A monitoring processing method, device and storage medium
By integrating ECG monitoring analysis and diagnostic analysis results and adjusting the monitoring alarm strategy, the problem of insufficient monitoring intelligence in existing technologies is solved and personalized monitoring effects are achieved.
Patent Information
- Application Number
- CN201980097065.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-06-28
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2039-06-28
AI Technical Summary
Existing monitoring equipment has low intelligence in monitoring analysis and alarming based on real-time ECG signals when the target patient's condition is complex and changeable, and cannot meet personalized monitoring needs.
By obtaining the target object's ECG monitoring analysis results and ECG diagnosis analysis results, a fusion analysis is performed, the monitoring alarm strategy is adjusted, and the real-time monitoring information and auxiliary analysis information are combined to improve the monitoring intelligence.
It realizes the adjustment of monitoring alarm level according to the actual needs of the target object, improves the intelligence and adaptability of monitoring, and meets personalized monitoring needs.
Smart Images

Figure CN113905667B_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present invention relate to the technical field of medical equipment, and in particular to a monitoring processing method and device, and a storage medium. Background Art
[0002] At present, monitoring equipment such as bedside monitors generally integrate the function of monitoring electrocardiograms to achieve real-time and continuous monitoring of the target subject's electrocardiogram, focusing on real-time heart conditions such as heart rate and arrhythmia.
[0003] In the existing technology, ECG monitoring is based on real-time acquired ECG signals for monitoring, analysis and alarm. However, in the actual monitoring process, the target subject's condition is complex and changeable. Monitoring and analysis based on real-time ECG signals and alarming in a fixed and identical alarm mode may not be suitable for every target subject, that is, the intelligence of real-time monitoring alarms is low. Summary of the Invention
[0004] In order to solve the above technical problems, the embodiments of the present invention hope to provide a monitoring processing method and device, and a storage medium, which utilize auxiliary analysis information of other dimensions of the target object to adjust the real-time analysis results determined based on the real-time monitoring information, or adjust the monitoring alarm level in combination with the real-time analysis results to meet the actual monitoring needs of the target object, thereby improving the intelligence of real-time monitoring.
[0005] The technical solution of the embodiment of the present invention can be implemented as follows:
[0006] An embodiment of the present invention provides a monitoring processing device, the device comprising:
[0007] ECG monitoring module, used to obtain ECG monitoring analysis results corresponding to the target object;
[0008] An electrocardiogram (ECG) diagnosis module, configured to obtain an ECG analysis result corresponding to the target object;
[0009] a fusion analysis module, connected to the ECG monitoring module and the ECG diagnosis module, for fusing the ECG monitoring analysis results with the ECG diagnosis analysis results to obtain fusion result information;
[0010] The alarm processing module is connected to the fusion analysis module and is used to adjust the ECG monitoring alarm strategy according to the fusion result information.
[0011] An embodiment of the present invention provides a monitoring processing device, the device comprising:
[0012] A first acquisition module is used to acquire real-time monitoring information corresponding to a target object, where the real-time monitoring information is used to represent a real-time status of the target object;
[0013] A second acquisition module is used to acquire auxiliary analysis information corresponding to the target object;
[0014] A real-time analysis module, connected to the first acquisition module, for determining a real-time analysis result based on the real-time monitoring information;
[0015] A processing module is connected to the first acquisition module and the real-time analysis module, and is used to perform monitoring adjustment processing according to the real-time analysis results and the auxiliary analysis information in accordance with a preset monitoring adjustment method.
[0016] An embodiment of the present invention provides a monitoring processing method, the method comprising:
[0017] Acquire real-time monitoring information corresponding to the target object, wherein the real-time monitoring information is used to represent the real-time status of the target object;
[0018] Obtaining auxiliary analysis information corresponding to the target object;
[0019] Determining real-time analysis results based on the real-time monitoring information;
[0020] According to the preset monitoring adjustment method, monitoring adjustment processing is performed based on the real-time analysis results and the auxiliary analysis information analysis results.
[0021] An embodiment of the present invention provides a monitoring processing method, the method comprising:
[0022] Obtain the ECG monitoring analysis results corresponding to the target object;
[0023] Obtaining an electrocardiogram (ECG) diagnostic analysis result corresponding to the target object;
[0024] Fusing the ECG monitoring analysis result and the ECG diagnosis analysis result to obtain fusion result information;
[0025] Adjust the ECG monitoring alarm strategy according to the fusion result information.
[0026] An embodiment of the present invention provides a monitoring system, including:
[0027] A parameter measurement circuit, utilizing a sensor accessory connected to a target object to obtain real-time monitoring information corresponding to the target object;
[0028] The processor performs the following steps:
[0029] Obtaining auxiliary analysis information corresponding to the target object;
[0030] Determining real-time analysis results based on the real-time monitoring information;
[0031] According to the preset monitoring adjustment mode, monitoring adjustment processing is performed based on the real-time analysis results and the auxiliary analysis information.
[0032] An embodiment of the present invention provides a computer-readable storage medium, wherein the computer-readable storage medium stores a first monitoring processing program. The monitoring processing program can be executed by a processor to implement a monitoring processing method.
[0033] An embodiment of the present invention provides a computer-readable storage medium, wherein the computer-readable storage medium stores a second monitoring processing program. The monitoring processing program can be executed by a processor to implement a monitoring processing method.
[0034] In the technical solution implemented in the present invention, the monitoring processing device includes: a first acquisition module for acquiring real-time monitoring information corresponding to the target object, the real-time monitoring information being used to characterize the real-time status of the target object; a second acquisition module for acquiring auxiliary analysis information corresponding to the target object; a real-time analysis module connected to the first acquisition module and configured to determine a real-time analysis result based on the real-time monitoring information; and a processing module connected to the first acquisition module and the real-time analysis module and configured to perform monitoring adjustment processing based on the real-time analysis result and the auxiliary analysis information in accordance with a preset monitoring adjustment method. The technical solution provided in the embodiment of the present invention utilizes auxiliary analysis information of other dimensions of the target object to adjust the real-time analysis result determined based on the real-time monitoring information, or to adjust the monitoring alarm level in combination with the real-time analysis result, so as to meet the actual monitoring needs of the target object, thereby improving the intelligence of real-time monitoring. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 A system framework diagram of a multi-parameter monitor or monitoring processing device provided by an embodiment of the present invention;
[0036] Figure 2 A monitoring device networking system for in-hospital use provided by an embodiment of the present invention;
[0037] Figure 3 A schematic diagram of the structure of a monitoring and processing device provided in an embodiment of the present invention Figure 1 ;
[0038] Figure 4 A schematic diagram of the structure of a monitoring and processing device provided in an embodiment of the present invention Figure 2 ;
[0039] Figure 5 A schematic structural diagram of an electrocardiogram monitoring module provided in an embodiment of the present invention;
[0040] Figure 6 A schematic structural diagram of an electrocardiogram diagnosis module provided by an embodiment of the present invention;
[0041] Figure 7 A schematic diagram of the structure of a fusion analysis module provided in an embodiment of the present invention;
[0042] Figure 8 A schematic diagram of a monitoring processing method provided by an embodiment of the present invention Figure 1 ;
[0043] Figure 9 A schematic diagram of a monitoring processing method provided by an embodiment of the present invention Figure 2 ;
[0044] Figure 10 A schematic structural diagram of a monitoring system provided by an embodiment of the present invention. DETAILED DESCRIPTION
[0045] In order to enable a more detailed understanding of the features and technical contents of the embodiments of the present invention, the implementation of the embodiments of the present invention is described in detail below with reference to the accompanying drawings. The accompanying drawings are for reference only and are not intended to limit the embodiments of the present invention.
[0046] like Figure 1 As shown, a system framework diagram of a multi-parameter monitor or monitoring processing device is provided. The multi-parameter monitor or monitoring processing device includes at least a parameter measurement circuit 112. Parameter measurement circuit 112 includes at least one parameter measurement circuit corresponding to a physiological parameter. The parameter measurement circuit includes at least one parameter measurement circuit selected from the group consisting of an electrocardiogram (ECG) signal parameter measurement circuit, a respiratory parameter measurement circuit, a body temperature parameter measurement circuit, a blood oxygen parameter measurement circuit, a non-invasive blood pressure parameter measurement circuit, an invasive blood pressure parameter measurement circuit, and the like. Each parameter measurement circuit is connected to an externally inserted sensor accessory 111 via a corresponding sensor interface. Sensor accessory 111 includes detection accessories corresponding to physiological parameters such as ECG, respiration, blood oxygen, blood pressure, and body temperature. The parameter measurement circuit is primarily used to connect to sensor accessory 111 to obtain collected physiological parameter signals. It may include measurement circuits for at least two or more physiological parameters. Parameter measurement circuit 112 may be, but is not limited to, a physiological parameter measurement circuit (module), a human physiological parameter measurement circuit (module), or a sensor for collecting human physiological parameters. Specifically, the parameter measurement circuit obtains physiological sampling signals from the target subject via an external physiological parameter sensor accessory through an expansion interface, processes these signals, and generates physiological data for alarm and display purposes. The expansion interface also transmits control signals from the main control circuit regarding how to collect physiological parameters to the external physiological parameter monitoring accessory via a corresponding interface, enabling monitoring and control of the target subject's physiological parameters.
