A whole-body vascular interventional simulation model and blood circulation control system

By integrating the base, simulated blood vessels, compression components, and control unit in a coordinated design, the problem that existing vascular intervention simulation models cannot simulate vascular compression scenarios is solved, realizing the linkage control of blood circulation and compression state, and improving the realism and relevance of training.

CN122090712APending Publication Date: 2026-05-26MEI HOSPITAL UNIV OF CHINESE ACAD OF SCI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
MEI HOSPITAL UNIV OF CHINESE ACAD OF SCI
Filing Date
2026-03-19
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing vascular intervention simulation models cannot simulate vascular compression scenarios, and the linkage between blood circulation and compression status is insufficient, resulting in incomplete and unrealistic training content, which cannot meet the training needs for complex scenario operation skills.

Method used

It adopts a collaborative design of integrated base, simulated blood vessel, compression component, blood circulation component and control unit. The compression component simulates the deformation of the simulated blood vessel. Combined with real-time detection by liquid pressure and temperature sensors, it can accurately simulate blood vessel stenosis and compression hemostasis scenarios. The control unit realizes the linkage control of each component.

Benefits of technology

It achieves precise simulation of vascular compression at multiple locations, realistically recreating clinical scenarios such as vascular stenosis and compression hemostasis, improving the completeness and relevance of interventional training, and providing a training environment that closely resembles clinical practice.

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Abstract

This invention relates to the field of simulation training equipment technology, and discloses a whole-body vascular interventional simulation model and a blood circulation control system, including an integrated base in which a simulated blood vessel is disposed; and a blood circulation component, which includes a reservoir and a drive pump. The reservoir is connected to the inlet end of the simulated blood vessel through the drive pump. This invention solves the technical problems of existing vascular interventional simulation models being unable to simulate vascular compression scenarios and having insufficient linkage between blood circulation and compression states by coordinating the simulated blood vessel with blood circulation, compression, and air circuit components, combined with the overall coordinated control of the control unit. It can also realize multi-position vascular compression simulation, accurately reproduce clinical scenarios such as vascular stenosis and compression hemostasis. The overall structure is simple and highly realistic, effectively improving the completeness and pertinence of interventional training, and providing physicians with a training environment close to clinical reality.
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