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揭示动脉血流与动脉瘤内血流动力学之间的关系。

Unraveling the relationship between arterial flow and intra-aneurysmal hemodynamics.

作者信息

Morales Hernán G, Bonnefous Odile

机构信息

Medisys - Philips Research Paris, France.

Medisys - Philips Research Paris, France.

出版信息

J Biomech. 2015 Feb 26;48(4):585-591. doi: 10.1016/j.jbiomech.2015.01.016. Epub 2015 Jan 21.

Abstract

Arterial flow rate affects intra-aneurysmal hemodynamics but it is not clear how their relationship is. This uncertainty hinders the comparison among studies, including clinical evaluations, like a pre- and post-treatment status, since arterial flow rates may differ at each time acquisition. The purposes of this work are as follows: (1) To study how intra-aneurysmal hemodynamics changes within the full physiological range of arterial flow rates. (2) To provide characteristic curves of intra-aneurysmal velocity, wall shear stress (WSS) and pressure as functions of the arterial flow rate. Fifteen image-based aneurysm models were studied using computational fluid dynamics (CFD) simulations. The full range of physiological arterial flow rates reported in the literature was covered by 11 pulsatile simulations. For each aneurysm, the spatiotemporal-averaged blood flow velocity, WSS and pressure were calculated. Spatiotemporal-averaged velocity inside the aneurysm linearly increases as a function of the mean arterial flow (minimum R(2)>0.963). Spatiotemporal-averaged WSS and pressure at the aneurysm wall can be represented by quadratic functions of the arterial flow rate (minimum R(2)>0.996). Quantitative characterizations of spatiotemporal-averaged velocity, WSS and pressure inside cerebral aneurysms can be obtained with respect to the arterial flow rate. These characteristic curves provide more information of the relationship between arterial flow and aneurysm hemodynamics since the full range of arterial flow rates is considered. Having these curves, it is possible to compare experimental studies and clinical evaluations when different flow conditions are used.

摘要

动脉血流速度会影响动脉瘤内的血流动力学,但它们之间的关系尚不清楚。这种不确定性阻碍了包括临床评估(如治疗前后状态)在内的各项研究之间的比较,因为每次采集时动脉血流速度可能不同。这项工作的目的如下:(1)研究在动脉血流速度的整个生理范围内,动脉瘤内的血流动力学如何变化。(2)提供动脉瘤内速度、壁面切应力(WSS)和压力随动脉血流速度变化的特征曲线。使用计算流体动力学(CFD)模拟研究了15个基于图像的动脉瘤模型。11次脉动模拟涵盖了文献中报道的整个生理动脉血流速度范围。对于每个动脉瘤,计算了时空平均血流速度、WSS和压力。动脉瘤内的时空平均速度随平均动脉血流呈线性增加(最小R²>0.963)。动脉瘤壁处的时空平均WSS和压力可以用动脉血流速度的二次函数表示(最小R²>0.996)。可以获得脑动脉瘤内时空平均速度、WSS和压力相对于动脉血流速度的定量特征。由于考虑了整个动脉血流速度范围,这些特征曲线提供了更多关于动脉血流与动脉瘤血流动力学之间关系的信息。有了这些曲线,当使用不同的血流条件时,就可以比较实验研究和临床评估。

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