[0047] The multi-parameter monitor or monitoring processing device may also include a main control circuit 113, which must include at least one processor and at least one memory. Furthermore, the main control circuit 113 may include at least one of a power management module, a power IP module, and an interface conversion circuit. The power management module is used to control the entire device's power on / off, the power-on sequencing of each power domain within the board, and battery charging and discharging. A power IP module is a single power module that associates the schematics and PCB layout of frequently used power circuit units, solidifying them into a single power module. Specifically, it converts an input voltage to an output voltage through a predetermined circuit, where the input and output voltages are different. For example, it converts 15V to 1.8V, 3.3V, or 3.8V. It is understood that a power IP module can be single-channel or multi-channel. When a single-channel power IP module is used, it can convert a single input voltage to a single output voltage. When the power supply IP module is multi-channel, it can convert a single input voltage into multiple output voltages, and the voltage values of these multiple output voltages can be the same or different, thereby simultaneously meeting the different voltage requirements of multiple electronic components. Furthermore, the module has few external interfaces and operates as a black box within the system, decoupling from the external hardware system, thereby improving the reliability of the entire power supply system. The interface conversion circuit is used to convert the output signals of the main control minimum system module (i.e., at least one processor and at least one memory in the main control circuit) into the input standard signals required by the actual external device. For example, to support external VGA display functions, the RGB digital signals output by the main control CPU are converted into VGA analog signals. To support external network functions, the RMII signals are converted into standard network differential signals.
[0048] In addition, the multi-parameter monitor or monitoring processing device may also include one or more of a local display 114, an alarm circuit 116, an input interface circuit 117, and an external communication and power interface 115. The main control circuit 113 is used to coordinate and control the various boards, circuits, and devices in the multi-parameter monitor or monitoring processing device. In this embodiment, the main control circuit 113 is used to control the data exchange between the parameter measurement circuit 112 and the communication interface circuit, as well as the transmission of control signals, and to transmit physiological data to the display 114 for display. It can also receive user control commands input from a touch screen or physical input interface circuit such as a keyboard or button, and of course, it can also output control signals regarding how to collect physiological parameters. The alarm circuit 116 can be an audible and visual alarm circuit. The main control circuit 113 calculates the physiological parameters and transmits the parameter calculation results and waveforms to a host (e.g., a host with a display, a PC, a central station, etc.) via an external communication and power interface 115. The external communication and power interface 115 can be one or a combination of local area network interfaces such as Ethernet, Token Ring, Token Bus, and the fiber-distributed data interface (FDDI), which serves as the backbone of these three networks. It can also be one or a combination of wireless interfaces such as infrared, Bluetooth, Wi-Fi, and WMTS communication, or one or a combination of wired data connection interfaces such as RS232 and USB. The external communication and power interface 115 can also be one or a combination of wireless and wired data transmission interfaces. The host can be any computer device such as a monitor, an electrocardiograph, an ultrasound diagnostic device, or a computer. By installing the appropriate software, a monitoring device can be formed. The host can also be a communication device, such as a mobile phone. The multi-parameter monitor or monitoring processing device can transmit data to a mobile phone that supports Bluetooth communication via a Bluetooth interface, enabling remote data transmission.
[0049] The multi-parameter monitoring and processing device can be installed outside the monitor housing as an independent plug-in parameter module that can be inserted into the monitor's main unit (including the main control board) to form a plug-in monitor, serving as part of the monitor. Alternatively, the device can be connected to the monitor's main unit (including the main control board) via a cable, with the plug-in parameter module acting as an external accessory. Of course, the parameter processing module can also be integrated within the housing, integrated with the main control module, or physically separated within the housing to form an integrated monitor.
[0050] like Figure 2 As shown, a monitoring device networking system for in-hospital use is provided. The system can save the data of the monitoring device as a whole, centrally manage the target object information and nursing information, and store the two in association, so as to facilitate the storage of historical data and associated alarms. Figure 3In the illustrated system, each bedside monitor 212 can be provided with a bedside monitor. This bedside monitor 212 can be the aforementioned multi-parameter monitor or a plug-in monitor. Furthermore, each bedside monitor 212 can be paired with a portable monitoring device 213 for transmission. The portable monitoring device 213 provides a simple, portable multi-parameter monitor or monitoring processing device that can be worn on the body of a target patient for mobile monitoring of the target patient. Through wired or wireless communication between the portable monitoring device 213 and the bedside monitor 212, physiological data generated by the mobile monitoring can be transmitted to the bedside monitor 212 for display, or transmitted to a central station 211 for review by a doctor or nurse, or transmitted to a data server 215 for storage. Furthermore, the portable monitoring device 213 can also directly transmit physiological data generated by the mobile monitoring to the central station 211 for storage and display via a wireless network node 214 located within the hospital, or transmit physiological data generated by the mobile monitoring to a data server 215 for storage via a wireless network node 214 located within the hospital. It can be seen that the data corresponding to the physiological parameters displayed on the bedside monitor 212 may be derived from a sensor accessory directly connected to the monitor, or from the portable monitoring device 213, or from a data server.
[0051] An embodiment of the present invention provides a monitoring and processing device. Figure 3 A schematic diagram of the structure of a monitoring and processing device provided in an embodiment of the present invention Figure 1 .like Figure 3 As shown, the monitoring and processing device includes:
[0052] The first acquisition module 301 is used to obtain real-time monitoring information corresponding to the target object, where the real-time monitoring information is used to represent the real-time status of the target object;
[0053] The second acquisition module 302 is used to obtain auxiliary analysis information corresponding to the target object;
[0054] The real-time analysis module 303 is connected to the first acquisition module 301 and is used to determine the real-time analysis results based on the real-time monitoring information;
[0055] The processing module 304 is connected to the first acquisition module 301 and the real-time analysis module 303, and is used to perform monitoring adjustment processing according to the real-time analysis results and auxiliary analysis information in accordance with a preset monitoring adjustment method.
[0056] It should be noted that, in the embodiment of the present invention, the target object is the patient who needs to be monitored.
[0057] It is understood that in the embodiment of the present invention, the real-time monitoring information can be any information that represents the real-time status of the target object, such as a real-time electrocardiogram signal. The specific real-time monitoring information is not limited in the embodiment of the present invention.
[0058] In an embodiment of the present invention, the real-time monitoring information may be a real-time ECG signal. The real-time analysis module 303 is specifically configured to perform ECG monitoring analysis on the real-time ECG signal to obtain an ECG monitoring analysis result; and determine the ECG monitoring analysis result as a real-time analysis result.
[0059] It should be noted that, in an embodiment of the present invention, the first acquisition module 301 can specifically collect the patient's real-time ECG signal in real time through an ECG sensor and a specific hardware circuit, thereby transmitting the real-time ECG signal to the real-time analysis module 303 connected to the first acquisition module 301. The real-time analysis module 303 can perform ECG monitoring analysis on the real-time ECG signal, thereby obtaining the ECG monitoring analysis result.
[0060] Specifically, in an embodiment of the present invention, the real-time analysis module 303 may first perform software and / or hardware preprocessing on the real-time ECG signal, including but not limited to filtering, notching, amplification, baseline correction, noise suppression, and pacing suppression. The real-time analysis module 303 may then analyze the preprocessed real-time ECG signal, including but not limited to heart rate analysis, arrhythmia analysis, ST analysis, and QT analysis. The specific analysis method is not limited in this embodiment of the present invention.
[0061] It should be noted that, in the embodiment of the present invention, the ECG monitoring analysis results obtained by the real-time analysis module 303 include but are not limited to heart rate results, arrhythmia analysis results, ST analysis results, and QT analysis results. The specific ECG monitoring analysis results are not limited in the embodiment of the present invention.
[0062] In an embodiment of the present invention, the auxiliary analysis information may include an ECG diagnosis analysis result. The second acquisition module 302 is specifically configured to acquire an offline ECG signal corresponding to the target object; perform ECG diagnosis analysis on the offline ECG signal to obtain an ECG diagnosis analysis result.
