An emergency medical rescue deployment management method and system

By optimizing the formation of emergency rescue teams and the retrieval of supplies in emergency situations such as cardiac arrest in hospitals using mobile guidance and emergency communication channels, the problem of untimely deployment of emergency personnel has been solved, and the speed and success rate of emergency rescue have been improved.

CN119517341BActive Publication Date: 2025-12-12THE FIRST PEOPLES HOSPITAL OF NANTONG
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Patent Information

Application Number
CN202411623574.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-12-12
Estimated Expiration
2044-11-14

AI Technical Summary

Technical Problem

In cases of sudden cardiac arrest or other emergencies in hospitals, the untimely deployment and assembly of emergency personnel and the inconvenience in accessing emergency supplies can lead to slow emergency response, affecting the quality and safety of emergency care in hospitals.

Method used

By obtaining emergency rescue alerts, issuing movement guidance based on the level of urgency and the location information of the person receiving the alert, forming emergency rescue teams and assigning tasks, creating emergency communication channels, achieving efficient collaboration and information exchange between emergency rescue team members and the person receiving the alert, optimizing work coordination, and ensuring timely access to emergency supplies and rapid response.

Benefits of technology

It enabled efficient deployment and rapid assembly of medical personnel, improved the success rate and response speed of emergency care, and optimized the handling process of emergency incidents.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to an emergency medical rescue deployment management method and system, and belongs to the technical field of medical rescue, wherein the method comprises the following steps: acquiring an emergency rescue alarm; based on the emergency degree of the emergency rescue alarm and real-time position information of a person receiving the alarm, a moving guide is sent to the person receiving the alarm, so that the person receiving the alarm moves to a rescue point based on a moving guide route formed according to the moving guide; an emergency team is organized, and an emergency task is distributed to members of the emergency team; the emergency task at least comprises a gathering route, the destination of the gathering route is the rescue point, and at least the gathering route or the moving guide route contains an emergency material taking position; an emergency communication channel is created, a comprehensive rescue scheme is received and output through the emergency communication channel, the comprehensive rescue scheme is interactively arranged by communication messages published by the members of the emergency team and the person receiving the alarm, and the communication messages known by the members of the emergency team and the person receiving the alarm are highly consistent. The application has the effect of improving the response speed to in-hospital medical emergency conditions.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of medical rescue, in particular to an emergency medical rescue deployment management method and system. BACKGROUND

[0002] Cardiac arrest refers to the sudden termination of cardiac ejection function, and the disappearance of aortic pulsation and heart sound, which leads to severe ischemia and hypoxia of important organs (such as the brain), and eventually leads to death. Although more than 80% of cardiac arrest occurs outside the hospital, in-hospital cardiac arrest also occurs from time to time; when a situation like the foregoing occurs, medical personnel generally need to assemble corresponding professional emergency personnel (such as doctors and nurses), and transfer emergency supplies (such as rescue vehicles, defibrillators or automatic external defibrillators) to the emergency point (such as the rescue room) to rescue the patient.

[0003] However, since the foregoing situation is generally sudden, in the actual treatment process, it is easy to cause slow emergency speed due to the untimely deployment and assembly of emergency personnel, the inconvenient use of emergency supplies, and the like, which seriously affects the emergency quality and safety of the hospital, and therefore needs to be improved. SUMMARY

[0004] In order to improve the response speed of the in-hospital emergency medical system, the present application provides an emergency medical rescue deployment management method and system.

[0005] In a first aspect, the present application provides an emergency medical rescue deployment management method, comprising:

[0006] obtaining an emergency rescue alarm, based on the emergency degree of the emergency rescue alarm and the real-time position information of the alarm receiver, issuing a movement guide to the alarm receiver, so that the alarm receiver moves to the rescue point based on the movement guide route formed by the movement guide;

[0007] assembling an emergency team and assigning an emergency task to the emergency team member; the emergency task at least includes an assembly route, the destination of the assembly route is the rescue point, and at least the assembly route or the movement guide route contains an emergency supply taking position;

[0008] creating an emergency communication channel, receiving and outputting a comprehensive rescue scheme through the emergency communication channel, which is interactively arranged by the communication messages published by the emergency team member and the alarm receiver, so that the communication messages known by the emergency team member and the alarm receiver are highly consistent.

[0009] By adopting the technical scheme, in the scheme of the application, medical staff who find that emergency treatment is needed can trigger an emergency rescue alarm, and receive a mobile guide as a person receiving the alarm. The person receiving the alarm moves to a designated rescue site (i.e., the rescue point described above) along the mobile guide route. When the application receives an emergency rescue alarm, it forms an emergency team and assigns emergency tasks to the members of the emergency team, so that the members of the emergency team finally gather at the rescue point according to the assembly route to perform an emergency treatment scheme for the patient. This realizes efficient deployment of personnel. In this process, the assembly route specified for the members of the emergency team includes an emergency material taking position, so that the members of the emergency team can efficiently take emergency materials during the assembly process. Further, the application also temporarily creates an emergency communication channel for the person receiving the alarm and the members of the emergency team. Before the person receiving the alarm and the members of the emergency team converge, the emergency communication channel is used to realize message exchange between the person receiving the alarm and the members of the emergency team. This facilitates the emergency team to learn about the patient's condition in advance, even remotely guide the person receiving the alarm to perform emergency treatment on the patient, optimizes the work coordination between the person receiving the alarm and the members of the emergency team, saves time for emergency treatment, and improves the response speed and success rate of emergency treatment.

