Monitoring device and monitoring method thereof
By analyzing physiological parameter data through the processor of the monitoring equipment to generate processing information for treatment tools, the problem of independence between disease identification and treatment is solved, and the continuity of clinical work and treatment efficiency are improved.
Patent Information
- Application Number
- CN202080107026.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-12-28
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2040-12-28
AI Technical Summary
Conventional monitors are unable to effectively link disease identification with disease treatment, resulting in medical staff being unable to consistently identify and treat disease in their clinical work.
A monitoring device is provided, which acquires and analyzes physiological parameter data of a monitored subject through a processor, generates processing information of treatment tools associated with current condition information, and displays it on a display interface so that medical staff can quickly obtain the associated treatment information.
It realizes the connection between disease identification and disease treatment, improves the continuity of clinical work, and helps medical staff to quickly respond to changes in disease conditions and provide appropriate treatment.
Smart Images

Figure CN116490118B_ABST
Abstract
Description
[0001] manual Technical Field
[0002] The present invention generally relates to the technical field of medical equipment, and more particularly to a monitoring device and a monitoring method thereof. Background Art
[0003] Conventional monitors typically provide physiological alarms to help medical staff identify changes in the patient's condition, then emit sounds and lights to attract medical staff to the bedside for treatment. After confirming the diagnosis, medical staff administer appropriate treatment, using tools on the monitor to assist with treatment. Condition identification and treatment are independent and unconnected, hindering medical staff from conducting clinical work conveniently and coherently. Summary of the Invention
[0004] The present invention is proposed to solve at least one of the above problems. Specifically, the present invention provides a monitoring device, the monitoring device comprising:
[0005] a memory for storing executable programs;
[0006] a processor, configured to execute the program stored in the memory, so that the processor performs the following operations, including:
[0007] Acquiring data of a first physiological parameter and a second physiological parameter of the monitored subject, wherein the first physiological parameter and the second physiological parameter can be used to determine at least one condition information;
[0008] performing correlation analysis on the data of the first physiological parameter and the data of the second physiological parameter of the monitored subject to determine the current condition information of the monitored subject;
[0009] generating and controlling the display of processing information of a treatment tool associated with the current condition information based on the current condition information, wherein the processing information includes parameter information when a treatment method corresponding to the treatment tool is used on the monitored subject, and / or the processing information includes prompt information corresponding to the treatment tool;
[0010] a display, at least for displaying the data of the first physiological parameter and / or the data of the second physiological parameter on a display interface; and
[0011] When the processing information is acquired, the processing information is displayed on the display interface.
[0012] Another aspect of the present invention provides a monitoring device, comprising:
[0013] a memory for storing executable programs;
[0014] A processor, configured to execute the program stored in the memory, so that the processor performs the following actions, including:
[0015] Acquiring data on at least one type of physiological parameter of the monitored subject, wherein each physiological parameter can be used to determine at least one type of disease condition information;
[0016] When the data of at least one type of physiological parameter of the monitored object determines the current condition information of the monitored object;
[0017] generating and controlling the display of processing information of a treatment tool associated with the current condition information based on the current condition information, wherein the processing information includes parameter information when a treatment method corresponding to the treatment tool is used on the monitored subject, and / or the processing information includes prompt information corresponding to the treatment tool;
[0018] a display, at least for displaying data of the at least one type of physiological parameter on a display interface; and
[0019] When the processing information is acquired, the processing information is displayed on the display interface.
[0020] Another aspect of the present invention provides a monitoring method for a monitoring device, the monitoring method comprising:
[0021] Detecting a signal of at least one type of physiological parameter of a monitored subject;
[0022] Processing the signal of the at least one type of physiological parameter to obtain data of the at least one type of physiological parameter of the monitored object;
[0023] Determining the current condition information of the monitored subject based on data of at least one type of physiological parameter of the monitored subject;
[0024] generating, based on the current condition information, an alarm message and processing information of a treatment tool associated with the current condition information, wherein the processing information includes parameter information when a treatment method corresponding to the treatment tool is used on the monitored subject, and / or the processing information includes prompt information corresponding to the treatment tool;
[0025] The alarm information and / or the processing information are displayed on the display interface of the display.
[0026] According to the monitoring device and monitoring method of the present application, the processor can automatically generate and display processing information of the treatment tool associated with the current condition information based on the identified current condition information. When the display obtains the processing information, it can display the processing information on the display interface. The monitoring device links condition identification with condition treatment, making it convenient for medical personnel to view the processing information of the treatment tool associated with the current condition information, thereby assisting medical personnel in treating the connected patient and improving the consistency of clinical work. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, 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 invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0028] Figure 1 A schematic block diagram of a monitoring device in one embodiment of the present invention is shown;
[0029] Figure 2 A schematic block diagram showing the working mode associated with disease condition identification and disease condition treatment of a monitoring device in one embodiment of the present invention;
[0030] Figure 3 A schematic diagram showing a display interface of a display in one embodiment of the present invention is shown;
[0031] Figure 4 A schematic diagram showing a display interface of a display display in an embodiment of the present invention when a first display window is displayed;
[0032] Figure 5 A schematic diagram showing a display interface of a display display in another embodiment of the present invention when displaying a first display window;
[0033] Figure 6 A schematic diagram showing a display interface of a display display in an embodiment of the present invention when a second display window is displayed;
[0034] Figure 7 A schematic diagram showing a display interface of a display display displaying a second display window in another embodiment of the present invention is shown;
[0035] Figure 8 A flow chart of a monitoring method of a monitoring device in one embodiment of the present invention is shown. DETAILED DESCRIPTION
[0036] In order to make the purpose, technical solutions and advantages of the present invention more apparent, exemplary embodiments of the present invention will be described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments of the present invention, and it should be understood that the present invention is not limited to the exemplary embodiments described herein. Based on the embodiments of the present invention described in the present invention, all other embodiments obtained by those skilled in the art without creative work should fall within the scope of protection of the present invention.
[0037] In the following description, numerous specific details are provided to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that the present invention may be practiced without one or more of these details. In other instances, certain technical features well known in the art are not described to avoid confusion with the present invention.
[0038] It should be understood that the present invention can be implemented in different forms and should not be interpreted as being limited to the embodiments set forth herein. On the contrary, these embodiments are provided to make disclosure thorough and complete and to fully convey the scope of the present invention to those skilled in the art.
[0039] The purpose of the terms used herein is only to describe specific embodiments and is not intended to limit the present invention. When used herein, the singular forms "a", "an", and "the" are 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.
[0040] In view of the problems existing in the aforementioned monitoring devices, the present application provides a monitoring device for monitoring physiological parameters of a monitored subject, comprising: a memory for storing an executable program; a processor for executing the program stored in the memory, so that the processor performs the following actions, including: obtaining data of a first physiological parameter and a second physiological parameter of the monitored subject, wherein the first physiological parameter and the second physiological parameter can be used to determine at least one condition information; performing correlation analysis on the data of the first physiological parameter and the second physiological parameter of the monitored subject to determine the current condition information of the monitored subject; generating and controlling the display of processing information of a treatment tool associated with the current condition information based on the current condition information, wherein the processing information includes parameter information when a treatment method corresponding to the treatment tool is used on the monitored subject, and / or the processing information includes prompt information corresponding to the treatment tool; a display for displaying at least the data of the first physiological parameter and / or the data of the second physiological parameter on a display interface; and displaying the processing information on the display interface when the processing information is obtained. The processor can obtain signals of the required physiological parameters from one or more sensors connected to the monitored subject and process the signals of the physiological parameters to obtain data of the corresponding physiological parameters. The processor may also obtain data of physiological parameters stored in the memory from the memory. In some examples, each sensor may be an accessory of a monitoring device for obtaining signals of physiological parameters.