[0063] It should be noted that in an embodiment of the present invention, the second acquisition module 302 can specifically collect the patient's offline ECG signal using an ECG sensor and specific hardware circuitry. This ECG sensor and specific hardware circuitry can be the same as those used by the first acquisition module 301. The second acquisition module 302 can specifically acquire ECG signals from the most recent period of time at the current moment, for example, ECG signals from 10 seconds prior to the current moment, which are considered offline ECG signals. It is understood that the second acquisition module 302 can also retrieve historical data from a memory that is closest to the current moment for analysis.
[0064] It should be noted that, in an embodiment of the present invention, the second acquisition module 302 may first perform software and hardware preprocessing on the offline ECG signal, including but not limited to filtering, notching, amplification, baseline correction, noise suppression, and pacing suppression. Subsequently, the second acquisition module 302 may analyze the preprocessed offline ECG signal, including but not limited to heart rate analysis, arrhythmia analysis, P-QRS-ST-T amplitude and duration analysis, and ECG wave morphology analysis. The specific analysis method is not limited in this embodiment of the present invention.
[0065] It should be noted that, in the embodiment of the present invention, the ECG diagnosis and analysis results obtained by the second acquisition module 302 include but are not limited to heart rate results, arrhythmia analysis results, morphology analysis results, and diagnostic information results. The specific ECG diagnosis and analysis results are not limited in the embodiment of the present invention.
[0066] In an embodiment of the present invention, the auxiliary analysis information may further include target object feature information. The second acquisition module 302 is specifically configured to receive input target object feature information.
[0067] It should be noted that, in the embodiment of the present invention, the target object characteristic information includes the target object basic information, case diagnosis information, image examination information and target object inspection information. Specific target object characteristic information in the embodiment of the present invention.
[0068] It is understandable that in an embodiment of the present invention, medical personnel can input target object characteristic information, such as target object basic information, into the second acquisition module 302, and the second acquisition module 302 can directly receive the input target object characteristic information.
[0069] It should be noted that, in the embodiment of the present invention, the auxiliary analysis information acquired by the second acquisition module 302 may include the aforementioned ECG diagnostic analysis results and target subject characteristic information, and may also include other information that can characterize certain physical conditions of the patient. The specific auxiliary analysis information is not limited in the embodiment of the present invention.
[0070] In an embodiment of the present invention, the preset monitoring adjustment method includes adjusting the real-time monitoring alarm strategy. Processing module 304 is specifically configured to fuse the real-time analysis results with the auxiliary analysis information to obtain fused result information; and adjust the real-time monitoring alarm strategy based on the fused result information. It is understood that processing module 304 can be a hardware processor or a computer-usable storage medium stored in a monitor, central station, or other device.
[0071] In an embodiment of the present invention, the processing module 304 includes a fusion analysis module and an alarm adjustment module; the fusion analysis module is used to input the fusion result information into a preset fusion comparison library for comparison, and determine whether the fusion result information exists in the preset fusion comparison library; if the fusion result information exists in the preset fusion comparison library, obtain the alarm strategy information corresponding to the fusion result information; the alarm adjustment module is used to automatically adjust the real-time monitoring alarm strategy according to the alarm strategy information.
[0072] It should be noted that, in the embodiment of the present invention, the processing module 304 fuses the real-time analysis results and the auxiliary analysis information, which is actually also achieved through the fusion analysis module.
[0073] It should be noted that in the embodiment of the present invention, the processing module 304 fuses the real-time analysis results and the auxiliary analysis information through the fusion analysis module. Specifically, the fusion may be performed according to certain combination rules, or by selecting partial information from the real-time analysis results and the auxiliary analysis information for fusion, or by other fusion methods. The specific fusion method is not limited in the embodiment of the present invention.
[0074] It should be noted that, in an embodiment of the present invention, a preset fusion comparison library is stored in the monitoring processing device for comparing the fusion result information. The specific fusion comparison library can be independently set according to the actual monitoring needs, and the embodiment of the present invention does not limit it. In a specific embodiment, the electrocardiogram monitoring analysis (RECG) results and the electrocardiogram diagnosis analysis results (MECG) results can be directly combined according to type or quantity, such as the combination of the preexcitation syndrome diagnosis result of RECG and the atrial fibrillation analysis result of MECG, the combination of the atrial fibrillation result of RECG and the rapid heart rate of MECG, the combination of the acute myocardial infarction analysis result of RECG and the ST analysis and arrhythmia analysis result of MECG, the combination of the QT interval syndrome diagnosis result of RECG and the arrhythmia analysis result of MECG, and the combination of the abnormal J wave diagnosis result of RECG and the bradycardia analysis result of MECG.
[0075] It is understood that in an embodiment of the present invention, the processing module 304 inputs the fusion result information into a preset fusion comparison library through the fusion analysis module for comparison, determines whether the fusion result information exists in the preset fusion comparison library, and if so, indicates that the alarm policy needs to be adjusted. The corresponding alarm policy information is then further obtained and output to the alarm adjustment module. The information in the preset fusion comparison library can exist in text form or in coded form. When in coded form, the fusion result information is converted into code according to a preset coding method and then compared with the information in the fusion comparison library.
[0076] For example, in an embodiment of the present invention, a preset fusion comparison library stores clinical high-risk ECG judgment criteria and experience. If the fusion result information is pre-excitation syndrome with rapid ventricular rate atrial fibrillation, the fusion analysis module of processing module 304 inputs the fusion result information into the preset fusion comparison library for comparison. If such a fusion result is determined, the corresponding alarm strategy information for increasing the priority of atrial fibrillation detection is obtained and output to the alarm adjustment module. The reason for increasing the priority of atrial fibrillation detection is that atrial fibrillation under pre-excitation conditions can easily deteriorate into ventricular fibrillation, which is life-threatening.
[0077] It should be noted that, in the embodiment of the present invention, the alarm adjustment module of the processing module 304 can receive the alarm strategy information output by the fusion analysis module, and can adjust the real-time monitoring alarm strategy according to the alarm strategy information.
[0078] In an embodiment of the present invention, the alarm adjustment module of the processing module 304 is also used to output adjustment prompt information based on the alarm policy information; when receiving a change instruction determined based on the adjustment prompt information, the real-time monitoring alarm policy is adjusted according to the change instruction, so that the alarm policy information is only changed after obtaining the user's confirmation.
[0079] It is understood that in an embodiment of the present invention, after receiving the alarm policy information, the alarm adjustment module of the processing module 304 may further output corresponding adjustment prompt information to allow the medical staff to confirm whether to adjust the real-time monitoring alarm policy according to the alarm policy information, and upon receiving the change instruction, adjust the real-time monitoring alarm policy according to the change instruction. Of course, if the medical staff determines that the real-time monitoring alarm policy does not need to be adjusted at this time, the alarm adjustment module does not receive the change instruction, and the current real-time monitoring alarm policy is maintained.
[0080] In an embodiment of the present invention, the alarm adjustment module of the processing module 304 is specifically used to adjust at least one of the alarm level, alarm content and alarm conditions in the real-time monitoring alarm strategy according to the alarm strategy information; the alarm content includes at least one of the alarm event type and the alarm event presentation method.
[0081] It should be noted that, in the embodiment of the present invention, the alarm presentation mode may specifically include alarm volume, alarm font color and the like.
[0082] For example, in an embodiment of the present invention, the fusion result information is pre-excitation syndrome with rapid ventricular rate atrial fibrillation, and the corresponding alarm strategy information is to increase the atrial fibrillation alarm level from intermediate to advanced. Therefore, the alarm adjustment module adjusts the real-time monitoring alarm strategy according to the instructions of the alarm strategy information, that is, changes the alarm level of atrial fibrillation from intermediate to advanced.
[0083] For example, in an embodiment of the present invention, the fusion result information indicates an abnormal J wave with bradycardia, and the corresponding alarm policy information indicates increasing the priority of bradycardia. Therefore, the alarm adjustment module adjusts the real-time monitoring alarm policy according to the instructions of the alarm policy information, namely, increasing the priority of bradycardia. It is understandable that while increasing the priority of bradycardia, the alarm condition for bradycardia can also be appropriately lowered, making the bradycardia alarm more sensitive.
[0084] In an embodiment of the present invention, the monitoring processing device may further include an alarm output module configured to output an alarm for at least one of the real-time analysis results, auxiliary analysis information, and fusion result information according to the adjusted real-time alarm monitoring strategy. Exemplarily, the alarm output module may be a display that displays at least one of the real-time analysis results, auxiliary analysis information, and fusion result information.
