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Finite element analysis of blood flow via a shunt from the left ventricle to the distal segment of a stenosed coronary artery

机译:从左心室到狭窄的冠状动脉远端段分流的血流的有限元分析

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New methods are currently being developed that provide a direct connection between the left ventricle and the distal portion of an obstructed coronary artery. Optimal design of such a device can be aided by the use of numerical analysis. Here, computational results are presented showing the hemodynamic flows through a bypass shunt providing flow to a stenosed coronary artery. A PISO type finite element method is used to solve the three-dimensional incompressible Navier-Stokes equations for flow passing through a bypass shunt into the occluded coronary artery. Time-varying inlet flow from the left ventricle is obtained from a simulation of the entire coronary and systemic circulations. The main objective of this study is to delineate the influence of shunt angle on detailed flow patterns. Three different shunt angles are examined. Computational results show a recirculating region generated near the junction of the coronary artery with the bypass shunt. Secondary flow is induced in the cross-sectional plane perpendicular to the axis of the artery and is progressively attenuated downstream. Among the three cases studied, secondary flows are greatest with the 90/spl deg/ shunt angle. The maximum pressure drop between inlet to outlet also increases with increasing shunt angle.
机译:当前正在开发新的方法,其提供左心室和阻塞的冠状动脉的远端部分之间的直接连接。这种装置的最佳设计可以通过使用数值分析来辅助。在此,计算结果显示了流经旁路分流器的血液动力学流,该分流器向狭窄的冠状动脉提供血流。 PISO类型的有限元方法用于求解三维不可压缩的Navier-Stokes方程,用于通过旁路分流器进入闭塞的冠状动脉的血流。来自左心室的随时间变化的进气流量是通过模拟整个冠状动脉和全身循环而获得的。这项研究的主要目的是描述分流角对详细流动模式的影响。检查了三个不同的分流角。计算结果表明,在冠状动脉与旁路分流器交界处附近产生了一个再循环区域。在垂直于动脉轴线的横截面中引起次级流动,并在下游逐渐衰减。在所研究的三种情况中,次级流量最大,为90 / spl度/分流角。入口和出口之间的最大压降也随着分流角的增加而增加。

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