Remote emergency interaction method and monitoring terminal

By combining the monitoring terminal of the remote emergency interactive system with the monitoring and monitoring devices, real-time transmission of physiological data, rescue operation data and monitoring data is achieved, solving the problem of lack of auxiliary diagnosis and decision support in remote emergency, and improving the treatment efficiency and rescue accuracy at the emergency site.

CN120674020APending Publication Date: 2025-09-19EDAN INSTR
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202410308104.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-03-18
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

The existing remote emergency system lacks effective auxiliary diagnosis and decision-making support, which makes it impossible for on-site medical staff to determine the correct rescue plan in a timely manner, reducing the patient's chance of recovery.

Method used

A remote first aid interaction method is provided, which realizes the real-time collection and transmission of physiological data, rescue operation data and monitoring data through the combination of monitoring terminal and monitoring device, supports medical staff to obtain diagnostic information and control instructions provided by experts in the hospital, and generates analysis reports to assist on-site rescue.

Benefits of technology

It improves the efficiency of emergency treatment at the scene, provides effective auxiliary diagnosis and decision-making support, reduces the complexity of work for on-site medical staff, optimizes rescue operation standards and processes, and improves the quality of rescue care.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120674020A_ABST
    Figure CN120674020A_ABST
Patent Text Reader

Abstract

The invention discloses a remote first aid interaction method and a monitoring terminal.The remote first aid interaction method is applied to the monitoring terminal of a remote first aid interaction system, the system further comprises a monitoring device and a monitoring device.The interaction method comprises the steps that when it is detected that a start key of the monitoring device is pressed down, a first dialog box is provided through a display interface of the monitoring terminal; the first dialog box comprises a first confirm key for confirming to enter the rescue observation interface and a first cancel key for canceling to enter the rescue observation interface; the rescue observation interface is used for displaying physiological data, rescue operation data and monitoring data, the physiological data and the rescue operation data are collected and sent by the monitoring device, and the monitoring data are collected and sent by the monitoring device; and in response to detecting that the first enter key or the first cancel key is pressed down, executing a corresponding interaction operation. According to the invention, the medical personnel of the monitoring terminal can synchronously monitor the first-aid field information, so that the treatment efficiency is improved, and meanwhile, the working complexity of the field medical personnel can be reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the field of medical equipment, and in particular to a remote first aid interaction method and a monitoring terminal. Background Art

[0002] Remote emergency care refers to emergency care for critically ill patients outside the hospital. It is a medical activity that includes on-site rescue and on-the-way monitoring before the patient arrives at the hospital.

[0003] In the existing technology, remote first aid generally monitors the patient's vital signs data through various monitoring equipment at the first aid site. At the same time, on-site medical staff observe the patient's monitoring data in real time and make preliminary diagnoses and emergency treatments for the patient in a short period of time based on their own clinical experience.

[0004] However, existing remote emergency care and hospital diagnosis and treatment are two isolated systems, and rescue work is often limited by the clinical experience of on-site medical staff. If on-site medical staff cannot obtain effective auxiliary diagnosis and decision-making support, they will not be able to determine the correct rescue plan in time, which will reduce the patient's chance of recovery. Summary of the Invention

[0005] The main technical problem solved by this application is to provide a remote first aid interaction method and a monitoring terminal, which can solve the problem that auxiliary diagnosis and decision support cannot be obtained in existing remote first aid.

[0006] In order to solve the above technical problems, the first technical solution adopted in this application is to provide a remote first aid interaction method, which is applied to the monitoring terminal of the remote first aid interaction system. The remote first aid interaction system also includes a monitoring device and a monitoring device. The interaction method includes: when it is detected that the start button of the monitoring device is pressed, a first dialog box is provided through the display interface of the monitoring terminal; wherein, the first dialog box includes a first confirmation button for confirming entry into the rescue observation interface and a first cancel button for canceling entry into the rescue observation interface; wherein, the rescue observation interface is used to display physiological data, rescue operation data and monitoring data, the physiological data and rescue operation data are collected and sent by the monitoring device, and the monitoring data is collected and sent by the monitoring device; in response to detecting that the first confirmation button or the first cancel button is pressed, the corresponding interaction operation is performed.

[0007] Among them, in response to detecting that the first confirmation key or the first cancel key is pressed, the steps of performing corresponding interactive operations include: in response to detecting that the first confirmation key is pressed, displaying a rescue observation interface through the display interface; receiving diagnostic data through the rescue observation interface; wherein the diagnostic data corresponds to physiological data, rescue operation data and monitoring data; the monitoring terminal transmits the diagnostic data to the monitoring device so that the monitoring device displays the diagnostic data.

[0008] Among them, in response to detecting that the first confirmation key or the first cancel key is pressed, the step of performing a corresponding interactive operation includes: in response to detecting that the first cancel key is pressed, providing a second dialog box through the display interface; wherein the second dialog box includes a second confirmation key for reconfirming the cancellation of entering the rescue observation interface and a second cancel key for closing the second dialog box; in response to detecting that the second confirmation key or the second cancel key is pressed, performing the corresponding interactive operation.

