Comprehensive treatment modular system

By designing a modular system for comprehensive treatment, the problem of intimate layout and treatment process of traditional emergency department is solved, and the seamless connection between pre-hospital assessment, rapid admission, emergency treatment and postoperative resuscitation are achieved, and the treatment efficiency and patient experience are significantly improved.

CN119993424APending Publication Date: 2025-05-13THE FIRST AFFILIATED HOSPITAL OF MEDICAL COLLEGE OF XIAN JIAOTONG UNIV
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Patent Information

Application Number
CN202510094987.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

There is a lack of close connection between the layout of traditional emergency department and the treatment process, resulting in a prolonged treatment time for patients, insufficient resource utilization, and difficulty in coping with the needs of complex diseases and high-end treatment technologies, affecting the treatment efficiency and patient experience.

Method used

A comprehensive treatment modular system is designed, including pre-hospital treatment unit, zero-channel unit, emergency unit, resuscitation unit and central control system, to achieve seamless connection between pre-hospital assessment, rapid hospital admission, emergency treatment and postoperative resuscitation, and intelligent allocation of resources through central control system.

Benefits of technology

It has achieved efficient connection of treatment processes and rapid allocation of medical resources, significantly shortened treatment time, improved resource utilization efficiency, able to cope with the needs of complex diseases and high-end treatment technologies, and improved patients' medical experience.

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Abstract

The invention relates to a comprehensive treatment modular system which comprises a pre-hospital treatment unit, a zero channel unit, a first-aid unit, a resuscitation unit and a central control system. The pre-hospital treatment unit comprises a treatment vehicle and a disease rating module, and is used for transporting a patient to admit the hospital and rating the emergency condition of the patient, the evaluation grade is divided into critical, emergency and general, the rating result is uploaded to the central control system, and the central control system distributes the unit after admission and the corresponding treatment doctor; the zero channel unit is used for treating critical patients, comprises an admission zero channel route and a rescue operating room, and is used for enabling the patients to enter the rescue operating room for treatment at the first time; the first-aid unit is used for treating an emergency patient, comprises a hospital admission first-aid route and a first-aid operating room, and is used for enabling the patient to enter the first-aid operating room for treatment at the first time; the resuscitation unit is used for anesthetic recovery and observation of the treated patient and comprises a resuscitation observation room and a movable monitoring device. The comprehensive treatment modular system provided by the invention solves the fundamental problems of unreasonable internal layout and unsmooth treatment process connection in the emergency department, improves the treatment efficiency of patients with acute and critical diseases, and has important practical and promotional values.
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Description

Technical Field

[0001] The invention relates to the field of medical facility layout design, in particular to a comprehensive treatment modular system for an emergency department. Background Art

[0002] In the current medical system, the emergency department is the core department of the hospital for treating acute and critical patients. Its operating efficiency and treatment quality are directly related to the life safety and health recovery of patients. However, the traditional emergency department layout and treatment process have a series of significant deficiencies, which largely restrict the improvement of treatment efficiency and the improvement of patient treatment success rate.

[0003] Specifically, in the existing technology, the connection between the functional areas within the emergency department is often not tight enough. Patients need to go through multiple transfers and waits after admission, which not only prolongs the treatment time, but may also increase the pain and anxiety of patients. There are often only emergency operating rooms in the hospital, but in fact, the emergency situations of patients are not exactly the same. For example, the dangers brought by cardiopulmonary trauma and limb trauma are different. Cardiopulmonary trauma can affect the life of patients. At present, these two types of patients are sent to the hospital in order to enter the operating room, or rely on the judgment of the on-site doctors to choose the patients who need emergency treatment first. The situation on the scene is chaotic and doctors are prone to misjudgment. In addition, traditional emergency departments also have major problems in resource allocation. The allocation of medical resources often depends on the experience and judgment of medical staff. There is a lack of scientific and efficient allocation mechanism, which leads to insufficient resource utilization and difficulty in maximizing the efficiency of treatment. At the same time, in the face of complex conditions, traditional emergency departments often lack sufficient equipment and technical support, and it is difficult to cope with the needs of high-end treatment technologies such as ECMO, CPR, and PCI, thereby limiting the comprehensiveness and professionalism of treatment services. Finally, the unreasonable internal layout of the emergency department also affects the patients' medical experience and the work efficiency of medical staff, making the emergency department seem unable to cope with emergencies and large-scale patient treatment. Summary of the invention

[0004] The present invention can provide a comprehensive rescue modular system that can provide graded emergency treatment, reasonably dispatch pre-hospital transfer, in-hospital rescue or emergency treatment resources.