[0010] Optionally, the assigning of the emergency task to the member of the emergency team comprises:

[0011] determining a convergence order based on a responsibility attribute of each member of the emergency team;

[0012] determining, according to a current position of the member of the emergency team and the mobile guide route, a convergence area for each member of the emergency team on the mobile guide route in sequence according to the convergence order, and determining an assembly route for each member of the emergency team according to the convergence area; wherein the convergence area is a route common to the corresponding assembly route and the mobile guide route.

[0013] By adopting the technical scheme, the scheme limits the meeting time of the emergency team members and the patient by setting the meeting area when the meeting route of each emergency team member is formulated. The meeting area can be considered as the position of the intersection of the meeting route and the moving guide route of the emergency team member. It can be known that the meeting area is not necessarily the position of the rescue point. That is, the emergency team member can meet the patient during the moving process before the patient arrives at the rescue point. Specifically, the application determines the meeting order according to the responsibility attribute of the emergency team member. The meeting order can be understood as the order of meeting the patient by the emergency team member. For example, for the emergency team member with the responsibility attribute of a doctor, the doctor can be limited to meet the patient earlier than the emergency team member with the responsibility attribute of a nurse, so as to facilitate the doctor to complete the work handover with the alarm person in advance and understand the patient condition in advance during the moving to the rescue point, thereby saving time for treatment. The scene of moving the patient referred to herein is that the patient meets the relevant necessary conditions for transfer, rather than being transferred regardless of the patient's situation.

[0014] Optionally, the meeting area of each emergency team member is determined on the moving guide route in sequence according to the current position of the emergency team member and the moving guide route in the meeting order, and the meeting route of each emergency team member is determined according to the meeting area, comprising:

[0015] The emergency team member with the first meeting order is taken as a core member, and a first meeting route of the core member is generated based on the current position of the core member, the emergency material taking position and the moving guide route;

[0016] It is determined whether the meeting route meets a preset first determination condition. If yes, the emergency material taking position and the first meeting route are fused to form a new first meeting route.

[0017] If the first meeting route does not meet the preset first determination condition, a second meeting route is generated for each of the emergency team members except the core member. An associated member is selected from the emergency team members except the core member, and a new second meeting route is formed by fusing the second meeting route corresponding to the associated member and the emergency material taking position.

[0018] The second meeting route corresponding to the associated member meets a preset second determination condition. The preset second determination condition at least includes that the meeting area formed by the second meeting route corresponding to the associated member and the moving guide route overlaps with the meeting area formed by the meeting route corresponding to the core member and the moving guide route.

[0019] By adopting the technical scheme, since some necessary first-aid materials (such as a defibrillator and an AED) are used in the first-aid process, at least one first-aid team member needs to take the first-aid materials from a first-aid material taking position during the process that the first-aid team members gather and meet the patient, and therefore, the application integrates the first-aid material taking position into the gathering route of the first-aid team members to facilitate efficient taking of the first-aid materials, and further, in order to improve the timeliness of use of the first-aid materials, the application proposes to determine whether a first-aid team member (i.e., a core member) who first meets the patient has a condition (i.e., a preset first determination condition) of taking the first-aid materials along the gathering route, and if so, the first-aid material taking position is integrated into the gathering route of the core member, so that the core member can use the first-aid materials to perform first-aid on the patient in time after meeting the patient, and if not (for example, the first-aid material taking position is far away from the current position of the core member, and if the core member takes the first-aid materials by detour, the rescue will be delayed), the application considers selecting a first-aid team member (i.e., an associated member) who can take the first-aid materials along the gathering route from other first-aid team members, and the application further limits the meeting area of the associated member and the core member, and the overlapping part of the meeting area means that the core member and the associated member meet at close time, so that the associated member can meet the core member within a specified time after the core member meets the patient, and the timeliness of use of the first-aid materials is improved.

[0020] Optionally, the method further comprises:

[0021] If a response message from the first-aid team member is not received within a specified time period after the first-aid task is issued, the non-responding member and the corresponding gathering route are determined, a substitute member satisfying a preset substitute condition is selected based on the duty attribute and the gathering route of the non-responding member, the first-aid task is issued to the substitute member, and the non-responding member in the first-aid team is replaced by the substitute member.

[0022] By adopting the technical scheme, the application considers that the first-aid team members do not respond in time after receiving the first-aid task, which may delay the gathering of the first-aid team and the first-aid opportunity, and therefore, the application limits the response time period (i.e., the specified time period), and replaces the non-responding member in time to ensure that the first-aid team can respond in time and be put into the first-aid task.

