determine the current location information of the monitor.
[0144] This implementation method automatically identifies and acquires the location information of the extended device, thereby automatically determining the current location information of the monitor without requiring manual input by the user (such as medical staff), thus improving work efficiency, reducing human error, and enhancing the automation and intelligence level of medical equipment management.
[0145] As an example of this implementation, obtaining the location information of the extended device includes: reading the location information of the extended device from the memory.
[0146] In this example, the extension device can be designed to store its location information. This design allows the monitor to automatically read its location information from the extension device's memory when connected, thereby determining the monitor's current location.
[0147] For example, when each extension device is deployed, its location information (such as the identification information of the nursing unit, the identification information of the bed, the room number, the floor, etc.) can be recorded in the memory of the extension device. The location information of the extension device can be preset, or it can be set during the installation process through some method (such as manual input, automatic recognition, etc.), or it can be stored later based on the information input by the user.
[0148] In this example, after the monitor establishes a connection with the extension device, the monitor can attempt to read location information from the extension device's memory. After reading the location information from the extension device, the monitor can determine its own current location.
[0149] In this example, no manual intervention from users (such as healthcare workers) is required, reducing operational steps, improving efficiency, and avoiding inaccurate location information due to human input errors. Once the location information of the extended device is set, it can be reused without frequent changes.
[0150] As another example of this implementation, obtaining the location information of the extended device includes: determining the location information of the extended device based on the device information of the extended device and a device information-location mapping table, wherein the device information-location mapping table is obtained from the server.
[0151] The device information and location mapping table can be a database or table used to store the mapping relationship between extended devices and their corresponding location information. The device information and location mapping table can be located on the server side and can be accessed by multiple clients (such as multiple monitors).
[0152] The monitor can send the device information of the extended device to the server, or directly match it locally with the device information and location mapping table downloaded from the server. The matching process can involve finding the corresponding location information based on the device information of the extended device.
[0153] In one instance, the server can be deployed in the cloud, facilitating centralized management of devices and minimizing the risk of data loss. In another instance, the server can comprise a wired or wireless local area network (LAN) within a healthcare environment, such as a hospital. A hospital LAN can balance security and device manageability. For example, in a hospital with a large number of patient monitors, the server within the LAN can uniformly analyze and process the device information of these monitors, perform location matching, and / or location allocation, improving efficiency and reducing the likelihood of allocation conflicts.
[0154] After finding the location information that matches the device information of the extended device in the device information and location mapping table, the current location information of the monitor can be determined based on the location information of the extended device.
[0155] This example facilitates centralized management and maintenance of device information and location mapping tables, ensuring data accuracy and consistency. This is particularly important for healthcare environments requiring frequent patient movement, as it significantly reduces the workload of manual setup adjustments due to device location changes, improving efficiency and minimizing human error.
[0156] In another possible implementation, obtaining the current location information of the monitor from the location information determination interface includes: obtaining the current location information of the monitor input or selected by the user in the location information determination interface.
[0157] In this implementation, the location information determination interface can include fields or options for inputting or selecting location information. Users can input or select the current location information of the monitor based on the current situation in the pop-up location information determination interface. The current location information of the monitor can include the identification information of the nursing unit (such as name, number, etc.), room number, bed number, etc. Users can provide this information through keyboard input, drop-down menu selection, etc.
[0158] In this implementation, by allowing users to directly input or select the current location information of the monitor in the location information determination interface, the problem of location change in various complex scenarios can be flexibly handled.
[0159] As an example of this implementation, before obtaining the current location information of the monitor input or selected by the user in the location information determination interface, the method further includes: displaying the identification information of the nursing unit where the monitor was last located in the location information determination interface.
[0160] In this example, the monitor can record the identification information of the previous nursing unit it was in. This means that after each transfer, the monitor can record the identification information of the nursing unit it was in at that time. When the monitor needs to be transferred again, once a new extension device connection is detected, it can automatically extract the identification information of the previous nursing unit from the monitor's records and display it in the location information determination interface.
[0161] Displaying the identification information of the previous nursing unit is crucial for the healthcare staff in the current unit. It provides clear contextual information, helping them quickly understand which nursing unit the patient was transferred from. This design helps reduce confusion or errors that may result from unclear information, improving communication efficiency and accuracy during the transfer process.
[0162] As another example of this implementation, before obtaining the current location information of the monitor entered or selected by the user in the location information determination interface, the method further includes: displaying the identification information of the nursing unit where the monitor was last located and the identification information of the bed to be confirmed in the location information determination interface, wherein the bed to be confirmed is automatically allocated by the server from the available beds.
