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首页> 外文期刊>Advances in Mechanical Engineering >Hemodynamics Modeling and Simulation of Anterior Communicating Artery Aneurysms
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Hemodynamics Modeling and Simulation of Anterior Communicating Artery Aneurysms

机译:前交通动脉瘤的血流动力学建模与仿真

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摘要

It is a general agreement that hemodynamics plays very important role in the initiation, growth, and rupture of cerebral aneurysms and hemodynamics in the anterior communicating artery aneurysms is considered the most complex in all cerebral aneurysms and it is difficult to find some reasonable relationship between the hemodynamics parameters and the rupture risk. In this paper, the 3D geometries of four anterior communicating artery aneurysms were generated from the CTA data and the computational models with bilateral feeding arteries for the four aneurysms were constructed. The blood flow was simulated by computational fluid dynamics software and the hemodynamics parameters such as velocity, wall shear stress, and oscillatory shear index were calculated. The following results were observed: one of the four models only needs the left feeding artery; the max normalized wall shear stress locates at the aneurysmal neck of the largest aneurysm; themax oscillatory shear index locates at the aneurysmal sac of the largest aneurysm. The conclusion was drawn that the anterior communicating artery aneurysm has higher rupture risk from the hemodynamics viewpoint if the max wall shear stress locates at the neck and the max oscillatory shear index locates at the dome.
机译:人们普遍认为,血流动力学在脑动脉瘤的发生,发展和破裂中起着非常重要的作用,而在前交通动脉瘤中血流动力学被认为是所有脑动脉瘤中最复杂的,很难找到两者之间的合理关系。血液动力学参数和破裂风险。本文从CTA数据中生成了四个前交通动脉瘤的3D几何形状,并构建了带有双侧进食动脉的四个动脉瘤的计算模型。用计算流体动力学软件模拟血流并计算血流动力学参数,例如速度,壁切应力和振荡剪切指数。观察到以下结果:四个模型之一仅需要左饲动脉;最大归一化壁切应力位于最大动脉瘤的动脉瘤颈部。最大振荡剪切指数位于最大动脉瘤的动脉瘤囊中。得出的结论是,如果最大壁切应力位于颈部而最大振荡剪切指数位于穹me处,则从血液动力学角度来看,前交通动脉瘤具有较高的破裂风险。

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