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A nonlinear elastic description of cell preferential orientations over a stretched substrate

机译:在拉伸基板上的小区优先取向的非线性弹性描述

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The active response of cells to mechanical cues due to their interaction with the environment has been of increasing interest, since it is involved in many physiological phenomena, pathologies, and in tissue engineering. In particular, several experiments have shown that, if a substrate with overlying cells is cyclically stretched, they will reorient to reach a well-defined angle between their major axis and the main stretching direction. Recent experimental findings, also supported by a linear elastic model, indicated that the minimization of an elastic energy might drive this reorientation process. Motivated by the fact that a similar behaviour is observed even for high strains, in this paper we address the problem in the framework of finite elasticity, in order to study the presence of nonlinear effects. We find that, for a very large class of constitutive orthotropic models and with very general assumptions, there is a single linear relationship between a parameter describing the biaxial deformation and cos(2) theta(eq), where theta(eq) is the orientation angle of the cell, with the slope of the line depending on a specific combination of four parameters that characterize the nonlinear constitutive equation. We also study the effect of introducing a further dependence of the energy on the anisotropic invariants related to the square of the Cauchy-Green strain tensor. This leads to departures from the linear relationship mentioned above, that are again critically compared with experimental data.
机译:由于它们与环境的相互作用,细胞对机械提示的主动响应已经增加了兴趣,因为它涉及许多生理现象,病理和组织工程。特别地,若干实验表明,如果具有覆盖电池的基板循环拉伸,它们将重新定位以达到其主轴和主拉伸方向之间的明确尺寸的角度。最近的实验结果,也由线性弹性模型支撑,表明弹性能量的最小化可能会驱动这种重新定位过程。由于甚至高菌株观察到类似的行为,在本文中,我们在有限弹性框架中解决了问题,以研究非线性效应的存在。我们发现,对于一类非常大的本构正式模型和非常一般的假设,在描述双轴变形和COS(2)θ(EQ)的参数之间存在单线关系,其中Theta(EQ)是定向细胞的角度,具有线的斜率,取决于四个参数的特定组合,其表征非线性本构方程。我们还研究了引入能量进一步依赖于与Cauchy-绿色菌株张量的平方相关的各向异性不变性的效果。这导致偏离上述线性关系,与实验数据相比重新统治。

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