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Numerical Simulation of the Blood Flow through a Brain Vascular Aneurysm with an Artificial Stent Using the SPH Method

机译:用SPH法用脑血管动脉瘤通过脑血管动脉瘤的数值模拟

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摘要

We present numerical simulations of blood flow through a brain vascular aneurysm with an artificial stent using Smoothed Particle Hydrodynamics (SPH). The aim of this work is to analyze how the flow into an aneurysm changes using different stent configurations. The initial conditions for the simulations were constructed from angiographic images of a real patient with an aneurysm. The wall shear stresses, pressure and highest velocity within the artery, and other particular quantities are calculated which are of medical specific interest. The numerical simulations of the cerebral circulation help doctors to determine if the patient's own vascular anatomy has the conditions to allow arterial stenting by endovascular method before the surgery or even evaluate the effect of different stent structure and materials. The results show that the flow downstream the aneurysm is highly modified by the stent configuration and that the best choice for reducing the flow in the aneurysm is to use a completely extended Endeavor stent.
机译:我们通过使用平滑的粒子流体动力学(SPH)来呈现通过脑血管动脉瘤的数值模拟脑血管动脉瘤。这项工作的目的是使用不同的支架配置来分析流入动脉瘤的流动变化。模拟的初始条件是从具有动脉瘤的真实患者的血管造影图像构建的。计算动脉内的壁剪切应力,压力和最高速度,以及其他特定数量,其具有医学特异性兴趣。脑循环的数值模拟有助于医生确定患者自身的血管解剖学是否具有允许在手术前通过血管内的动脉支出的条件,甚至评估不同支架结构和材料的效果。结果表明,动脉瘤下游的流动由支架配置高度修饰,并且降低动脉瘤中流动的最佳选择是使用完全延伸的努力支架。

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