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WALL STRESSES BEFORE AND AFTER ENDOVASCULAR REPAIR OF ABDOMINAL AORTIC ANEURYSMS

机译:腹主动脉瘤的血管内修复前后壁应力

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摘要

Endovascular aneurysm repair (EVAR) technique is a minimally invasive procedure approach to abdominal aortic aneurysm (AAA) repair. Following EVAR, isolated aortic tissue starts remodeling after the new blood path is established. The commercially available endovascular grafts (EVG) have been found to be prone to Type Ⅰ endoleak, which is re-pressurization of the degenerated AAA sac following a breach in the seal mechanism of the EVG or migration due to failure of the mechanism holding the graft in place (Chuter, 2002) These inadequacies of EVGs might be attributed to the effect of non-optimal design of graft anchoring system. In the present study, we utilized pre-operative and postoperative computer tomography (CT) data with previously derived material properties to construct three-dimensional finite element (FE) models for AAA before and after the EVAR procedure. We studied the nature of stresses acting on the aorta before and after EVAR. In particular we investigated the physical forces acting on the EVG and how they are transferred to the aortic wall at graft anchoring sites.
机译:血管内动脉瘤修复(EVAR)技术是一种微创手术方法,用于修复腹主动脉瘤(AAA)。在EVAR之后,新的血液通路建立后,孤立的主动脉组织开始重塑。已发现市售的血管内移植物(EVG)易于发生Ⅰ型内漏,这是由于EVG的密封机制破裂或由于固定移植物的机制失败而导致的迁移,导致变性AAA囊重新加压到位(Chuter,2002)EVG的这些不足可能归因于移植物锚固系统的非最佳设计。在本研究中,我们利用术前和术后计算机断层扫描(CT)数据以及先前获得的材料特性,为EVAR手术前后的AAA构建了三维有限元(FE)模型。我们研究了在EVAR之前和之后作用于主动脉上的应力的性质。特别是,我们研究了作用在EVG上的物理力以及它们如何在移植物锚定位点转移至主动脉壁。

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