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Viscoelastic Response of Neurofilaments: An Atomistic Simulation Approach

机译:神经丝的粘弹性响应:一种原子模拟方法

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摘要

Existent literature has limitations regarding the mechanical behavior of axonal cytoskeletal components in a high strain rate scenario, which is mainly due to limitations regarding the structure of some components such as tau protein and neurofilaments (NF). This study performs molecular dynamics (MD) simulations on NFs to extract their strain rate-dependent behavior. It is found that they are highly stretchable and show multiple stages of unfolding. Furthermore, NFs show high tensile stiffness. Also, viscoelastic modeling shows that they correspond to simplified viscoelastic models. This study effectively enhances the existent axonal models focusing on axonal injury.
机译:现有文献对轴突细胞骨架成分在高应变率情况下的机械行为存在局限性,这主要是由于某些成分(如tau蛋白和神经丝(NF))的结构存在局限性。本研究对NFs进行分子动力学(MD)模拟,以提取其应变速率依赖行为。结果发现,它们具有高度的可拉伸性,并显示出展开的多个阶段。此外,NF表现出高拉伸刚度。此外,粘弹性建模表明它们对应于简化的粘弹性模型。本研究有效地增强了现有的轴突模型,重点关注轴突损伤。

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