[0163] In this example, in addition to the identification information of the previous nursing unit, the location information confirmation interface can also display the identification information of a bed awaiting confirmation. In this example, this bed is not randomly generated, but automatically allocated by the server based on the current availability of beds. The server can check which beds are available in the current nursing unit and automatically allocate a suitable bed to the patient being transferred. This reduces the step of users manually selecting a bed, improves work efficiency, and also avoids bed conflicts.
[0164] In this example, the automatic allocation of beds by the server further improves the intelligence level of the system and optimizes the clinical workflow.
[0165] As an example of this implementation, after obtaining the current location information of the monitor input or selected by the user in the location information determination interface, the method further includes: determining the location information of the extended device based on the current location information; storing the location information of the extended device in the memory; and / or recording the mapping relationship between the device information and the location information of the extended device in a device information and location mapping table, and uploading the updated device information and location mapping table to the server.
[0166] In this example, after the user completes the input or selection, the location information of the currently connected extended device can be determined based on the current location information of the monitor provided by the user. For example, the current location information of the monitor can be used to determine the location information of the extended device.
[0167] In one example, after determining the location information of the extended device, the location information of the extended device can be stored in the memory of the extended device, so that a monitor subsequently connected to the extended device can read the location information of the extended device from the memory of the extended device.
[0168] In one example, after determining the location information of the extended device, the mapping relationship between the device information and the location information of the extended device can be written into the device information and location mapping table, and the updated device information and location mapping table can be uploaded to the server, so that the device information and location mapping table accessed by all clients (such as multiple monitors) is up-to-date.
[0169] In this embodiment of the disclosure, after obtaining the current location information of the monitor from the location information determination interface, target setting information of the monitor matching the current location information can be obtained, and the monitor can be set according to the target setting information. The target setting information can represent the setting information of the monitor matching the current location information.
[0170] In one possible implementation, the target setting information includes: the target monitoring mode of the monitor.
[0171] The monitoring mode refers to a set of predefined parameters and rules used by the monitor when performing monitoring tasks. Different monitoring modes may be suitable for different patient groups, stages of illness, or treatment environments. For example, in the intensive care unit (ICU), the monitor may need to be set to a continuous, high-sensitivity monitoring mode to capture any changes in the patient's vital signs in real time; while in a general ward, the monitoring mode may be relatively more lenient.
[0172] As an example of this implementation, the monitoring mode of a patient monitor can include information about the monitoring parameters. Patient monitors typically monitor a variety of physiological parameters, including but not limited to heart rate, blood pressure (systolic, diastolic, and mean pressure), respiratory rate, oxygen saturation (SpO2), electrocardiogram (ECG) waveform, and body temperature. During patient transfer, depending on the needs of the new care unit, it may be necessary to add or remove certain monitoring parameters, or adjust the monitoring accuracy and frequency.
[0173] As an example of this implementation, the monitor's monitoring modes can include alarm thresholds. Alarm thresholds can be used to trigger an alarm when a patient's physiological parameters exceed preset ranges. Alarm thresholds can be set for different monitored parameters, such as heart rate, blood pressure, and respiratory rate. When a patient is transferred from one care unit to another, the new care unit may require different alarm threshold settings to accommodate different clinical needs and patient conditions.
[0174] As an example of this implementation, the monitor's monitoring mode can include display settings information. These settings determine what information is displayed on the monitor screen and how it is displayed. This might include waveforms, numerical values, trend graphs, etc. When the patient's location changes, the new care unit may have different display requirements; for example, it may need to highlight specific monitoring parameters or adjust the screen layout to suit different working environments.
[0175] In this implementation, when a change in the monitor's location is detected (e.g., a patient is transferred from a general ward to the ICU), the monitor's monitoring mode can be automatically adjusted or the user can be prompted to adjust it to adapt to the new environment. This automated configuration not only improves work efficiency but also reduces the risk of human error. By setting appropriate monitoring modes for the monitor, it is possible to ensure that patients receive timely and accurate monitoring of their physiological parameters, thereby helping doctors to more accurately assess the patient's condition, adjust treatment plans, and ultimately improve the quality of patient care and treatment outcomes.
[0176] In other possible implementations, the monitor's settings information may also include network connection and security information, sensor configuration information, etc., which are not limited here.
[0177] In one possible implementation, obtaining the target setting information of the monitor that matches the current location information includes: reading the setting information corresponding to the extended device from the memory, and determining the target setting information of the monitor based on the setting information corresponding to the extended device.