[0023] Optionally, the method further comprises:

[0024] Every specified period, determine the core members and rescue points corresponding to all emergency rescue alarms obtained in the specified period, determine the resident position of each core member, and the feasible route of each core member from the resident position to each rescue point, group all the feasible routes according to the different rescue points, so that the end points of the feasible routes in the same group are the same rescue point;

[0025] For each group of feasible routes, the intersection formed between any two feasible routes in the same group is taken as a candidate point, a candidate area is determined based on the candidate point, and an overlapping area between any two or more candidate areas is determined as an emergency material addition area, and the emergency material addition area is output.

[0026] By adopting the above technical scheme, for the core members in the emergency team, all feasible routes of the core members from the resident position (such as a fixed office area) to the rescue points can be determined according to the resident position of the core members and all rescue points, and the intersection between the feasible routes with the same rescue point as the key point is taken as the candidate point, so as to determine the candidate area, and further, the overlapping area between multiple candidate areas is taken as the emergency material addition area, so as to improve the probability that the assembly route corresponding to the core member meets the preset first determination condition when an emergency rescue alarm occurs subsequently.

[0027] Optionally, the method further comprises:

[0028] Every specified period, according to the mobile guide route corresponding to all emergency rescue alarms obtained in the specified period and the emergency task of each emergency team member, determine the high-frequency emergency starting area in the specified period, and based on all emergency tasks generated in the specified period, generate a high-frequency assembly route, and output an emergency scheme with the high-frequency emergency area and the high-frequency assembly route.

[0029] By adopting the above technical scheme, according to the emergency rescue alarms triggered in the historical period (i.e. in the specified period), the high-frequency emergency area is determined, which can be considered as an area where emergency situations frequently occur, such as a hospital hall, an outpatient hall, and according to the emergency tasks generated in the specified period, the high-frequency assembly route is determined, and an emergency scheme with the foregoing high-frequency emergency area and the high-frequency emergency route is output, so that the hospital can reasonably arrange the office positions of the emergency team members based on this, so that the emergency team members can quickly respond when receiving the emergency task.

[0030] Optionally, the method further comprises:

[0031] acquire basic information and / or historical medical records of all patients in real time, screen out risk patients, predict potential risk areas of the risk patients in emergency situations, generate a predetermined emergency plan based on the potential risk areas, the predetermined emergency plan at least including emergency team members and emergency tasks of each emergency team member;

[0032] The emergency rescue alarm is acquired, including:

[0033] The emergency rescue alarm is acquired, including:

[0034] By using the above technical solution, based on the basic information and / or historical medical records of all patients that can be acquired, risk patients who may have emergency situations are locked in advance, and potential risk areas of the risk patients are predicted, a predetermined emergency plan is formulated based on the potential risk areas, so that when an emergency situation actually occurs, the corresponding predetermined emergency plan can be quickly and efficiently used for rescue, and the emergency response speed is improved.

[0035] In a second aspect, the present application provides an emergency medical rescue deployment management system, comprising:

[0036] The rescue alarm preprocessing module is configured to acquire an emergency rescue alarm, and based on the emergency degree of the emergency rescue alarm and real-time location information of a person receiving the alarm, to issue a movement guide to the person receiving the alarm, so that the person receiving the alarm moves to a rescue point based on a movement guide route formed by the movement guide;

[0037] The emergency plan distribution module is configured to assemble an emergency team and distribute emergency tasks to emergency team members; the emergency tasks at least include a rally route, a destination of the rally route is the rescue point, and at least the rally route or the movement guide route contains an emergency material taking position;

[0038] The emergency communication enabling module is configured to create an emergency communication channel, receive and output a comprehensive rescue plan interactively arranged by communication messages published by emergency team members and the person receiving the alarm through the emergency communication channel, so that the communication messages known by the emergency team members and the person receiving the alarm are highly consistent.

[0039] In a third aspect, the present application provides an emergency medical rescue deployment management device, comprising a memory and a processor, and the memory stores a computer program capable of being loaded and executed by the processor to perform any one of the methods of the first aspect.

[0040] In a fourth aspect, the present application provides a computer readable storage medium storing a computer program capable of being loaded and executed by a processor to perform any one of the methods according to the first aspect.

[0041] In summary, the present application has the following beneficial technical effects:

[0042] The present application proposes to form an emergency team and distribute emergency tasks to members of the emergency team when an emergency occurs, so that the members of the emergency team finally gather to the rescue point according to the gathering route to perform the emergency plan for the patient, realize efficient deployment and rapid gathering of medical staff, gain time for treatment, and improve the response speed and success rate of emergency treatment. BRIEF DESCRIPTION OF DRAWINGS

[0043] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0044] Figure 1 is a flowchart of an emergency medical rescue deployment management method disclosed by an embodiment of the present application.

[0045] Figure 2 is a structural block diagram of an emergency medical rescue deployment management system disclosed by an embodiment of the present application.

