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覆膜血管分支处过大和过小血流导向支架的内皮化:一项体内和计算机模拟研究。

Endothelialization of over- and undersized flow-diverter stents at covered vessel side branches: An in vivo and in silico study.

作者信息

Berg Philipp, Iosif Christina, Ponsonnard Sebastien, Yardin Catherine, Janiga Gábor, Mounayer Charbel

机构信息

Department of Fluid Dynamics and Technical Flow, University of Magdeburg "Otto-von-Guericke", D-39106 Magdeburg, Germany.

Interventional Neuroradiology Department, Dupuytren University Hospital (CHU Limoges), F-87000 Limoges, France; Applied Medical Research Team (ERMA), University of Limoges, F-87000 Limoges, France.

出版信息

J Biomech. 2016 Jan 4;49(1):4-12. doi: 10.1016/j.jbiomech.2015.10.047. Epub 2015 Nov 7.

Abstract

Although flow-diverting devices are promising treatment options for intracranial aneurysms, jailed side branches might occlude leading to insufficient blood supply. Especially differences in the local stent strut compression may have a drastic influence on subsequent endothelialization. To investigate the outcome of different treatment scenarios, over- and undersized stent deployments were realized experimentally and computationally. Two Pipeline Embolization Devices were placed in the right common carotid artery of large white swine, crossing the right ascending pharyngeal artery. DSA and PC-MRI measurements were acquired pre- and post-stenting and after three months. To evaluate the stent strut endothelialization and the corresponding ostium patency, the swine were sacrificed and scanning electron microscopy measurements were carried out. A more detailed analysis of the near-stent hemodynamics was enabled by a realistic virtual stenting in combination with highly resolved Computational Fluid Dynamics simulations using case-specific boundary conditions. The oversizing resulted in an elongated stent deployment with more open stent pores, while for the undersized case a shorter deployment with more condensed pores was present. In consequence, the side branch of the first case remained patent after three months and the latter almost fully occluded. The virtual investigation confirmed the experimental findings by identifying differences between the individual velocities as well as stent shear stresses at the distal part of the ostia. The choice of flow-diverting device and the subsequent deployment strategy strongly influences the patency of jailed side branches. Therefore, careful treatment planning is required, to guarantee sufficient blood supply in the brain territories supplied those branches.

摘要

尽管血流导向装置是治疗颅内动脉瘤很有前景的选择,但被覆盖的分支可能会闭塞,导致供血不足。特别是局部支架支柱压缩的差异可能会对后续的内皮化产生重大影响。为了研究不同治疗方案的结果,通过实验和计算实现了支架过大和过小的部署。将两个Pipeline栓塞装置放置在大型白色猪的右颈总动脉中,穿过右咽升动脉。在支架置入前后以及三个月后进行了DSA和PC-MRI测量。为了评估支架支柱的内皮化和相应的开口通畅情况,处死猪并进行扫描电子显微镜测量。通过逼真的虚拟支架置入结合使用特定病例边界条件的高分辨率计算流体动力学模拟,对支架附近的血流动力学进行了更详细的分析。支架过大导致支架展开拉长,支架孔隙更开放,而支架过小的情况下,展开较短,孔隙更密集。结果,第一种情况的分支在三个月后仍保持通畅,而后者几乎完全闭塞。虚拟研究通过识别开口远端各速度以及支架剪切应力之间的差异,证实了实验结果。血流导向装置的选择和随后部署策略对被覆盖分支的通畅性有很大影响。因此,需要仔细的治疗规划,以确保在这些分支供血的脑区有足够的血液供应。

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