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Continuum descriptions of cytoskeletal dynamics

机译:细胞骨架动力学的连续描述

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摘要

This tutorial presents an introduction into continuum descriptions of cytoskeletal dynamics. In contrast to discrete models in which each molecule keeps its identity, such descriptions are given in terms of averaged quantities per unit volume like the number density of a certain molecule. Starting with a discrete description for the assembly dynamics of cytoskeletal filaments, we derive the continuity equation, which serves as the basis of many continuum theories. We illustrate the use of this approach with an investigation of spontaneous cytoskeletal polymerization waves. Such waves have by now been observed in various cell types and might help to orchestrate cytoskeletal dynamics during cell spreading and locomotion. Our analysis shows how processes at the scale of single molecules, namely, the nucleation of new filaments and filament treadmilling, can lead to the spontaneous appearance of coherent traveling waves on scales spanning many filament lengths. For readers less familiar with calculus, we include an informal introduction to the Taylor expansion.
机译:本教程介绍了细胞骨架动力学的连续描述。与其中每个分子保持其同一性的离散模型相反,此类描述是根据每单位体积的平均数量(如某个分子的数量密度)给出的。从对细胞骨架细丝组装动力学的离散描述开始,我们得出了连续性方程,该方程用作许多连续性理论的基础。我们通过研究自发的细胞骨架聚合波来说明这种方法的使用。迄今为止,已经在各种细胞类型中观察到了此类波,这些波可能有助于协调细胞扩散和运动过程中的细胞骨架动力学。我们的分析表明,在单个分子尺度上的过程(即新细丝的成核和细丝踏磨)如何导致在跨越许多细丝长度的尺度上自发出现相干行波。对于不太了解微积分的读者,我们包括对泰勒展开式的非正式介绍。

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