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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >An affine micro-sphere-based constitutive model, accounting for junctional sliding, can capture F-actin network mechanics
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An affine micro-sphere-based constitutive model, accounting for junctional sliding, can capture F-actin network mechanics

机译:基于仿射微球的本构模型,说明了连接滑动,可以捕获F-肌动蛋白网络力学

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摘要

Actin filaments are a major component of the cytoskeleton and play a crucial role in cell mechanotransduction. F-actin networks can be reconstituted in vitro and their mechanical behaviour has been studied experimentally. Constitutive models that assume an idealised network structure, in combination with a non-affine network deformation, have been successful in capturing the elastic response of the network. In this study, an affine network deformation is assumed, in which we propose an alternative 3D finite strain constitutive model. The model makes use of a micro-sphere to calculate the strain energy density of the network, which is represented as a continuous distribution of filament orientations in space. By incorporating a simplified sliding mechanism at the filament-to-filament junctions, premature filament locking, inherent to affine network deformation, could be avoided. The model could successfully fit experimental shear data for a specific cross-linked F-actin network, demonstrating the potential of the novel model.
机译:肌动蛋白丝是细胞骨架的主要组成部分,在细胞机械转导中起着至关重要的作用。 F-肌动蛋白网络可以在体外重建,其力学行为已通过实验研究。假定理想网络结构的本构模型与非仿射网络变形相结合,已经成功地捕获了网络的弹性响应。在这项研究中,假设一个仿射网络变形,在此我们提出了另一种3D有限应变本构模型。该模型利用微球体来计算网络的应变能密度,该能量密度表示为空间中细丝取向的连续分布。通过在细丝与细丝的连接处加入简化的滑动机构,可以避免仿射网络变形所固有的过早的细丝锁定。该模型可以成功拟合特定交联的F-肌动蛋白网络的实验剪切数据,证明了该新型模型的潜力。

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