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Regional and directional variations in the mechanical properties of ascending thoracic aortic aneurysms.

机译:升主动脉瘤的力学性质的区域和方向变化。

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摘要

This study aimed to assess regional and directional differences in the mechanical properties of ascending thoracic aortic aneurysms (ATAA). Whole fresh ATAA were taken from twelve patients, undergoing elective surgical repair, and cut into tissue specimens. These were divided into groups according to direction and region, and subjected to uniaxial testing beyond rupture. In the majority of tests, the inner layers of the aortic wall ruptured first; failure stress (measure of tissue strength) and peak elastic modulus (measure of tissue stiffness) were significantly higher circumferentially in all regions. Marked heterogeneity was evident in the mechanical properties of ATAA, with the anterior region longitudinally being the weakest and least stiff of all regions. No correlation was found between failure stress and ATAA diameter or patient age. Failure stress showed inverse correlations with wall thickness and direct correlations with peak elastic modulus. The current information, relating to regional anddirectional differences, may provide a better understanding of the mechanism responsible for the development of circumferential tears of the inner aortic wall layers in ATAA dissections.
机译:这项研究旨在评估胸主动脉瘤(ATAA)的力学性能的区域和方向差异。从十二名患者中取出全部新鲜的ATAA,进行选择性手术修复,然后切成组织样本。根据方向和区域将它们分为几组,并进行断裂以外的单轴测试。在大多数测试中,主动脉壁的内层首先破裂;然后破裂。在所有区域的圆周上,破坏应力(组织强度的度量)和峰值弹性模量(组织刚度的度量)均显着较高。明显的异质性在ATAA的机械性能中很明显,前部区域在纵向上是所有区域中最弱且最不硬的。在衰竭压力与ATAA直径或患者年龄之间未发现相关性。破坏应力与壁厚呈负相关,与峰值弹性模量呈正相关。当前有关区域和方向差异的信息可能会更好地理解负责ATAA解剖的主动脉内壁层周向撕裂发展的机制。

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