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多重重叠裸支架技术适用于主动脉瘤修复吗?

Is Multiple Overlapping Uncovered Stents Technique Suitable for Aortic Aneurysm Repair?

作者信息

Yeow Siang Lin, Leo Hwa Liang

机构信息

Division of Research, Singapore General Hospital, Singapore.

Biomedical Engineering, National University of Singapore, Singapore.

出版信息

Artif Organs. 2018 Feb;42(2):174-183. doi: 10.1111/aor.12993. Epub 2017 Sep 11.

Abstract

A computational fluid dynamic model to assess the impact of flow-diverter device on intra-aneurysmal flow in complex aortic aneurysm from the viewpoint of hemodynamics is presented. The aim of this study is to investigate the hemodynamic effects of an endovascular flow-diverter technique using multiple overlapping uncovered stents (MOUS) in the treatment of complex aortic aneurysm involving side branch. The placement of porous barrier such as MOUS across the aneurysm alters the blood flow pattern in the aneurysm sac. Subsequently, flow diversion effect creates a natural hemodynamic environment to promote aneurysm thrombosis, thus stabilizing the aneurysm. The study revealed that intra-aneurysmal flow was reduced and low time average wall shear stress (TAWSS), high relative residence time (RRT), and high oscillatory shear index (OSI) regions were observed in the aneurysm sac. Three to four MOUS stents produced the best hemodynamic environment for the formation of thrombus, with saccular aneurysm performing better than fusiform aneurysm from the viewpoint of hemodynamics. A result also revealed that flow in the branch vessel was not compromised suggesting the capacity of preserving patency of branch vessels while at the same time stabilizing the aneurysm. Based on the hemodynamic performance of this study coupled with existing reported clinical studies, deploying three to four MOUS stents is a feasible solution to treat aneurysm with side branch, favorably for saccular shape aneurysm.

摘要

提出了一种计算流体动力学模型,从血流动力学角度评估分流装置对复杂主动脉瘤瘤内血流的影响。本研究的目的是探讨使用多个重叠裸支架(MOUS)的血管内分流技术在治疗累及侧支的复杂主动脉瘤中的血流动力学效应。在动脉瘤处放置如MOUS这样的多孔屏障会改变瘤腔内的血流模式。随后,分流效应创造了一个自然的血流动力学环境以促进动脉瘤血栓形成,从而使动脉瘤稳定。研究表明,瘤内血流减少,且在瘤腔内观察到低时间平均壁面切应力(TAWSS)、高相对停留时间(RRT)和高振荡切变指数(OSI)区域。三到四个MOUS支架产生了形成血栓的最佳血流动力学环境,从血流动力学角度来看,囊状动脉瘤比梭形动脉瘤表现更好。结果还表明分支血管内的血流未受影响,这表明在稳定动脉瘤的同时能够保持分支血管通畅。基于本研究的血流动力学性能以及现有的临床研究报道,部署三到四个MOUS支架是治疗伴有侧支的动脉瘤的可行解决方案,对囊状动脉瘤尤为有利。

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