[0041] According to the monitoring device of the present application, the processor can determine the current condition information of the monitored object based on data of at least two physiological parameters of the monitored object, and can generate processing information of the treatment tool associated with the current condition information based on the current condition information. When the display obtains the processing information, the processing information is displayed on the display interface. The monitoring device associates condition identification with condition treatment, making it convenient for medical staff to view the processing information of the treatment tool associated with the current condition information, so as to assist medical staff in treating the monitored object and improve the continuity of clinical work.
[0042] In order to thoroughly understand the present invention, a detailed structure will be provided in the following description to illustrate the technical solution proposed by the present invention. Optional embodiments of the present invention are described in detail below. However, in addition to these detailed descriptions, the present invention may also have other implementations. Specifically, the monitoring device and monitoring method of the present application are described in detail below in conjunction with the accompanying drawings. The features of the following embodiments and implementations may be combined with each other unless they conflict.
[0043] As an example, the monitoring device of the embodiment of the present application detects physiological parameters of the subject to which it is connected. The monitoring device of the present application can be a bedside monitor, a central station, a PC installed and running monitoring software, etc. The following embodiment mainly uses the bedside monitor as an example to illustrate the present application.
[0044] The monitor 100 may include one or more processors 101, one or more sensors 102, a display 103, a memory 104, and a communication interface. These components are interconnected via a bus system and / or other forms of connection mechanisms (not shown). Figure 1 The components and structures of the monitor 100 shown are merely exemplary and non-limiting. The monitor 100 may also have other components and structures as needed.
[0045] Monitor 100 has a separate housing with a sensor interface area on the housing panel. Multiple sensor interfaces are integrated within the housing for connecting to external physiological parameter sensor accessories (not shown). Sensors 102 are used to detect physiological parameters of the subject connected to the monitor (i.e., the monitored subject). These physiological parameters may include, for example, at least one of the following: blood pressure, respiratory rate, heart rate, temperature, pulse rate, blood oxygen saturation, cardiac output, end-tidal carbon dioxide, electroencephalogram (EEG), and electrocardiogram (ECG).
[0046] The monitor 100 also includes signal acquisition circuits and front-end signal processing circuits (not shown) corresponding to various physiological parameters. The signal acquisition circuits can be selected from electrocardiogram (ECG) circuits, respiratory circuits, body temperature circuits, blood oxygenation circuits, non-invasive blood pressure (NIBP) circuits, invasive blood pressure (IBP) circuits, and the like. These signal acquisition circuits are electrically connected to corresponding sensor interfaces for connecting to sensor accessories corresponding to different physiological parameters. Their outputs are coupled to a front-end signal processor, whose communication port is coupled to the processor 101. The processor 101 is electrically connected to external communication and power interfaces.
[0047] Various physiological parameter measurement circuits can adopt general circuits in the prior art. The front-end signal processor completes the sampling and analog-to-digital conversion of the output signal of the signal acquisition circuit, and outputs a control signal to control the measurement process of the physiological signal. In one possible implementation, the sensors can be separate from each other or integrated into one, or some sensors can be separate from each other and some sensors can be integrated into one. The integration can be the integration of multiple different sensor modules on the same circuit board, or the integration of multiple sensor functions into one circuit, etc., and the present disclosure does not limit this.
[0048] The memory 104 is used to store various data and executable programs generated during the relevant monitoring process, such as the system program of the monitor, various application programs, or algorithms for implementing various specific functions. It can include one or more computer program products, and the computer program products can include various forms of computer-readable storage media, such as volatile memory and / or non-volatile memory. The volatile memory can include, for example, random access memory (RAM) and / or cache memory. The non-volatile memory can include, for example, read-only memory (ROM), hard disk, flash memory, etc. During the process of the monitor monitoring the monitored object, if there is any data that needs to be stored locally, it can be stored in the memory 104.
[0049] The processor 101 may be a central processing unit (CPU), a graphics processing unit (GPU), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other forms of processing units with data processing capabilities and / or instruction execution capabilities, and may control other components in the monitor to perform desired functions. For example, the processor 101 may include one or more embedded processors, processor cores, microprocessors, logic circuits, hardware finite state machines (FSMs), digital signal processors (DSPs), graphics processing units (GPUs), or combinations thereof.
[0050] The processor 101 is used to execute the program stored in the memory 104, so that the processor 101 performs the following actions, including: determining the current condition information of the monitored object based on the data of at least one type of physiological parameter of the monitored object; when multiple physiological parameters are used to identify the condition, the data of the first physiological parameter and the data of the second physiological parameter can be correlated and analyzed to determine the current condition information of the monitored object. For example, when the data of one or more types of physiological parameters of the object monitored by the monitor undergo abnormal changes, such as the data of one type of physiological parameter is abnormal, such as exceeding the threshold range, and for example, the data of at least two types of physiological parameters exceed their respective threshold ranges, the processor 101 is used to determine the current condition information of the monitored object based on the physiological parameters that exceed the threshold range. The processor of the present application can determine the condition of the monitored object based on one or more types of physiological parameters, and associate the condition identification with the condition treatment, so as to facilitate medical staff to view the processing information of the treatment tool associated with the condition information, so as to assist medical staff in treating the monitored object and improve the continuity of clinical work.
[0051] In one example, when at least the heart rate, blood pressure, and respiratory rate values among the physiological parameters of the monitored object exceed their respective threshold ranges, the current condition of the monitored object is determined to be shock. In another example, when the data of at least one type of physiological parameter related to breathing among the physiological parameters of the monitored object exceeds their respective threshold ranges, for example, at least the respiratory rate, heart rate, and blood oxygen saturation exceed their respective threshold ranges, the current condition of the monitored object is determined to be asphyxia. For example, when a monitor is used to monitor the vital signs of a newborn, the current condition of the newborn can be determined to be asphyxia based on the above-mentioned respiratory rate, heart rate, and blood oxygen saturation. The above-mentioned rules for disease judgment are only examples, and do not exclude the use of other physiological parameters for consideration when the monitored object has a specific disease, or it is also possible to use only one type of physiological parameter for consideration.
[0052] When the monitor's processor 101 determines that the monitored subject is ill, the processor 101 may also be configured to generate an alarm message based on the current condition information. The alarm message includes characters corresponding to the current condition information. For example, if the current condition information is shock, the alarm message includes the characters "shock." For another example, if the current condition information is asphyxia, the alarm message includes "asphyxia." This configuration allows medical staff to quickly obtain the patient's current condition information when the alarm message is displayed on the monitor, allowing them to provide appropriate treatment to the ill subject in a timely manner, ensuring that the subject is quickly out of danger and recovers normal vital signs.
[0053] The processor 101 may also be used to control the display to highlight the alarm information in a preset manner in the alarm display area of the display interface to alert the user, such as Figure 2 As shown, for example, when the current monitored condition information is shock, the display interface of the monitor, that is, the display screen of the display, displays characters corresponding to shock, such as "patient shock alarm", or "shock alarm", or "shock", etc.
[0054] The alarm information can be highlighted in any suitable preset manner, and the preset highlighting includes at least one of the following display modes: highlighting, flashing, additional symbol display, differentiated background color display, or differentiated font color display. For example, the alarm information is displayed in a red background color, or in any other display mode that enables the user to quickly identify the occurrence of an alarm event. In one example, the alarm information of different diseases can also be highlighted in different preset modes, such as displaying in different background colors, different font colors, etc., so that when the alarm is sounded, it can quickly alert and attract the attention of medical staff so that appropriate treatment tools can be used for the specific disease, so that the monitored person can quickly escape from danger and restore normal vital signs.