[0178] In this implementation, when the monitor connects to a new expansion device, the monitor can attempt to read the corresponding setting information from the expansion device's memory. After reading the setting information of the expansion device, the monitor can determine its own target setting information based on the expansion device's setting information to match the requirements of the new location.
[0179] This implementation method significantly reduces manual user intervention and improves work efficiency by automatically reading setting information from extended devices and adjusting the monitor's settings accordingly. Furthermore, automatic setting adjustment reduces the risk of errors due to human negligence, thereby improving the accuracy and safety of medical care. This method enables the monitor to automatically adjust its settings based on different location information, adapting to varying clinical needs and environmental changes.
[0180] For example, a patient monitor originally used in a cardiology ward may have been optimized for the needs of that ward. When a patient needs to be transferred to the surgical intensive care unit (ICU), medical staff will connect the monitor to the ICU's extension equipment. The monitor will then automatically read the corresponding settings from the extension equipment's memory and adjust its monitoring mode accordingly to meet the clinical needs of the surgical ICU.
[0181] In another possible implementation, obtaining the target setting information of the monitor that matches the current location information includes: determining the target setting information of the monitor that matches the current location information based on the current location information and a location-to-setting information mapping table, wherein the location-to-setting information mapping table is obtained from the server.
[0182] The location-to-settings mapping table can be a database or a table stored on a server, and can be used to store the mapping relationship between each location and the corresponding monitor's settings. Each entry in the location-to-settings mapping table can be associated with a location identifier and a set of corresponding monitor settings.
[0183] In this implementation, the monitor can send the acquired current location information to the server, or it can directly match the location with a location-to-settings mapping table downloaded from the server. It can search for matching settings information in the location-to-settings mapping table based on the current location information. If a match is found, the corresponding monitor settings information can be extracted.
[0184] After determining the target settings of the monitor that match the current location information, the target settings can be applied to the monitor to ensure that it performs correct monitoring according to the new location environment.
[0185] This implementation method allows the monitor settings to automatically adjust according to location changes, reducing manual intervention by the user and improving work efficiency. Furthermore, by centrally managing the mapping table between location and setting information, settings can be easily updated and maintained, ensuring the monitor always uses the latest configuration suitable for the current location. This implementation method also improves the accuracy and reliability of medical monitoring, reducing the risk of monitoring errors caused by human error.
[0186] In another possible implementation, obtaining the target setting information of the monitor that matches the current location information includes: displaying a setting information input interface; and acquiring the target setting information of the monitor that the user inputs or selects in the setting information input interface.
[0187] In this implementation, when a change in the monitor's location is detected, and the monitor's settings need to be adjusted based on this new location information, a settings information input interface can be displayed to the user. This interface can be a graphical user interface (GUI) used to collect or confirm the monitor's target settings.
[0188] Users can be prompted to enter or select target settings for the monitor on the settings input interface. For example, users can complete this step by clicking, selecting from a drop-down menu, or filling in a text box. After the user completes the input or selection, the monitor can obtain the target settings information and configure the monitor accordingly to adapt to new location and environmental requirements.
[0189] In this implementation, by displaying a settings information input interface and obtaining the target settings information of the monitor entered or selected by the user in the settings information input interface, the user can flexibly configure the settings of the monitor according to specific circumstances.
[0190] As an example of this implementation, the display settings information input interface includes: displaying the settings information input interface in response to the absence of settings information corresponding to the extended device in the memory and / or the absence of settings information matching the current location information in the location-to-settings information mapping table.
[0191] In this example, the settings information input interface can only be displayed when the target settings information of the monitor that matches the current location information cannot be obtained automatically.
[0192] In one example, the settings input interface can be displayed in response to the absence of settings information for the extended device in the memory and the absence of settings information matching the current location information in the location-to-settings mapping table.
[0193] In another example, a settings input interface can be displayed in response to the absence of settings information for the extended device in the memory.
[0194] In another example, a settings input interface can be displayed in response to the absence of a matching settings information in the location and settings information mapping table.
[0195] When the target setting information cannot be automatically retrieved from the extended device's memory or location-to-settings mapping table, a settings input interface is displayed, allowing the user to manually enter or select appropriate settings based on the current location information. This increases the flexibility and accuracy of monitor settings.
[0196] In one example, after obtaining the target setting information of the monitor entered or selected by the user in the setting information input interface, the method further includes: determining the setting information corresponding to the extended device based on the target setting information, and storing the setting information corresponding to the extended device in the memory; and / or, recording the mapping relationship between the current location information and the target setting information in the location and setting information mapping table, and uploading the updated location and setting information mapping table to the server.