[0009] Among them, in response to detecting that the second confirmation key or the second cancel key is pressed, the steps of performing the corresponding interactive operation include: in response to detecting that the second confirmation key is pressed, sending an end rescue instruction to the monitoring device through the monitoring terminal, so that the monitoring device displays the end rescue instruction; or, in response to detecting that the second cancel key is pressed, displaying a rescue observation interface through the display interface.

[0010] Among them, when it is detected that the start button of the monitoring device is pressed, the step of providing a first dialog box through the display interface of the monitoring terminal includes: when it is detected that the start button of the monitoring device is pressed, simultaneously receiving physiological data and rescue operation data sent by the monitoring device through the monitoring terminal, and receiving monitoring data sent by the monitoring device; wherein, the physiological data includes the patient's vital signs information, the rescue operation data includes each rescue operation and the corresponding time node, and the monitoring data includes audio data and / or video data of the first aid scene.

[0011] Among them, the rescue observation interface includes a physiological data display area, a timeline and a monitoring data playback area; in response to detecting that the first confirmation button is pressed, the step of displaying the rescue observation interface through the display interface includes: displaying physiological data through the physiological data display area of ​​the rescue observation interface, displaying the time node corresponding to each rescue operation through the timeline, and displaying audio data and video data through the monitoring data playback area.

[0012] Among them, after the monitoring terminal transmits the diagnostic data to the monitoring device so that the monitoring device displays the diagnostic data, it includes: in response to the observation and rescue interface receiving the end rescue instruction, providing a third dialog box through the rescue observation interface; wherein, the third dialog box includes a third confirmation key for confirming entry into the analysis report interface and a third cancel key for canceling entry into the analysis report interface; in response to detecting that the third confirmation key or the third cancel key is pressed, executing the corresponding interactive operation.

[0013] Among them, in response to detecting that the third confirmation key or the third cancel key is pressed, the steps of performing corresponding interactive operations include: in response to detecting that the third confirmation key is pressed, displaying an analysis report interface through the display interface; providing multiple analysis report templates through the analysis report interface; in response to detecting that at least one analysis report template is selected, generating a corresponding analysis report based on the selected analysis report template, physiological data and rescue operation data.

[0014] Among them, before the step of providing multiple analysis report templates through the analysis report interface, it includes: providing a configuration interface through the analysis report interface; receiving multiple configuration item parameters input by the user through the configuration interface, so that the monitoring terminal generates multiple analysis report templates through the multiple configuration item parameters.

[0015] In order to solve the above technical problems, the second technical solution adopted in this application is to provide a monitoring terminal, including: a memory for storing program data, which, when executed, implements the steps in the remote first aid interaction method as described in any one of the above items; and a processor for executing the program data stored in the memory to implement the steps in the remote first aid interaction method as described in any one of the above items.

[0016] The beneficial effects of the present application are as follows: Different from the prior art, the present application provides a remote first aid interaction method and a monitoring terminal, which collects the patient's physiological data through the monitoring device and sends it to the monitoring terminal, and can provide a first confirmation key for entering the rescue observation interface and a first cancel key for canceling entry into the observation interface through the display interface of the monitoring terminal. In response to receiving the first confirmation key being pressed, the medical staff of the monitoring terminal can synchronously monitor the patient's vital signs information through the rescue observation interface, so as to provide effective auxiliary diagnosis and decision support to the medical staff at the first aid site in a timely manner, thereby improving the efficiency of treatment. Through the above-mentioned interactive method, the present application can not only provide the correct rescue plan for the on-site medical staff, but also reduce the complexity of the work of the on-site medical staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0018] Figure 1 This is a structural diagram of an embodiment of the remote emergency interactive system of the present application;

[0019] Figure 2 This is a flowchart of an implementation method of the remote first aid interaction method of the present application;

[0020] Figure 3 This is a schematic diagram of the interface of the monitoring terminal prompting to enter the rescue observation interface;

[0021] Figure 4 It is a schematic diagram of the rescue observation interface provided by the monitoring terminal;

[0022] Figure 5 This is a schematic diagram of the analysis report interface provided by the monitoring terminal;

[0023] Figure 6 This is a schematic diagram of the template setting interface provided by the monitoring terminal;

[0024] Figure 7 This is a workflow diagram of an application scenario of the remote first aid interaction method of this application;

[0025] Figure 8 It is a structural diagram of an embodiment of the monitoring terminal of the present application. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0027] The terms used in the examples of this application are for the purpose of describing specific embodiments only and are not intended to limit this application. The singular forms "a," "the," and "the" used in the examples of this application and the appended claims are also intended to include plural forms. Unless otherwise clearly indicated above, "a plurality" generally includes at least two, but does not exclude the inclusion of at least one.

[0028] It should be understood that the term "and / or" as used herein is merely a description of the relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A exists alone, A and B exist simultaneously, or B exists alone. Furthermore, the character " / " in this document generally indicates that the associated objects are in an "or" relationship.

[0029] It should be understood that the terms "comprises," "comprising," or any other variations used herein are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising..." does not preclude the presence of additional identical elements in the process, method, article, or apparatus that includes the element.