[0046] Legend of the drawings: 1, rescue alarm preprocessing module; 2, emergency task distribution module; 3, emergency communication enabling module. DETAILED DESCRIPTION

[0047] The following will be described in detail with reference to the drawings. Figures 1-2 The present application will be further described in detail.

[0048] An emergency medical rescue deployment management method is disclosed by an embodiment of the present application. The emergency medical rescue deployment management method (hereinafter referred to as the management method) is used to quickly form an emergency team and develop and distribute emergency tasks when an in-hospital emergency occurs, to help the emergency team quickly gather and converge with a patient in need of rescue and treat the patient, and to improve the response speed to in-hospital emergencies. The execution subject of the management method disclosed by the present application is an emergency medical rescue deployment management system (hereinafter referred to as the management system), which will be described below in conjunction with the drawings. Figure 1 The specific process steps of the management method will be specifically described.

[0049] S101, obtaining an emergency rescue alarm, based on the emergency degree of the emergency rescue alarm and the real-time position information of the alarm receiver, issuing a moving guide to the alarm receiver to make the alarm receiver move to the rescue point based on the moving guide route formed by the moving guide.

[0050] In the implementation, each in-hospital medical staff is pre-configured with an alarm triggering module, which can exist in the form of an APP in the mobile terminal of the corresponding medical staff, and all alarm triggering modules are communicatively connected to the emergency medical rescue deployment management system. The alarm triggering module has the function of triggering an emergency rescue alarm, and also has communication and positioning functions. Therefore, any medical staff can trigger an emergency rescue alarm through the alarm triggering module, and correspondingly, the medical staff triggering the emergency rescue alarm is the alarm receiver. After receiving the emergency rescue alarm from the alarm receiver, the management system forms a moving guide route based on the position of the alarm receiver and the currently controlled rescue point. The starting point of the moving guide route is the position of the alarm receiver, and the end point is the rescue point, which can be considered as the nearest first-aid room or the patient's onset location. Illustratively, the management system sends the moving guide route to the alarm triggering module corresponding to the alarm receiver, and controls the alarm triggering module to output the specific landmarks (such as floors, departments, etc.) contained in the moving guide route in the form of voice broadcast, thereby realizing the moving guide to the alarm receiver.

[0051] S102, forming an emergency team and assigning emergency tasks to the members of the emergency team; the emergency tasks at least include a gathering route, the destination of the gathering route is the rescue point, and at least one of the gathering route or the moving guide route contains an emergency material taking location.

[0052] The "assigning emergency tasks to the members of the emergency team" in S102 further includes the following specific steps:

[0053] determining a convergence order based on the responsibility attribute of each member of the emergency team;

[0054] taking the member of the emergency team at the head of the convergence order as a core member, generating a first gathering route for the core member based on the current position of the core member, the emergency material taking location, and the moving guide route;

[0055] determining whether the gathering route meets a preset first determination condition, if yes, fusing the emergency material taking location and the first gathering route to form a new first gathering route;

[0056] if the first gathering route does not meet the preset first determination condition, generating a second gathering route for each member of the emergency team except the core member; selecting an associated member from the members of the emergency team except the core member, and fusing the second gathering route corresponding to the associated member and the emergency material taking location to form a new second gathering route;

[0057] The second gathering route corresponding to the associated member satisfies a preset second determination condition, and the preset second determination condition at least includes that a meeting area formed by the second gathering route corresponding to the associated member and the moving guide route overlaps with a meeting area formed by the gathering route corresponding to the core member and the moving guide route.

[0058] In implementation, the hospital pre-trains medical staffs for first-aid, and selects professional medical staffs as the candidates for the first-aid team. For example, the first-aid team disclosed in the embodiments of the present application includes medical staffs with different duty attributes, such as medical staffs with the duty attribute of doctors, medical staffs with the duty attribute of nurses, and medical staffs with the duty attribute of anesthetists.

[0059] The present application determines the order of meeting (i.e., the meeting order) of the first-aid team members with the patient according to the different duty attributes, and sets the first-aid team member meeting the patient first as the core member (e.g., a doctor), and then sets the gathering route for each first-aid team member according to the meeting order. The gathering route is a route with the current position of the first-aid member as the starting point and the rescue point as the ending point. The meeting area described above refers to the area where the first-aid team member meets the patient, i.e., the intersection area of the gathering route and the moving guide route. The meeting order disclosed in the embodiments of the present application is pre-set by human, and is determined according to the importance of the first-aid team member in the team and the decisive role of the first-aid team member in the success of the patient first-aid.

[0060] In determining the first gathering route, the management system first determines all first candidate routes based on the starting point and the ending point, and then selects second candidate routes having intersection points with the moving guide route from all the first candidate routes. The meeting area described above can be considered as an area with the intersection point as the center and a specified length as the radius. Then, the management system selects the route with the closest intersection point to the current position of the patient as the first gathering route from all the second candidate routes. The first gathering route satisfies that the core member reaches the intersection point (hereinafter referred to as the first intersection point) position before the patient or at the same time based on the moving speed of the patient and the preset moving speed of the core member.