[0085] For example, in an embodiment of the present invention, the real-time analysis result is bradycardia, the auxiliary analysis information is J wave abnormality, and the fusion result information is abnormal J wave with bradycardia. According to the adjusted real-time alarm monitoring strategy, the alarm level corresponding to bradycardia is upgraded from intermediate to advanced, and the display module can output the alarm for the real-time analysis result in the advanced alarm mode.
[0086] In an embodiment of the present invention, the preset monitoring adjustment method includes adjusting the real-time analysis result. The processing module 304 is specifically configured to adjust the real-time analysis result according to the auxiliary analysis information to obtain the adjusted real-time analysis result.
[0087] It should be noted that, in an embodiment of the present invention, the processing module 304 can directly adjust the real-time analysis result based on the auxiliary analysis information, including adding relevant information of the auxiliary analysis information to the real-time analysis result. For example, if the real-time analysis result is tachycardia and the auxiliary analysis information is atrial fibrillation, the atrial fibrillation information can be added to the real-time analysis result, and the adjusted real-time analysis result is atrial fibrillation with tachycardia. Of course, the processing module 304 can also perform other types of adjustments to the real-time analysis result based on the auxiliary analysis information, such as deleting or modifying part of the real-time analysis result, etc., so that the adjusted real-time analysis result is more accurate. The specific adjustment method is not limited in the embodiment of the present invention.
[0088] In the technical solution implemented in the present invention, the monitoring processing device includes: a first acquisition module for acquiring real-time monitoring information corresponding to the target object, the real-time monitoring information being used to characterize the real-time status of the target object; a second acquisition module for acquiring auxiliary analysis information corresponding to the target object; a real-time analysis module connected to the first acquisition module and configured to determine a real-time analysis result based on the real-time monitoring information; and a processing module connected to the first acquisition module and the real-time analysis module and configured to perform monitoring adjustment processing based on the real-time analysis result and the auxiliary analysis information in accordance with a preset monitoring adjustment method. The technical solution provided in the embodiment of the present invention utilizes auxiliary analysis information of other dimensions of the target object to adjust the real-time analysis result determined based on the real-time monitoring information, or to adjust the monitoring alarm level in combination with the real-time analysis result, so as to meet the actual monitoring needs of the target object, thereby improving the intelligence of real-time monitoring.
[0089] Another embodiment of the present invention provides a monitoring and processing device. Figure 4 A schematic diagram of the structure of a monitoring and processing device provided in an embodiment of the present invention Figure 2 .like Figure 4 As shown, the monitoring and processing device includes:
[0090] ECG monitoring module 401, used to obtain ECG monitoring analysis results corresponding to the target object;
[0091] ECG diagnosis module 402, used to obtain ECG diagnosis analysis results corresponding to the target object;
[0092] The fusion analysis module 403 is connected to the ECG monitoring module 401 and the ECG diagnosis module 402 and is used to fuse the ECG monitoring analysis results and the ECG diagnosis analysis results to obtain fusion result information;
[0093] The alarm processing module 404 is connected to the fusion analysis module 403 and is used to adjust the ECG monitoring alarm strategy according to the fusion result information.
[0094] Figure 5 This is a structural diagram of an electrocardiogram monitoring module provided by an embodiment of the present invention. Figure 5 As shown, the ECG monitoring module 401 includes:
[0095] A real-time ECG acquisition module 4011 is used to acquire a real-time ECG signal corresponding to a target object;
[0096] The first signal preprocessing module 4012 is connected to the real-time ECG acquisition module 4011 and is used to preprocess the real-time ECG signal to obtain the preprocessed real-time ECG signal;
[0097] The monitoring ECG analysis module 4013 is connected to the first signal preprocessing module 4012 and is used to perform ECG monitoring analysis on the preprocessed real-time ECG signal to obtain ECG monitoring analysis results.
[0098] It should be noted that, in the embodiment of the present invention, the real-time ECG acquisition module 4011 can specifically collect the patient's real-time ECG signal in real time through an ECG sensor and a hardware circuit.
[0099] It should be noted that, in the embodiment of the present invention, the first signal preprocessing module 4012 preprocesses the real-time ECG signal, including but not limited to filtering, notching, amplification, baseline correction, noise suppression, and pacing suppression.
[0100] It should be noted that, in an embodiment of the present invention, the monitoring ECG analysis module 4013 performs ECG monitoring analysis on the preprocessed real-time ECG signal, including but not limited to heart rate analysis, arrhythmia analysis, ST analysis, and QT analysis. Accordingly, the ECG monitoring analysis results include but are not limited to heart rate results, arrhythmia analysis results, ST analysis results, and QT analysis results.
[0101] Figure 6 This is a structural diagram of an electrocardiogram diagnosis module provided by an embodiment of the present invention. Figure 6 As shown, the ECG diagnosis module 402 includes:
[0102] Offline ECG signal acquisition module 4021, used to acquire the offline ECG signal corresponding to the target object;
[0103] The second signal preprocessing module 4022 is connected to the offline ECG signal acquisition module 4021 and is used to preprocess the offline ECG signal to obtain the preprocessed offline ECG signal;
[0104] The resting ECG analysis module 4023 is connected to the second signal preprocessing module 4022 and is used to perform ECG diagnosis analysis on the preprocessed offline ECG signal to obtain ECG diagnosis analysis results.
[0105] It should be noted that, in the embodiment of the present invention, the offline ECG signal acquisition module 4021 may specifically collect the patient's offline ECG signals for a period of time offline through an ECG sensor and a hardware circuit.
[0106] It should be noted that, in the embodiment of the present invention, the way in which the second signal preprocessing module 4022 preprocesses the offline ECG signal is similar to the way in which the first signal preprocessing module 4021 preprocesses the real-time ECG signal, and will not be repeated here.
[0107] It should be noted that, in an embodiment of the present invention, the resting ECG analysis module 4023 analyzes the preprocessed offline ECG signal, including but not limited to heart rate analysis, arrhythmia analysis, P-QRS-ST-T amplitude and duration analysis, and ECG wave morphology analysis. Accordingly, the ECG diagnostic analysis results include but are not limited to heart rate results, arrhythmia analysis results, morphology analysis results, and diagnostic information results. The specific ECG diagnostic analysis results are not limited in this embodiment of the present invention.
[0108] Figure 7 A schematic diagram of the structure of a fusion analysis module provided in an embodiment of the present invention. In this embodiment of the present invention, fusion analysis module 403 includes result fusion module 4031, which is used to combine ECG monitoring analysis results and ECG diagnosis analysis results according to a preset combination method to obtain at least one analysis result combination; and determine each analysis result combination in the at least one analysis result combination as fusion result information.
[0109] like Figure 7 As shown, the fusion analysis module 403 also includes a fusion comparison module 4032. The fusion comparison module 4032 is used to input the fusion result information into a preset fusion comparison library for comparison, and determine whether there is fusion result information in the preset fusion comparison library; if there is fusion result information in the fusion comparison library, obtain the alarm strategy information corresponding to the fusion result information.
[0110] Exemplarily, in an embodiment of the present invention, the result fusion module 3041 combines the ECG monitoring analysis results and the ECG diagnosis analysis results according to type and quantity. Specifically, the result fusion module 3041 can combine the atrial fibrillation analysis result in the ECG monitoring analysis results with the preexcitation syndrome diagnosis result in the ECG diagnosis analysis results, combine the rapid heart rate in the ECG monitoring analysis results with the atrial fibrillation result in the ECG diagnosis analysis results, combine the ST analysis and arrhythmia analysis results in the ECG monitoring analysis results with the acute myocardial infarction analysis result in the ECG diagnosis analysis results, combine the arrhythmia analysis result in the ECG monitoring analysis results with the QT syndrome diagnosis result in the ECG diagnosis analysis results, and combine the bradycardia analysis result in the ECG analysis results with the abnormal J wave diagnosis result in the ECG diagnosis analysis results.
[0111] Illustratively, in an embodiment of the present invention, clinical high-risk electrocardiogram judgment criteria and experience are stored in the preset fusion comparison library, and the fusion result information is an abnormal J wave with bradycardia. The fusion comparison module 4032 inputs the fusion result information into the preset fusion comparison library, determines the existence of the fusion result information, and thereby obtains the corresponding alarm strategy information. The specific alarm strategy information is to increase the priority of bradycardia.
[0112] In the embodiment of the present invention, the alarm processing module 404 is specifically configured to adjust the ECG monitoring alarm strategy according to the alarm strategy information.
[0113] It should be noted that, in an embodiment of the present invention, alarm processing module 404 is specifically configured to automatically adjust the ECG monitoring alarm strategy according to the alarm strategy information. Alarm processing module 404 may also be specifically configured to: output adjustment prompt information based on the alarm strategy information; and upon receiving a change instruction determined based on the adjustment prompt information, adjust the ECG monitoring alarm strategy according to the change instruction.