[0197] In one example, the setting information corresponding to the extended device can be determined based on the target setting information, and this setting information can be stored in the extended device's memory. For instance, the target setting information can be determined as the setting information corresponding to the extended device. By storing the setting information corresponding to the extended device in the extended device's memory, when the monitor connects to the extended device subsequently, it can automatically read the setting information corresponding to the extended device from the extended device's memory, thereby automatically determining the monitor's target setting information without requiring manual setting again, thus improving the system's intelligence and user experience.
[0198] In another example, a location-to-settings mapping table can be used to record the mapping relationship between current location information and target settings information, and the updated location-to-settings mapping table can be uploaded to the server. This allows multiple clients (such as multiple monitors) to share the location-to-settings mapping table, thereby achieving centralized management and synchronized updates of settings information.
[0199] In one possible implementation, the method further includes: determining, based on the device information of the extended device, that the extended device has not been replaced, and not generating the location information determination interface.
[0200] In this implementation, the monitor can check the device information of the currently connected extended device at a preset frequency or based on a specific event (such as reconnection of the extended device) and compare it with previously recorded information. If the device information of the extended device has not changed, it can be assumed that the extended device has not been replaced, i.e., it is still the same extended device that was previously connected. If it is determined that the extended device has not been replaced, a location information determination interface does not need to be generated.
[0201] This implementation improves the efficiency of monitor setup and enhances the user experience. By intelligently identifying when expansion devices have been replaced, unnecessary user interactions can be avoided, thereby simplifying the operation process and reducing the user's workload.
[0202] In one possible implementation, the method further includes: in response to a change in the status of the target patient corresponding to the monitor to discharge, configuring the monitor according to default setting information.
[0203] In this implementation, the system can detect when the status of the target patient (i.e., the patient currently being monitored by the monitor) changes from inpatient to discharged. This detection can be based on the hospital's internal information system (such as the HIS system) or through some logical judgment of the monitor itself (such as detecting that patient information has been removed or changed).
[0204] In this implementation, default settings can be preset. These default settings refer to the standard configuration or settings adopted by the monitor when there is no specific patient information or special needs. Default settings may include default ranges for screen brightness, volume, alarm thresholds, and display parameters (such as heart rate and blood pressure).
[0205] In this implementation, an automated process can be triggered in response to the detection of a patient's discharge, reconfiguring the monitor according to preset default settings. This process can be completed automatically via software commands, without human intervention.
[0206] This approach automates the adjustment of monitor settings based on changes in the patient's condition, reducing manual operations by medical staff and improving work efficiency. Preset default settings also reduce medical risks caused by human error or misconfiguration.
[0207] For example, after a patient has been monitored on a monitor for several days, the doctor decides to discharge them. At this point, the hospital's information system automatically updates the patient's status and triggers the monitor's automatic settings adjustment mechanism. The monitor will automatically revert to its default settings to prepare for the next patient. This way, when a new patient is connected to the monitor, medical staff no longer need to manually adjust the monitor's parameters and can begin monitoring immediately.
[0208] In another possible implementation, the method further includes: in response to the status change of the target patient corresponding to the monitor being discharged, not resetting the monitor, for example, the monitor can be kept in the current monitoring mode.
[0209] The following describes the monitor setup method provided in this embodiment through a specific application scenario. Figure 3 A schematic diagram illustrating an application scenario of the monitor setting method provided in the embodiments of this disclosure.
[0210] like Figure 3 As shown, the transition ward nurse prepares to transfer the patient to the ICU. At this time, the patient's monitor is connected to the extended equipment in the transition ward and is in transition ward mode. The transition ward nurse hands the patient over to the ICU nurse and informs them of the patient's basic condition and transfer requirements.
[0211] An ICU nurse wheels a patient into the ICU and prepares to connect a monitor to the ICU's expansion device. When the monitor is plugged into the expansion device, it automatically reads the device information from the expansion device's memory. Based on this information, the monitor can determine that the expansion device has been replaced and automatically displays a location information confirmation interface. The monitor can read the expansion device's location information, "ICU," from its memory and set this as its current location. The ICU nurse can then confirm the monitor's current location in the location information confirmation interface. Figure 4 This diagram illustrates the location information determination interface in the monitor setting method provided in this embodiment.
[0212] The monitor can obtain a location-to-settings mapping table from the server and, based on the monitor's current location information "ICU" and the location-to-settings mapping table, determine the target monitoring mode "ICU mode" that matches the current location information "ICU". In other words, the monitor can automatically switch the monitoring mode from transitional ward mode to ICU mode. Figure 5 This diagram illustrates the display interface of relevant information about the monitor in the monitor setting method provided in this embodiment of the present disclosure. Figure 5 The example shown can display patient information, the current location of the monitor, and the monitor's monitoring mode.
