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A Follow-up MRI-based Geometry and Computational Fluid Dynamics Study of Carotid Bifurcation

机译:颈动脉分叉的基于MRI的后续几何和计算流体动力学研究

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摘要

Cardiovascular disease is the leading causes of death in the developed world. Wall shear stress (WSS) is associated with the initiation and progression of atherogenesis. This study combined the recent advances in MR imaging and computational fluid dynanucs (CFD) and evaluated the patient-specific carotid bifurcation. The patient was followed up for 3 years. The geometry changes (tortuosity, curvature, ICA/CCA area ratios, central to the cross-sectional curvature, maximum stenosis) and the CFD factors (velocity distribute, wall shear stress (WSS) and oscillatory shear index (OSI) were compared at different time points.The carotid stenosis was a slight increase in the central to the cross-sectional curvature, and it was minor and variable curvature changes for carotid centerline. The OSI distribution presents a high-values in the same region where carotid stenosis and normal border, indicating complex flow and recirculation.The significant geometric changes observed during the follow-up may also cause significant changes in bifurcation hemodynamics.
机译:心血管疾病是发达国家的主要死亡原因。壁切应力(WSS)与动脉粥样硬化的发生和发展有关。这项研究结合了MR成像和计算流体动力学(CFD)的最新进展,并评估了患者特定的颈动脉分叉。对该患者进行了3年的随访。比较了不同位置的几何形状变化(曲率,曲率,ICA / CCA面积比,中心曲率,最大狭窄)和CFD因子(速度分布,壁切应力(WSS)和振荡剪切指数(OSI))颈动脉狭窄在横截面曲率的中央略有增加,而颈动脉中心线的曲率变化较小且变化不定,在颈动脉狭窄和正常边界的同一区域,OSI分布呈现出较高的值,表明复杂的血流和再循环。在随访期间观察到的明显几何变化也可能导致分叉血流动力学的显着变化。

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