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A computational remodeling approach to predict the physiological architecture of the collagen fibril network in corneo-scleral shells

机译:一种计算重塑方法,可预测角膜巩膜壳中胶原纤维网络的生理结构

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摘要

Organized collagen fibrils form complex networks that introduce strong anisotropic and highly nonlinear attributes into the constitutive response of human eye tissues. Physiological adaptation of the collagen network and the mechanical condition within biological tissues are complex and mutually dependent phenomena. In this contribution, a computational model is presented to investigate the interaction between the collagen fibril architecture and mechanical loading conditions in the corneo-scleral shell. The biomechanical properties of eye tissues are derived from the single crimped fibril at the micro-scale via the collagen network of distributed fibrils at the meso-scale to the incompressible and anisotropic soft tissue at the macro-scale. Biomechanically induced remodeling of the collagen network is captured on the meso-scale by allowing for a continuous re-orientation of preferred fibril orientations and a continuous adaptation of the fibril dispersion. The presented approach is applied to a numerical human eye model considering the cornea and sclera. The predicted fibril morphology correlates well with experimental observations from X-ray scattering data.
机译:有组织的胶原蛋白原纤维形成复杂的网络,将强大的各向异性和高度非线性的属性引入人眼组织的本构反应。胶原蛋白网络的生理适应性和生物组织内的机械状态是复杂且相互依赖的现象。在这一贡献中,提出了一个计算模型来研究胶原纤维结构和角膜-巩膜壳中机械负荷条件之间的相互作用。眼组织的生物力学特性是从微观尺度上的单根卷曲原纤维,通过介观尺度上的分布原纤维的胶原蛋白网络到宏观尺度上不可压缩且各向异性的软组织而获得的。通过允许优选的原纤维取向的连续重新取向和原纤维分散体的连续适应,在中尺度上捕获了胶原网络的生物力学诱导的重塑。提出的方法应用于考虑角膜和巩膜的数字人眼模型。预测的原纤维形态与来自X射线散射数据的实验观察结果非常相关。

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