[0005] The scheme of the present invention is: a comprehensive rescue modular system, including a pre-hospital rescue unit, a zero-channel unit, an emergency unit, a resuscitation unit and a central control system; the pre-hospital rescue unit includes a rescue vehicle and a disease rating module, which is used to transport patients to the hospital and rate the emergency situation of the patients' conditions. The evaluation levels are divided into critical, urgent and general. The rating results are uploaded to the central control system, and the central control system allocates the units after admission and the corresponding doctors for treatment; the zero-channel unit is used to treat critical patients, and includes a zero-channel route for admission and a rescue operating room, which is used to enter the rescue operating room for treatment as soon as possible; the emergency unit is used to treat acute patients, and includes an emergency route for admission and an emergency operating room, which is used to enter the emergency operating room for treatment as soon as possible; the resuscitation unit is used for the anesthesia recovery and observation of patients after treatment, and includes a resuscitation observation room and movable monitoring equipment.

[0006] Beneficial effects are as follows: The comprehensive rescue modular system proposed in the present invention realizes efficient connection of rescue process and rapid deployment of medical resources through carefully designed pre-hospital rescue unit, zero channel unit, emergency unit, resuscitation unit and highly intelligent central control system, bringing significant benefits: (1) Efficient connection of rescue process: This system forms a seamless rescue chain by integrating multiple key links such as pre-hospital rescue, emergency admission, rapid rescue and post-operative resuscitation. From the initial assessment and classification of patients in pre-hospital, to their rapid guidance to the corresponding rescue unit (zero channel unit or emergency unit), to the careful observation in the resuscitation unit after surgery, each step has been carefully planned, which greatly reduces the repeated transfers and unnecessary waiting time in the traditional rescue process, thereby ensuring the rapidity and continuity of the rescue process. (2) Rapid deployment and efficient utilization of resources: As the "brain" of the entire system, the central control system can receive and analyze the patient's condition information in real time, and quickly and accurately allocate rescue units and corresponding medical teams. This precise matching based on the urgency of the disease and the doctor's professional field not only ensures that patients can receive the most appropriate treatment in a timely manner, but also greatly improves the utilization efficiency of medical resources and avoids waste and idleness of resources. (3) Supporting complex treatment processes: This system is specially equipped with advanced rescue operating rooms and emergency operating rooms. These operating rooms are not only fully equipped, but also have the ability to handle complex diseases, such as supporting high-end treatment technologies such as ECMO (extracorporeal membrane oxygenation), CPR (cardiopulmonary resuscitation) and PCI (percutaneous coronary intervention). This configuration enables the system to cope with various complex diseases and provide patients with more comprehensive and professional treatment services. (4) Optimizing the layout of the emergency department and improving patient experience: The introduction of the modular system makes the internal layout of the emergency department more reasonable and orderly. The connection between the various functional areas is closer, which not only improves the work efficiency of the medical team, but also greatly improves the patient's medical experience. Patients can feel smoother and more professional services during the treatment process, thereby enhancing their trust and satisfaction with medical services.

[0007] In summary, the comprehensive rescue modular system proposed in the present invention provides strong support for improving the treatment efficiency and service quality of the emergency department by achieving efficient connection of the treatment process, rapid allocation and efficient utilization of resources, supporting complex treatment processes, and optimizing the layout of the emergency department.

