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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Mechanical determinants of epithelium thickness in early-stage embryos.
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Mechanical determinants of epithelium thickness in early-stage embryos.

机译:早期胚胎上皮厚度的机械决定因素。

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To address the fundamental question, "How is the thickness of an embryonic epithelium determined?" equations of force equilibrium are derived and used to construct a theory applicable to embryonic epithelia and other labile monolayers, including confluent cultured cells. Under typical physiological conditions, the underlying mathematical relationships can be reworked into one simple algebraic equation. The theory shows that sheet thickness is determined by mechanical interactions between microfilaments, microtubules, cell adhesion systems and in-plane loading. It also explains the perplexing negative in-plane Poisson's ratio observed in some uniaxial tensile tests of embryonic epithelia. Thickness anomalies can affect phenotype, and the equations make it possible to calculate the degree to which gene expression, signalling pathways or other factors must alter the forces at work in order to produce a specified change in sheet thicknesses. Key findings are confirmed using a cell-based finite element model.
机译:为了解决基本问题,“如何确定胚胎上皮的厚度?”推导力平衡方程,并将其用于构建适用于胚胎上皮和其他不稳定单层细胞(包括融合培养细胞)的理论。在典型的生理条件下,基本的数学关系可以重新构造为一个简单的代数方程。该理论表明,片材厚度由微丝,微管,细胞粘附系统和面内载荷之间的机械相互作用决定。这也解释了在胚胎上皮的一些单轴拉伸试验中观察到的令人困惑的负面泊松比。厚度异常会影响表型,这些方程式使得计算基因表达,信号传导途径或其他因素必须改变作用力以产生特定厚度变化的程度成为可能。使用基于单元的有限元模型可以确认关键发现。

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