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首页> 外文期刊>World neurosurgery >Hemodynamic analysis of growing intracranial aneurysms arising from a posterior inferior cerebellar artery
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Hemodynamic analysis of growing intracranial aneurysms arising from a posterior inferior cerebellar artery

机译:小脑后下动脉引起的颅内动脉瘤的血流动力学分析

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摘要

Objective: The role of hemodynamics in the growth of intracranial aneurysms is not completely clear. We present a hemodynamic study with two adjacent unruptured aneurysms arising from one parent artery but growing in different ways. This study aimed to investigate whether there were differences in hemodynamic characteristics between the two growing aneurysms. Methods: A 62-year-old female patient presented with six unruptured intracranial aneurysms. Catheter angiography at 6-month intervals revealed that two aneurysms located adjacently at the right posterior inferior cerebellar artery were growing over a 1-year period. Three-dimensional aneurysm geometries were acquired via rotational angiography. Computational fluid dynamic simulations were conducted on the 3D aneurysm geometries under patient-specific pulsatile flow conditions that were measured by magnetic resonance velocimetry. Results: The proximal multilobular aneurysm demonstrated high flow and physiological levels of wall shear stress (WSS) in the region of growth, whereas the distal rounded aneurysm had low flow and low WSS in the growing sac. Conclusion: Growing aneurysms can have heterogeneous hemodynamic and morphologic characteristics and different growing patterns. Growing regions of an aneurysm could be exposed to either high WSS at the inflow zone or low WSS and high oscillatory shear in the aneurysm sac.
机译:目的:血流动力学在颅内动脉瘤生长中的作用尚不完全清楚。我们提出了一项血流动力学研究,其中有两条相邻的未破裂的动脉瘤起源于一条亲代动脉,但以不同的方式生长。这项研究旨在调查两个正在生长的动脉瘤之间的血流动力学特征是否存在差异。方法:一名62岁的女性患者出现了6例颅内动脉瘤未破裂。六个月一次的导管血管造影显示,在小脑右后下动脉附近相邻的两个动脉瘤在1年的时间内不断生长。通过旋转血管造影获得三维动脉瘤的几何形状。在患者特定的脉动血流条件下,通过磁共振测速仪对3D动脉瘤的几何形状进行了计算流体动力学模拟。结果:近端多叶动脉瘤在生长区域表现出高流量和生理水平的壁切应力(WSS),而远端圆形动脉瘤在生长囊中具有低流量和低WSS。结论:生长的动脉瘤可具有异质的血流动力学和形态学特征以及不同的生长方式。动脉瘤的生长区域可能会在流入区暴露于高WSS,或者在动脉瘤囊中暴露于低WSS和高振荡剪切。

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