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Quantitative comparison of hemodynamics in simulated and 3D angiography models of cerebral aneurysms by use of computational fluid dynamics

机译:利用计算流体力学定量比较模拟和3D血管造影脑动脉瘤模型中的血液动力学

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In this study, we evaluated hemodynamics using simulated models and determined how cerebral aneurysms develop in simulated and patient-specific models based on medical images. Computational fluid dynamics (CFD) was analyzed by use of OpenFOAM software. Flow velocity, stream line, and wall shear stress (WSS) were evaluated in a simulated model aneurysm with known geometry and in a three-dimensional angiographic model. The ratio of WSS at the aneurysm compared with that at the basilar artery was 1:10 in simulated model aneurysms with a diameter of 10 mm and 1:18 in the angiographic model, indicating similar tendencies. Vortex flow occurred in both model aneurysms, and the WSS decreased in larger model aneurysms. The angiographic model provided accurate CFD information, and the tendencies of simulated and angiographic models were similar. These findings indicate that hemodynamic effects are involved in the development of aneurysms.
机译:在这项研究中,我们使用模拟模型评估了血液动力学,并基于医学图像确定了脑动脉瘤如何在模拟模型和针对特定患者的模型中发展。使用OpenFOAM软件分析了计算流体动力学(CFD)。在具有已知几何形状的模拟模型动脉瘤和三维血管造影模型中评估了流速,流线和壁切应力(WSS)。在直径为10 mm的模拟模型动脉瘤中,动脉瘤与基底动脉处的WSS之比为1:10,而在血管造影模型中为1:18,表明趋势相似。在两种模型动脉瘤中均发生涡流,而在较大模型动脉瘤中WSS下降。血管造影模型可提供准确的CFD信息,并且模拟模型和血管造影模型的趋势相似。这些发现表明血流动力学效应与动脉瘤的发生有关。

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