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首页> 外文期刊>Zeitschrift fur Angewandte Mathematik und Mechanik >Modeling the biomechanics of the human cornea accounting for local variations of the collagen fibril architecture
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Modeling the biomechanics of the human cornea accounting for local variations of the collagen fibril architecture

机译:建模人体角膜的生物力学核算胶原纤维建筑局部变化

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摘要

We present a finite element model of the human cornea describing the in-plane organization of the stromal collagen, modified variously to include features of the collagen architecture. We investigate numerically the implication of the local organization of collagen in the stroma on the response of the human cornea to mechanical tests. We compare four different models by simulating three ideal mechanical tests, i. e., the ex-vivo inflation test, the in-vivo probe indentation, and the in-vivo air puff tests. Numerical results show slight differences between the models in terms of global response and stress distribution. Differences in the overall mechanical response are observed in dynamic tests, while quasi-static tests are not able to differentiate between the models. Stress distributions differ markedly when a variation of the shear stiffness across the thickness is considered. We conclude that the actual architecture of the collagen across the thickness of the cornea or at the limbus has a minor relevance from the mechanical point of view with respect to the main anisotropic orthogonal collagen structure that has been considered and acknowledged in the literature.
机译:我们介绍了描述了描述基质胶原面内组织的人体角膜的有限元模型,以包括胶原架构的特征。我们在数值上调查局部胶原蛋白局部组织的含义对人体角膜对机械测试的反应。我们通过模拟三种理想的机械测试来比较四种不同的型号,i。即,前体内通胀试验,体内探针压痕,以及体内空气泡芙测试。数值结果在全局响应和应力分布方面显示了模型之间的略有差异。在动态测试中观察到整体机械响应的差异,而准静态测试不能区分模型。当考虑厚度过度的剪切刚度的变化时,应力分布显着不同。我们得出结论,基角膜或缘象厚度的胶原的实际架构与在文献中被考虑和承认的主要各向异性正交胶原结构的机械观点具有微小的相关性。

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