[0114] It should be noted that, in an embodiment of the present invention, the alarm processing module 404 is specifically used to adjust the alarm level and / or alarm content in the ECG monitoring alarm strategy according to the alarm strategy information; the alarm content includes at least one of the alarm event type and the alarm event presentation method.
[0115] It should be noted that, in the embodiment of the present invention, the alarm processing module 404 adjusts the ECG monitoring alarm strategy according to the alarm strategy information, which is consistent with the method of adjusting the alarm strategy in the previous embodiment and will not be repeated here.
[0116] It should be noted that in this embodiment of the present invention, the alarm processing module 404 is further configured to output an alarm for the ECG monitoring analysis results, ECG diagnostic analysis results, and fusion result information according to the adjusted ECG monitoring alarm strategy. The specific alarm output method is consistent with that in the previous embodiment and will not be further described here.
[0117] In the technical solution implemented in the present invention, the monitoring processing device includes: an ECG monitoring module for obtaining ECG monitoring analysis results corresponding to a target subject; an ECG diagnosis module for obtaining ECG diagnosis analysis results corresponding to the target subject; a fusion analysis module connected to the ECG monitoring module and the ECG diagnosis module for fusing the ECG monitoring analysis results with the ECG diagnosis analysis results to obtain fusion result information; and an alarm processing module connected to the fusion analysis module for adjusting the ECG monitoring alarm strategy based on the fusion result information. The technical solution provided in this embodiment of the present invention utilizes the ECG diagnosis analysis results and the ECG analysis monitoring results of the target subject to adjust the monitoring alarm level to meet the actual monitoring needs of the target subject, thereby improving the intelligence of real-time monitoring.
[0118] Yet another embodiment of the present invention provides a monitoring processing method. Figure 8 A schematic diagram of a monitoring processing method provided by an embodiment of the present invention Figure 1 .like Figure 8 As shown, it mainly includes the following steps:
[0119] S801: Acquire real-time monitoring information corresponding to a target object, where the real-time monitoring information is used to represent a real-time status of the target object.
[0120] In an embodiment of the present invention, the monitoring processing device can obtain real-time monitoring information corresponding to the target object, and the real-time monitoring information is used to represent the real-time status of the target object.
[0121] It should be noted that, in the embodiments of the present invention, Figure 3 The monitoring processing device shown can directly obtain real-time monitoring information corresponding to the target object through the first acquisition module 301. The specific real-time monitoring signal can be a real-time electrocardiogram signal. Of course, other information that can represent the real-time status of the target object can also be used. This is not limited in the embodiment of the present invention.
[0122] S802: Obtain auxiliary analysis information corresponding to the target object.
[0123] In an embodiment of the present invention, the monitoring processing device can obtain auxiliary analysis information corresponding to the target object.
[0124] Specifically, in an embodiment of the present invention, the auxiliary analysis information includes an electrocardiogram (ECG) diagnostic analysis result, and the monitoring processing device obtains the auxiliary analysis information corresponding to the target object, including: obtaining an offline ECG signal corresponding to the target object; performing an ECG diagnostic analysis on the offline ECG signal to obtain an ECG diagnostic analysis result.
[0125] Specifically, in an embodiment of the present invention, the auxiliary analysis information includes target object feature information, and the monitoring processing device obtains the auxiliary analysis information corresponding to the target object, including: receiving input target object feature information.
[0126] It should be noted that, in the embodiment of the present invention, the target object characteristic information is at least one of the target object basic information, case diagnosis information, image inspection information and target object inspection information.
[0127] It should be noted that, in the embodiments of the present invention, Figure 3 The monitoring processing device shown can obtain auxiliary analysis information through the second acquisition module 302. The auxiliary analysis information can include electrocardiogram diagnosis analysis results and target object feature information, or other types of information, which is not limited in this embodiment of the present invention.
[0128] S803. Determine real-time analysis results based on real-time monitoring information.
[0129] In the embodiment of the present invention, after obtaining the real-time monitoring information, the monitoring processing device can determine the real-time analysis result according to the real-time monitoring information.
[0130] Specifically, in an embodiment of the present invention, the real-time monitoring information is a real-time electrocardiogram signal, and the monitoring processing device determines the real-time analysis result based on the real-time monitoring information, including: performing electrocardiogram monitoring analysis on the real-time electrocardiogram signal to obtain the electrocardiogram monitoring analysis result; and determining the electrocardiogram monitoring analysis result as the real-time analysis result.
[0131] S804: Perform monitoring adjustment processing according to the preset monitoring adjustment method and the real-time analysis results and the auxiliary analysis information analysis results.
[0132] In an embodiment of the present invention, after obtaining the real-time analysis results and the auxiliary analysis information, the monitoring processing device can perform monitoring adjustment processing according to the real-time analysis results and the auxiliary analysis information analysis results in a preset monitoring adjustment mode.
[0133] Specifically, in an embodiment of the present invention, the preset monitoring adjustment method includes adjusting the real-time monitoring alarm strategy. The monitoring processing device performs monitoring adjustment processing according to the preset monitoring adjustment method based on the real-time analysis results and auxiliary analysis information, including: fusing the real-time analysis results and auxiliary analysis information to obtain fusion result information; adjusting the real-time monitoring alarm strategy according to the fusion result information.
[0134] Specifically, in an embodiment of the present invention, the preset monitoring adjustment method includes adjusting the real-time analysis results. The monitoring processing device performs monitoring adjustment processing according to the preset monitoring adjustment method, based on the real-time analysis results and auxiliary analysis information, including: adjusting the real-time analysis results according to the auxiliary analysis information to obtain the adjusted real-time analysis results.
[0135] Specifically, in an embodiment of the present invention, the monitoring processing device adjusts the real-time monitoring alarm strategy according to the fusion result information, including: inputting the fusion result information into a preset fusion comparison library for comparison, and determining whether the fusion result information exists in the preset fusion comparison library; if the fusion result information exists in the preset fusion comparison library, obtaining the alarm strategy information corresponding to the fusion result information; and automatically adjusting the real-time monitoring alarm strategy according to the alarm strategy information.
[0136] It should be noted that, in an embodiment of the present invention, after the monitoring processing device obtains the alarm strategy information corresponding to the fusion result information, it also includes: outputting adjustment prompt information based on the alarm strategy information; when receiving a change instruction determined based on the adjustment prompt information, adjusting the real-time monitoring alarm strategy according to the change instruction.
[0137] Specifically, in an embodiment of the present invention, the monitoring processing device automatically adjusts the real-time monitoring alarm strategy according to the alarm strategy information, including: adjusting the alarm level and / or alarm content in the real-time monitoring alarm strategy according to the alarm strategy information; the alarm content includes at least one of the alarm event type and the alarm event presentation method.
[0138] It should be noted that, in an embodiment of the present invention, after the monitoring processing device adjusts the real-time monitoring alarm strategy according to the fusion result information, it also includes: outputting an alarm for the real-time analysis results, auxiliary analysis information and fusion result information according to the adjusted real-time alarm monitoring strategy.
[0139] Yet another embodiment of the present invention provides a monitoring processing method. Figure 9 A schematic diagram of a monitoring processing method provided by an embodiment of the present invention Figure 2 .like Figure 9 As shown, it mainly includes the following steps:
[0140] S901. Obtain the ECG monitoring analysis results corresponding to the target object.
[0141] In an embodiment of the present invention, the monitoring processing device may first obtain the electrocardiogram monitoring analysis result.
[0142] Specifically, in an embodiment of the present invention, the monitoring and processing device obtains the ECG monitoring analysis results corresponding to the target object, including: obtaining the real-time ECG signal corresponding to the target object; preprocessing the real-time ECG signal to obtain the preprocessed real-time ECG signal; performing ECG monitoring analysis on the preprocessed real-time ECG signal to obtain the ECG monitoring analysis results.
[0143] S902: Obtain electrocardiogram (ECG) diagnosis and analysis results.
[0144] In the embodiment of the present invention, the monitoring processing device can not only obtain the electrocardiogram monitoring analysis result corresponding to the target object, but also obtain the electrocardiogram diagnosis analysis result corresponding to the target object.
[0145] Specifically, in an embodiment of the present invention, the monitoring and processing device obtains the ECG diagnosis and analysis results corresponding to the target object, including: obtaining the offline ECG signal corresponding to the target object; preprocessing the offline ECG signal to obtain the preprocessed offline ECG signal; performing ECG diagnosis and analysis on the preprocessed offline ECG signal to obtain the ECG diagnosis and analysis results.