[0008] Furthermore, the zero-channel route is parallel to the incoming emergency route and does not intersect with it. The emergency operating room and the rescue operating room include a front door and a back door, and the front doors of the emergency operating room and the rescue operating room are arranged opposite to each other; the resuscitation unit includes two resuscitation observation rooms, which are respectively opposite to the back doors of the emergency operating room and the rescue operating room. The design that the zero-channel route is parallel to the incoming emergency route and does not intersect with each other, and the front doors of the emergency operating room and the rescue operating room are arranged opposite to each other, and the resuscitation unit includes two resuscitation observation rooms, which are respectively opposite to the back doors of the emergency operating room and the rescue operating room, significantly improves the smoothness and efficiency of the treatment process. This design ensures that critically ill and acutely ill patients can quickly enter the corresponding operating room through independent and direct paths, avoiding route conflicts and delays. At the same time, the close connection between the operating room and the resuscitation observation room facilitates medical staff to quickly transfer patients, optimizes space utilization, reduces unnecessary moving distances, and further shortens treatment time.

[0009] Furthermore, the disease rating module includes a camera, a vital sign detection module, and a condition identification module. The camera and vital sign detection module are used to collect the patient's vital sign information and onset information. The condition identification module makes a preliminary judgment on the type of condition and the level of criticality, and transmits the information back to the central control system. The in-hospital doctor gives a final rating based on the returned information. The disease rating module collects patient information through the camera and vital sign detection module. Combined with the preliminary judgment of the condition identification module, it can quickly and accurately assess the patient's condition level and transmit the information back to the central control system in real time. The in-hospital doctor gives a final rating based on the returned information. This process ensures that the patient can be quickly guided to the most suitable treatment unit and receive targeted treatment measures. This method of precise grading and targeted treatment improves the targetedness and success rate of treatment.

[0010] Furthermore, communication equipment is provided between the rescue transportation vehicle, the emergency operating room, and the emergency operating room, which can directly communicate the situation in the operating room, so that the doctor can make preparations before the patient arrives. The communication equipment provided between the rescue transportation vehicle, the emergency operating room, and the emergency operating room enables instant communication between medical staff. This ensures real-time sharing of the situation inside the operating room, facilitates doctors to make full preparations before the patient arrives, and improves the efficiency of teamwork and emergency response capabilities.

[0011] Furthermore, the central control system is divided into trauma section, stroke section, respiratory section according to the disease type, and is used to equip corresponding professional doctors. The central control system is divided into trauma section, stroke section, respiratory section, etc. according to the disease type. This design ensures that patients can receive services provided by doctors in corresponding professional fields. This professional treatment method not only improves the professionalism and accuracy of treatment, but also improves the treatment experience and satisfaction of patients. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a functional module diagram of the comprehensive rescue modular system of the present invention. DETAILED DESCRIPTION

[0013] like Figure 1 As shown in the figure, the comprehensive rescue modular system integrates the pre-hospital rescue unit, zero-channel unit, emergency unit, resuscitation unit and an efficient central control system, aiming to provide a comprehensive medical solution with rapid response, efficient treatment and meticulous observation.

[0014] The pre-hospital treatment unit consists of a treatment vehicle and a disease rating module. Treatment vehicles, such as ambulances, are equipped with advanced medical equipment and can quickly transport patients from the scene to the hospital. The disease rating module is built into the vehicle and includes a camera, a vital sign detection module (such as heart rate monitoring, blood pressure measurement, blood oxygen saturation detection, etc.) and a disease identification module. The camera and vital sign detection module collect the patient's vital sign information and onset scene in real time, and use the deep learning algorithm through the disease identification module to conduct a preliminary assessment of the type and severity of the disease, which is divided into three levels: critical, emergency and general. This rating result is immediately uploaded to the central control system. As the nerve center of the entire system, the central control system is not only responsible for receiving the rating information of the pre-hospital treatment unit and allocating treatment resources, but also divided into trauma sections, stroke sections, respiratory sections, etc. according to the type of disease. Each section is equipped with a corresponding professional team of medical doctors. The central control system automatically allocates the patient's treatment unit and the corresponding professional medical doctors after admission according to the urgency of the disease to ensure the optimal allocation of resources.

