首页> 外文会议>ASME Fluids Engineering Division summer meeting >EFFECT OF NON-NEWTONIAN BLOOD FLOW ON CORONARY ARTERY HEMODYNAMICS IN A COHORT OF PATIENTS WITH STENOSED ARTERY
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EFFECT OF NON-NEWTONIAN BLOOD FLOW ON CORONARY ARTERY HEMODYNAMICS IN A COHORT OF PATIENTS WITH STENOSED ARTERY

机译:非牛顿血液流量对冠状动脉狭窄患者队列中冠状动脉血流动力学的影响

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Wall shear stress (WSS) distribution in stenosed arteries has been known as an important hemodynamic factor to correlate with atherosclerosis and associated disturbances in blood flow. WSS depends on various factors such as geometric complexity and tortuosity of the artery, stenosis severity and morphology as well as blood rheological properties. We conducted a numerical simulation of blood flow using Ansys CFX software in 9 patient-specific coronary artery models with 3 classes of stenosis severity: mild, moderate and severe. For this purpose, we compared some numerical results between two non-Newtonian models and Newtonian blood flow viscosity using 9 patient-specific coronary artery models including the full range of real (physiological) stenosis, reconstructed from 3DQCA (quantities coronary angiography). Incompressible and steady state form of Navier-Stokes equations were used as governing equations. Flow was considered laminar and artery walls were assumed to be rigid. Results showed that the magnitude of WSS usually increases by decreasing the cross-section area of arteries. Despite the difference in the WSS magnitude between different models in each artery, the trend of variation of WSS along the artery was the same in all three models. The local peak point of WSS along the artery occurs at the stenosis location, same for all models.
机译:狭窄动脉中的壁切应力(WSS)分布是与动脉粥样硬化和相关的血流紊乱相关的重要血液动力学因素。 WSS取决于各种因素,例如动脉的几何复杂性和曲折度,狭窄的严重程度和形态以及血液流变学性质。我们使用Ansys CFX软件在9种特定于患者的冠状动脉模型中对血流进行了数值模拟,这些模型具有3种狭窄程度:轻度,中度和重度。为此,我们使用9种特定于患者的冠状动脉模型(包括从3DQCA(数量冠状血管造影术)重建的整个真实(生理)狭窄)比较了两个非牛顿模型和牛顿血流粘度之间的一些数值结果。 Navier-Stokes方程的不可压缩和稳态形式被用作控制方程。血流被认为是层流的,动脉壁被认为是刚性的。结果表明,WSS的大小通常通过减小动脉的横截面积而增加。尽管每条动脉的不同模型之间的WSS大小有所不同,但在所有三个模型中,沿动脉的WSS的变化趋势都是相同的。 WSS沿动脉的局部峰值点出现在狭窄部位,所有模型均如此。

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