[0061] After the management system initially generates the first gathering route, the management system generates a first determination route based on each first-aid material taking position, the current position of the core member, and the first intersection point, to determine whether there is a first determination route satisfying the preset first determination condition. The preset first determination condition is that the core member moves to the first intersection point along the first determination route at the preset moving speed of the core member, and the core member reaches the first intersection point position before the patient or at the same time.

[0062] If there is a first determination route satisfying the preset first determination condition, a new first gathering route is regenerated, the first gathering route including the first determination route and a route segment between the first intersection and the rescue point in the moving guide route.

[0063] If there is no first determination route satisfying the preset first determination condition, the gathering route is continued to be made for all the emergency team members except the core members. The second gathering route for the non-core members is made in the same way as the first gathering route, which will not be described here.

[0064] When the second gathering route for all the non-core members of the emergency team is completed, the management system generates a second determination route based on the current preset all emergency material taking positions, each emergency material taking position and the current position of the non-core member, to obtain a second determination route corresponding to each emergency material, and then determines whether there is a second determination route satisfying the preset second determination condition. The preset second determination condition means that the non-core member moves to the corresponding emergency material taking position along the second determination route at the preset moving speed of the non-core member, and there is a subsequent available route for the non-core member to move to the moving guide route at the preset moving speed of the non-core member, and the intersection formed by the subsequent available route and the moving guide route (hereinafter referred to as the second intersection) has an overlapping part with the convergence area formed by the first intersection.

[0065] If there is, the corresponding non-core member is the associated member, and the second gathering route of the associated member is adjusted so that the adjusted second gathering route sequentially includes the corresponding second determination route, the subsequent available route, and the route segment between the second intersection and the rescue point in the moving guide route in the moving direction.

[0066] If the second gathering routes of multiple non-core members all satisfy the preset second determination condition, the corresponding non-core member with the largest overlapping area is selected as the associated member; if all the non-core members do not satisfy the preset second determination condition, the convergence area can be expanded to make the non-core member satisfy the preset second determination condition, and when the convergence area is expanded to the preset maximum area threshold, the expansion is stopped, and the application defaults that all the rescue points are emergency material taking positions.

[0067] S103, an emergency communication channel is created, and a comprehensive rescue scheme obtained by receiving and outputting the communication messages published by the emergency team members and the person receiving the alarm is interactively arranged, so that the communication messages known by the emergency team members and the person receiving the alarm are highly consistent.

[0068] In implementation, the medical staff can deliver the communication message through the alarm triggering module, the management system is configured to receive the communication message and build the same communication channel (i.e. the emergency communication channel) for the emergency team members belonging to the same emergency team, broadcast the communication message sent by each emergency team in the corresponding emergency team through the emergency communication channel, and make the corresponding communication message known to all emergency team members in the corresponding emergency team.

[0069] Optionally, the "assigning the emergency task to the emergency team member" in S102 further comprises:

[0070] If no response message is received from the emergency team member within a specified time period after the emergency task is sent, the non-responding member and the corresponding assembly route are determined, the substitute member meeting the preset substitution condition is screened based on the responsibility attribute and the assembly route of the non-responding member, the emergency task is assigned to the substitute member, and the non-responding member in the emergency team is replaced by the substitute member.

[0071] In implementation, whenever the management system sends the communication information to the alarm triggering module corresponding to each emergency team member of the emergency team, the timing will start, and when the timing duration reaches the specified duration, there is an emergency team member who does not send a response message (i.e. a non-responding member), and based on the assembly route of the non-responding member, a substitute member who can replace the non-responding member is selected from other emergency team candidates, and then the emergency team is re-adjusted, and the non-responding member in the emergency team is replaced by the substitute member. The preset substitution condition can be that the substitute member is currently located closest to the non-responding member or is located on the assembly route of the non-responding member.

[0072] Optionally, the management method further comprises:

[0073] Every specified period, determine the core members and the rescue points corresponding to all emergency rescue alarms obtained within the specified period, determine the resident position of each core member, and the feasible route of each core member from the resident position to each rescue point, group all feasible routes according to different rescue points, so that the end points of the feasible routes belonging to the same group are the same rescue point;

[0074] For each group of feasible routes, the intersection formed between any two feasible routes in the same group is taken as a candidate point, the candidate area is determined based on the candidate point, the overlapping area between any two or more candidate areas is determined as an emergency material addition area, and the emergency material addition area is output.

[0075] In implementation, the management system is configured to classify and group the core members of the emergency team into groups according to the feasible routes to each rescue point every specified period, and to determine the intersection between any two feasible routes in the same group as a candidate point, and to determine a candidate area with the candidate point as the center and a specified length as the radius, and to determine the overlapping area between two or more candidate areas as an emergency material addition area, so as to recommend to the hospital the establishment of an emergency material taking position every specified period.

