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Influence of inter-molecular interactions on the elasto-damage mechanics of collagen fibrils: A bottom-up approach towards macroscopic tissue modeling

机译:分子间相互作用对胶原原纤维弹性损伤力学的影响:从下而上的宏观组织建模方法

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摘要

In this paper, a novel modeling approach for describing the elasto-damage mechanical response of collagen fibrils is proposed. The model is developed by adopting a multiscale rationale that allows to consistently account for nanoscale mechanisms and to introduce model parameters with a clear biophysical/biochemical meaning. A detailed description of nanoscale inter-molecular interactions is considered, highlighting their great influence on fibril mechanical response. The model is successfully validated by comparisons with available data based on molecular dynamics simulations. Proposed results prove model capability to reproduce many well-established features of fibril mechanics, fully in agreement with available experimental evidence.
机译:在本文中,提出了一种新颖的建模方法来描述胶原原纤维的弹性损伤机械反应。该模型是通过采用多尺度原理开发的,该原理允许始终考虑纳米尺度的机制并引入具有明确的生物物理/生化含义的模型参数。考虑了对纳米级分子间相互作用的详细描述,突出了它们对原纤维机械反应的巨大影响。通过与基于分子动力学模拟的可用数据进行比较,成功验证了该模型。拟议的结果证明,与现有的实验证据完全吻合,模型具有再现许多原纤维力学良好特征的能力。

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