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A NOVEL COMPUTATIONAL APPROACH FOR MODELING STENT RECONSTRUCTION OF AN AORTIC BIFURCATION

机译:一种模拟主动脉分叉支架重建的新计算方法

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摘要

Stent reconstruction of the aorta-iliac bifurcation was studied using computational fluid dynamics. Stents were modeled using a novel method, whereby the stents were represented as porous media. Three-dimensional numerical simulations using FLUENT were performed to determine how stent orientation affects the fluid dynamics. Three cases were studied and compared for both iliacs unstented, one iliac stented, and both iliacs stented. The stents lowered wall shear stress along the stented artery walls as compared to the unstented aorta-iliac model. However, the stent presence elevated vorticity, both in magnitude and size of the region. Additional studies were conducted to determine the effects for stent mis-alignment, where one stent protruded more into the aorta. It was found that when the stents were misaligned, wall shear stress increased near the stent inlet for the stent further inserted into the iliac. The resulting flow phenomena were consistent with other numerical models and medical investigations of stent reconstruction.
机译:使用计算流体力学研究了-主动脉分叉支架的重建。使用新型方法对支架进行建模,从而将支架表示为多孔介质。使用FLUENT进行了三维数值模拟,以确定支架的方向如何影响流体动力学。研究并比较了三例未支架的,骨,一个ed骨支架和两个both骨支架。与未支架主动脉-模型相比,支架降低了沿支架动脉壁的壁切应力。然而,支架的存在在区域的大小和大小上都增加了涡度。进行了其他研究以确定支架未对准的影响,其中一个支架更多地伸入主动脉。发现当支架未对准时,在支架入口附近的壁剪切应力增加,用于支架进一步插入the中。产生的流动现象与其他数值模型和支架重建的医学研究一致。

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