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Tensegrity Structures with Buckling Members Explain Nonlinear Stiffening and Reversible Softening of Actin Networks

机译:具有屈曲成员的张力结构解释了肌动蛋白网络的非线性加劲和可逆软化

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In this paper, a three-member tensegrity structure is used as a conceptual model for the dendritic actin network in living cells. The pre and postbuckling behavior of the tensegrity is analyzed basing on the energy method. Analytical simulations are carried out on the tensegrity by using the experimentally obtained scales and mechanic properties of actin-filaments for the structural members of the tensegrity. The model exhibits a stress stiffening regime followed by a stress softening regime in the load-stiffness relationship, which qualitatively tallies with the experimentally observed response of actin networks. Due to the simplicity of the model, there is only a single compressed member and the structure buckles abruptly, which results a softening regime much steeper than that observed in the actin network. To take the member length variety into account, we propose a conceptual large-scale tensegrity system with various member lengths, and its behavior is approximately estimated by the mean response of a large number of three-member tensegrity cells with their member length varying in the range of filament lengths. The obtained mean response exhibits a much better fitness to the response of actin networks than those exhibited by the single tensegrity model. The findings reported in this paper indicate that the dendritic actin network may work as a complex tensegrity system, when it is subjected to a stress.
机译:在本文中,三元张力结构用作活细胞中树突状肌动蛋白网络的概念模型。基于能量法分析了张力的屈曲前后行为。通过使用实验获得的张力和肌动蛋白丝的力学特性对张力的结构构件进行张力模拟分析。该模型在载荷-刚度关系中表现出一种应力硬化机制,然后是应力软化机制,定性地与实验观察到的肌动蛋白网络反应相吻合。由于模型的简单性,只有一个压缩构件,并且结构突然弯曲,这导致的软化状态比肌动蛋白网络中观察到的陡峭得多。为了考虑成员长度的变化,我们提出了一个具有不同成员长度的概念性大规模张力系统,并且其行为是通过大量三成员张力细胞的平均响应来近似估计的,这些成员的成员长度在灯丝长度范围。与单一张力模型所显示的结果相比,所获得的平均反应对肌动蛋白网络的反应具有更好的适应性。本文报道的发现表明,当受到压力时,树状肌动蛋白网络可能作为复杂的张力系统起作用。

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