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首页> 外文期刊>Journal of Theoretical Biology >An elasto-visco-plastic model of cell aggregates.
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An elasto-visco-plastic model of cell aggregates.

机译:细胞聚集体的弹黏塑性模型。

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摘要

Concentrated cell suspensions exhibit different mechanical behavior depending on the mechanical stress or deformation they undergo. They have a mixed rheological nature: cells behave elastically or viscoelastically, they can adhere to each other whereas the carrying fluid is usually Newtonian. We report here on a new elasto-visco-plastic model which is able to describe the mechanical properties of a concentrated cell suspension or aggregate. It is based on the idea that the rearrangement of adhesion bonds during the deformation of the aggregate is related to the existence of a yield stress in the macroscopic constitutive equation. We compare the predictions of this new model with five experimental tests: steady shear rate, oscillatory shearing tests, stress relaxation, elastic recovery after steady prescribed deformation, and uniaxial compression tests. All of the predictions of the model are shown to agree with these experiments.
机译:浓缩的细胞悬浮液根据其承受的机械应力或变形表现出不同的机械性能。它们具有混合的流变性质:细胞具有弹性或粘弹性,可以相互粘附,而携带的流体通常是牛顿的。我们在这里报告了一个新的弹-粘塑性模型,该模型能够描述浓缩细胞悬浮液或聚集体的机械性能。基于这样的想法,在骨料变形期间粘合键的重排与宏观本构方程中屈服应力的存在有关。我们将这个新模型的预测与五个实验测试进行了比较:稳态剪切速率,振荡剪切测试,应力松弛,稳态规定变形后的弹性恢复以及单轴压缩测试。该模型的所有预测均显示与这些实验一致。

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