[0030] See also Figure 1 , Figure 1 1 is a schematic diagram of a remote emergency interactive system according to an embodiment of the present invention. In this embodiment, the remote emergency interactive system 100 includes a monitoring terminal 30 and a monitoring device 10 and a monitoring device 20 connected to the monitoring terminal 30.

[0031] In this embodiment, the monitoring device 10 and the monitoring device 20 are both located at the emergency site, and the monitoring terminal 30 is located inside the hospital. The emergency site can be a field, a roadside, or an ambulance, etc., which is not limited in this application.

[0032] In this embodiment, the monitoring device 10 is used to collect at least one type of physiological data and rescue operation data from the patient, and transmit the physiological data and rescue operation data to the monitoring terminal 30. The monitoring device 20 is used to collect monitoring data from the emergency scene and transmit the monitoring data to the monitoring terminal 30. The monitoring terminal 30 is used to receive the physiological data and rescue operation data transmitted by the monitoring device 10, as well as the monitoring data transmitted by the monitoring device 20, and transmit corresponding control instructions to the monitoring device 10 based on the physiological data, rescue operation data, and monitoring data.

[0033] Among them, physiological data includes the patient's vital signs information, which can be the patient's electrocardiogram, blood pressure, respiratory rate, body temperature, blood oxygen value and other real-time monitoring parameter values ​​and corresponding real-time monitoring waveforms. This application does not limit this.

[0034] The rescue operation data includes each rescue operation and the corresponding time node.

[0035] The monitoring data may be video data and / or audio data, which is not limited in this application.

[0036] The control instruction may be the diagnosis information input by the hospital experts and received by the monitoring terminal 30, such as whether to continue to rescue the patient or how to rescue the patient.

[0037] In a specific implementation scenario, if the on-site medical staff misjudges the patient's condition, the in-hospital experts can input the correct diagnostic information and corresponding rescue measures through the monitoring terminal 30, and then transmit the received control instructions to the monitoring device 10 through the monitoring terminal 30, so that the monitoring device 10 displays the control instructions, so that the medical staff at the emergency site can perform correct rescue operations.

[0038] As can be understood, by collecting the patient's physiological data and rescue operation data through the monitoring device 10 and transmitting it to the monitoring terminal 30, medical personnel at the monitoring terminal can simultaneously monitor the patient's vital signs. Simultaneously, by collecting emergency scene monitoring data through the monitoring device 20 and transmitting it to the monitoring terminal, medical personnel at the monitoring terminal 30 can obtain real-time information on the rescue progress and details at the emergency scene. Furthermore, the corresponding control instructions can be promptly transmitted to the monitoring device 10 through the monitoring terminal 30, providing effective auxiliary diagnosis and decision-making support for medical personnel at the emergency scene.

[0039] In some embodiments, the monitoring terminal 30 includes a first communication circuit and a second communication circuit, the first communication circuit is communicatively connected to the monitoring device 10 , and the second communication circuit is communicatively connected to the monitoring device 20 .

[0040] The monitoring terminal 30 may be a control device such as a single chip microcomputer with a data processing function.

[0041] In some embodiments, the monitoring device 10 includes a sensor coupled to each other and a third communication circuit, the third communication circuit being communicatively connected to the first communication circuit. The sensor is used to collect physiological data of the patient, and the third communication circuit is used to transmit the physiological data to the first communication circuit.

[0042] The monitoring device 10 may be a medical device that integrates detection modules such as an electrocardiograph, an electronic blood pressure monitor, a ventilator, an oximeter, and an electronic thermometer and has a communication function.

[0043] In some embodiments, the monitoring device 20 includes a fourth communication circuit, and a video acquisition device and an audio acquisition device, respectively coupled to the fourth communication circuit, wherein the fourth communication circuit is communicatively connected to the second communication circuit. The monitoring data includes video data and audio data. The video acquisition device is used to acquire video data from the emergency scene, and the audio acquisition device is used to acquire audio data from the emergency scene. The fourth communication circuit is used to transmit the video data and audio data to the second communication circuit.

[0044] The video acquisition device may be a wireless camera, and the audio acquisition device may be a microphone assembly.

[0045] In some embodiments, the monitoring device 10 further includes a fifth communication circuit, and the monitoring device 20 further includes a sixth communication circuit. The fifth communication circuit is communicatively connected to the sixth communication circuit, so that the monitoring device 20 is communicatively connected to the monitoring device 10 .

[0046] Understandably, collecting physiological data and rescue operation data solely through the monitoring device 10 does not allow in-hospital experts to view the rescue images and audio at the emergency scene, nor can they accurately judge the patient's actual condition before physiological data changes. This is not conducive to providing diagnostic information in advance, nor does it facilitate on-site medical staff to perform rescue operations in a timely manner. Based on this, this embodiment adds a monitoring device 20 to the emergency scene and transmits the video and audio data collected by the monitoring device 20 to the monitoring terminal 30. This enables in-hospital experts to accurately understand the rescue progress and details at the emergency scene through the real-time transmission of video and audio data, thereby ensuring the accuracy and timeliness of control instructions.

[0047] In some embodiments, the monitoring terminal 30 includes a memory coupled to the first communication circuit and the second communication circuit, and configured to store physiological data, rescue operation data, and monitoring data.

