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Hemodynamic Change In A Cerebral Aneurysm Treated By Double Stenting Technique

机译:双重支架技术治疗脑动脉血流动力学变化

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Rupture of cerebral aneurysms often causes subarachnoid hemorrhage which is a life-threatening condition with high mortality rates. Larger aneurysms are believed to be more likely to rupture and should therefore be treated. Recently, flow diverters (FDs) are widely used to treat large or wide neck aneurysms. However, it can be difficult to treat them by deployment of a single FD because of its insufficient flow disturbance. To overcome this problem, double stenting technique is sometimes applied with the aim to improve the effect of blood velocity reduction. In this study, we used computational fluid dynamics (CFD) to investigate the hemodynamic changes in an aneurysm when deploying virtual FDs. The results showed that the characteristics of the blood flow field inside the aneurysm did not changed much after the deployment of a single FD but underwent a large change after the deployment of two FDs. Furthermore, the velocity reduction in the aneurysm sac at a plane away from the parent artery increased from 25.9% to 92.8% when two FDs were deployed instead of one compared to no stenting. Double stenting was effective to decrease blood velocity in large or wide neck aneurysms.
机译:脑动脉瘤破裂常引起蛛网膜下腔出血,这是威胁生命的疾病,死亡率很高。较大的动脉瘤被认为更可能破裂,因此应予以治疗。最近,分流器(FDs)被广泛用于治疗大颈或宽颈动脉瘤。但是,由于其流动干扰不足,可能难以通过部署单个FD来对其进行处理。为了克服这个问题,有时为了提高血流速度降低的效果而采用了双支架置入技术。在这项研究中,我们使用计算流体动力学(CFD)来研究部署虚拟FD时动脉瘤的血液动力学变化。结果表明,在单个FD展开后,动脉瘤内部的血流场特征没有太大变化,而在两个FD展开后发生了很大的变化。此外,与没有支架相比,当部署两个FD而不是一个FD时,在远离父动脉的平面上动脉瘤囊的速度降低从25.9%增加到92.8%。在大颈或宽颈动脉瘤中,双支架置入术可有效降低血流速度。

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