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Simulation of the formation mechanism of coronary thrombosis based on DEM-CFD coupling

机译:基于DEM-CFD耦合的冠状动脉血栓形成机制的模拟

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Aiming at the problem of the formation of thrombosis and coronary restenosis, the formation mechanism of thrombosis was studied in this paper. The simulation model of platelet particles was established based on the theory of discrete element. And the simulation model describing the flow of blood was built based on the principle of hemodynamic. Then by means of the DEM-CFD coupling technology, a simulation model was established to describe the circumstance that platelet flows in blood. To reveal the formation mechanism of thrombosis and solve the problem of coronary restenosis, the process of blood flowing, platelet adhering to each other and to coronary stent was simulated. The result of simulation showed that blood flow velocity has a significant influence on the formation of thrombus. The result will provide basement on the cure of thrombus and the improvement of stent in the future.
机译:针对血栓形成和冠状动脉再狭窄的问题,研究了血栓形成的机理。基于离散元理论建立了血小板颗粒的模拟模型。根据血流动力学原理建立了描述血流的仿真模型。然后借助DEM-CFD耦合技术,建立了一个模拟模型来描述血小板在血液中流动的情况。为了揭示血栓形成的机理并解决冠状动脉再狭窄的问题,模拟了血液流动,血小板相互粘附以及粘附于冠状动脉支架的过程。模拟结果表明,血流速度对血栓形成有重要影响。该结果将为血栓的治疗和将来支架的改进提供基础。

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