[0015] The zero-access unit is designed for the treatment of critically ill patients and includes a zero-access route for admission and a rescue operating room. The zero-access route is designed as a direct, barrier-free passage to ensure that critically ill patients can be sent to the rescue operating room as soon as possible. The rescue operating room is equipped with the highest-level medical equipment and technical team, and the front door faces the zero-access route, which is convenient for quickly receiving patients. At the same time, in order to optimize space utilization and treatment processes, the zero-access route is parallel to the admission emergency route in the emergency unit and does not intersect with each other to avoid traffic congestion.

[0016] The emergency unit is for patients with acute illnesses and consists of an admission emergency route and an emergency operating room. The emergency operating room also has efficient treatment capabilities, and its front door is set opposite to the front door of the rescue operating room to facilitate rapid response. The admission emergency route is directly connected to the front door of the emergency operating room to ensure that acute patients can receive professional treatment quickly.

[0017] The resuscitation unit is located behind the emergency operating room and the rescue operating room, and includes two resuscitation observation rooms, which are opposite the back doors of the two operating rooms. The resuscitation observation room is equipped with advanced monitoring equipment and movable monitoring equipment, which are used for continuous monitoring and observation of patients during the anesthesia recovery period after surgery to ensure that patients safely go through the resuscitation period.

[0018] In addition, the system is equipped with communication equipment to connect the rescue vehicles, emergency operating rooms, and emergency operating rooms to achieve instant communication among the three parties. Doctors can understand the patient's condition through communication equipment before the patient arrives, prepare for surgery in advance, and further improve the efficiency of rescue.

[0019] In summary, this comprehensive rescue modular system achieves efficient management of the entire chain from pre-hospital treatment to postoperative resuscitation through highly integrated and intelligent design, greatly improving the utilization rate of medical resources and the success rate of patient treatment.

Claims

1. Comprehensive rescue modular system, characterized by: Including pre-hospital treatment unit, zero channel unit, emergency unit, resuscitation unit and central control system; The pre-hospital treatment unit includes a transportation vehicle for treatment and a disease rating module, which is used to transport patients to the hospital and rate the emergency level of the patient's condition. The rating levels are divided into critical, urgent and general. The rating results are uploaded to the central control system, which allocates the post-hospital unit and the corresponding doctor for treatment; The zero-channel unit is used to treat critically ill patients, and includes a zero-channel route for admission and a rescue operating room, which is used to get the patient into the rescue operating room for treatment as soon as possible; The emergency unit is used to treat acutely ill patients, and includes an admission emergency route and an emergency operating room, which is used to get the patient into the emergency operating room for treatment as soon as possible; The resuscitation unit is used for the anesthesia recovery and observation of patients after treatment, and includes a resuscitation observation room and movable monitoring equipment.

2. The comprehensive rescue modular system according to claim 1, characterized in that: The zero channel route is parallel to the incoming emergency route and does not intersect with each other. The emergency operating room and the rescue operating room include a front door and a rear door, and the front doors of the emergency operating room and the rescue operating room are arranged opposite to each other; the resuscitation unit includes two resuscitation observation rooms, which are respectively opposite to the rear doors of the emergency operating room and the rescue operating room.

3. The comprehensive rescue modular system according to claim 1 or 2, characterized in that: The disease rating module includes a camera, a vital signs detection module, and a condition identification module. The camera and vital signs detection module are used to collect the patient's vital signs information and onset information. The condition identification module makes a preliminary judgment on the type of condition and the level of criticality, and transmits the information back to the central control system. The hospital doctors give the final rating based on the transmitted information.

4. The comprehensive rescue modular system according to claim 1 or 2, characterized in that: Communication equipment is provided between the rescue transportation vehicle, the emergency operating room, and the emergency operating room, so that the situation in the operating room can be directly communicated, and the doctor can make preparations before the patient arrives.

5. The comprehensive rescue modular system according to claim 1 or 2, characterized in that: The central control system is divided into trauma section, stroke section and respiratory section according to the type of disease, and is used to equip medical doctors with corresponding professions.