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Characterization of fluid flow properties at the basilar apex

机译:基础顶点的流体流动性能的表征

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Shear stress and pressure loads are two variables that influence the pathogenesis of aneurysm formation and effectiveness of treatment. Computational fluid dynamic (CFD) software programs are valuable in analyzing fluid flow properties in the vascular system. In the cerebral vasculature, it can be used to study the local hemodynamic properties in the areas of arterial bifurcation. In this study, we used CFD techniques to describe fluid flow properties at the basilar artery apex. Computed topography (CT) images were used to provide the necessary data points needed to reconstruct the 3D geometry. We entered velocity, pressure, fluid property parameters, and boundary conditions into the CFD software program to obtain steady state results. Results indicate the value of CFD in predicting some clinically relevant pre- and postoperative hemodynamic data that can influence the diagnosis and treatment of cerebral aneurysm.
机译:剪切应力和压力负荷是影响动脉瘤形成和治疗有效性的两种变量。计算流体动态(CFD)软件程序在分析血管系统中的流体流动性质方面是有价值的。在脑脉管系统中,可用于研究动脉分叉区域的局部血液动力学特性。在本研究中,我们使用CFD技术来描述基底动脉顶进的流体流动性质。计算的地形(CT)图像用于提供重建3D几何所需的必要数据点。我们进入速度,压力,流体性能参数和边界条件到CFD软件程序中以获得稳态结果。结果表明CFD在预测一些临床相关的血液动力学数据中,可以影响脑动脉瘤的诊断和治疗。

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