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首页> 外文期刊>Mechanics research communications >Surface effect on buckling of microtubules in living cells using first-order shear deformation shell theory and standard linear solid model
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Surface effect on buckling of microtubules in living cells using first-order shear deformation shell theory and standard linear solid model

机译:采用一阶剪切变形壳理论和标准线性实体模型对活细胞中微管屈曲的表面影响

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In this paper, an orthotropic elastic shell model is developed for the buckling analysis of protein microtubules subjected to an axial force in living cells. Surface effects are taken into consideration based on the Gurtin-Murdoch elasticity theory. To incorporate the small scale effects, the nonlocal elasticity theory is also used. The influences of the viscoelastic surrounding cytoplasm are taken into account employing standard linear solid model. The governing differential equations are derived using the first-order shear deformation theory and the principle of virtual work. A numerical solution is obtained for the governing equations by employing differential quadrature method. To verify the accuracy of the numerical results, the present results for the axial buckling of microtubules stabilized with microtubule-associated proteins and taxol are compared with those of experimental observations in the literature. It is found that the orthotropic shell model with both surface and nonlocal effects can describe the buckling behavior of microtubules accurately, while the nonlocal shell model without surface effects fails to predict the buckling loads. (C) 2018 Published by Elsevier Ltd.
机译:在本文中,开发了正交弹性壳模型,用于对活细胞轴向轴向力进行蛋白质微管的屈曲分析。基于Gurtin-Murdoch弹性理论考虑表面效应。为了纳入小规模效应,还使用非局部弹性理论。采用标准线性固体模型考虑了粘弹性周围细胞质的影响。使用一阶剪切变形理论和虚拟工作原理导出控制微分方程。通过采用差分正交方法获得用于控制方程的数值溶液。为了验证数值结果的准确性,与文献中的实验观察结果进行比较稳定用微管相关蛋白质和紫杉醇的微管稳定的显微管屈曲的本结果。发现具有表面和非局部效应的正交壳模型可以准确地描述微管的屈曲行为,而没有表面效应的非局部壳模型无法预测屈曲负载。 (c)2018由elestvier有限公司出版

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