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VALIDATION OF CEREBRAL BLOOD FLOW IN INTRACRANIAL ANEURYSMS: CFD VERSUS 7 TESLA 4D PC-MRI

机译:颅内动脉瘤中脑血流量的验证:CFD与7特斯拉4D PC-MRI

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The number of numerical studies predicting blood flow in intracranial aneurysms is rapidly increasing over the last years. Due to a high spatial as well as temporal resolution, computational fluid dynamics (CFD) approaches offer a high potential to investigate flow interaction within the human vascular system. However, state-of-the-art methods still underlie several assumptions, e.g., rigid vessel walls, analytical boundary conditions or the consideration of blood as a single-phase continuous fluid. In consequence, the acceptance of CFD is still limited among a majority of physicians [1]. In order to overcome these reasonable doubts, simulations need to be validated via experiments. Therefore, two patient-specific intracranial aneurysms were measured by means of 7-Tesla magnetic resonance imaging (MRI). Afterwards, highly resolved numerical simulations were carried out and the peak-systolic velocity fields compared in a qualitative manner.
机译:预测颅内动脉瘤中血流的数值研究的数量在过去几年中迅速增加。由于高空间和时间分辨率,计算流体动力学(CFD)方法提供了高潜力,以研究人血管系统内的流动相互作用。然而,最先进的方法仍然利用了几种假设,例如刚性血管壁,分析边界条件或血液作为单相连续流体的考虑。结果,粮食委员会的接受仍然有限于大多数医生[1]。为了克服这些合理的疑虑,需要通过实验进行验证。因此,通过7-Tesla磁共振成像(MRI)测量两种患者特异性颅内动脉瘤。之后,以定性方式进行高度解决的数值模拟和峰收缩速度场。

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