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Cyclic hardening in bundled actin networks

机译:捆绑肌动蛋白网络中的循环硬化

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Nonlinear deformations can irreversibly alter the mechanical properties of materials. Most soft materials, such as rubber and living tissues, display pronounced softening when cyclically deformed. Here we show that, in contrast, reconstituted networks of crosslinked, bundled actin filaments harden when subject to cyclical shear. As a consequence, they exhibit a mechano-memory where a significant stress barrier is generated at the maximum of the cyclic shear strain. This unique response is crucially determined by the network architecture: at lower crosslinker concentrations networks do not harden, but soften showing the classic Mullins effect known from rubber-like materials. By simultaneously performing macrorheology and confocal microscopy, we show that cyclic shearing results in structural reorganization of the network constituents such that the maximum applied strain is encoded into the network architecture.. ? 2010 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:非线性变形会不可逆地改变材料的机械性能。大多数软性材料(例如橡胶和活体组织)在周期性变形时会表现出明显的软化。相比之下,这里我们显示,交联的,捆绑的肌动蛋白丝的重构网络在受到周期性剪切时会变硬。结果,它们表现出机械记忆,其中在最大循环剪切应变时产生显着的应力屏障。这种独特的反应关键取决于网络体系结构:在较低的交联剂浓度下,网络不会变硬,但会变软,显示出类似橡胶的材料所具有的经典穆林斯效应。通过同时进行宏观流变学和共聚焦显微镜,我们发现循环剪切导致网络成分的结构重组,从而将最大施加应变编码到网络体系结构中。 2010 Nature Publishing Group,Macmillan Publishers Limited的子公司。版权所有。

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