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Different Blood Flow Models in Coronary Artery Diseases: Effects on hemodynamic parameters

机译:冠状动脉疾病中不同的血流模型:对血流动力学参数的影响

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Coronary arteries are medium-small caliber vessels, in which low shear rate values are encountered, where non-Newtonian blood effects cannot be neglected. This work aims to study a comparison between Newtonian and non-Newtonian blood behaviors in a cohort offorty-eight 3D patient-specific stenotic vessels (right (RCA), left (LAD) and circumflex (LCX) coronary artery) at different grades of stenosis. Numerical simulation was carried out by means of Computational Fluid Dynamics (CFD) Analysis to investigate the blood velocity and distribution of the shear stress indices at different times of the cardiac cycle. A statistical analysis was performed to have a prediction ofincrement or decrement ofthe various hemodynamic parameters. The results show that the non-Newtonian effects are mostly important in shear stress indices distributions.
机译:冠状动脉是中小的口径血管,其中遇到低剪切速率值,其中非牛顿血液效应不能被忽略。这项工作旨在研究在不同等级的狭窄等级的纽托特缺陷 - 八维患者特异性狭窄血管(右(RCA),LED(LCX)和CORCHFLEX(LCX)冠状动脉)中的牛顿和非牛顿血液行为的比较。通过计算流体动力学(CFD)分析进行数值模拟,以研究在心循环的不同时间的剪切应力指标的血液速度和分布。进行统计分析以具有预测的各种血液动力学参数的抑制或减少。结果表明,非牛顿效应在剪切应力指数分布中主要是重要的。

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