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Hemodynamic analysis of virtual stent design for atherosclerotic carotid artery

机译:动脉粥样硬化性颈动脉虚拟支架设计的血流动力学分析

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We propose a technique to reverse engineer a normal carotid bifurcation from an abnormal artery model based on B-Spline interpolation. This enables us to assess the blood flow pattern in a patient-specific artery for the stenosed and virtually stented conditions. This technique may be applied to understand the cardiovascular condition and to develop a stent to eliminate stenosis and flow resistance. Furthermore, we hypothesise that velocity, wall shear stress and pressure gradient are the key hemodynamics parameters for determining stent performance in terms of improved cardiovascular flow. We show that stenting are able to improve the diseased artery condition from the hemodynamics perspective.
机译:我们提出了一种基于B样条插值从异常动脉模型逆向工程正常颈动脉分叉的技术。这使我们能够针对狭窄的和实际上带有支架的状况评估患者特定动脉的血流模式。该技术可用于了解心血管疾病并开发支架以消除狭窄和流动阻力。此外,我们假设速度,壁切应力和压力梯度是决定支架性能的关键血液动力学参数(根据改善的心血管流量)。我们显示,从血液动力学的角度来看,支架置入术能够改善病变的动脉状况。

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