[0048] It is understandable that, in addition to receiving physiological data, rescue operation data and monitoring data, the monitoring terminal 30 also saves the physiological data, rescue operation data and monitoring data, which is beneficial for users to trace back the physiological data, rescue operation data and monitoring data.

[0049] In some embodiments, the monitoring terminal 30 includes a display unit coupled to the first communication circuit and the second communication circuit for displaying physiological data, rescue operation data, and monitoring data.

[0050] The display unit may be any one or more of a personal computer (PC), a tablet computer (PAD), a mobile phone, and a smart display screen.

[0051] It can be understood that by displaying physiological data, rescue operation data and monitoring data on the display unit, medical staff at the monitoring terminal can synchronously monitor the patient's vital signs information and understand the rescue progress and rescue details at the emergency scene in real time.

[0052] In some embodiments, the monitoring terminal 30 includes an analysis unit coupled to the first communication circuit, the second communication circuit, and the display unit, for generating an analysis report based on physiological data, rescue operation data, and monitoring data, and displaying the analysis report through the display unit.

[0053] Among them, the analysis report refers to the rescue record report, which is a typical nursing document. Its main purpose is to record the rescue measures taken during the rescue process when the patient's condition is critical. It is a very important nursing document that must be issued to meet the requirements of the "Regulations on the Prevention and Handling of Medical Disputes" and the "Basic Standards for Medical Record Writing".

[0054] Traditional emergency records are typically handwritten by on-site medical staff during the rescue process, but this method may miss some information and is inconvenient to manage and archive. Some emergency records are also generated electronically using monitoring equipment. However, for on-site medical staff, real-time observation of patient monitoring data is required during the rescue process. Generating emergency records based on monitoring equipment interferes with the rescue process, making it inconvenient for practical application. Moreover, it only records the rescue measures taken by the monitoring equipment and cannot cover all rescue operations.

[0055] As can be understood, this embodiment generates analysis reports through the monitoring terminal 30, which can prevent on-site medical staff from being distracted by recording, thereby optimizing their workflow, reducing their workload, and ultimately improving treatment efficiency. Furthermore, by subsequently reviewing physiological data, rescue operation data, and monitoring data, more accurate rescue records can be obtained, thereby ensuring the accuracy of the analysis report.

[0056] In some specific implementations, the analysis unit includes a configuration unit, which is configured to receive user instructions and modify configuration item parameters based on the user instructions, so that the analysis unit generates an analysis report based on the modified configuration item parameters.

[0057] It is understandable that different departments have different definitions of rescue record standards and the analysis reports generated are also different. By modifying the configuration item parameters through the configuration unit, users can customize the rescue record standards of different departments and enable the analysis unit to generate analysis reports of corresponding templates, thereby reducing the department load and improving work efficiency and nursing efficiency.

[0058] In order to further illustrate and explain the specific principles of the above remote emergency monitoring system, several specific implementation scenarios are provided below.

[0059] In a specific implementation scenario, a medical professional attaches the sensor of the monitoring device 10 to a patient requiring emergency treatment and clicks the start button of the monitoring device 10. After the monitoring device 10 detects that the start button has been pressed, it begins monitoring to collect physiological data and emergency operation data, and transmits at least one of the collected physiological data and emergency operation data to the monitoring terminal 30. Simultaneously, the medical professional clicks the start button of the monitoring device 20. After the monitoring device 20 detects that the start button has been pressed, it collects monitoring data from the emergency scene and transmits the monitoring data to the monitoring terminal 30.

[0060] After receiving the physiological data, rescue operation data, and monitoring data, the monitoring terminal 30 displays a prompt on the display unit to prompt the user to enter the rescue observation interface. In response to receiving the user's instruction to confirm entering the rescue observation interface, the physiological data, rescue operation data, and monitoring data are displayed on the display unit, allowing the user to understand the rescue progress and details at the emergency scene in real time. In response to receiving the control command including diagnostic information input by the user, the monitoring terminal 30 transmits the control command to the monitoring device 10, causing the monitoring device 10 to display the control command, so that medical personnel at the emergency scene can perform correct rescue operations.

[0061] In another specific implementation scenario, on-site medical staff attach the sensor of the monitoring device 10 to the patient who needs rescue and click the start button of the monitoring device 10. After the monitoring device 10 detects that the start button is pressed, it sends a start signal to the monitoring device 20 to start the monitoring device 20 at the same time, thereby synchronously collecting physiological data, rescue operation data and monitoring data.

[0062] In another specific implementation scenario, after the monitoring device 10 detects that the stop button is pressed, it sends a signal indicating the end of rescue to the monitoring terminal 30. The analysis unit of the monitoring terminal 30 provides an analysis report interface based on the received physiological data, rescue operation data and monitoring data, and displays the analysis report interface through the display unit, so that the user can further confirm the detailed operations during the rescue process through the analysis report interface, and receive relevant information entered by the user in the analysis report interface to generate an analysis report.

[0063] In another specific implementation scenario, after the configuration unit of the analysis unit receives the user instruction, a template setting interface pops up to receive the user's modification instruction through the template setting interface, and modifies the configuration item parameters in the analysis report interface based on the modification instruction, so that the analysis unit generates a new analysis report interface based on the modified configuration item parameters, and then receives the record content entered by the user and generates the final analysis report.