[0146] S903: Fuse the ECG monitoring analysis result and the ECG diagnosis analysis result to obtain fusion result information.
[0147] In an embodiment of the present invention, after obtaining the ECG monitoring analysis result and the ECG diagnosis analysis result, the monitoring processing device may fuse the ECG monitoring analysis result and the ECG diagnosis analysis result to obtain fusion result information.
[0148] Specifically, in an embodiment of the present invention, the monitoring processing device fuses the ECG monitoring analysis results and the ECG diagnosis analysis results to obtain fusion result information, including: combining different results of the ECG monitoring analysis results and the ECG diagnosis analysis results according to a preset combination method to obtain at least one analysis result combination; and determining each analysis result combination in the at least one analysis result combination as fusion result information.
[0149] S904: Adjust the ECG monitoring alarm strategy based on the fusion result information.
[0150] In an embodiment of the present invention, after the monitoring processing device obtains the fusion result information, the interface adjusts the ECG monitoring alarm strategy according to the fusion result information.
[0151] Specifically, in an embodiment of the present invention, the monitoring processing device adjusts the ECG monitoring alarm strategy according to the fusion result information, including: inputting the fusion result information into a preset fusion comparison library for comparison, and determining whether the fusion result information exists in the preset fusion comparison library; if the fusion result information exists in the fusion comparison library, obtaining the alarm strategy information corresponding to the fusion result information; and adjusting the ECG monitoring alarm strategy according to the alarm strategy information.
[0152] Specifically, in an embodiment of the present invention, the monitoring processing device adjusts the ECG monitoring alarm strategy according to the alarm strategy information, including: automatically adjusting the ECG monitoring alarm strategy according to the alarm strategy information.
[0153] Specifically, in an embodiment of the present invention, the monitoring processing device adjusts the ECG monitoring alarm strategy according to the alarm strategy information, and also includes: outputting adjustment prompt information based on the alarm strategy information; when receiving a change instruction determined based on the adjustment prompt information, adjusting the ECG monitoring alarm strategy according to the change instruction.
[0154] It should be noted that, in an embodiment of the present invention, the monitoring processing device adjusts the ECG monitoring alarm strategy according to the alarm strategy information, including: adjusting the alarm level and / or alarm content in the ECG monitoring alarm strategy according to the alarm strategy information; the alarm content includes at least one of the alarm event type and the alarm event presentation method.
[0155] It should be noted that, in an embodiment of the present invention, after the monitoring processing device adjusts the ECG monitoring alarm strategy according to the fusion result information, it also includes: outputting an alarm for the ECG monitoring analysis results, ECG diagnostic analysis results and fusion result information according to the adjusted ECG monitoring alarm strategy.
[0156] An embodiment of the present invention also provides a monitoring system. Figure 10 This is a schematic diagram of the structure of a monitoring system provided by an embodiment of the present invention. Figure 10 As shown, the monitoring system includes:
[0157] The parameter measurement circuit 1001 uses the sensor accessory 1002 connected to the target object to obtain real-time monitoring information corresponding to the target object;
[0158] Processor 1003 performs the following steps:
[0159] Obtaining auxiliary analysis information corresponding to the target object;
[0160] Determining real-time analysis results based on the real-time monitoring information;
[0161] According to the preset monitoring adjustment mode, monitoring adjustment processing is performed based on the real-time analysis results and the auxiliary analysis information.
[0162] Optionally, the real-time monitoring information is a real-time electrocardiogram signal, and the processor is specifically configured to perform the following steps:
[0163] Performing electrocardiographic monitoring analysis on the real-time electrocardiographic signal to obtain an electrocardiographic monitoring analysis result;
[0164] The electrocardiogram monitoring analysis result is determined as the real-time analysis result.
[0165] Optionally, the auxiliary analysis information includes electrocardiographic diagnosis analysis results,
[0166] The processor is specifically configured to perform the following steps:
[0167] Acquiring an offline electrocardiogram signal corresponding to the target object through the parameter measurement circuit 1001;
[0168] Performing electrocardiographic diagnosis and analysis on the offline electrocardiographic signal to obtain the electrocardiographic diagnosis and analysis result.
[0169] Optionally, the auxiliary analysis information includes target object feature information, and the monitoring system further includes an input interface circuit 1004,
[0170] The processor 1003 is specifically configured to perform the following steps:
[0171] The target object feature information is received through the input interface circuit.
[0172] Optionally, the target object characteristic information is at least one of target object basic information, case diagnosis information, image examination information and target object inspection information.
[0173] Optionally, the preset monitoring adjustment mode includes adjusting a real-time monitoring alarm strategy, and the processor 1003 is specifically configured to perform the following steps:
[0174] Fusing the real-time analysis result and the auxiliary analysis information to obtain fusion result information;
[0175] The real-time monitoring alarm strategy is adjusted according to the fusion result information.
[0176] Optionally, the preset monitoring adjustment mode includes adjusting the real-time analysis result, and the processor 1003 is specifically configured to perform the following steps:
[0177] The real-time analysis result is adjusted according to the auxiliary analysis information to obtain an adjusted real-time analysis result.
[0178] Optionally, the monitoring system further includes an alarm circuit 1005;
[0179] The alarm circuit 1005 outputs an alarm for the real-time analysis result, the auxiliary analysis information and the fusion result information according to the adjusted ECG alarm monitoring strategy.
[0180] Optionally, the processor 1003 is specifically configured to perform the following steps:
[0181] Input the fusion result information into a preset fusion comparison library for comparison, and determine whether the fusion result information exists in the preset fusion comparison library;
[0182] If the fusion result information exists in the preset fusion comparison library, obtaining the alarm strategy information corresponding to the fusion result information;
[0183] The real-time monitoring alarm strategy is automatically adjusted according to the alarm strategy information.
[0184] Optionally, the processor 1003 is further configured to perform the following steps:
[0185] Outputting adjustment prompt information based on the alarm strategy information;
[0186] When a change instruction determined based on the adjustment prompt information is received, the real-time monitoring alarm strategy is adjusted according to the change instruction.
[0187] Optionally, the processor 1003 is specifically configured to perform the following steps:
[0188] According to the alarm strategy information, the alarm level and / or alarm content in the electrocardiogram monitoring alarm strategy is adjusted; the alarm content includes at least one of an alarm event type and an alarm event presentation mode.
[0189] Those skilled in the art will appreciate that embodiments of the present invention may be provided as methods, systems, or computer program products. Thus, the present invention may take the form of hardware embodiments, software embodiments, or embodiments combining software and hardware. Furthermore, the present invention may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage and optical storage, etc.) containing computer-usable program code.
[0190] The present invention is described with reference to flowcharts and / or block diagrams of methods, devices (systems), and computer program products according to embodiments of the present invention. It should be understood that each process and / or block in the flowcharts and / or block diagrams, as well as combinations of processes and / or blocks in the flowcharts and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable signal processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable signal processing device generate instructions for implementing the processes in the flowcharts and / or block diagrams. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.
[0191] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable signal processing device to operate in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device that implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.
[0192] These computer program instructions may also be loaded onto a computer or other programmable signal processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing instructions for executing on the computer or other programmable device to implement the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.
[0193] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention.
[0194] Industrial Applicability
[0195] In the technical solution of the embodiment of the present invention, the monitoring processing device includes: a first acquisition module, which is used to obtain real-time monitoring information corresponding to the target object, and the real-time monitoring information is used to represent the real-time status of the target object; a second acquisition module, which is used to obtain auxiliary analysis information corresponding to the target object; a real-time analysis module, which is connected to the first acquisition module and is used to determine the real-time analysis results based on the real-time monitoring information; and a processing module, which is connected to the first acquisition module and the real-time analysis module and is used to perform monitoring adjustment processing based on the real-time analysis results and the auxiliary analysis information in accordance with a preset monitoring adjustment method. The technical solution provided by the embodiment of the present invention uses auxiliary analysis information of other dimensions of the target object to adjust the real-time analysis results determined based on the real-time monitoring information, or adjust the monitoring alarm level in combination with the real-time analysis results to meet the actual monitoring needs of the target object, thereby improving the intelligence of real-time monitoring.
Claims
1. A monitoring and processing device, characterized in that: The device comprises: An ECG monitoring module is used to obtain ECG monitoring analysis results corresponding to the target object; the ECG monitoring analysis results represent real-time analysis information; An ECG diagnosis module is used to obtain an ECG diagnosis analysis result corresponding to the target object; the ECG diagnosis analysis result represents auxiliary analysis information; a fusion analysis module, connected to the ECG monitoring module and the ECG diagnosis module, for fusing the ECG monitoring analysis results with the ECG diagnosis analysis results to obtain fusion result information; An alarm processing module, connected to the fusion analysis module, for adjusting the ECG monitoring alarm strategy according to the fusion result information; Among them, the fusion analysis module includes a result fusion module, which is used to combine the ECG monitoring analysis results and the ECG diagnosis analysis results according to a preset combination method to obtain at least one analysis result combination; and determine each analysis result combination in the at least one analysis result combination as the fusion result information.