[0055] The display is at least used to display the data of physiological parameters on the display interface. In order to facilitate the user to obtain various key information, various information can be displayed in different areas, such as Figure 3 As shown, the display interface 300 may include a first parameter area for displaying physiological parameter data and an alarm display area 302 for displaying alarm information. The first parameter area may include a waveform area 303 (for example, for displaying waveforms of one or more types of physiological parameters, including but not limited to electrocardiogram (ECG), blood oxygen saturation, respiration, mean arterial blood pressure, etc.). pressure, ART), etc.), a waveform parameter area 304 (used to display data of physiological parameters corresponding to the waveform), a non-waveform parameter area 305 (for example, used to display data of the following physiological parameters of the monitored object: body temperature, non-invasive blood pressure (NIBP), pulse rate (PR), etc. The display interface may also include other display areas, such as a patient information area 301 for displaying patient information (for example, displaying the patient type, such as adult, child, newborn, etc.), a prompt information area 306 (for example, the prompt information area is used to display one or more of function attributes, function settings and function keys, such as wireless information, volume information, battery information, etc.), and a hot key area 307 (also known as a navigation area, in which one or more hot keys are displayed, such as review, standby, alarm setting, main menu, etc.). Various function keys can be icons and / or text function keys. Users can implement corresponding functions by clicking hot keys in the hot key area. For example, clicking the alarm setting hot key will pop up a setting window for related alarm settings. The layout of the above-mentioned display areas can be reasonably set according to actual needs. For example, the waveform parameter area is located on one side of the waveform area, the smart hotkey area is located at the bottom of the display interface, and the area without waveform parameters is located between the smart hotkey area and the waveform area. The alarm display area can be set at any suitable position on the display interface of the display, for example, the alarm display area is located above or to one side of the waveform parameter area, or for another example, the alarm display area is located above, below, or to one side of the waveform area.
[0056] In one example, the monitor may also be provided with an alarm device, which is configured to sound an alarm based on the aforementioned alarm information. For example, the alarm device sounds an alarm for abnormal physiological parameters, or sounds an alarm for conditions in which the monitored subject becomes ill, or, when abnormal connections or abnormal working conditions occur in various components of the monitor, the processor may generate alarm information (e.g., an alarm signal). The alarm device is configured to sound an alarm based on the aforementioned alarm information, including but not limited to light, sound, and other alarm methods. The specific form may be a flashing LED light, a buzzer, etc., which meets the requirements for the strength of the alarm signal and is sufficient to attract the attention and vigilance of the observer. In this way, real-time alarms can be achieved, thereby improving the effectiveness of data monitoring.
[0057] In one embodiment, different alarm messages can be triggered based on the threshold range of the physiological parameter data. For example, when the data of the first physiological parameter and the data of the second physiological parameter exceed their respective first threshold ranges, the alarm message is used to indicate that the monitored subject has a tendency to develop a specific disease, such as the patient has a tendency to develop shock, suffocation, and the like. In this way, medical personnel can quickly take appropriate measures before the patient develops a specific disease, thereby reducing the risk of the monitored subject developing a specific disease. For another example, when the data of the first physiological parameter and the data of the second physiological parameter exceed their respective second threshold ranges, the alarm message is used to indicate that the monitored subject has developed a specific disease, thereby enabling medical personnel to quickly obtain the patient's current disease information so as to provide appropriate treatment to the monitored subject in a timely manner, wherein the second threshold range deviates further from the normal range of each physiological parameter than the first threshold range.
[0058] In one example, the processor 101 is further configured to generate detailed condition information based on the current condition information, the detailed condition information including at least one of the following information: the value of the physiological parameter that triggers the alarm, the trend of the physiological parameter within a predetermined time before and after the alarm (the predetermined time can be reasonably set according to actual needs, for example, 5 minutes, 10 minutes, 15 minutes, 20 minutes, 30 minutes, etc.), the threshold range corresponding to the physiological parameter that triggers the alarm, the alarm time, or other information related to the current condition information. The physiological parameter that triggers the alarm is also the physiological parameter used to determine the current condition information. Medical personnel can determine whether the identified and determined current condition information is true based on the detailed condition information, and then determine whether to call the treatment tool corresponding to the current condition information.
[0059] To facilitate medical personnel to view detailed information about the condition, the processor 101 may also be configured to control the display 103 to display a first display window on the display interface, and display the detailed information about the condition in the first display window. After generating the detailed information about the condition, the processor may automatically control the display to display it so that medical personnel can view the detailed information about the condition in a timely manner. Alternatively, the processor may control the display to display information based on control instructions input by the user, so that medical personnel can view the detailed information about the condition when needed, thereby avoiding unnecessary display of detailed information about the condition, which would result in excessive information being displayed on the display interface and cause inconvenience to medical personnel.
[0060] In one example, the display interface of the display 103 is further provided with a first button, and the processor 101 is configured to: obtain a first control instruction input by a user via the first button, the first control instruction being configured to control the display to display the detailed information of the condition in a first display window; and control the display to display the detailed information of the condition in the first display window according to the first control instruction. This configuration facilitates medical personnel to view detailed information of the condition when needed, and avoids unnecessary display of detailed information of the condition, which would cause excessive information to be displayed on the display interface of the display and cause inconvenience to medical personnel.
[0061] The setting position of the first button, such as a hot key, can be set at any suitable position on the display interface of the display according to actual needs. In one example, the display interface includes a first parameter area for displaying the data of the physiological parameters and an alarm display area for displaying alarm information, and the first button is set in the alarm display area. When the alarm information is displayed in the alarm display area of the display interface of the display, the user can input the first control instruction through the first button by, for example, clicking the first button, touching the first button, etc., to display detailed information of the disease. For example, Figure 2 The alarm display area shown displays a "Patient Shock Alarm" character icon. "Patient Shock Alarm" can also correspond to a first button. A user can click or touch the "Patient Shock Alarm" character icon to input a first control instruction. Upon receiving the first control instruction, processor 101 controls the display to display the patient's condition details in the first display window according to the first control instruction. This arrangement allows the first button and the alarm information to be displayed in the same area, eliminating the need to occupy other display areas on the display interface, thereby simplifying the display interface.
[0062] In another example, the first button is set in the first parameter area for displaying the data of the physiological parameter, and can be set at any suitable position in the first parameter area, and it will not block the waveform information, waveform parameters, etc. in the first parameter area. In another example, the first button can also be set in the second display window for displaying the processing information, so that when the user needs to view detailed information of the disease while observing the processing information, they can directly operate the first button to input the first control instruction, which is convenient and quick.
[0063] It is worth mentioning that in this application, each display window can be opened and closed, and in some cases, it can be enlarged or reduced. For example, the zoom-in and zoom-out buttons provided on each display window can be used to enlarge or reduce the window; or the close button provided on each display window can be used to close the window. Thus, when the information displayed in the display window is no longer needed, such as treatment information, detailed medical information, etc., it can be closed to avoid causing confusion to the user due to excessive information display.