[0213] ICU nurses can also attach additional sensors to patients based on their specific conditions, such as blood pressure monitoring and blood oxygen saturation monitoring.
[0214] The monitor continuously monitors the patient's vital signs in ICU mode. When the patient is discharged from the ICU or transferred to another department, the ICU nurse unplugs the monitor from the ICU's extension equipment. If the system is configured to "Return to Last Use Mode," the monitor will automatically revert to ICU mode or another user-specified mode. If configured to "Default Mode," the monitor will revert to its default settings.
[0215] It is understood that the various method embodiments mentioned above in this disclosure can be combined with each other to form combined embodiments without violating the principle and logic. Due to space limitations, this disclosure will not elaborate further. Those skilled in the art will understand that in the above methods of specific implementation, the specific execution order of each step should be determined by its function and possible internal logic.
[0216] In addition, this disclosure also provides a monitor setting device, electronic device, computer-readable storage medium, and computer program product, all of which can be used to implement any of the monitor setting methods provided in this disclosure. The corresponding technical solutions and effects can be found in the relevant descriptions in the method section, and will not be repeated here.
[0217] Figure 6 A block diagram of a monitor setting device provided in an embodiment of this disclosure is shown. Figure 6 As shown, the monitor setting device includes:
[0218] Detection module 61 is used to detect the connection status of the monitor and the expansion device;
[0219] Reading module 62 is configured to automatically read device information of the extended device from the memory of the extended device in response to detecting that the monitor is connected to the extended device;
[0220] The generation module 63 is used to determine that the extended device has been replaced based on the device information of the extended device, and automatically generate a location information determination interface;
[0221] Module 64 is configured to obtain the current location information of the monitor from the location information determination interface; and
[0222] Setting module 65 is used to obtain target setting information of the monitor that matches the current location information, and to set the monitor according to the target setting information.
[0223] In one possible implementation, the current location information includes:
[0224] The identification information of the current nursing unit where the monitor is located;
[0225] or,
[0226] The identification information of the current nursing unit where the monitor is located, and the identification information of the current bed of the target patient corresponding to the monitor.
[0227] In one possible implementation, the target setting information includes:
[0228] The target monitoring mode of the monitor.
[0229] In one possible implementation, the obtaining module 64 is used for:
[0230] Obtain the location information of the extended device;
[0231] The current location information of the monitor is determined based on the location information of the extended device.
[0232] In one possible implementation, the obtaining module 64 is used for:
[0233] Read the location information of the extended device from the memory;
[0234] or,
[0235] The location information of the extended device is determined based on the device information of the extended device and the device information-location mapping table, wherein the device information-location mapping table is obtained from the server.
[0236] In one possible implementation, the obtaining module 64 is used for:
[0237] Obtain the current location information of the monitor that the user inputs or selects in the location information determination interface.
[0238] In one possible implementation, the device further includes a display module, the display module being used for:
[0239] The location information determination interface displays the identification information of the nursing unit where the monitor was last located;
[0240] or,
[0241] The location information determination interface displays the identification information of the nursing unit where the monitor was last located, as well as the identification information of the bed to be confirmed. The bed to be confirmed is automatically allocated by the server from the available beds.
[0242] In one possible implementation, the device further includes:
[0243] The determining module is used to determine the location information of the extended device based on the current location information;
[0244] The first storage module is used to store the location information of the extended device in the memory; and / or, in the device information and location mapping table, record the mapping relationship between the device information and location information of the extended device, and upload the updated device information and location mapping table to the server.
[0245] In one possible implementation, the setting module 65 is used to:
[0246] The system reads the setting information corresponding to the extended device from the memory, and determines the target setting information of the monitor based on the setting information corresponding to the extended device.
[0247] or,
[0248] Based on the current location information and the location-setting information mapping table, the target setting information of the monitor that matches the current location information is determined, wherein the location-setting information mapping table is obtained from the server.
[0249] In one possible implementation, the setting module 65 is used to:
[0250] Displays the settings information input interface;
[0251] Obtain the target settings information of the monitor that the user enters or selects in the settings information input interface.
[0252] In one possible implementation, the setting module 65 is used to:
[0253] In response to the absence of setting information corresponding to the extended device in the memory and / or the absence of setting information matching the current location information in the location-to-setting information mapping table, a setting information input interface is displayed.
