Computational analysis of blood flow in cerebral aneurysms

I. Šaveljić, O. Jovanikic, V. Isailović, N. Filipovic
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Abstract

The finite element method is increasingly used in the analysis of blood flow through blood vessels. Our work represents the research of blood flow through a cerebral aneurysm. The current work describes the blood flow in 4 patient-specific models of saccular aneurysms. They are located in the region of the anterior and posterior circulation of the circle of Willis. The unstructed grids are constructed from segmented images. Using three-dimensional continuity and momentum equations for unsteady laminar flow and realistic pulsatile flow conditions, we determined the wall shear stress (WSS), pressure and drag forces that acting on the wall of the blood vessel. It is known that wall shear stress (WSS) play an important role in initiation, growth and rupture of cerebral aneurysm, so, determination of the forces that acting in this region helps with understanding aneurysms better.
脑动脉瘤血流的计算分析
有限元法越来越多地应用于血管血流的分析。我们的工作代表了血液流经脑动脉瘤的研究。目前的工作描述了4种患者特异性囊状动脉瘤模型的血流量。它们位于威利斯肌圈前后循环区域。非结构化网格由分割后的图像构造而成。利用非定常层流和脉动流的三维连续性和动量方程,确定了作用在血管壁上的壁面剪切应力(WSS)、压力和阻力。众所周知,壁面剪切应力(wall shear stress, WSS)在脑动脉瘤的发生、生长和破裂中起着重要作用,因此,确定作用于该区域的力有助于更好地了解动脉瘤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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