[0064] When the processor obtains the first control instruction, it controls the first display window to pop up and display on the display interface of the display. The first display window can be displayed in the following manner. In one example, Figure 4 As shown, the first display window 401 covers at least part of the waveform area 303, for example, covers part of the waveform area 303, or covers the entire waveform area 303, or can further cover part or all of the waveform area 303, and at most covers part of the waveform parameter area 304, so that the data of the physiological parameters in the waveform parameter area of the monitor are displayed outside the first display window, so that the user can also see the physiological parameters when viewing the detailed information of the disease.
[0065] In another example, Figure 5 As shown, the first display window may also cover at least the first parameter area (for example, the first parameter area includes the waveform area 303, the waveform parameter area 304, and the non-waveform parameter area 305). A screen switching button 402 is provided on the display interface, and the screen switching button 402 is used to receive a switching instruction input by the user so that one of the first parameter area and the first display window 401 is displayed on the display interface. Optionally, the screen switching button 402 can be set in, for example, the hot key area 307. When the first display window 401 is displayed on the display interface, the user can use the screen switching button 402 to display the first parameter area on the display interface. The above-mentioned setting method of the screen switching button 402 is only an example, and other setting methods for the screen switching button 402 are also applicable to this application. For example, the screen switching button 402 can also be set in the first display window or can also be set in the prompt information area 306. When the user needs, he can click the screen switching button 402 to display the first parameter area on the display interface.
[0066] In one example, the processor 101 is further configured to execute the program stored in the memory, causing the processor to perform the following actions, including: generating processing information of a treatment tool associated with the current condition information based on the current condition information, wherein the processing information includes parameter information when a treatment method corresponding to the treatment tool is used on the monitored object, and / or the processing information includes prompt information corresponding to the treatment tool. The display 103 is configured to display the processing information on the display interface when the processing information is obtained. For example, the processing information can be obtained by the processor actively sending the processing information to the display after generating the processing information, and the display receiving the processing information for display, or by the processor sending the processing information to the display after receiving a control instruction input by the user, and the display receiving the processing information for display. The monitor of the present application associates condition identification with condition treatment, making it convenient for medical staff to view the processing information of the treatment tool associated with the condition information, thereby assisting medical staff in treating the monitored object and improving the continuity of clinical work.
[0067] In other examples, the processing information of the treatment tool associated with the current condition information may include, in addition to the aforementioned parameter information, test information related to the treatment tool and historical record information. For example, for a fluid management tool, it may be necessary to perform a volume responsiveness assessment test on the monitored subject, such as a mechanical ventilation test or a passive leg raise test. The processing information of the treatment tool may also provide a display of parameter information related to these tests, and may also provide one or more function hotkeys for receiving user input of operation instructions, such as a function hotkey for displaying parameter information related to the test on the display interface, a function hotkey for retrieving historical record information, a function hotkey for viewing baseline data, etc.
[0068] In another example, the processor 101 is further configured to: generate, based on the current condition information, processing information of a plurality of treatment tools associated with the current condition information, the processing information including a plurality of prompt information corresponding to the treatment tools, each prompt information including character information corresponding to the treatment tool (e.g., a liquid management tool). For example, when a patient is in shock, the corresponding treatment tool may include a liquid treatment tool, and therefore, processing information of the liquid treatment tool associated with the current condition information can be generated. The processing information includes prompt information corresponding to the liquid treatment tool; and when one of the plurality of prompt information is selected, parameter information corresponding to the treatment method corresponding to the treatment tool represented by the prompt information is generated for the monitored object. This setting makes it easy for medical staff to select the treatment tool they want to view from a plurality of treatment tools for display, making the processing information on the display interface more concise, and this method is simple to operate, and the user only needs to select it with one click.
[0069] For example, when the current condition information is shock, the corresponding treatment tools include fluid therapy tools; or when the current condition information is asphyxia, the corresponding treatment tools include fluid therapy tools and / or mechanical ventilation tools. The above treatment tools corresponding to the current condition information are only examples, and other treatment tools or multiple treatment tools may be used according to actual circumstances.
[0070] After the processor 101 generates processing information, it can automatically control the display to display the processing information in the second display window, allowing users, such as medical personnel, to quickly view the processing information related to the treatment tool. Alternatively, the processor 101 can also control the display to display the processing information in the second display window based on a second control instruction input by the user. With this configuration, once the user confirms the monitored subject's condition, they can manually pop up the second display window to display parameter information related to the treatment tool.
[0071] The parameter information may also be different when using different treatment methods corresponding to different treatment tools on the monitored subject. For example, when using a treatment method corresponding to a liquid treatment tool (also referred to as a liquid management tool in this article) on the monitored subject, Figure 2 As shown, the corresponding parameter information may include at least one of the following information: vital sign parameters, effectiveness parameter trends, safety parameter trends, parameter variable amounts, etc. related to the treatment tool.
[0072] In one example, the processing information includes prompt information corresponding to the treatment tool to prompt the user to use the treatment tool according to the current condition information of the monitored object. Figure 2 As shown, prompt information corresponding to a treatment tool, such as a fluid management tool, is displayed in a first display window for displaying detailed information on a condition. Alternatively, prompt information corresponding to the treatment tool may be displayed elsewhere on the display interface. The prompt information includes, but is not limited to, character information corresponding to the treatment tool. For example, if the treatment tool is a fluid management tool, the prompt information includes character information such as "fluid management tool." Only the prompt information may be displayed, or only parameter information corresponding to the treatment method corresponding to the treatment tool used on the monitored subject may be displayed. Alternatively, the prompt information may be displayed first, followed by parameter information corresponding to the treatment method used on the monitored subject.
[0073] In one example, the monitor further includes a second display window generated by navigation from the display interface of the display, and the processor 101 is further configured to control the display to display the processing information in the second display window. The second display window can be generated by navigation in any suitable manner. For example, a second button is further provided on the display interface of the display, and the second button can be provided at any suitable position on the display interface. For example, Figure 6 As shown, the second button 502 is set in the hot key area (ie, the navigation area) 307; for example, the second button can be set in the first display window 401 for displaying detailed information of the disease, such as Figure 4 and Figure 5 As shown, the second button can be displayed as an icon corresponding to the treatment tool; for example, Figure 7 As shown, the second button 502 can be set in the submenu corresponding to the main menu of the hot key area. For example, the display interface of the display includes an alarm display area for displaying alarm information, wherein the second button is set in the alarm display area. For example, the second button can be displayed as a character icon corresponding to the treatment tool, so as to serve as the aforementioned prompt information and also as a second button. Through such a setting, when the display interface displays the alarm information, the medical staff can confirm whether the condition is true through the alarm information. If it is true, the second button can directly control the parameter information related to the treatment tool to be displayed in the second display window, making the operation simpler and faster.
[0074] The processor 101 is more specifically configured to obtain a second control instruction input by the user via the second button, the second control instruction being configured to control the display to display processing information in the second display window; and, based on the second control instruction, to control the display to display the processing information in the second display window. With this configuration, once the user confirms the monitored subject's condition, the second display window can be manually popped up to display parameter information and / or prompt information related to the treatment tool.
[0075] In one example, if Figure 2As shown, after confirming the current condition, the processor may first output an alarm message and control the display interface of the display to display the alarm message, and then automatically or manually pop up the current condition details, and then automatically or manually pop up the treatment tool processing information associated with the current condition information. In another example, the processor may also first output an alarm message after identifying the current condition, and then automatically or manually pop up the treatment tool processing information associated with the current condition information, and when necessary, based on the control command input by the user, display the condition details in the first display window of the display interface. In yet another example, the processor may also first output an alarm message after confirming the current condition, and control the display interface of the display to display the alarm message, and then automatically or manually display the condition details and treatment tool processing information on the display interface at the same time.