[0254] In one possible implementation, the device further includes a second storage module, the second storage module being used for:
[0255] Based on the target setting information, determine the setting information corresponding to the extended device, and store the setting information corresponding to the extended device in the memory;
[0256] And / or,
[0257] The location and setting information mapping table records the mapping relationship between the current location information and the target setting information, and the updated location and setting information mapping table is uploaded to the server.
[0258] In one possible implementation, the setting module 65 is further configured to:
[0259] In response to the status change of the target patient corresponding to the monitor being discharged, the monitor is configured according to the default settings.
[0260] In one possible implementation, the generation module 63 is further configured to:
[0261] Based on the device information of the extended device, it is determined that the extended device has not been replaced, and the location information determination interface is not generated.
[0262] In some embodiments, the functions or modules of the apparatus provided in this disclosure can be used to perform the methods described in the above method embodiments. The specific implementation and technical effects can be referred to the description of the above method embodiments. For the sake of brevity, they will not be repeated here.
[0263] This disclosure also provides a computer-readable storage medium storing computer program instructions thereon, which, when executed by a processor, implement the above-described method. The computer-readable storage medium may be a non-volatile computer-readable storage medium or a volatile computer-readable storage medium.
[0264] This disclosure also proposes a computer program including computer-readable code, wherein when the computer-readable code is run in an electronic device, a processor in the electronic device executes the above-described method.
[0265] This disclosure also provides a computer program product, including computer-readable code, or a non-volatile computer-readable storage medium carrying computer-readable code, wherein when the computer-readable code is run in an electronic device, the processor in the electronic device executes the above-described method.
[0266] This disclosure also provides an electronic device, including: one or more processors; a memory for storing executable instructions; wherein the one or more processors are configured to invoke the executable instructions stored in the memory to perform the above-described method.
[0267] Electronic devices can be provided as monitors or other forms of devices.
[0268] Figure 7 A block diagram of an electronic device 1900 provided in an embodiment of this disclosure is shown. For example, the electronic device 1900 may be provided as a patient monitor. (Refer to...) Figure 7The electronic device 1900 includes a processing component 1922, which further includes one or more processors, and memory resources represented by memory 1932 for storing instructions, such as application programs, that can be executed by the processing component 1922. The application programs stored in memory 1932 may include one or more modules, each corresponding to a set of instructions. Furthermore, the processing component 1922 is configured to execute instructions to perform the methods described above.
[0269] Electronic device 1900 may also include a power supply component 1926 configured to perform power management of electronic device 1900, a wired or wireless network interface 1950 configured to connect electronic device 1900 to a network, and an input / output interface 1958 (I / O interface). Electronic device 1900 can operate on an operating system stored in memory 1932, such as Microsoft Server operating system (Windows Server). TM Apple's graphical user interface-based operating system (MacOS X) TM ), a multi-user, multi-process computer operating system (Unix) TM Linux is a free and open-source Unix-like operating system. TM ), the open-source Unix-like operating system (FreeBSD) TM (or similar.)
[0270] In an exemplary embodiment, a non-volatile computer-readable storage medium is also provided, such as a memory 1932 including computer program instructions that can be executed by a processing component 1922 of an electronic device 1900 to perform the above-described method.
[0271] This disclosure can be a system, method, and / or computer program product. A computer program product may include a computer-readable storage medium having computer-readable program instructions loaded thereon for causing a processor to implement various aspects of this disclosure.
[0272] Computer-readable storage media can be tangible devices capable of holding and storing instructions for use by an instruction execution device. Computer-readable storage media can be, for example—but not limited to—electrical storage devices, magnetic storage devices, optical storage devices, electromagnetic storage devices, semiconductor storage devices, or any suitable combination thereof. More specific examples (a non-exhaustive list) of computer-readable storage media include: portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), static random access memory (SRAM), portable compact disc read-only memory (CD-ROM), digital multifunction disc (DVD), memory sticks, floppy disks, mechanical encoding devices, such as punch cards or recessed protrusions storing instructions thereon, and any suitable combination thereof. The computer-readable storage media used herein are not to be construed as transient signals themselves, such as radio waves or other freely propagating electromagnetic waves, electromagnetic waves propagating through waveguides or other transmission media (e.g., light pulses through fiber optic cables), or electrical signals transmitted through wires.
[0273] The computer-readable program instructions described herein can be downloaded from computer-readable storage media to various computing / processing devices, or downloaded via a network, such as the Internet, local area network, wide area network, and / or wireless network, to an external computer or external storage device. The network may include copper transmission cables, fiber optic transmission, wireless transmission, routers, firewalls, switches, gateway computers, and / or edge servers. A network adapter card or network interface in each computing / processing device receives the computer-readable program instructions from the network and forwards them to the computer-readable storage media in the respective computing / processing device.
