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Does the Knowledge of the Local Thickness of Human Ascending Thoracic Aneurysm Walls Improve Their Mechanical Analysis?

机译:人体上升胸动脉瘤壁局部厚度的知识是否能改善其力学分析?

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摘要

Ascending thoracic aortic aneurysm (ATAA) ruptures are life threatening phenomena which occur in local weaker regions of the diseased aortic wall. As ATAAs are evolving pathologies, their growth represents a significant local remodeling and degradation of the microstructural architecture and thus their mechanical properties. To address the need for deeper study of ATAAs and their failure, it is required to analyze the mechanical behavior at the sub-millimeter scale by making use of accurate geometrical and kinematical measurements during their deformation. For this purpose, we propose a novel methodology that combined an accurate tool for thickness distribution measurement of the arterial wall, digital image correlation to assess local strain fields and bulge inflation to characterize the physiological and failure response of flat unruptured human ATAA specimens. The analysis of the heterogeneity of the local thickness and local physiological stress and strain was carried out for each investigated subject. At the subject level, our results state the presence of a non-consistent relationship between the local wall thickness and the local physiological strain field and high heterogeneity of the variables. At the inter-subject level, thicknesses were studied in relation to physiological strain and stress and load at rupture. The rupture pressure was correlated with neither the average thickness nor the lowest thickness of the specimens. Our results confirm that intrinsic material strength (hence structure) differs a lot from a subject to another and even within the same subject.
机译:升主动脉瘤破裂(ATAA)是威胁生命的现象,发生在患病主动脉壁的局部较弱区域。随着ATAA病理学的发展,它们的生长代表了微结构结构的重大局部重塑和降解,因此也代表了其机械性能。为了满足对ATAA及其失效进行更深入研究的需求,需要在变形过程中利用精确的几何和运动学测量来分析亚毫米级的机械行为。为此,我们提出了一种新颖的方法,该方法结合了用于测量动脉壁厚度分布的精确工具,数字图像相关性以评估局部应变场和膨胀膨胀,以表征平坦的未破裂人类ATAA标本的生理和衰竭反应。对每个研究对象进行局部厚度和局部生理应力和应变的异质性分析。在主题水平上,我们的结果表明,局部壁厚和局部生理应变场之间存在不一致的关系,并且变量的异质性很高。在受试者间水平上,研究了与生理应变以及破裂时的应力和负荷有关的厚度。破裂压力与样品的平均厚度或最低厚度都不相关。我们的结果证实,内在的材料强度(因此结构)在一个主题之间甚至与同一主题之间差异很大。

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