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斑马鱼原肠胚形成过程中细胞插入的表面张力和建模。

Surface tension and modeling of cellular intercalation during zebrafish gastrulation.

机构信息

Department of Mathematics and Statistics, California State University, Holt Hall 181, Chico, CA 95929, United States.

出版信息

Math Biosci Eng. 2010 Apr;7(2):259-75. doi: 10.3934/mbe.2010.7.259.

Abstract

In this paper we discuss a model of zebrafish embryo notochord development based on the effect of surface tension of cells at the boundaries. We study the process of interaction of mesodermal cells at the boundaries due to adhesion and cortical tension, resulting in cellular intercalation. From in vivo experiments, we obtain cell outlines of time-lapse images of cell movements during zebrafish embryo development. Using Cellular Potts Model, we calculate the total surface energy of the system of cells at different time intervals at cell contacts. We analyze the variations of total energy depending on nature of cell contacts. We demonstrate that our model can be viable by calculating the total surface energy value for experimentally observed configurations of cells and showing that in our model these configurations correspond to a decrease in total energy values in both two and three dimensions.

摘要

本文基于细胞边界表面张力的影响,讨论了斑马鱼胚胎脊索发育的模型。我们研究了由于黏附和皮质张力,边界处中胚层细胞之间的相互作用过程,导致细胞插入。从体内实验中,我们获得了斑马鱼胚胎发育过程中细胞运动的延时图像的细胞轮廓。使用细胞 Potts 模型,我们在不同的时间间隔计算细胞接触处细胞系统的总表面能。我们分析了总能量随细胞接触性质的变化。我们通过计算实验观察到的细胞构型的总表面能值,并证明在我们的模型中,这些构型对应于二维和三维总能量值的降低,证明了我们的模型是可行的。

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