[0064] Unlike existing technologies, the remote emergency interactive system 100 of this embodiment combines the monitoring device 10 and the monitoring device 20 at the emergency site with the monitoring terminal 30 located in the hospital. This allows hospital experts to simultaneously monitor the patient's vital signs and obtain real-time information about the rescue progress and details at the emergency site through the rescue observation interface 301 provided by the monitoring terminal 30. Furthermore, the corresponding control instructions are promptly transmitted to the monitoring device 10 via the monitoring terminal 30, providing effective auxiliary diagnosis and decision support for medical staff at the emergency site, thereby improving treatment efficiency. Furthermore, the analysis report interface and template setting interface provided by the monitoring terminal 30 allow users to customize rescue record standards for different departments, which not only reduces the paperwork workload of medical staff, but also optimizes rescue operation standards and processes, thereby improving the quality of hospital rescue care. Through the above-mentioned remote emergency interactive system 100, this embodiment can maximize the accuracy and timeliness of rescue, and can also ensure the accuracy of rescue records, thereby avoiding medical disputes caused by paper rescue records or simple rescue records.

[0065] See also Figure 2 , Figure 2 This is a flow chart of an embodiment of the remote first aid interaction method of the present application. In this embodiment, the execution subject of the method is a monitoring terminal applied to a remote first aid interaction system, and the remote first aid interaction system also includes a monitoring device and a monitoring device. The interaction method includes:

[0066] S11: When it is detected that the start button of the monitoring device is pressed, a first dialog box is provided through the display interface of the monitoring terminal; wherein, the first dialog box includes a first confirmation button for confirming entry into the rescue observation interface and a first cancel button for cancelling entry into the rescue observation interface; wherein, the rescue observation interface is used to display physiological data, rescue operation data and monitoring data, wherein the physiological data and rescue operation data are collected and sent by the monitoring device, and the monitoring data is collected and sent by the monitoring device.

[0067] In this embodiment, when it is detected that the start button of the monitoring device is pressed, a first dialog box is provided through the display interface of the monitoring terminal, and at the same time, the monitoring terminal receives physiological data and rescue operation data sent by the monitoring device, as well as monitoring data sent by the monitoring device.

[0068] and then

[0069] In this embodiment, the physiological data includes the patient's vital signs information, the rescue operation data includes each rescue operation and the corresponding time node, and the monitoring data includes audio data and / or video data of the emergency scene.

[0070] In this embodiment, the monitoring terminal receives the vital sign information, each rescue operation and the corresponding time node sent by the monitoring device, and receives the audio data and video data sent by the monitoring device.

[0071] S12: In response to detecting that the first confirmation key or the first cancel key is pressed, executing a corresponding interactive operation.

[0072] In this embodiment, in response to detecting that the first confirmation key is pressed, a rescue observation interface is displayed via the display interface. Diagnostic data is received via the rescue observation interface, where the diagnostic data corresponds to physiological data, rescue operation data, and monitoring data; and the monitoring terminal transmits the diagnostic data to the monitoring device, so that the monitoring device displays the diagnostic data.

[0073] The rescue observation interface includes a physiological data display area, a timeline, and a monitoring data playback area. In response to detecting that the first confirmation key has been pressed, the step of displaying the rescue observation interface via the display interface includes: displaying physiological data via the physiological data display area of ​​the rescue observation interface, displaying a time node corresponding to each rescue operation via the timeline, and displaying audio data and video data via the monitoring data playback area.

[0074] In this embodiment, in response to detecting that the first cancel key has been pressed, a second dialog box is provided via the display interface. The second dialog box includes a second confirmation key for reconfirming the cancellation of entering the rescue observation interface and a second cancel key for closing the second dialog box. In response to detecting that the second confirmation key or the second cancel key has been pressed, the corresponding interactive operation is performed.

[0075] In response to detecting that the second confirmation key is pressed, the monitoring terminal sends an end-rescue instruction to the monitoring device, so that the monitoring device displays the end-rescue instruction. Alternatively, in response to detecting that the second cancel key is pressed, a rescue observation interface is displayed on the display interface.

[0076] Specifically, see Figure 3 and Figure 4 , Figure 3 This is a diagram of the monitoring terminal prompting the user to enter the emergency observation interface. Figure 4 It is a schematic diagram of the rescue observation interface provided by the monitoring terminal.

[0077] In this embodiment, after receiving physiological data, rescue operation data, and monitoring data, the monitoring terminal controls the display unit to pop up display information 202 on the display interface 201. In response to receiving a user's instruction to click on the display information 202, the display unit controls the display unit to pop up a first dialog box 203 on the display interface 201. The first dialog box 203 includes a first confirmation button for confirming entry into the rescue observation interface and a first cancel button for canceling entry into the rescue observation interface 301. The rescue observation interface 301 is used to display physiological data, rescue operation data, and monitoring data.