2. The device according to claim 1, characterized in that The electrocardiogram monitoring module includes: A real-time ECG acquisition module, used to acquire the real-time ECG signal corresponding to the target object; A first signal preprocessing module is connected to the real-time ECG acquisition module and is used to preprocess the real-time ECG signal to obtain a preprocessed real-time ECG signal; The monitoring ECG analysis module is connected to the first signal preprocessing module and the real-time ECG acquisition module, and is used to perform ECG monitoring analysis on the preprocessed real-time ECG signal to obtain the ECG monitoring analysis result.
3. The device according to claim 1, characterized in that The electrocardiogram diagnosis module includes: An offline ECG signal acquisition module, configured to acquire an offline ECG signal corresponding to the target object; a second signal preprocessing module, connected to the offline ECG signal acquisition module, for preprocessing the offline ECG signal to obtain a preprocessed offline ECG signal; The resting ECG analysis module is connected to the second signal preprocessing module and is used to perform ECG diagnosis analysis on the preprocessed offline ECG signal to obtain the ECG diagnosis analysis result.
4. The device according to claim 1, characterized in that The fusion analysis module also includes a fusion comparison module, The fusion comparison module is used to input the fusion result information into a preset fusion comparison library for comparison, and determine whether the fusion result information exists in the preset fusion comparison library; If the fusion result information exists in the fusion comparison library, obtaining the alarm strategy information corresponding to the fusion result information; The alarm processing module is specifically used to adjust the ECG monitoring alarm strategy according to the alarm strategy information.
5. The device according to claim 4, characterized in that The alarm processing module is specifically used to automatically adjust the ECG monitoring alarm strategy according to the alarm strategy information.
6. The device according to claim 4, characterized in that The alarm processing module is specifically configured to output adjustment prompt information based on the alarm strategy information; and upon receiving a change instruction determined based on the adjustment prompt information, adjust the ECG monitoring alarm strategy according to the change instruction.
7. The device according to claim 4, characterized in that The alarm processing module is specifically used to adjust the alarm level and / or alarm content in the ECG monitoring alarm strategy according to the alarm strategy information; the alarm content includes at least one of the alarm event type and the alarm event presentation mode.
8. The device according to claim 1, characterized in that The alarm processing module is further configured to output an alarm for at least one of the ECG monitoring analysis result, the ECG diagnosis analysis result, and the fusion result information according to the adjusted ECG monitoring alarm strategy.
9. A monitoring and processing device, characterized in that: The device comprises: A first acquisition module is used to acquire real-time monitoring information corresponding to a target object, where the real-time monitoring information is used to represent a real-time status of the target object; A second acquisition module is used to acquire auxiliary analysis information corresponding to the target object; A real-time analysis module, connected to the first acquisition module, for determining a real-time analysis result based on the real-time monitoring information; a processing module connected to the second acquisition module and the real-time analysis module, configured to perform monitoring adjustment processing according to the real-time analysis results and the auxiliary analysis information in accordance with a preset monitoring adjustment mode; The processing module is specifically configured to combine the real-time analysis results and the auxiliary analysis information in a preset combination manner to obtain at least one analysis result combination; and determine each analysis result combination in the at least one analysis result combination as fusion result information.
10. The device according to claim 9, characterized in that The real-time monitoring information is a real-time electrocardiogram signal. The real-time analysis module is specifically used to perform electrocardiographic monitoring analysis on the real-time electrocardiographic signal to obtain an electrocardiographic monitoring analysis result; and determine the electrocardiographic monitoring analysis result as the real-time analysis result.
11. The device according to claim 9, characterized in that The auxiliary analysis information includes electrocardiographic diagnosis and analysis results, The second acquisition module is specifically configured to acquire an offline electrocardiogram signal corresponding to the target object; and perform electrocardiogram diagnosis and analysis on the offline electrocardiogram signal to obtain the electrocardiogram diagnosis and analysis result.
12. The device according to claim 9, characterized in that The auxiliary analysis information includes target object feature information, The second acquisition module is specifically configured to receive the input feature information of the target object.
13. The device according to claim 12, characterized in that The target object characteristic information is at least one of target object basic information, case diagnosis information, image inspection information and target object inspection information.
14. The device according to claim 9, characterized in that The preset monitoring adjustment method includes adjusting the real-time monitoring alarm strategy, The processing module is specifically configured to fuse the real-time analysis result and the auxiliary analysis information to obtain the fusion result information; and adjust the real-time monitoring alarm strategy according to the fusion result information.
15. The device according to claim 9, characterized in that The preset monitoring adjustment method includes adjusting the real-time analysis results, The processing module is specifically configured to adjust the real-time analysis result according to the auxiliary analysis information to obtain an adjusted real-time analysis result.
16. The device according to claim 14, characterized in that The processing module also includes an alarm output module; The alarm output module is used to output an alarm for at least one of the real-time analysis result, the auxiliary analysis information and the fusion result information according to the adjusted real-time alarm monitoring strategy.
17. The device according to claim 14, characterized in that The processing module includes a fusion analysis module and an alarm adjustment module; The fusion analysis module is used to input the fusion result information into a preset fusion comparison library for comparison, and determine whether the fusion result information exists in the preset fusion comparison library; If the fusion result information exists in the preset fusion comparison library, obtaining the alarm strategy information corresponding to the fusion result information; The alarm adjustment module is used to automatically adjust the real-time monitoring alarm strategy according to the alarm strategy information.
18. The device according to claim 17, characterized in that The alarm adjustment module is further configured to output adjustment prompt information based on the alarm strategy information; and upon receiving a change instruction determined based on the adjustment prompt information, adjust the real-time monitoring alarm strategy according to the change instruction.
19. The device according to claim 17, characterized in that The alarm adjustment module is specifically used to adjust the alarm level and / or alarm content in the real-time monitoring alarm strategy according to the alarm strategy information; the alarm content includes at least one of the alarm event type and the alarm event presentation method.
20. A monitoring and processing method, characterized in that: The method comprises: Acquire real-time monitoring information corresponding to the target object, wherein the real-time monitoring information is used to represent the real-time status of the target object; Obtaining auxiliary analysis information corresponding to the target object; Determining real-time analysis results based on the real-time monitoring information; According to the preset monitoring adjustment method, the monitoring adjustment process is performed according to the real-time analysis results and the auxiliary analysis information analysis results, The step of performing monitoring adjustment processing according to the real-time analysis result and the auxiliary analysis information analysis result in accordance with the preset monitoring adjustment mode includes: The real-time analysis result and the auxiliary analysis information analysis result are combined in a preset combination manner to obtain at least one analysis result combination; and each analysis result combination in the at least one analysis result combination is determined as fusion result information.
21. The method according to claim 20, characterized in that The real-time monitoring information is a real-time electrocardiogram signal, and determining the real-time analysis result based on the real-time monitoring information includes: Performing electrocardiographic monitoring analysis on the real-time electrocardiographic signal to obtain an electrocardiographic monitoring analysis result; The electrocardiogram monitoring analysis result is determined as the real-time analysis result.
22. The method according to claim 20, characterized in that The auxiliary analysis information includes an electrocardiogram (ECG) diagnosis analysis result, and obtaining the auxiliary analysis information corresponding to the target object includes: Acquiring an offline electrocardiogram signal corresponding to the target object; Performing electrocardiographic diagnosis and analysis on the offline electrocardiographic signal to obtain the electrocardiographic diagnosis and analysis result.
23. The method according to claim 20, characterized in that The auxiliary analysis information includes target object feature information, and obtaining the auxiliary analysis information corresponding to the target object includes: Receive the input feature information of the target object.
24. The method according to claim 23, wherein The target object characteristic information includes: target object basic information, case diagnosis information, image inspection information and target object inspection information.
25. The method according to claim 20, wherein The preset monitoring adjustment method includes adjusting the real-time monitoring alarm strategy, and performing monitoring adjustment processing according to the real-time analysis results and the auxiliary analysis information in accordance with the preset monitoring adjustment method, including: Fusing the real-time analysis result and the auxiliary analysis information to obtain the fusion result information; The real-time monitoring alarm strategy is adjusted according to the fusion result information.