[0076] Optionally, the management method further comprises:

[0077] Every specified period, the high-frequency emergency starting area is determined according to the mobile guide route corresponding to all emergency rescue alarms obtained in the specified period and the emergency task of each emergency team member, and the high-frequency gathering route is generated based on all emergency tasks generated in the specified period, and an emergency plan with the high-frequency emergency area and the high-frequency gathering route is generated and output.

[0078] In implementation, the management system is further configured to determine the starting point position whose occurrence frequency ratio is higher than a preset ratio among the total number of mobile guide routes every specified period, and to determine a specified range around the corresponding starting point position as a high-frequency emergency starting area, and to determine the line segment whose occurrence frequency ratio is higher than a preset ratio among the total number of gathering routes as a high-frequency gathering route according to all emergency tasks generated in the specified period, and to output the high-frequency emergency area and the high-frequency gathering route, so that the hospital can learn and reasonably arrange the standby position of the emergency team candidate personnel based on the high-frequency emergency area and the high-frequency gathering route, such as arranging the standby position of the emergency team candidate personnel near the high-frequency gathering route or the high-frequency emergency area, to further improve the response speed in emergency situations.

[0079] Optionally, the management method further comprises the following steps:

[0080] The basic information and / or historical inquiry records of all patients are obtained in real time, and risk patients are screened out, and the potential risk area of the risk patients in an emergency situation is predicted and determined, and a predetermined emergency plan is generated based on the potential risk area, and the predetermined emergency plan at least includes the emergency team members and the emergency task of each emergency team member;

[0081] The "obtaining an emergency rescue alarm" in S101 specifically comprises the following sub-steps:

[0082] The emergency rescue alarm is received, and it is determined whether there is a predetermined emergency plan matched with the emergency rescue alarm, if there is, the corresponding predetermined emergency plan is executed, and if there is not, an emergency rescue alarm is generated.

[0083] In implementation, in addition to the above-mentioned emergency rescue alarm triggered by the alarm receiver, the present application also proposes to obtain all information of the existing patient in real time through the management system, where the all information can be the patient's age, the department for treatment, the disease contained in the historical inquiry record, etc., and then based on the preset high-risk factors, the patient with the high-risk factors in the information is determined as a risk patient; where the high-risk factors can include the age higher than 70 years old, the department for treatment being the department prone to emergency risk such as cardiovascular system, and the disease prone to emergency such as heart disease. In other embodiments, the risk patients can be further classified based on the number of contained high-risk factors, for example, the more the number of contained high-risk factors of the risk patient, the higher the risk level, and accordingly the risk patient is given priority to generate the predetermined emergency rescue scheme. It should be noted here that the acquisition of the patient information by the management system is based on a reasonable and legal way, and the patient information at least includes the patient's identity information; and here the patient specifically refers to the inpatient, and does not include the discharged patient.

[0084] For the risk patient, its current position and the position where it is most likely to have emergency needs are determined as the potential risk area, such as the department for treatment, the registration hall, the ward, etc.; the management system is used to generate a corresponding moving guide route for each potential risk area, and the starting point of the moving guide route is the corresponding potential risk area, and the end point is the rescue point closest to the potential risk area. Then according to the above-mentioned method, the emergency rescue team is formed, and based on the current position of each member of the emergency rescue team and the position of the rescue point, an emergency rescue task with a concentration route is generated for each member of the emergency rescue team, so as to generate a predetermined emergency rescue scheme with patient identity information, moving guide route, emergency rescue team and emergency rescue task.

[0085] Correspondingly, when the management system receives the emergency rescue alarm, it determines whether there is a predetermined emergency rescue scheme consistent with the patient identity corresponding to the current emergency rescue alarm based on the patient identity information, if there is, the matching is successful, and the management system starts the predetermined emergency rescue scheme, sends the emergency rescue task to the corresponding emergency rescue team member, and sends the moving guide route to the medical staff closest to the current position of the patient, so that the medical staff acts as the role of the alarm receiver and moves the patient to the rescue point.

[0086] The present application also discloses an emergency medical rescue deployment management system. Referring to Figure 2 , the emergency medical rescue deployment management system comprises:

[0087] The rescue alarm preprocessing module 1 is used to obtain the emergency rescue alarm, and based on the emergency degree of the emergency rescue alarm and the real-time position information of the alarm receiver, a moving guide is sent to the alarm receiver to make the alarm receiver move to the rescue point based on the moving guide route formed by the moving guide;

[0088] The emergency task dispatching module 2 is configured to assemble an emergency team and dispatch an emergency task to members of the emergency team, wherein the emergency task at least includes a gathering route, and a destination of the gathering route is a rescue point, and at least the gathering route or a moving guide route contains an emergency material taking position;

[0089] The emergency communication enabling module 3 is configured to create an emergency communication channel, receive and output a comprehensive rescue scheme interactively arranged by the members of the emergency team and the communication messages published by the person who receives the alarm through the emergency communication channel, so that the communication messages known by the members of the emergency team and the person who receives the alarm are highly consistent.

