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CFD and PIV analysis of hemodynamics in a growing intracranial aneurysm

机译:CFD和PIV分析颅内动脉瘤的血流动力学

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Hemodynamics is thought to be a fundamental factor in the formation, progression, and rupture of cerebral aneurysms. Understanding these mechanisms is important to improve their rupture risk assessment and treatment. In this study, we analyze the blood flow field in a growing cerebral aneurysm using experimental particle image velocimetry (PIV) and computational fluid dynamics (CFD) techniques. Patient-specific models were constructed from longitudinal 3D computed tomography angiography images acquired at 1-y intervals. Physical silicone models were constructed from the computed tomography angiography images using rapid prototyping techniques, and pulsatile flow fields were measured with PIV. Corresponding CFD models were created and run under matching flow conditions. Both flow fields were aligned, interpolated, and compared qualitatively by inspection and quantitatively by defining similarity measures between the PIV and CFD vector fields. Results showed that both flow fields were in good agreement. Specifically, both techniques provided consistent representations of the main intra-aneurysmal flow structures and their change during the geometric evolution of the aneurysm. Despite differences observed mainly in the near wall region, and the inherent limitations of each technique, the information derived is consistent and can be used to study the role of hemodynamics in the natural history of intracranial aneurysms.
机译:血流动力学被认为是脑动脉瘤形成,发展和破裂的基本因素。了解这些机制对于改善其破裂风险评估和治疗很重要。在这项研究中,我们使用实验粒子图像测速(PIV)和计算流体力学(CFD)技术分析了正在生长的脑动脉瘤中的血流场。根据以1 y间隔获取的纵向3D计算机断层扫描血管造影图像构建患者特定模型。使用快速原型技术从计算机断层扫描血管造影图像构建物理有机硅模型,并用PIV测量搏动流场。创建了相应的CFD模型,并在匹配的流量条件下运行。通过定义PIV和CFD矢量场之间的相似性度量,通过检查和定量对两个流场进行对齐,内插和定性比较。结果表明,两个流场吻合良好。具体而言,两种技术都提供了主要动脉瘤内血流结构及其在动脉瘤几何演变过程中变化的一致表示。尽管主要在近壁区域观察到差异,并且每种技术固有的局限性,但所获得的信息是一致的,可用于研究血流动力学在颅内动脉瘤自然病史中的作用。

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