首页> 外文会议>Proceedings of the ASME international mechanical engineering congress and exposition 2009 >NUMERICAL SIMULATION OF BLOOD FLOW IN PATIENT-SPECIFIC STENOTIC CAROTID BIFURCATION GEOMETRIES
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NUMERICAL SIMULATION OF BLOOD FLOW IN PATIENT-SPECIFIC STENOTIC CAROTID BIFURCATION GEOMETRIES

机译:患者特定的狭窄性颈动脉分叉几何中血流的数值模拟

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The hemodynamics and fluid mechanical forces in blood vessels have long been implicated in the deposition and growth of atherosclerotic plaque. Detailed information about the hemodynamics in vessels affected by significant plaque deposits can provide insight into the mechanisms and likelihood of plaque weakening and rupture. In the current study, the governing equations are solved in their finite volume formulation in several patient-specific geometries. Recirculation zones, vortex shedding, and secondary flows are captured. The forces on vessel walls are shown to correlate with unstable plaque deposits. The results of these simulations suggest morphological features that may usefully supplement percent stenosis as a predictor of plaque vulnerability.
机译:长期以来,血管中的血流动力学和流体机械力与动脉粥样硬化斑块的沉积和生长有关。有关受严重斑块沉积影响的血管的血流动力学的详细信息,可以深入了解斑块减弱和破裂的机制以及可能性。在当前的研究中,控制方程以其有限体积公式在几种特定于患者的几何形状中求解。捕获回流区,涡旋脱落和二次流。显示在血管壁上的力与不稳定的斑块沉积有关。这些模拟的结果表明,形态特征可有效补充狭窄百分比,作为斑块易损性的预测指标。

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