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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Characterization of biomechanical properties of aged human and ovine mitral valve chordae tendineae
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Characterization of biomechanical properties of aged human and ovine mitral valve chordae tendineae

机译:老年人和绵羊二尖瓣腱索肌腱的生物力学特性表征

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The mitral Valve (MV) is a highly complex cardiac valve consisting of an annulus, anterior and posterior leaflets, chordae tendineae (chords) and two papillary muscles. The chordae tendineae mechanics play a pivotal role in proper MV function: the chords help maintain proper leaflet coaptation and rupture of the chordae tendineae due to disease or aging can lead to mitral valve insufficiency. Therefore, the aim of this study was to characterize the mechanical properties of aged human and ovine mitral chordae tendineae. The human and ovine chordal specimens were categorized by insertion location (i.e., marginal, basal and strut) and leaflet type (i.e., anterior and posterior). The results show that human and ovine chords of differing types vary largely in size but do not have significantly different elastic and failure properties. The excess fibrous tissue layers surrounding the central core of human chords added thickness to the chords but did not contribute to the overall strength of the chords. In general, the thinner marginal chords were stiffer than the thicker basal and strut chords, and the anterior chords were stiffer and weaker than the posterior chords. The human chords of all types were significantly stiffer than the corresponding ovine chords and exhibited much lower failure strains. These findings can be explained by the diminished crimp pattern of collagen fibers of the human mitral chords observed histologically. Moreover, the mechanical testing data was modeled with the nonlinear hyperelastic Ogden strain energy function to facilitate accurate computational modeling of the human MV. (C) 2016 Elsevier Ltd. All rights reserved.
机译:二尖瓣(MV)是高度复杂的心脏瓣膜,由瓣膜环,前后小叶,腱索(腱索)和两个乳头肌组成。腱索力学在适当的MV功能中起着关键作用:和弦有助于维持适当的小叶接合,并且由于疾病或衰老导致的腱索破裂可能导致二尖瓣功能不全。因此,本研究的目的是表征老年人和绵羊二尖瓣腱索肌腱的力学性能。根据插入位置(即边缘,基底和支柱)和小叶类型(即前后)对人和绵羊的弦标本进行分类。结果表明,不同类型的人和绵羊弦的大小差异很大,但弹性和破坏特性没有显着差异。围绕人和弦中央核心的多余纤维组织层增加了和弦的厚度,但没有增加和弦的整体强度。通常,较薄的边缘和弦比较厚的基础和支柱弦更硬,而前和弦比后和弦更僵硬和较弱。所有类型的人弦都比相应的绵羊弦坚硬得多,并且表现出低得多的破坏应变。这些发现可以通过组织学上观察到的人类二尖瓣弦的胶原纤维的卷曲图案减少来解释。此外,使用非线性超弹性Ogden应变能函数对机械测试数据进行建模,以促进人体MV的精确计算建模。 (C)2016 Elsevier Ltd.保留所有权利。

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