[0078] In some specific embodiments, in response to detecting that the first confirmation key has been pressed, a rescue observation interface 301 is displayed via display interface 201, allowing the user to understand the rescue progress and details at the emergency scene in real time. Furthermore, diagnostic data is received via rescue observation interface 301, where the diagnostic data corresponds to physiological data, rescue operation data, and monitoring data. Furthermore, the monitoring terminal transmits the diagnostic data to the monitoring device, causing the monitoring device to display the diagnostic data.

[0079] In other specific embodiments, in response to detecting that the first cancel button has been pressed, the monitoring terminal controls the display unit to pop up a second dialog box 204 to reconfirm whether to enter the rescue observation interface 301. In response to detecting that the second confirmation button has been pressed, the prompt for the existence of the rescue record is no longer displayed. The time when the user canceled the entry into the rescue observation interface 301 and the operation log are recorded. Then, the monitoring terminal sends an end-rescue instruction to the monitoring device, so that the monitoring device displays the end-rescue instruction and prompts that the rescue has ended. In response to detecting that the second cancel button has been pressed, the rescue observation interface 301 is displayed via the display interface 201, and the second dialog box 204 is closed.

[0080] In some specific embodiments, the rescue observation interface 301 includes a physiological data display area 302, a timeline 303, and a monitoring data playback area 304. The physiological data display area 302 is used to display all physiological data uploaded by the monitoring device 10 of the current patient being rescued, including monitoring waveforms and monitoring parameter values. The timeline 303 is used to display the various time nodes corresponding to each rescue operation, such as the start of the rescue node, the end of the time node, and the corresponding rescue time, the start of the compression node, the end of the compression node, and the corresponding compression time, the start of the medication time, the end of the medication time, and the corresponding medication time. The monitoring data playback area 304 is used to play the video data and audio data uploaded by the monitoring device 20.

[0081] In this embodiment, after the monitoring terminal transmits the diagnostic data to the monitoring device so that the monitoring device displays the diagnostic data, the following steps are included: in response to the observation and rescue interface receiving a command to end rescue, a third dialog box is provided through the rescue observation interface. The third dialog box includes a third confirmation button for confirming entry to the analysis and report interface and a third cancel button for canceling entry to the analysis and report interface. In response to detecting that the third confirmation button or the third cancel button is pressed, the corresponding interactive operation is performed.

[0082] In response to detecting that the third confirmation key is pressed, an analysis report interface is displayed via the display interface. A plurality of analysis report templates are provided via the analysis report interface. In response to detecting that at least one of the analysis report templates is selected, a corresponding analysis report is generated based on the selected analysis report template, the physiological data, and the rescue operation data.

[0083] Please refer to Figure 4 、 Figure 5 and Figure 6 , Figure 5 This is a schematic diagram of the analysis report interface provided by the monitoring terminal. Figure 6 It is a schematic diagram of the template setting interface provided by the monitoring terminal.

[0084] In this embodiment, the rescue observation interface 301 displays a third dialog box 305 upon completion of the rescue. This third dialog box 305 includes a third confirmation button for confirming entry to the analysis report interface 401 and a third cancel button for canceling entry to the analysis report interface 401. In response to detecting that the third confirmation button has been pressed, the analysis report interface 401 is displayed via the display interface 201. The analysis report interface 401 provides multiple analysis report templates. In response to detecting that at least one of the analysis report templates has been selected, a corresponding analysis report is generated based on the selected analysis report template, the physiological data, and the rescue operation data.

[0085] In some specific embodiments, the analysis report interface 401 includes a menu area 402, a monitoring data playback area 403, an information recording area 404, a historical situation recording area 405, an auxiliary operation recording area 406, a rescue record summary area 407, a monitoring data trend area 408, a diagnosis conclusion area 409, a note recording area 410, a rescue personnel recording area 411, and a report signature confirmation area 412. The menu area 402 provides function buttons such as print, save, and template setting. The monitoring data playback area 403 plays video and audio data uploaded by the monitoring device 20 and provides function buttons such as pause, fast forward, and fast rewind, allowing users to review monitoring data and further confirm detailed operations during the rescue process. The information recording area 404 is used to record basic patient information, such as name, gender, age, medical record number, and admission date. The historical situation recording area 405 is used to record the patient's basic condition before rescue, such as body temperature, pulse, blood pressure, blood oxygen level, respiratory rate, consciousness, skin, and pupil conditions. The auxiliary operation record area 406 is used to record the auxiliary examination items performed during the rescue process, such as ultrasound, blood drawing, blood sugar measurement, etc. The rescue record summary area 407 is used to record each step of the rescue process, such as the dosage of medication, the energy of defibrillation, etc. The monitoring data trend area 408 is used to display the trend changes of the monitoring parameters during the rescue process, so that the user can assist in judging the effectiveness of the rescue based on the parameter trend changes. The diagnosis conclusion area 409 is used to record the diagnosis results of the patient. The remarks record area 410 is used to record other content that needs to be supplemented during the rescue process. The rescue personnel record area 411 is used to record the list of medical staff involved in the rescue. The report signature confirmation area 412 is used to record the confirmer and time of the rescue report.