[0090] Optionally, the emergency task dispatching module 2 is further configured to determine a meeting order based on a responsibility attribute of each member of the emergency team, sequentially determine a meeting area for each member of the emergency team on the moving guide route according to the current position of the member of the emergency team and the moving guide route in the meeting order, and determine a gathering route for each member of the emergency team according to the meeting area, wherein the meeting area is a route common to the corresponding gathering route and the moving guide route.

[0091] Optionally, the emergency task dispatching module 2 is further configured to take a member of the emergency team at the first position of the meeting order as a core member, generate a first gathering route for the core member based on the current position of the core member, the emergency material taking position and the moving guide route, determine whether the gathering route meets a preset first determination condition, if yes, fuse the emergency material taking position and the first gathering route to form a new first gathering route, and if not, generate a second gathering route for each member of the emergency team other than the core member, select an associated member from the members of the emergency team other than the core member, fuse the second gathering route corresponding to the associated member and the emergency material taking position to form a new second gathering route, wherein the second gathering route corresponding to the associated member meets a preset second determination condition, and the preset second determination condition at least includes that a meeting area formed by the second gathering route corresponding to the associated member and the moving guide route overlaps with a meeting area formed by the gathering route corresponding to the core member and the moving guide route.

[0092] Optionally, the emergency task dispatching module 2 is further configured to determine a non-responding member and a corresponding gathering route if a response message from the member of the emergency team is not received within a specified time period after the emergency task is issued, select a substitute member meeting a preset substitute condition based on the responsibility attribute and the gathering route of the non-responding member, dispatch the emergency task to the substitute member, and replace the non-responding member in the emergency team with the substitute member.

[0093] Optionally, the method further comprises a first aid material addition recommendation module, configured to determine, every specified period, core members and rescue points corresponding to all emergency rescue alerts obtained in the specified period, determine the residence location of each core member, and determine the feasible route of each core member from the residence location to each rescue point, group all the feasible routes according to different rescue points, so that the end points of the feasible routes in the same group are the same rescue point; and further configured to, for each group of feasible routes, take the intersection between any two feasible routes in the same group as a candidate point, determine candidate areas based on the candidate points, determine the overlapping area between any two or more candidate areas as a first aid material addition area, and output the first aid material addition area.

[0094] Optionally, the method further comprises a high-frequency emergency scheme summarization module, configured to determine, every specified period, high-frequency emergency starting areas based on the mobile guide routes corresponding to all emergency rescue alerts obtained in the specified period and the first aid tasks of each first aid team member, generate a high-frequency assembly route based on all the first aid tasks generated in the specified period, and generate and output an emergency scheme with the high-frequency emergency areas and the high-frequency assembly route.

[0095] Optionally, the method further comprises a first aid scheme reservation module, configured to obtain, in real time, basic information and / or historical inquiry records of all patients, screen out risk patients, predict and determine potential risk areas of the risk patients in the first aid condition, generate a reserved first aid scheme based on the potential risk areas, and the reserved first aid scheme at least includes first aid team members and first aid tasks of each first aid team member.

[0096] The rescue alert preprocessing module 1 is further configured to receive an emergency rescue alert, determine whether there is a reserved first aid scheme matched with the emergency rescue alert, if there is, execute the corresponding reserved first aid scheme, and if there is not, generate an emergency rescue alert.

[0097] The application further discloses an emergency medical rescue deployment management device, which comprises a memory and a processor, and the memory stores a computer program capable of being loaded and executed by the processor to perform the emergency medical rescue deployment management method.

[0098] The application further discloses a computer readable storage medium storing a computer program capable of being loaded and executed by the processor to perform the emergency medical rescue deployment management method, and the computer readable storage medium comprises, for example, a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various storage program codes.

[0099] It should be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions.

[0100] The above embodiments are merely used to illustrate the technical solutions of the present application, but not for limiting the scope of protection of the application. Obviously, the described embodiments are only part of the embodiments of the present application, but not all the embodiments. Based on these embodiments, all the other embodiments obtained by those of ordinary skill in the art without creative effort should belong to the scope of protection of the present application.

