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CFD Modelling of Local Hemodynamics in Intracranial Aneurysms Harboring Arterial

机译:脑内动脉瘤窝窝动脉患者局部血流动力学的CFD建模

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The main cause of non-traumatic subarachnoid haemorrhage is an intracranial aneurysm's rupture. The choice of treatment approach is exceptionally difficult in cases of aneurysms with additional branches on the aneurysm's dome or neck. The impact of the arterial branches on local hemodynamics is still unclear and controversial question. At the same time, up-to-date methods of image processing and mathematical modeling provide a way to investigate the hemodynamic environment of aneurysms. The paper discusses hemodynamic aspects of aneurysms harboring arterial branch through the use of patient-specific 3D models and computational fluid dynamics (CFD) methods. The analysis showed that the presence of the arterial branches has a great influence on flow streamlines and wall shear stress, particularly for side wall aneurysm.
机译:非创伤性蛛网膜下腔出血的主要原因是颅内动脉瘤的破裂。在动脉瘤的圆顶或颈部有附加分支的动脉瘤的情况下,治疗方法的选择是特别的。动脉分支对局部血流动力学的影响仍然不清楚和有争议的问题。同时,图像处理的最新方法和数学建模提供了一种研究动脉瘤的血流动力学环境的方法。本文讨论了通过使用患者特异性的3D模型和计算流体动力学(CFD)方法来讨论窝囊窝囊的血流动力学方面。该分析表明,动脉分支的存在对流动流线和壁剪切应力有很大影响,特别是对于侧壁动脉瘤。

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