26. The method according to claim 20, wherein The preset monitoring adjustment method includes adjusting the real-time analysis result, and performing monitoring adjustment processing according to the real-time analysis result and the auxiliary analysis information in accordance with the preset monitoring adjustment method, including: The real-time analysis result is adjusted according to the auxiliary analysis information to obtain an adjusted real-time analysis result.
27. The method according to claim 25, characterized in that After adjusting the real-time monitoring alarm strategy according to the fusion result information, the method further includes: According to the adjusted real-time alarm monitoring strategy, an alarm is output for at least one of the real-time analysis result, the auxiliary analysis information and the fusion result information.
28. The method according to claim 25, characterized in that The adjusting the real-time monitoring alarm strategy according to the fusion result information includes: Input the fusion result information into a preset fusion comparison library for comparison, and determine whether the fusion result information exists in the preset fusion comparison library; If the fusion result information exists in the preset fusion comparison library, obtaining the alarm strategy information corresponding to the fusion result information; The real-time monitoring alarm strategy is automatically adjusted according to the alarm strategy information.
29. The method according to claim 28, characterized in that After obtaining the alarm strategy information corresponding to the fusion result information, the method further includes: Outputting adjustment prompt information based on the alarm strategy information; When a change instruction determined based on the adjustment prompt information is received, the real-time monitoring alarm strategy is adjusted according to the change instruction.
30. The method according to claim 28, wherein The automatically adjusting the real-time monitoring alarm strategy according to the alarm strategy information includes: According to the alarm strategy information, the alarm level and / or alarm content in the real-time monitoring alarm strategy is adjusted; the alarm content includes at least one of an alarm event type and an alarm event presentation mode.
31. A monitoring and processing method, characterized in that: The method comprises: Obtaining an electrocardiogram (ECG) monitoring analysis result corresponding to a target object; the ECG monitoring analysis result represents real-time analysis information; Obtaining an electrocardiogram (ECG) diagnostic analysis result corresponding to the target object; the ECG diagnostic analysis result represents auxiliary analysis information; Fusing the ECG monitoring analysis result and the ECG diagnosis analysis result to obtain fusion result information; Adjusting the ECG monitoring alarm strategy according to the fusion result information; The step of fusing the ECG monitoring analysis result and the ECG diagnosis analysis result to obtain fusion result information includes: Combining different results of the electrocardiogram monitoring analysis results and the electrocardiogram diagnosis analysis results according to a preset combination method to obtain at least one analysis result combination; Each analysis result combination in the at least one analysis result combination is determined as the fusion result information.
32. The method according to claim 31, characterized in that The obtaining of the electrocardiogram monitoring analysis result corresponding to the target object includes: Acquiring a real-time electrocardiogram signal corresponding to the target object; Preprocessing the real-time ECG signal to obtain a preprocessed real-time ECG signal; Performing electrocardiographic monitoring analysis on the preprocessed real-time electrocardiographic signal to obtain the electrocardiographic monitoring analysis result.
33. The method according to claim 31, characterized in that The obtaining of the electrocardiogram (ECG) diagnostic analysis result corresponding to the target object includes: Acquiring an offline electrocardiogram signal corresponding to the target object; Preprocessing the offline ECG signal to obtain a preprocessed offline ECG signal; Performing electrocardiographic diagnosis and analysis on the preprocessed offline electrocardiographic signal to obtain the electrocardiographic diagnosis and analysis result.
34. The method according to claim 31, wherein The adjusting the ECG monitoring alarm strategy according to the fusion result information includes: Inputting the fusion result information into a preset fusion comparison library for comparison, and determining whether the fusion result information exists in the preset fusion comparison library; If the fusion result information exists in the fusion comparison library, obtaining the alarm strategy information corresponding to the fusion result information; Adjust the ECG monitoring alarm strategy according to the alarm strategy information.
35. The method according to claim 34, wherein The adjusting the ECG monitoring alarm strategy according to the alarm strategy information includes: Automatically adjust the ECG monitoring alarm strategy according to the alarm strategy information.
36. The method according to claim 34, wherein The adjusting the ECG monitoring alarm strategy according to the alarm strategy information includes: Outputting adjustment prompt information based on the alarm strategy information; When a change instruction determined based on the adjustment prompt information is received, the electrocardiogram monitoring alarm strategy is adjusted according to the change instruction.
37. The method according to claim 34, wherein The adjusting the ECG monitoring alarm strategy according to the alarm strategy information includes: According to the alarm strategy information, the alarm level and / or alarm content in the electrocardiogram monitoring alarm strategy is adjusted; the alarm content includes at least one of an alarm event type and an alarm event presentation mode.
38. The method according to claim 31, wherein After adjusting the ECG monitoring alarm strategy according to the fusion result information, the method further includes: According to the adjusted ECG monitoring alarm strategy, an alarm is output for at least one of the ECG monitoring analysis result, the ECG diagnosis analysis result and the fusion result information.
39. A monitoring system, characterized in that: include: a parameter measurement circuit, which uses a sensor accessory connected to a target object to obtain real-time monitoring information corresponding to the target object, wherein the real-time monitoring information is used to represent the real-time status of the target object; The processor performs the following steps: Obtaining auxiliary analysis information corresponding to the target object; Determining real-time analysis results based on the real-time monitoring information; According to the preset monitoring adjustment mode, the monitoring adjustment process is performed according to the real-time analysis results and the auxiliary analysis information. The processor is specifically configured to perform the following steps: The real-time analysis result and the auxiliary analysis information are combined according to a preset combination method to obtain at least one analysis result combination; and each analysis result combination in the at least one analysis result combination is determined as fusion result information.
40. The monitoring system according to claim 39, wherein: The real-time monitoring information is a real-time electrocardiogram signal, and the processor is specifically configured to perform the following steps: Performing electrocardiographic monitoring analysis on the real-time electrocardiographic signal to obtain an electrocardiographic monitoring analysis result; The electrocardiogram monitoring analysis result is determined as the real-time analysis result.
41. The monitoring system according to claim 39, wherein: The auxiliary analysis information includes electrocardiographic diagnosis and analysis results, The processor is specifically configured to perform the following steps: Acquiring an offline electrocardiogram signal corresponding to the target object through the parameter measurement circuit; Performing electrocardiographic diagnosis and analysis on the offline electrocardiographic signal to obtain the electrocardiographic diagnosis and analysis result.
42. The monitoring system according to claim 39, wherein: The auxiliary analysis information includes target object feature information, and the monitoring system further includes an input interface circuit. The processor is specifically configured to perform the following steps: The target object feature information is received through the input interface circuit.
43. The monitoring system according to claim 42, wherein: The target object characteristic information includes: one of: target object basic information, case diagnosis information, image inspection information and target object inspection information.
44. The monitoring system according to claim 39, wherein: The preset monitoring adjustment method includes adjusting the real-time monitoring alarm strategy, and the processor is specifically configured to perform the following steps: Fusing the real-time analysis result and the auxiliary analysis information to obtain the fusion result information; The real-time monitoring alarm strategy is adjusted according to the fusion result information.
45. The monitoring system according to claim 44, characterized in that The monitoring system further includes a display; The display at least displays the fusion result information according to the adjusted real-time alarm monitoring strategy.
46. The monitoring system according to claim 44, characterized in that The processor is specifically configured to perform the following steps: Input the fusion result information into a preset fusion comparison library for comparison, and determine whether the fusion result information exists in the preset fusion comparison library; If the fusion result information exists in the preset fusion comparison library, obtaining the alarm strategy information corresponding to the fusion result information; The real-time monitoring alarm strategy is automatically adjusted according to the alarm strategy information.
47. The monitoring system according to claim 39, wherein: The preset monitoring adjustment method includes adjusting the real-time analysis result, and the processor is specifically configured to perform the following steps: The real-time analysis result is adjusted according to the auxiliary analysis information to obtain an adjusted real-time analysis result.
48. The monitoring system according to claim 47, wherein: The processor is further configured to perform the following steps: Adjust prompt information based on alarm strategy information output; When a change instruction determined based on the adjustment prompt information is received, the real-time monitoring alarm strategy is adjusted according to the change instruction.
49. The monitoring system according to claim 47, wherein: The processor is specifically configured to perform the following steps: According to the alarm strategy information, the alarm level and / or alarm content in the ECG monitoring alarm strategy is adjusted; the alarm content includes at least one of the alarm event type and the alarm event presentation mode.
50. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a first monitoring processing program, which can be executed by a processor to implement the monitoring processing method according to any one of claims 20 to 30.
51. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a second monitoring processing program, which can be executed by a processor to implement the monitoring processing method described in any one of claims 31-38.
Citation Information
Patent Citations
Electrocardiograph monitoring system
CN104042208A
Application method of hybrid continuous information analysis technology in medicine
CN106037720A