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THE EFFECT OF FIBER MICROSTRUCTURE ON THE OBSERVED POISSON'S RATIO OF TENDON AND LIGAMENT TISSUE

机译:纤维微观结构对观察到的腰肌和韧带组织比例的影响

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During tensile testing along the predominant collagen fiber direction, ligament and tendon tissue exhibit large Poisson's ratios ranging from 1.3 in capsular ligament to 2.98 in flexor tendon. Although the microstructure of these tissues (especially fiber crimp) has been characterized, the relationship between microstructure and Poisson's ratio is relatively unexplored. There has been debate regarding the exact nature of the characteristic crimp within tendon fibers, however the two views most present in the literature arc that of planar crimp and helical crimp. The aim of this study was to perform a finite element analysis on prototypical models of fibril bundles for both forms of crimp under tensile loading conditions. It was hypothesized that planar crimp alone would be insufficient for generating large Poisson's ratios, and that some other microstructure (such as a helix) would be required.
机译:在沿主要胶原纤维方向的拉伸检测期间,韧带和肌腱组织显示出大的泊松比率从1.3英寸的尖端韧带中的比例为2.98。尽管这些组织(特别是纤维卷曲)的微观结构已经表征,但微观结构和泊松比之间的关系相对未探索。关于肌腱纤维内的特性卷曲的确切性质已经存在争论,然而,在文献中最多存在的两个视图是平面卷曲和螺旋卷曲的两个视图。本研究的目的是对抗束缚条件下两种形式卷曲的原纤维束的原型模型进行有限元分析。假设平面卷曲仅用于产生大型泊松的比率,并且需要一些其他微观结构(例如螺旋)。

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