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层状异质性对升主动脉瘤生物力学特性的影响。

Effect of layer heterogeneity on the biomechanical properties of ascending thoracic aortic aneurysms.

机构信息

Laboratory of Biomechanics, Center of Experimental Surgery, Biomedical Research Foundation of the Academy of Athens, 35, Lefkados St, Athens 15354, Greece.

出版信息

Med Biol Eng Comput. 2012 Dec;50(12):1227-37. doi: 10.1007/s11517-012-0949-x. Epub 2012 Aug 25.

Abstract

This study addressed layer-specific differences in the biomechanical response of ascending aortic aneusysms, obtained from patients during graft replacement. Tensile tests were conducted on pairs of (orthogonally directed) intimal, medial, and adventitial strips from the anterior, posterior, and two lateral quadrants. The experimental data were reduced by the Fung-type model, affording appropriate characterization of the material properties. Testing of individual layers beyond rupture disclosed their failure properties, namely their capacity to bear varying deformation and stress levels. Material parameters [Formula: see text] and [Formula: see text], specifying circumferential and longitudinal stiffness, received the highest values in the adventitia or intima and the smallest in the media, with [Formula: see text] > [Formula: see text] in every layer but the intima. Similar extensibility at failure was found among layers, whereas the adventitia was the strongest of all. Circumferentially and longitudinally directed strips from each layer did not show uniform material parameters and failure properties among regions, but most differences did not reach significance. Medial and adventitial but not intimal layers were stronger circumferentially than longitudinally. This is the first study to place emphasis on the biomechanical properties of the distinct layers of human aneurysmal aorta that may be expected to shed light into the mechanisms promoting aneurysm dissection and rupture.

摘要

本研究针对取自移植物置换期间患者的升主动脉瘤的各层之间在生物力学响应方面的差异。对取自前、后和两个侧象限的(正交定向的)内膜、中膜和外膜条对进行了拉伸测试。通过 Fung 型模型对实验数据进行了简化,从而适当描述了材料特性。在破裂之前对各个层的单独测试揭示了它们的失效特性,即它们承受不同变形和应力水平的能力。材料参数 [Formula: see text] 和 [Formula: see text],指定环向和纵向刚度,在最外层的外膜或内膜中具有最高值,在中层中具有最小值,除了内膜之外,各层中 [Formula: see text] > [Formula: see text]。在各层之间发现了相似的失效延展性,而所有层中外膜的强度最大。来自各层的环向和纵向定向条带在区域之间并没有显示出均匀的材料参数和失效特性,但大多数差异没有达到显著性。中膜和外膜,但不是内膜,环向比纵向更强。这是第一项强调人动脉瘤主动脉不同层的生物力学特性的研究,这些特性有望揭示促进动脉瘤夹层和破裂的机制。

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