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Using cell deformation and motion to predict forces and collective behavior in morphogenesis

机译:使用细胞变形和运动来预测形态发生中的力和集体行为

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摘要

In multi-cellular organisms, morphogenesis translates processes at the cellular scale into tissue deformation at the scale of organs and organisms. To understand how biochemical signaling regulates tissue form and function, we must understand the mechanical forces that shape cells and tissues. Recent progress in developing mechanical models for tissues has led to quantitative predictions for how cell shape changes and polarized cell motility generate forces and collective behavior on the tissue scale. In particular, much insight has been gained by thinking about biological tissues as physical materials composed of cells. Here we review these advances and discuss how they might help shape future experiments in developmental biology. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在多细胞生物体中,形态发生将细胞尺度的过程转化为器官和生物的等级的组织变形。 要了解生物化学信号传导如何调节组织形式和功能,我们必须了解形状细胞和组织的机械力。 近期开发组织机械模型的进展导致了细胞形状变化如何变化和偏振细胞运动如何在组织规模上产生力和集体行为的定量预测。 特别是,通过思考生物组织作为由细胞组成的物理材料来获得许多洞察力。 在这里,我们审查了这些进展,并讨论了它们如何帮助改变未来发展生物学的实验。 (c)2016 Elsevier Ltd.保留所有权利。

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