[0274] Computer program instructions used to perform the operations of this disclosure may be assembly instructions, instruction set architecture (ISA) instructions, machine instructions, machine-dependent instructions, microcode, firmware instructions, status setting data, or source code or object code written in any combination of one or more programming languages, including object-oriented programming languages such as Smalltalk, C++, etc., and conventional procedural programming languages such as the "C" language or similar programming languages. The computer-readable program instructions may execute entirely on the user's computer, partially on the user's computer, as a standalone software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In cases involving a remote computer, the remote computer may be connected to the user's computer via any type of network—including a local area network (LAN) or a wide area network (WAN)—or may be connected to an external computer (e.g., via the Internet using an Internet service provider). In some embodiments, electronic circuitry, such as programmable logic circuitry, field-programmable gate arrays (FPGAs), or programmable logic arrays (PLAs), is personalized by utilizing the status information of the computer-readable program instructions to implement various aspects of this disclosure.
[0275] Various aspects of this disclosure are described herein with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of this disclosure. It should be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer-readable program instructions.
[0276] These computer-readable program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, or other programmable data processing apparatus to produce a machine such that, when executed by the processor of the computer or other programmable data processing apparatus, they create means for implementing the functions / actions specified in one or more blocks of the flowchart and / or block diagram. These computer-readable program instructions can also be stored in a computer-readable storage medium that causes a computer, programmable data processing apparatus, and / or other device to operate in a particular manner; thus, the computer-readable medium storing the instructions comprises an article of manufacture that includes instructions for implementing aspects of the functions / actions specified in one or more blocks of the flowchart and / or block diagram.
[0277] Computer-readable program instructions may also be loaded onto a computer, other programmable data processing apparatus, or other device to cause a series of operational steps to be performed on the computer, other programmable data processing apparatus, or other device to produce a computer-implemented process, thereby causing the instructions executed on the computer, other programmable data processing apparatus, or other device to perform the functions / actions specified in one or more boxes of a flowchart and / or block diagram.
[0278] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of the present disclosure. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of an instruction containing one or more executable instructions for implementing a specified logical function. In some alternative implementations, the functions marked in the blocks may occur in a different order than those shown in the drawings. For example, two consecutive blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, may be implemented using a dedicated hardware-based system that performs the specified function or action, or using a combination of dedicated hardware and computer instructions.
[0279] The computer program product can be implemented specifically through hardware, software, or a combination thereof. In one alternative embodiment, the computer program product is specifically embodied in a computer storage medium; in another alternative embodiment, the computer program product is specifically embodied in a software product, such as a software development kit (SDK), etc.
[0280] The description of the various embodiments above tends to emphasize the differences between the various embodiments. The similarities or similarities between them can be referred to, and for the sake of brevity, they will not be repeated here.
[0281] If the technical solution of this disclosure involves personal information, the product applying the technical solution of this disclosure has clearly informed the user of the personal information processing rules and obtained the user's voluntary consent before processing the personal information. If the technical solution of this disclosure involves sensitive personal information, the product applying the technical solution of this disclosure has obtained the user's separate consent before processing the sensitive personal information, and also meets the requirement of "express consent". For example, at personal information collection devices such as cameras, clear and prominent signs are set up to indicate that the user has entered the scope of personal information collection and that personal information will be collected. If the user voluntarily enters the collection scope, it is deemed to have consented to the collection of their personal information; or on the personal information processing device, with clear signs / information informing the user of the personal information processing rules, authorization is obtained from the user through pop-up information or by asking the user to upload their personal information; wherein, the personal information processing rules may include information such as the personal information processor, the purpose of personal information processing, the processing method, and the types of personal information processed.
[0282] The various embodiments of this disclosure have been described above. These descriptions are exemplary and not exhaustive, and are not limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical application, or improvement of the technology in the market, or to enable others skilled in the art to understand the embodiments disclosed herein.
Claims
1. A method for setting up a patient monitor, characterized in that, include: Check the connection status of the monitor and expansion devices; In response to detecting that the monitor is connected to the extension device, the device information of the extension device is automatically read from the memory of the extension device; Based on the device information of the extended device, it is determined that the extended device has been replaced, and a location information determination interface is automatically generated. The current location information of the monitor is obtained from the location information determination interface; as well as Obtain the target setting information of the monitor that matches the current location information, and set the monitor according to the target setting information.