[0086] In some specific embodiments, in response to a click on a function button corresponding to a template setting in menu area 402, the configuration unit of the analysis unit detects the user instruction and pops up a corresponding template setting interface 501. The template setting interface 501 includes a report content definition area 502, a new record operation area 503, a template list selection area 504, and a report content adjustment operation area 505. The report content definition area 502 is used to define the default display content of each area in the analysis report interface 401, such as whether the displayed content and categories in the information record area 404 need to be increased or decreased. The new record operation area 503 is used to customize the content to be recorded, including the name, category, type, etc. of the record item. Specifically, the category can be defined as a numeric value, text, or option. The template list selection area 504 is used to provide multiple editable analysis report templates, allowing users to select an appropriate analysis report template based on department needs. The report content adjustment operation area 505 is used to create, cancel, and save analysis report templates.

[0087] See also Figure 7 , Figure 7This is a workflow diagram for an application scenario of the remote first aid interaction method of the present application. In this embodiment, first, the on-site medical staff clicks the start button of the monitoring device. After the monitoring device detects that the start button has been pressed, it performs monitoring work to collect physiological data and rescue operation data, and at the same time transmits the collected at least one physiological data and rescue operation data to the monitoring terminal. At the same time, the on-site medical staff clicks the start button of the monitoring device. After the monitoring device detects that the start button has been pressed, it collects monitoring data of the first aid site and transmits the monitoring data to the monitoring terminal. After the monitoring terminal receives the physiological data, rescue operation data and monitoring data, it displays a prompt message on the display unit to prompt the user to enter the rescue observation interface. In response to receiving the user's confirmation instruction to enter the rescue observation interface, the rescue observation interface is entered, and the physiological data, rescue operation data and monitoring data are displayed on the display unit, so that the user can understand the rescue progress and rescue details at the first aid site in real time. After the rescue process is completed, the on-site medical staff clicks the stop button of the monitoring device. After the monitoring device detects that the stop button has been pressed, it sends a rescue end signal to the monitoring terminal. The monitoring terminal receives the rescue completion signal sent by the monitoring device and provides an analysis report interface based on the received physiological data, rescue operation data, and monitoring data. The analysis report interface is displayed on the display unit to allow the user to further confirm the detailed operations during the rescue process through the analysis report interface. The monitoring terminal also receives relevant information entered by the user on the analysis report interface to generate an analysis report. In response to receiving the user's instruction to cancel the entry into the rescue observation interface, the monitoring terminal no longer prompts the existence of the rescue record. At the same time, the time when the user canceled the entry into the rescue observation interface and the operation log are recorded. The monitoring terminal then generates a control instruction to end the rescue and sends the control instruction to the monitoring device to indicate the end of the rescue.

[0088] See also Figure 8 , Figure 8 FIG. 8 is a schematic diagram of a monitoring terminal according to an embodiment of the present invention. In this embodiment, the monitoring terminal 80 includes a memory 81 and a processor 82 .

[0089] In this embodiment, the memory 81 is used to store program data, and when the program data is executed, the steps in the remote first aid interaction method as described above are implemented; the processor 82 is used to execute the program data stored in the memory 81 to implement the steps in the remote first aid interaction method as described above.

[0090] Specifically, the processor 82 is used to control itself and the memory 81 to implement the steps in the remote first aid interaction method as described above. The processor 82 can also be called a CPU (Central Processing Unit). The processor 82 may be an integrated circuit chip with signal processing capabilities. The processor 82 can also be a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components. The general-purpose processor can be a microprocessor or the processor can also be any conventional processor, etc. In addition, the processor 82 can be implemented by multiple integrated circuit chips.

[0091] Unlike the prior art, this embodiment collects the patient's physiological data through a monitoring device and sends it to a monitoring terminal. The monitoring terminal's display interface can provide a first confirmation button for entering the emergency observation interface and a first cancel button for canceling the entry into the observation interface. In response to receiving the first confirmation button being pressed, the medical staff at the monitoring terminal can simultaneously monitor the patient's vital signs through the emergency observation interface, thereby providing timely and effective auxiliary diagnosis and decision-making support to the medical staff at the emergency scene, thereby improving treatment efficiency. Through the above-mentioned interactive method, the present application can not only provide on-site medical staff with the correct rescue plan, but also reduce the complexity of their work. Furthermore, through the analysis report interface and template setting interface provided by the monitoring terminal, users can customize rescue record standards for different departments, which not only reduces the paperwork workload of medical staff, but also optimizes rescue operation standards and processes, and improves the quality of hospital rescue care. Through the above-mentioned remote emergency interactive system and method, the present application can maximize the accuracy and timeliness of rescue, and also ensure the accuracy of rescue records, thereby avoiding medical disputes caused by paper rescue records or simple rescue records.

[0092] The above description is only an implementation method of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the description and drawings of this application, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.

[0093] If the technical solution of this application involves personal information, the product that applies the technical solution of this application has clearly informed the personal information processing rules and obtained the individual's voluntary consent before processing personal information. If the technical solution of this application involves sensitive personal information, the product that applies the technical solution of this application has obtained the individual's separate consent before processing sensitive personal information, and at the same time meets the "explicit consent" requirement. For example, on personal information collection devices such as cameras, a clear and prominent sign is set to inform that the personal information collection scope has been entered and personal information will be collected. If the individual voluntarily enters the collection scope, it is deemed that they agree to the collection of their personal information; or on the personal information processing device, when the personal information processing rules are notified by obvious signs / information, the individual's authorization is obtained through pop-up information or by asking the individual to upload their personal information; among which, the personal information processing rules may include information such as the personal information processor, the purpose of personal information processing, the processing method, and the type of personal information processed.

