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Impact of coronary tortuosity on the artery hemodynamics

机译:冠状动脉饼干对动脉血流动力学的影响

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The presence of tortuosity in coronary artery (CA) affects the local wall shear stress (WSS) which is an influencing hemodynamic descriptor (HD) for the development of atherosclerotic sites. To conduct a morphological parametric study in coronary arteries (CAs), several idealized tortuous artery models were obtained by varying three morphological indices namely, curvature radius (CR), distance between two bends (DBB) and the angle of bend (AoB). Computational fluid dynamics methodology with multiphase mixture theory is used to explore the effect of coronary tortuosity on various WSS based hemodynamic descriptors (HDs) namely, time-averaged WSS, oscillatory shear index, time-averaged WSS gradient, endothelial cell activation potential and the relative residence time that are used to determine the vulnerable locations for the onset of thrombosis and atherosclerosis. Our findings suggest that all the tortuosity morphological indices, CR, DBB and AoB have significant influence on the distributions of various HDs and hemodynamics. It is also observed that atherosclerosis prone sites were witnessed at the inner artery wall at downstream regions of the bend section 1 and bend section 2 in all the tortuous artery models studied and found to increase as the CR and DBB were reduced however, found to increase as the AoB is increased. Hence, severe coronary tortuosity in CAs with small CR, small DBB and higher AoB may have lower WSS zones at inner bend sections which promote atherosclerosis plaque progression. The analysis obtained from this multiphase blood flow study can be employed potentially in the clinical assessment on the severity of atherosclerosis lesions as well as in understanding the underlying mechanisms of localization and formation of atherosclerotic plaques. (c) 2019 Nalecz Institute of Biocybernetics and Biomedical Engineering of the Polish Academy of Sciences. Published by Elsevier B.V. All rights reserved.
机译:冠状动脉(CA)中的曲折性的存在影响了局部壁剪切应力(WSS),其是影响动脉粥样硬化位点的影响的血液动力学描述符(HD)。为了在冠状动脉(CAS)中进行形态参数研究,通过改变三个形态指数,即曲率半径(CR),两个弯曲(DBB)之间的距离和弯曲(AOB)之间的距离来获得几种理想化的曲折动脉模型。使用多相混合理论的计算流体动力学方法用于探讨冠状动脉曲折化对基于WSS的血流动力学描述符(HDS)的影响,即时间平均的WSS,振荡剪切指数,时间平均的WSS梯度,内皮细胞激活电位和相对用于确定血栓形成和动脉粥样硬化发作的脆弱地点的停留时间。我们的研究结果表明,所有曲折形态指数,CR,DBB和AOB对各种HDS和血流动力学的分布都具有重大影响。还观察到,在弯曲部分1的下游区域的内动脉壁上见证了动脉粥样硬化位点,并且在研究的所有曲折动脉模型中,随着CR和DBB的所有曲折动脉模型,发现增加随着AOB的增加。因此,CAS中的严重冠状动脉曲折性具有小CR,小DBB和更高AOB的内部弯曲部分可以在促进动脉粥样硬化斑块进展的内部弯曲部分中具有较低的WSS区。从该多相血流研究中获得的分析可以在临床评估中使用对动脉粥样硬化病变的严重程度以及理解局部化和形成动脉粥样硬化斑块的潜在机制。 (c)2019年纳雷斯州博士科学学院生物医学研究所。 elsevier b.v出版。保留所有权利。

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