[0076] The aforementioned first button and second button can also be displayed in a differentiated manner in a preset manner. The preset differentiated display includes at least one of the following display modes: highlighted display, flashing display, additional symbol display, differentiated background color display or differentiated font color display, so that the user can quickly observe the required buttons and then retrieve the corresponding information based on the corresponding buttons.
[0077] The display of the processing information and detailed information of the treatment tool associated with the current condition information can be achieved through the following display methods. For example, a first display window is used to simultaneously display the processed information and the detailed information of the condition; or, the first display window and the second display window are displayed simultaneously on the display interface of the display, wherein the first display window is used to display the processing information and the second display window is used to display the detailed information of the condition; or, the second display window covers at least part of the area of the first display window; or, when the second display window is displayed on the display interface of the display, the first display window is no longer displayed on the display interface; or, when the second display window is displayed on the display interface of the display, the area of the first display window is reduced from the first area to the second area, and part of the detailed information of the condition is displayed. The above display methods are only examples, and other suitable display methods may also be applicable to this application.
[0078] In this context, each display window can be suspended on a main display interface for displaying basic parameters, or the display window can be embedded in the main display interface, for example, by popping up and then embedding it in the main display interface, while other information in the main display interface can disappear or be rearranged. In other words, the display window can be the entire display interface of the monitor, or it can be a display window embedded in or floating on the entire display interface of the monitoring system monitor.
[0079] According to the monitor of the present application, the processor can determine the current condition information of the monitored subject based on data of at least two types of physiological parameters or data of at least one type of physiological parameter of the monitored subject, and can generate processing information of the treatment tool associated with the current condition information based on the current condition information. When the display obtains the processing information, the display interface displays the processing information. The monitor links condition identification with condition treatment, making it convenient for medical staff to view the processing information of the treatment tool associated with the condition information, thereby assisting medical staff in treating the monitored subject and improving the consistency of clinical work.
[0080] Below, refer to the attached Figure 8 , describes the monitoring method of the monitoring device of this application. The monitoring method can be based on the aforementioned monitor as the execution subject. Under the premise of no conflict, the various technical features in this article can be combined with each other.
[0081] As an example, Figure 8 As shown, the monitoring method of the monitor of the present application includes the following steps S801 to S804:
[0082] First, in step S801, the signal of the physiological parameter of the monitored object is detected.
[0083] The monitor has one or more sensors that detect signals of physiological parameters of the object monitored by the monitor (i.e., the monitored object) through the sensors. For example, the physiological parameters include at least one of the following parameters: blood pressure, respiratory rate, heart rate, body temperature, pulse rate, blood oxygen saturation, cardiac output, end-tidal carbon dioxide, electroencephalogram, electrocardiogram, etc.
[0084] Next, in step S802, the current condition information of the monitored subject is determined based on at least one type of physiological parameter of the monitored subject. The current condition information may include but is not limited to shock or asphyxiation, and may also be other current condition information that can be determined based on physiological parameter data.
[0085] For example, when abnormal changes occur in the data of one or more categories of physiological parameters of the subject being monitored by the monitor, such as when the data of one category of physiological parameters becomes abnormal, such as exceeding a threshold range, or when the data of at least two categories of physiological parameters exceed their respective threshold ranges, the current condition information of the subject being monitored is determined based on the physiological parameters exceeding the threshold range, or when an abnormal electrocardiogram (ECG) in the physiological parameters of the subject being monitored occurs, the current condition information of the subject being monitored is determined based on the characteristics of the abnormal ECG. The monitoring method of the present application can determine the condition of the subject being monitored based on at least one category of physiological parameters, and associate condition identification with condition treatment, making it convenient for medical personnel to view the processing information of treatment tools associated with the condition information, thereby assisting medical personnel in treating the subject and improving the continuity of clinical work.
[0086] In one example, when at least the heart rate, blood pressure, and respiratory rate values among the monitored subject's physiological parameters exceed their respective threshold ranges, the monitored subject's current condition information is determined to be shock; in another example, when at least one type of physiological parameter related to breathing among the monitored subject's physiological parameters exceeds their respective threshold ranges, for example, at least the respiratory rate, heart rate, and blood oxygen saturation values exceed their respective threshold ranges, the monitored subject's current condition information is determined to be asphyxia. For example, when the monitor is used to monitor the vital signs of a newborn, the newborn's current condition information can be determined to be asphyxia. The above-mentioned rules for condition judgment are only examples, and do not exclude the use of other physiological parameters for consideration when a patient has a specific condition, or it is also possible to use only one physiological parameter for consideration.
[0087] Next, in step S803, based on the current condition information, an alarm message and processing information of a treatment tool associated with the current condition information are generated. The processing information includes parameter information for when the treatment method corresponding to the treatment tool is used on the monitored subject, and / or the processing information includes prompt information corresponding to the treatment tool.
[0088] When the monitor determines that a patient is experiencing a medical condition, it generates an alarm message based on the current condition information. The alarm message includes characters corresponding to the current condition information. For example, if the current condition information is shock, the alarm message includes the characters "shock." For another example, if the current condition information is asphyxia, the alarm message includes "asphyxia." This configuration allows medical staff to quickly obtain the patient's current condition information when the alarm message is displayed on the monitor, allowing them to provide appropriate treatment to the patient in a timely manner, ensuring that the patient is quickly out of danger and recovers normal vital signs.
[0089] Displaying the alarm information in the alarm display area of the display interface of the display includes: controlling the display to differentiate and display the alarm information in the alarm display area of the display interface in a preset manner to alert the user. Figure 2 As shown, for example, when the patient's current condition information is shock, the display interface of the monitor, that is, the display screen of the display, displays characters corresponding to shock, such as "patient shock alarm", or "shock alarm", or "shock", etc.
[0090] The alarm information can be displayed in a differentiated manner in any suitable preset manner, and the preset differentiated display includes at least one of the following display modes: highlight display, flashing display, additional symbol display, differentiated background color display or differentiated font color display. For example, the alarm information is displayed in a red background color, or any other display mode that enables the user to quickly identify the occurrence of an alarm event. In one example, the alarm information of different diseases can also be displayed in a differentiated manner in different preset ways, such as displaying in different background colors, different font colors, etc., so that when the alarm is sounded, it can quickly alert and pay attention to medical staff so that appropriate treatment tools can be used for the specific disease, so that the monitored person can quickly escape from danger and restore normal vital signs.
[0091] In one embodiment, different alarm messages can be triggered based on the threshold range of the physiological parameter data. For example, when the data of one or more types of physiological parameters exceed their respective first threshold ranges, the alarm message is used to indicate that the monitored subject has a tendency to develop a specific disease. For example, if a patient has a tendency to develop shock, suffocation, or other diseases, in this way, medical staff can quickly take appropriate measures before the patient develops a specific disease, thereby reducing the risk of the monitored subject developing a specific disease. For another example, when the data of one or more types of physiological parameters exceed their respective second threshold ranges, the alarm message is used to indicate that the monitored subject has developed a specific disease, thereby enabling medical staff to quickly obtain the patient's disease information so as to provide appropriate treatment to the monitored subject in a timely manner.
[0092] In one example, the method further includes: generating detailed information on the condition based on the current condition information, the detailed information on the condition including at least one of the following information: the value of the physiological parameter that triggers the alarm at the time of the alarm, the trend of the physiological parameter that triggers the alarm within a predetermined time before and after the alarm (the predetermined time can be reasonably set according to actual needs, for example, it can be 5 minutes, 10 minutes, 15 minutes, 20 minutes, 30 minutes, etc.), the threshold range corresponding to the physiological parameter that triggers the alarm, the alarm time, or other information related to the current condition information. The physiological parameter that triggers the alarm is also the physiological parameter used to determine the current condition information. Medical staff can determine whether the identified and determined current condition information is true based on the detailed information on the condition, and then determine whether to call the treatment tool corresponding to the current condition information.