Claims

1. A method for emergency medical rescue deployment and management, characterized in that, include: Upon receiving an emergency rescue alert, based on the urgency of the alert and the real-time location information of the recipient, a movement guide is issued to the recipient so that the recipient can move to the rescue point based on the movement guide route formed by the movement guide. Form an emergency rescue team and assign emergency rescue tasks to team members; the emergency rescue task includes at least a rendezvous route, the destination of the rendezvous route is the rescue point, and at least one rendezvous route or movement guidance route includes the location for picking up emergency supplies. An emergency communication channel is established to receive and output a comprehensive rescue plan that integrates communication messages exchanged between emergency team members and the caller, ensuring a high degree of consistency between the communication messages received by the emergency team members and the caller. The dispatching of first aid tasks to first aid team members includes: The order of rendezvous is determined based on the responsibilities and attributes of each member of the emergency medical team. Based on the current location of the emergency medical team members and the movement guidance route, and in accordance with the rendezvous order, a rendezvous area is determined for each emergency medical team member on the movement guidance route, and the assembly route for each emergency medical team member is determined based on the rendezvous area; wherein, the rendezvous area is a route shared by the corresponding assembly route and the movement guidance route. The step of determining a rendezvous area for each emergency medical team member on the rendezvous route according to their current location and the designated movement route, and then determining the assembly route for each member based on the rendezvous area, includes: The first member of the emergency medical team in the assembly order is taken as the core member. Based on the current location of the core member, the location of emergency supplies, and the movement guidance route, a first assembly route is generated for the core member. Determine whether the first assembly route meets the preset first determination condition. If it does, merge the location where the relief supplies are picked up with the first assembly route to form a new first assembly route. If the first assembly route does not meet the preset first judgment condition, then a second assembly route is generated for all other emergency team members except the core member; related members are selected from the emergency team members except the core member, and the second assembly route corresponding to the related member is merged with the emergency supplies collection location to form a new second assembly route; Wherein, the second assembly route corresponding to the associated member satisfies a preset second determination condition, the preset second determination condition including at least: the convergence area formed by the second assembly route corresponding to the associated member and the movement guidance route overlaps with the convergence area formed by the assembly route corresponding to the core member and the movement guidance route; The method further includes: Every specified period, determine the core members and rescue points corresponding to all emergency rescue alarms obtained within the specified period, determine the permanent location of each core member, and the feasible routes for each core member to move from the permanent location to each rescue point, and group all the feasible routes according to the different rescue points so that the destination of the feasible routes belonging to the same group is the same rescue point. For each group of feasible routes, the intersection points formed between any feasible routes in the same group are taken as candidate points. Based on the candidate points, candidate areas are determined. The overlapping areas between any two or more candidate areas are determined as emergency supplies addition areas, and the emergency supplies addition areas are output.

2. The emergency medical rescue allocation and management method according to claim 1, characterized in that, The process of assigning emergency medical duties to emergency team members also includes: If no response message is received from a member of the emergency medical team within a specified time after an emergency medical mission is issued, the unresponsive member and their corresponding assembly route are identified. Based on the responsibilities and assembly route of the unresponsive member, a substitute member who meets the preset substitute conditions is selected, and an emergency medical mission is assigned to the substitute member to replace the unresponsive member in the emergency medical team.

3. The emergency medical rescue allocation and management method according to claim 1, characterized in that, The method further includes: Every specified period, based on the movement guidance routes corresponding to all emergency rescue alarms obtained within the specified period and the emergency rescue tasks of each emergency rescue team member, the high-frequency emergency rescue starting area within the specified period is determined, and based on all emergency rescue tasks generated within the specified period, a high-frequency assembly route is generated, and an emergency plan with high-frequency emergency rescue area and high-frequency assembly route is generated and output.

4. The emergency medical rescue allocation and management method according to claim 1, characterized in that, The method further includes: The system acquires basic information and / or historical medical records of all patients in real time, filters out high-risk patients, predicts and determines potential risk areas where these high-risk patients may require emergency care, and generates a predetermined emergency care plan based on the potential risk areas. The predetermined emergency care plan includes at least emergency team members and the emergency care tasks of each emergency team member. The acquisition of emergency rescue alerts includes: Upon receiving an emergency rescue alarm, determine whether there is a pre-defined emergency rescue plan that matches the alarm. If so, execute the corresponding pre-defined emergency rescue plan; otherwise, generate an emergency rescue alarm.

5. An emergency medical rescue deployment and management system, wherein the emergency medical rescue deployment and management system is applied to the emergency medical rescue deployment and management method of claim 1, characterized in that, The emergency medical rescue and dispatch management system includes: The rescue alarm preprocessing module (1) is used to acquire emergency rescue alarms and, based on the urgency of the emergency rescue alarms and the real-time location information of the alarm receiver, issue movement guidance to the alarm receiver so that the alarm receiver can move to the rescue point based on the movement guidance route formed by the movement guidance. The emergency rescue task dispatch module (2) is used to form an emergency rescue team and dispatch emergency rescue tasks to the team members; the emergency rescue task includes at least a rendezvous route, the destination of the rendezvous route is the rescue point, and at least one rendezvous route or movement guidance route includes the location for picking up emergency supplies. The emergency communication activation module (3) is used to create an emergency communication channel, and to receive and output a comprehensive rescue plan through the emergency communication channel, which is a combination of communication messages exchanged and organized between the emergency team members and the caller, so that the communication messages received by the emergency team members and the caller are highly consistent.

6. An emergency medical rescue dispatch and management device, characterized in that, It includes a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and executed by any one of the methods described in claims 1 to 4.

7. A computer-readable storage medium, characterized in that, The computer program is stored that can be loaded by a processor and executed by any one of the methods described in claims 1 to 4.

Citation Information

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