Claims

1. A remote first aid interaction method, characterized in that: A monitoring terminal is applied to a remote emergency interactive system, wherein the remote emergency interactive system further includes a monitoring device and a monitoring device, and the interaction method includes: When it is detected that the start button of the monitoring device is pressed, a first dialog box is provided through the display interface of the monitoring terminal; wherein the first dialog box includes a first confirmation button for confirming entry into the rescue observation interface and a first cancel button for canceling entry into the rescue observation interface; wherein the rescue observation interface is used to display physiological data, rescue operation data and monitoring data, wherein the physiological data and the rescue operation data are collected and sent by the monitoring device, and the monitoring data are collected and sent by the monitoring device; In response to detecting that the first confirmation key or the first cancel key is pressed, a corresponding interactive operation is performed.

2. The remote first aid interaction method according to claim 1, characterized in that: The step of performing a corresponding interactive operation in response to detecting that the first confirmation key or the first cancel key is pressed includes: In response to detecting that the first confirmation key is pressed, displaying the rescue observation interface through the display interface; Receiving diagnostic data through the rescue observation interface; wherein the diagnostic data corresponds to the physiological data, the rescue operation data, and the monitoring data; The monitoring terminal transmits the diagnostic data to the monitoring device, so that the monitoring device displays the diagnostic data.

3. The remote first aid interaction method according to claim 1, characterized in that: The step of performing a corresponding interactive operation in response to detecting that the first confirmation key or the first cancel key is pressed includes: In response to detecting that the first cancel button is pressed, providing a second dialog box through the display interface; wherein the second dialog box includes a second confirmation button for reconfirming cancellation of entering the rescue observation interface and a second cancel button for closing the second dialog box; In response to detecting that the second confirmation key or the second cancel key is pressed, a corresponding interactive operation is performed.

4. The remote first aid interaction method according to claim 3, characterized in that: The step of performing a corresponding interactive operation in response to detecting that the second confirmation key or the second cancel key is pressed includes: In response to detecting that the second confirmation key is pressed, sending an end-rescue instruction to the monitoring device through the monitoring terminal, so that the monitoring device displays the end-rescue instruction; or In response to detecting that the second cancel button is pressed, the rescue observation interface is displayed through the display interface.

5. The remote first aid interaction method according to claim 2, characterized in that: The step of providing a first dialog box through the display interface of the monitoring terminal when detecting that the start button of the monitoring device is pressed includes: When it is detected that the start button of the monitoring device is pressed, the physiological data and the rescue operation data sent by the monitoring device are received through the monitoring terminal at the same time, and the monitoring data sent by the monitoring device is received; wherein, the physiological data includes the patient's vital signs information, the rescue operation data includes each rescue operation and the corresponding time node, and the monitoring data includes audio data and / or video data of the first aid scene.

6. The remote first aid interaction method according to claim 5, characterized in that: The rescue observation interface includes a physiological data display area, a time axis and a monitoring data playback area; The step of displaying the rescue observation interface through the display interface in response to detecting that the first confirmation key is pressed includes: The physiological data is displayed in the physiological data display area of ​​the rescue observation interface, the time node corresponding to each rescue operation is displayed through the time axis, and the audio data and the video data are displayed in the monitoring data playback area.

7. The remote first aid interaction method according to claim 6, characterized in that: After the monitoring terminal transmits the diagnostic data to the monitoring device so that the monitoring device displays the diagnostic data, the method includes: In response to the observation and rescue interface receiving the end rescue instruction, providing a third dialog box through the rescue observation interface; wherein the third dialog box includes a third confirmation button for confirming to enter the analysis and report interface and a third cancel button for canceling to enter the analysis and report interface; In response to detecting that the third confirmation key or the third cancel key is pressed, a corresponding interactive operation is performed.

8. The remote first aid interaction method according to claim 7, characterized in that: The step of performing a corresponding interactive operation in response to detecting that the third confirmation key or the third cancel key is pressed includes: In response to detecting that the third confirmation key is pressed, displaying the analysis report interface through the display interface; Providing multiple analysis report templates through the analysis report interface; In response to detecting that at least one of the analysis report templates is selected, a corresponding analysis report is generated based on the selected analysis report template, the physiological data, and the rescue operation data.

9. The remote first aid interaction method according to claim 8, characterized in that: Before the step of providing a plurality of analysis report templates through the analysis report interface, the method includes: Providing a configuration interface through the analysis report interface; The configuration interface receives a plurality of configuration item parameters input by the user, so that the monitoring terminal generates a plurality of analysis report templates according to the plurality of configuration item parameters.

10. A monitoring terminal, characterized in that: include: A memory for storing program data, wherein the program data, when executed, implements the steps of the remote first aid interaction method according to any one of claims 1 to 9; A processor is configured to execute the program data stored in the memory to implement the steps of the remote first aid interaction method according to any one of claims 1 to 9.