[0093] In one example, the method of the present application further includes: generating processing information of a treatment tool associated with the current condition information based on the current condition information. The processing information includes parameter information when a treatment method corresponding to the treatment tool is used on the monitored object, and / or the processing information includes prompt information corresponding to the treatment tool. The monitor of the present application associates condition identification with condition processing, making it convenient for medical staff to view the processing information of the treatment tool associated with the condition information, so as to assist medical staff in treating the monitored object and improve the continuity of clinical work.
[0094] In other examples, the processing information of the treatment tool associated with the current condition information may include, in addition to the aforementioned parameter information, test information related to the treatment tool and historical record information. For example, for a fluid management tool, it may be necessary to perform a volume responsiveness assessment test on the monitored subject, such as a mechanical ventilation test or a passive leg raising test. The processing information of the treatment tool may also provide a display of parameter information related to these tests, and may also provide one or more function hot keys for receiving operation instructions input by the user. For example, a function hot key for displaying parameter information related to the test on the display interface, a function hot key for retrieving historical record information, a function hot key for viewing baseline data, etc.
[0095] The parameter information may also be different when the treatment methods corresponding to different treatment tools are used on the monitored object. For example, when the treatment method corresponding to the liquid treatment tool (also referred to as the liquid management tool in this article) is used on the monitored object, Figure 2 As shown, the corresponding parameter information may include at least one of the following information: vital sign parameters, effectiveness parameter trends, safety parameter trends, parameter variable amounts, etc. related to the treatment tool.
[0096] In one example, the processing information includes prompt information corresponding to the treatment tool to prompt the user to use the treatment tool according to the current condition information of the monitored object. Figure 2 As shown, prompt information corresponding to a treatment tool, such as a fluid management tool, is displayed in a first display window for displaying detailed information on a condition. Alternatively, prompt information corresponding to the treatment tool may be displayed elsewhere on the display interface. The prompt information includes, but is not limited to, character information corresponding to the treatment tool. For example, if the treatment tool is a fluid management tool, the prompt information includes character information such as "fluid management tool." Only the prompt information may be displayed, or only parameter information corresponding to the treatment method corresponding to the treatment tool used on the monitored subject may be displayed. Alternatively, the prompt information may be displayed first, followed by parameter information corresponding to the treatment method used on the monitored subject.
[0097] Next, in step S804, the alarm information and / or the processing information are displayed on the display interface of the display. Alternatively, only one of the alarm information and the processing information of the treatment tool may be displayed on the display, or both may be displayed.
[0098] In one example, displaying the processing information on the display interface of the display includes: controlling the display to display the processing information of the treatment tool in a second display window, thereby facilitating the user to view parameter information of the treatment tool. Controlling the display to display the processing information in the second display window includes: automatically controlling the display to display the processing information in the second display window; or obtaining a second control instruction input by the user via a second button, the second control instruction being used to control the display to display in the second display window. The second button is provided in the alarm display area and / or in the first display window for displaying detailed information about the condition; and according to the second control instruction, the display is controlled to display the processing information in the second display window.
[0099] The display can display the alarm information and the processing information of the treatment tool associated with the current disease information in different orders. In one example, the alarm information is first displayed in the alarm display area of the display interface of the display, and then the processing information of the treatment tool is displayed in the second display window of the display. The processing information of the treatment tool can be automatically displayed in the second display window of the display after the alarm information is displayed.
[0100] In another example, displaying the alarm information and the processing information on the display interface of the display includes: displaying the alarm information in an alarm display area of the display interface of the display; obtaining a second control instruction input by a user using a second button, the second control instruction being used to control the display to display in a second display window, wherein the second button is provided on the display interface of the display; and controlling the display to display the processing information in the second display window according to the second control instruction. The second button can be provided at any suitable location on the display interface of the display. For example, the display interface of the display includes an alarm display area for displaying alarm information, wherein the second button is provided in the alarm display area so that after the alarm information is displayed, the user can use the second button to control the processing information of the treatment tool to be displayed in the second display window with one click, which is more convenient and quick. For another example, the second button is provided in a first display window for displaying detailed medical information. If the user confirms that the condition of the monitored subject is correct based on the detailed medical information, the user can use the second button to control the processing information of the treatment tool to be displayed in the second display window with one click, which is more convenient and quick. If the condition is not correct, the processing information of the treatment tool can be selected not to be displayed to avoid excessive information display and causing confusion to the user.
[0101] Furthermore, the method of the present application further includes controlling the display to display the detailed medical condition information in the first display window. This may be done by automatically controlling the display to display the detailed medical condition information in the first display window after the detailed medical condition information is generated, or by controlling the display to display the detailed medical condition information in the first display window based on a control instruction input by a user.
[0102] In one example, controlling the display to display the detailed information of the medical condition in the first display window includes: obtaining a first control instruction input by the user through a first button, the first control instruction being used to control the display to display the detailed information of the medical condition in the first display window, the first button being set in the alarm display area, and / or being set in the second display window for displaying the processing information; according to the first control instruction, controlling the display to display the detailed information of the medical condition in the first display window.
[0103] In one example, the method further includes: controlling the display to display the detailed information of the condition and the processing information of the treatment tool in the first display window, so that the user can view the detailed information of the condition and the processing information of the treatment tool at the same time, which is more convenient and quick, and improves clinical continuity.
[0104] In another example, the method further includes: controlling the display to display the detailed information of the condition in the first display window, and controlling the display to display the processing information in the second display window, so that the user can view the detailed information of the condition and the processing information of the treatment tool at the same time, which is more convenient and quick, and improves clinical continuity.
[0105] In another example, the method further includes: controlling the display to no longer display the second display window on the display interface when the detailed information of the condition is displayed in the first display window, for example, the second display window is automatically closed or minimized, and / or controlling the display to no longer display the first display window on the display interface when the processing information is displayed in the second display window, for example, the first display window is automatically closed or minimized. By such a setting, the content displayed on the display interface can be made more concise and the user's operation can be simplified.
[0106] The display order of the above-mentioned alarm information, detailed information of the condition and processing information of the treatment tool can be reasonably set as needed. In one example, after the alarm information is first displayed in the alarm display area of the display interface of the display, the display is controlled to display the detailed information of the condition in the first display window. For example, a first control instruction input by the user through a first button is obtained, and the first control instruction is used to control the display to display the detailed information of the condition in the first display window. The first button is set in the alarm display area. Then, the processing information is displayed in the second display window of the display. For example, a second control instruction input by the user based on a second button is obtained, and the second control instruction is used to control the display to display in the second display window. The second button is set on the display interface of the display, especially in the first display window. According to the second control instruction, the display is controlled to display the processing information in the second display window.
[0107] In another example, the alarm information is first displayed on the display interface of the display, and then the processing information is displayed on the display interface of the display, and then the display is controlled to display the detailed medical condition in the first display window according to the first control instruction input by the user, so that the detailed medical condition can be quickly retrieved when the user needs it.
