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Scleral anisotropy and its effects on the mechanical response of the optic nerve head

机译:巩膜各向异性及其对视神经乳头机械反应的影响

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This paper presents a computational modeling study of the effects of the collagen fiber structure on the mechanical response of the sclera and the adjacent optic nerve head (ONH). A specimen-specific inverse finite element method was developed to determine the material properties of two human sclera subjected to full-field inflation experiments. A distributed fiber model was applied to describe the anisotropic elastic behavior of the sclera. The model directly incorporated wide-angle X-ray scattering measurements of the anisotropic collagen structure. The converged solution of the inverse method was used in micromechanical studies of the mechanical anisotropy of the sclera at different scales. The effects of the scleral collagen fiber structure on the ONH deformation were evaluated by progressively filtering out local anisotropic features. It was found that the majority of the midposterior sclera could be described as isotropic without significantly affecting the mechanical response of the tissues of the ONH. In contrast, removing local anisotropic features in the peripapillary sclera produced significant changes in scleral canal expansion and lamina cribrosa deformation. Local variations in the collagen structure of the peripapillary sclera significantly influenced the mechanical response of the ONH.
机译:本文提出了一种计算模型研究,研究了胶原纤维结构对巩膜和邻近视神经头(ONH)的机械反应的影响。开发了一种标本特定的逆有限元方法,以确定经过全视野充气实验的两个人巩膜的材料特性。应用分布式纤维模型描述巩膜的各向异性弹性行为。该模型直接结合了各向异性胶原结构的广角X射线散射测量。逆方法的收敛解用于不同尺度下巩膜机械各向异性的微力学研究。通过逐渐滤出局部各向异性特征,评估巩膜胶原纤维结构对ONH变形的影响。发现大多数后巩膜中膜可被描述为各向同性,而不会显着影响ONH组织的机械反应。相反,去除乳头周围巩膜的局部各向异性特征会导致巩膜管扩张和筛板变形的显着变化。乳头周围巩膜胶原结构的局部变化显着影响了ONH的机械反应。

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