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A dynamic cell model for the formation of epithelial tissues

机译:上皮组织形成的动态细胞模型

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摘要

A dynamic model is proposed for monolayered epithelial tissue, in which the monolayer is assumed to consist of prismatic cells, so that the system is described as a two-dimensional polygonal pattern. Its dynamic behaviour is determined by equations of motion for vertices in the polygonal pattern and elementary change in the system (change in the connection of vertex pairs). The vertices are driven by the sum of interfacial tension on cell boundaries and the resistance force against the deformation of cells. It is shown by computer simulations that our model possesses the characteristics of epithelial tissue, that is it has a mechanism which makes the edge number and size of a cell uniform and the shape symmetric. This mechanism finally gives rise to a regular polygonal pattern similar to a honeycomb pattern, even though initial patterns have large variations. Local equilibrium dynamics under which the size of each cell is flexibly adapted to its local environment are compared with non-local equilibrium dynamics. The local equilibrium dynamics produce more natural cellular patterns. [References: 10]
机译:针对单层上皮组织提出了动态模型,其中单层被认为由棱柱形细胞组成,因此该系统被描述为二维多边形图案。它的动态行为由多边形图案中的顶点的运动方程和系统中的基本变化(顶点对的连接变化)决定。顶点由单元边界上的界面张力和抵抗单元变形的阻力之和所驱动。通过计算机模拟表明,我们的模型具有上皮组织的特征,即它具有使细胞的边缘数量和大小均匀且形状对称的机制。这种机制最终会产生类似于蜂窝状图案的规则多边形图案,即使初始图案的变化很大。将每个单元格的大小灵活地适应其局部环境的局部平衡动力学与非局部平衡动力学进行比较。局部平衡动力学产生更自然的细胞模式。 [参考:10]

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