[0108] In another example, the method further includes: generating, based on the current condition information, processing information of a plurality of treatment tools associated with the current condition information, the processing information including a plurality of prompt information corresponding to the treatment tool, each prompt information including character information corresponding to the treatment tool (e.g., liquid management tool). For example, when a patient is in shock, the corresponding treatment tool may include a liquid treatment tool. Therefore, a liquid treatment tool associated with the current condition information can be generated, and the processing information includes prompt information corresponding to the liquid treatment tool; and when one of the plurality of prompt information is selected, parameter information corresponding to the treatment method corresponding to the treatment tool represented by the prompt information is generated for the monitored object. Through such a setting method, it is convenient for medical staff to select the treatment tool they want to view from multiple treatment tools for display, making the processing information of the display interface more concise, and the operation of this method is simple, and the user only needs to select it with one click.
[0109] For example, when the current condition information is shock, the corresponding treatment tools include liquid treatment tools; or, when the current condition information is asphyxia, the corresponding treatment tools include liquid treatment tools and / or mechanical ventilation tools. The above treatment tools corresponding to the current condition information are only examples, and do not exclude the use of other treatment tools or the use of multiple treatment tools according to actual conditions. For the description of the features of the monitoring method of this application, please refer to the description of the monitor above, and will not be repeated here.
[0110] According to the monitoring method of the present application, condition identification can be associated with condition treatment, making it convenient for medical staff to view the processing information of treatment tools associated with condition information, so as to assist medical staff in treating the monitored subjects and improve the continuity of clinical work.
[0111] In addition, an embodiment of the present invention further provides a computer storage medium having a computer program stored thereon. The computer-readable storage medium may store one or more computer program instructions, and a processor may execute the program instructions stored on the storage device to implement the functions described herein (implemented by the processor) in the embodiments of the present invention and / or other desired functions, such as executing the corresponding steps of the monitoring method of the monitor according to an embodiment of the present invention. The computer-readable storage medium may also store various applications and various data, such as various data used and / or generated by the applications.
[0112] For example, the computer storage medium may include a memory card of a smart phone, a storage component of a tablet computer, a hard disk of a personal computer, a read-only memory (ROM), an erasable programmable read-only memory (EPROM), a portable compact disk read-only memory (CD-ROM), a USB memory, or any combination of the above storage media.
[0113] 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 invention. Various changes and modifications may be made therein by those skilled in the art without departing from the scope and spirit of the present invention. All such changes and modifications are intended to be included within the scope of the present invention as claimed in the appended claims.
[0114] 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. Professionals and technicians can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the present invention.
[0115] 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.
[0116] In the description provided herein, numerous specific details are described. However, it is understood that embodiments of the present invention may 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.
[0117] Similarly, it should be understood that in order to streamline the present invention and aid in understanding one or more of the various inventive aspects, in the description of exemplary embodiments of the present invention, the various features of the present invention are sometimes grouped together into a single embodiment, figure, or description thereof. However, this approach to the present invention should not be interpreted as reflecting the intention that the claimed invention 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 invention.
[0118] Those skilled in the art will understand 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 that provides the same, equivalent, or similar purpose.
[0119] 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 the present invention and to form different embodiments. For example, in the claims, any of the claimed embodiments may be used in any combination.
[0120] The various component embodiments of the present invention can be implemented in hardware, or in software modules running on one or more processors, or in a combination thereof. It will be appreciated by those skilled in the art 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 embodiments of the present invention. The present invention can also be implemented as a device program (e.g., a computer program and a computer program product) for executing a part or all of the methods described herein. Such a program implementing the present invention 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.
[0121] It should be noted that the above embodiments illustrate rather than limit the invention, 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 signs placed between brackets should not be construed as limiting the claims. The invention 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.
Claims
1. A monitoring device, characterized in that: The monitoring device includes: a memory for storing executable programs; A display, providing a display interface; a processor, configured to execute the program stored in the memory, so that the processor performs the following operations, including: Acquiring data of a first physiological parameter and a second physiological parameter of the monitored subject, wherein the first physiological parameter and the second physiological parameter can be used to determine at least one condition information; performing correlation analysis on the data of the first physiological parameter and the data of the second physiological parameter of the monitored subject to determine the current condition information of the monitored subject; Generate alarm information based on the current condition information, and control the display to highlight the alarm information in a preset manner in the alarm display area of the display interface; Generate detailed information about the condition associated with the alarm information based on the current condition information, and control the display to display the detailed information about the condition in a first display window on the display interface after receiving a first control instruction input via a first key; and generating, based on the current condition information, processing information of a plurality of treatment tools associated with the current condition information, wherein the processing information includes parameter information for when a treatment method corresponding to one of the treatment tools corresponding to the treatment tools is used on the monitored subject, and a plurality of prompt information corresponding to the plurality of treatment tools; controlling the display to display the plurality of prompt information corresponding to the plurality of treatment tools in a first display window of the display interface, and, upon obtaining a second control instruction inputted via a second button set in the first display window, controlling the display to display the parameter information for when the treatment method corresponding to the treatment tool is used on the monitored subject in a second display window; The display is at least used to display the data of the first physiological parameter and / or the data of the second physiological parameter on the display interface; and when the alarm information, the detailed information of the condition and the processing information are obtained, the alarm information is first displayed in the alarm display area of the display interface, and then the detailed information of the condition and the prompt information are displayed in the first display window of the display interface, and then the parameter information of the treatment method corresponding to the use of one of the treatment tools for the monitored object is displayed in the second display window of the display interface.
2. A monitoring device, characterized in that: The monitoring device includes: a memory for storing executable programs; A display, providing a display interface; A processor, configured to execute the program stored in the memory, so that the processor performs the following actions, including: Acquiring data on at least one type of physiological parameter of the monitored subject, wherein each physiological parameter can be used to determine at least one type of disease condition information; Determining the current condition information of the monitored subject based on data of at least one type of physiological parameter of the monitored subject; Generate alarm information based on the current condition information, and control the display to highlight the alarm information in a preset manner in the alarm display area of the display interface; Generate detailed information about the condition associated with the alarm information based on the current condition information, and control the display to display the detailed information about the condition in a first display window on the display interface after receiving a first control instruction input via a first key; and generating, based on the current condition information, processing information of a treatment tool associated with the current condition information, wherein the processing information includes parameter information when a treatment method corresponding to the treatment tool is used on the monitored subject, and prompt information corresponding to the treatment tool; controlling the display to display the prompt information corresponding to the treatment tool in a first display window of the display interface, and upon obtaining a second control instruction inputted via a second button set in the first display window, controlling the display to display the parameter information when the treatment method corresponding to the treatment tool is used on the monitored subject in a second display window; The display is at least used to display data of at least one type of physiological parameters on the display interface; and when the alarm information, the detailed information of the disease condition and the processing information are obtained, the alarm information, the detailed information of the disease condition and the processing information are displayed on the display interface.
3. The monitoring device according to claim 1 or 2, characterized in that: The alarm information includes characters corresponding to the current condition information.
4. The monitoring device according to claim 3, wherein: When the data of the first physiological parameter and the data of the second physiological parameter exceed their respective first threshold ranges, the alarm information is used to indicate that the monitored subject has a tendency to develop a specific disease; When the data of the first physiological parameter and the data of the second physiological parameter exceed their respective second threshold ranges, the alarm information is used to indicate that the monitored object has developed a specific illness, and the second threshold range deviates further from the normal range of each physiological parameter than the first threshold range.
5. The monitoring device according to claim 3, wherein: The preset highlighting mode includes at least one of the following display modes: highlighting display, flashing display, additional symbol display, differentiated background color display or differentiated font color display.