2. The method according to claim 1, characterized in that, The current location information includes: The identification information of the current nursing unit where the monitor is located; or, The identification information of the current nursing unit where the monitor is located, and the identification information of the current bed of the target patient corresponding to the monitor.
3. The method according to claim 1, characterized in that, The target setting information includes: The target monitoring mode of the monitor.
4. The method according to any one of claims 1 to 3, characterized in that, Obtaining the current location information of the monitor includes: Obtain the location information of the extended device; The current location information of the monitor is determined based on the location information of the extended device.
5. The method according to claim 4, characterized in that, Obtaining the location information of the extended device includes: Read the location information of the extended device from the memory; or, The location information of the extended device is determined based on the device information of the extended device and the device information-location mapping table, wherein the device information-location mapping table is obtained from the server.
6. The method according to any one of claims 1 to 3, characterized in that, Obtaining the current location information of the monitor from the location information determination interface includes: Obtain the current location information of the monitor that the user inputs or selects in the location information determination interface.
7. The method according to claim 6, characterized in that, Before obtaining the current location information of the monitor input or selected by the user in the location information determination interface, the method further includes: The location information determination interface displays the identification information of the nursing unit where the monitor was last located; or, The location information determination interface displays the identification information of the nursing unit where the monitor was last located, as well as the identification information of the bed to be confirmed. The bed to be confirmed is automatically allocated by the server from the available beds.
8. The method according to claim 6, characterized in that, After obtaining the current location information of the monitor input or selected by the user in the location information determination interface, the method further includes: Based on the current location information, determine the location information of the extended device; The memory stores the location information of the extended device; and / or, in the device information and location mapping table, the mapping relationship between the device information and location information of the extended device is recorded, and the updated device information and location mapping table is uploaded to the server.
9. The method according to any one of claims 1 to 3, characterized in that, The step of obtaining the target setting information of the monitor that matches the current location information includes: The system reads the setting information corresponding to the extended device from the memory, and determines the target setting information of the monitor based on the setting information corresponding to the extended device. or, Based on the current location information and the location-setting information mapping table, the target setting information of the monitor that matches the current location information is determined, wherein the location-setting information mapping table is obtained from the server.
10. The method according to any one of claims 1 to 3, characterized in that, The step of obtaining the target setting information of the monitor that matches the current location information includes: Displays the settings information input interface; Obtain the target settings information of the monitor that the user enters or selects in the settings information input interface.
11. The method according to claim 10, characterized in that, The display settings information input interface includes: In response to the absence of setting information corresponding to the extended device in the memory and / or the absence of setting information matching the current location information in the location-to-setting information mapping table, a setting information input interface is displayed.
12. The method according to claim 11, characterized in that, After obtaining the target settings information of the monitor entered or selected by the user in the settings information input interface, the method further includes: Based on the target setting information, determine the setting information corresponding to the extended device, and store the setting information corresponding to the extended device in the memory; And / or, The location and setting information mapping table records the mapping relationship between the current location information and the target setting information, and the updated location and setting information mapping table is uploaded to the server.
13. The method according to any one of claims 1 to 3, characterized in that, The method further includes: In response to the status change of the target patient corresponding to the monitor being discharged, the monitor is configured according to the default settings.
14. The method according to any one of claims 1 to 3, characterized in that, The method further includes: Based on the device information of the extended device, it is determined that the extended device has not been replaced, and the location information determination interface is not generated.
15. A monitor setting device, characterized in that, include: The detection module is used to detect the connection status of the monitor and the expansion device; A reading module is configured to automatically read device information of the extended device from the memory of the extended device in response to detecting that the monitor is connected to the extended device; The generation module is used to determine that the extended device has been replaced based on the device information of the extended device, and automatically generate a location information determination interface; The acquisition module is used to obtain the current location information of the monitor from the location information determination interface; as well as The setting module is used to obtain target setting information of the monitor that matches the current location information, and to set the monitor according to the target setting information.
16. An electronic device, characterized in that, include: One or more processors; Memory used to store executable instructions; The one or more processors are configured to invoke executable instructions stored in the memory to perform the method according to any one of claims 1 to 14.
17. A computer-readable storage medium having computer program instructions stored thereon, characterized in that, When the computer program instructions are executed by the processor, they implement the method described in any one of claims 1 to 14.
18. A computer program product comprising computer-readable code, or a non-volatile computer-readable storage medium carrying computer-readable code, characterized in that, When the computer-readable code is run in an electronic device, the processor in the electronic device performs the method according to any one of claims 1 to 14.