中科汇联中科汇联

Medical Metaverse Educational Platform

Overview of the solution

The Medical Metaverse Educational Platform utilizes the design concepts and implementation methods of 3D simulation models driven by relational databases, and applies them to medical behaviors such as medical teaching, diagnosis practice, and surgical operations, ultimately achieving an open and visualized virtual simulation teaching platform. In the platform, all medical resources such as operating rooms, medical equipment, patient characteristics, body features, medical record writing, and other entity forms are modeled in 3D and studied and analyzed, providing a support environment for 3D simulation, medical diagnosis, treatment feedback, and other content based on multiple virtual therapy scenarios.

The platform takes the perspective of object-oriented design and virtual modeling technology, combines professional medical means and human body characteristics, provides major pathological features and treatment plans for internal medicine, surgery, gynecology, pediatrics, ophthalmology, and other fields, and offers ample opportunities for new physicians and students to master diagnostic and treatment skills. Through the virtual simulation environment, educational institutions can reduce training costs, greatly minimize capital input, and improve learning efficiency. The virtual simulation teaching platform fills the gaps of traditional training devices, reduces the risks of medical practice, and perfects the situation where medical students have less opportunity for practical exercises and treatment processes are not visible.

Overview of the solution

Function introduction

Basic medical education Clinical Medicine Teaching Examination Center

Virtual medical scenarios

1

Virtual medical scenarios

Virtual laboratory

2

Virtual laboratory

Virtual anatomy exhibitions

3

Virtual anatomy exhibitions

Virtual pathology exhibition

4

Virtual pathology exhibition

Pathology specimen exhibition

5

Pathology specimen exhibition

Virtual medical scenarios are an important part of functional experiment teaching in medical education. Establishing a virtual medical scenario room is necessary for meeting the needs of functional experiment teaching, making up for the deficiencies of real medical scenarios, and extending and strengthening real medical situations. It helps students to verify and consolidate the basic theory and knowledge taught in the classroom, establish self-confidence, and more importantly, train students' basic skills, cultivate their comprehensive and innovative abilities.

Virtual Surgery

1

Virtual Surgery

Virtual Puncture

2

Virtual Puncture

Virtual Endoscopy Technology

3

Virtual Endoscopy Technology

Virtual Intramuscular Injection

4

Virtual Intramuscular Injection

Virtual Gastrostomy Tube Placement

5

Virtual Gastrostomy Tube Placement

Virtual Clinical Nursing

6

Virtual Clinical Nursing

Platform utilizes various medical imaging data to build a simulated environment in the computer using virtual reality technology. This emerging discipline enables doctors to use the information in the virtual environment for surgical planning, training, and guiding actual surgical procedures. Doctors can simulate and guide various processes involved in medical surgery using virtual reality technology, including surgical planning, rehearsal, teaching, skill training, intraoperative guidance, and postoperative rehabilitation.

In the virtual surgery scene, the use and presentation of all instruments are similar to that of real scenes, and the operating procedures will be carried out according to standards.

Paper Management

1

Paper Management

Exam Management

2

Exam Management

Clinical Skills Assessment

3

Clinical Skills Assessment

Grade Inquiry

4

Grade Inquiry

Question Bank Management

5

Question Bank Management

Paper Management provides administrators with a preview of the paper name, and supports previewing, editing, creating, downloading, and deleting papers.

Advantages of the plan

Key practical technologies

The key technologies related to the platform are all extracted based on the system simulation tasks. Combining with the basic architecture of the platform, key technologies such as biological tissue geometric modeling, biological tissue physical modeling, biological tissue deformation simulation, biological tissue cutting simulation, surgical suturing and knotting, as well as collision detection are extracted.

Open-ended simulation scenar...

In the simulation platform, open-ended simulation scenarios are provided for different user roles and operational needs, such as medical students, experts, and researchers. Medical students can retrieve pre-made virtual training modules from the 3D scene data based on teaching information for training and evaluation. Experts can extract the 3D scene, set or modify system parameters (i.e., 3D scene data) to meet the conditions of student training. Researchers can enter the real-time construction module, import lesion data for surgical simulation, compare different surgical results, determine specific surgical plans, and thus improve clinical success rates.

Concurrent interactive task ...

The platform decomposes the interactive tasks that need to be completed in the CPU into three parts that can be executed concurrently: the first part is the various types of information sent by the user to the virtual environment through input devices, the second part is the collision detection, deformation, and cutting module, and the third part is the display module. By concurrent execution of interactive tasks, real-time performance of surgical simulation can be enhanced and blocking states can be avoided.

Generic biological tissue mo...

The platform is designed with a highly generic biological tissue geometric modeling scheme that starts from medical body data and realizes modeling of body tissues, organs, and lesion characteristics, meeting the personalized requirements of surface models and solid models for different simulation environments and application tasks in terms of quantity, quality, and modeling speed.

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