6. The monitoring device according to claim 1 or 2, characterized in that: The display interface includes a first parameter area for displaying data of the physiological parameter and an alarm display area for displaying alarm information; The first button is arranged in an alarm display area for displaying alarm information; and / or The first button is arranged in a first parameter area for displaying data of the physiological parameter; and / or The display interface further includes a second display window for displaying the processing information, and the first button is arranged in the second display window.
7. The monitoring device according to claim 1 or 2, characterized in that: The detailed medical information includes at least one of the following information: The value of the physiological parameter that triggers the alarm, the trend of the physiological parameter within a predetermined time before and after the alarm, the threshold range corresponding to the physiological parameter that triggers the alarm, and the alarm time.
8. The monitoring device according to claim 1 or 2, characterized in that: The display interface of the display includes a first parameter area for displaying physiological parameter data, an alarm display area for displaying alarm information, a prompt information area and an intelligent hot key area, wherein the first parameter area includes a waveform area and a waveform parameter area; The first display window at least covers a portion of the waveform area, so that the data of the physiological parameters in the non-waveform parameter area of the monitoring device are displayed outside the first display window; or, The first display window at least covers the first parameter area. A screen switching button is provided on the display interface. The screen switching button is used to receive a switching instruction input by a user so that one of the first parameter area and the first display window is displayed on the display interface.
9. The monitoring device according to claim 1 or 2, characterized in that: Also included is a second display window generated by navigating through the display interface of the display.
10. The monitoring device according to claim 1 or 2, characterized in that: The first display window and the second display window are displayed simultaneously on the display interface of the display, wherein the first display window is used to display the detailed information of the disease condition, and the second display window is used to display the processing information; or The second display window covers at least a portion of the first display window; or When the second display window is displayed on the display interface of the display, the first display window is no longer displayed on the display interface; or, When the second display window is displayed on the display interface of the display, the area of the first display window is reduced from the first area to the second area, and part of the detailed information of the disease condition is displayed.
11. The monitoring device according to claim 1 or 2, characterized in that: The parameter information includes at least one of the following: physiological parameters, effectiveness parameter trends, safety parameter trends, and parameter variables related to the treatment tool; And / or, the medical condition information includes shock or asphyxiation; And / or, the physiological parameters include at least one of the following parameters: blood pressure, respiratory rate, heart rate, body temperature, pulse rate, blood oxygen saturation, cardiac output, end-tidal carbon dioxide, and electroencephalogram.
12. The monitoring device according to claim 1 or 2, characterized in that: When at least the heart rate, blood pressure, and respiratory rate of the monitored subject's physiological parameters exceed respective threshold ranges, determining that the current condition of the monitored subject is shock; When at least the respiratory rate, the heart rate, and the blood oxygen saturation among the physiological parameters of the monitored subject exceed respective threshold ranges, it is determined that the current condition information of the monitored subject is asphyxia.
13. The monitoring device according to claim 1 or 2, characterized in that: When the current condition information is shock, the corresponding treatment tool includes a fluid treatment tool; When the current condition information is asphyxia, the corresponding treatment tools include liquid treatment tools and / or mechanical ventilation tools.
14. The monitoring device according to claim 1 or 2, characterized in that: The processor is further configured to: generating, based on the current condition information, processing information of a plurality of treatment tools associated with the current condition information, the processing information including prompt information corresponding to each treatment tool, each prompt information including character information corresponding to the treatment tool; as well as When one of the plurality of prompt information is selected, a processing screen corresponding to the treatment tool is generated, wherein the processing screen is used to display parameter information of a treatment method corresponding to the treatment tool represented by the prompt information when the monitored object is treated.
15. A monitoring method for a monitoring device, characterized in that: The monitoring method includes: Detecting a signal of at least one type of physiological parameter of a monitored subject; Processing the signal of the at least one type of physiological parameter to obtain data of the at least one type of physiological parameter of the monitored object; Determining the current condition information of the monitored subject based on data of at least one type of physiological parameter of the monitored subject; generating, based on the current condition information, alarm information and processing information of multiple treatment tools associated with the current condition information, wherein the processing information includes parameter information when a treatment method corresponding to the treatment tool is used on the monitored subject, and prompt information corresponding to the treatment tool; Generate detailed information on the condition based on the current condition information; and The alarm information is highlighted in a preset manner in an alarm display area of a display interface of the display to alert the user; detailed information of the condition is displayed in a first display window of the display, and prompt information corresponding to the treatment tool is displayed in the first display window of the display; parameter information when the treatment method corresponding to the treatment tool is used on the monitored object is displayed in a second display window of the display; Among them, after the alarm information is displayed in the alarm display area of the display interface of the display, the detailed information of the disease and the prompt information are displayed in the first display window of the display, and then the parameter information is displayed in the second display window of the display.
16. The monitoring method according to claim 15, wherein: Displaying parameter information when the monitored subject is treated with a treatment method corresponding to the treatment tool in the second display window of the display includes: Acquire a second control instruction input by a user based on a second button, where the second control instruction is used to control the display to display the parameter information in a second display window, wherein the second button is set on a display interface of the display; According to the second control instruction, the display is controlled to display the parameter information in the second display window.
17. The monitoring method according to claim 15, wherein: The alarm information includes characters corresponding to the current condition information.
18. The monitoring method according to claim 15, wherein: When the data of the at least one type of physiological parameter exceeds a first threshold range, the alarm information is used to indicate that the monitored subject has a tendency to develop a specific disease; When the data of at least one type of physiological parameter exceeds a second threshold range, the alarm information is used to indicate that the monitored object has developed a specific illness, wherein the second threshold range deviates further from the normal range of each physiological parameter than the first threshold range.
19. The monitoring method according to claim 15, wherein: The preset highlighting mode includes: highlighting, flashing, additional symbol, differentiated background color or differentiated font color.
20. The monitoring method according to claim 15, wherein: Displaying the detailed information of the condition in the first display window of the display includes: Obtaining a first control instruction input by a user through a first button, the first control instruction being used to control the display to display the detailed information of the condition in a first display window, the first button being arranged in the alarm display area and / or in a second display window for displaying the processing information; According to the first control instruction, the display is controlled to display the detailed information of the disease condition in the first display window.
21. The monitoring method according to claim 15, wherein: The monitoring method further comprises: Controlling the display to display the detailed information of the disease condition in the first display window and controlling the display to display the processing information in the second display window; or When the display device displays the detailed information of the disease in the first display window, the second display window is no longer displayed on the display interface; and / or When the display is controlled to display the processing information in the second display window, the first display window is no longer displayed on the display interface.
22. The monitoring method according to claim 15, wherein: The detailed medical information includes at least one of the following information: The value of the physiological parameter that triggers the alarm, the trend of the physiological parameter within a predetermined time before and after the alarm, the threshold range corresponding to the physiological parameter that triggers the alarm, and the alarm time.
23. The monitoring method according to claim 15, wherein: Displaying parameter information when the monitored subject is treated with a treatment method corresponding to the treatment tool in the second display window of the display includes: automatically controlling the display to display the processing information in a second display window; or Obtaining a second control instruction input by a user through a second button, the second control instruction being used to control the display to display the processing information in a second display window, wherein the second button is provided in an alarm display area and / or in a first display window for displaying detailed information of the condition; According to the second control instruction, the display is controlled to display the processing information in the second display window.
24. The monitoring method according to any one of claims 15 to 23, characterized in that: The physiological parameters include at least one of the following parameters: blood pressure, respiratory rate, heart rate, body temperature, pulse rate, blood oxygen saturation, cardiac output, end-tidal carbon dioxide, and electroencephalogram.
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