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Effects of VAD Placement on 3D Fluid Flow in a Patient Specific Numerical Model of the Left Ventricle with Ischemic Heart Failure

机译:VAD放置对缺血性心力衰竭左心室患者特定数值模型中3D流体流量的影响

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This paper focuses on the interaction between a generic ventricular assist device (VAD) system and the three dimensional flow structure in a pathological left ventricle (LV). The MRI derived geometry motion data of the ventricular endothelial wall has been used as boundary condition for a three dimensional CFD model incorporating the placement of a VAD between the ventricular apex and the ascending aorta. In a first step, the pump action is implemented by simple momentum source terms, which is yet a placeholder for an arbitrary realistic pump system in future work. A two element circulatory system model is adjusted to physiological conditions and serves as an adaptive pressure boundary condition representing the capacity and resistance of the arterial circulatory system. The heart valves are modeled two dimensionally with a projected, realistic opening area. The computational model therefore accounts on the one hand for complex pressure flow interaction in time, like lumped parameter models do. On the other hand, the detailed three dimensional fluid flow structure is solved to analyze the effects of pump action on intra ventricular, intra aortic and pump cannula flow patterns. First simulation results indicate significant changes in the flow structure and therefore show relevance for the estimation of flow induced blood trauma caused directly and indirectly by VAD placement.
机译:本文着眼于通用型心室辅助装置(VAD)系统与病理性左心室(LV)中的三维流动结构之间的相互作用。 MRI导出的心室内皮壁的几何运动数据已被用作三维CFD模型的边界条件,该三维CFD模型将VAD放置在心尖和升主动脉之间。第一步,通过简单的动量源项来实现泵的动作,这仍然是未来工作中任意现实的泵系统的占位符。将二元循环系统模型调整为适应生理条件,并用作代表动脉循环系统容量和阻力的自适应压力边界条件。心脏瓣膜是二维建模的,具有投影的,实际的开口面积。因此,计算模型一方面考虑了时间上复杂的压力流相互作用,就像集总参数模型一样。另一方面,解决了详细的三维流体流动结构,以分析泵作用对心室内,主动脉内和泵套管流动模式的影响。最初的模拟结果表明流量结构发生了显着变化,因此与估计由VAD放置直接和间接引起的流量引起的血液创伤具有相关性。

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