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Mathematical models of cell colonization of uniformly growing domains

机译:均匀生长域的细胞定殖的数学模型

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摘要

During the development of vertebrate embryos, cell migrations occur on an underlying tissue domain in response to some factor, such as nutrient. Over the time scale of days in which this cell migration occurs, the underlying tissue is itself growing. Consequently cell migration and colonization is strongly affected by the tissue domain growth. Numerical solutions for a mathematical model of chemotactic migration with no domain growth can lead to travelling waves of cells with constant velocity; the addition of domain growth can lead to travelling waves with nonconstant velocity. These observations suggest a mathematical approximation to the full system equations, allowing the method of characteristics to be applied to a simplified chemotactic migration model. The evolution of the leading front of the migrating cell wave is analysed. Linear, exponential and logistic uniform domain growths are considered. Successful colonization of a growing domain depends on the competition between cell migration velocity and the velocity and form of the domain growth, as well as the initial penetration distance of the cells. In some instances the cells will never successfully colonize the growing domain. These models provide an insight into cell migration during embryonic growth, and its dependence upon the form and timing of the domain growth.
机译:在脊椎动物胚胎的发育过程中,细胞迁移会响应某些因素(例如营养素)而在底层组织域上发生。在发生这种细胞迁移的几天的时间范围内,下面的组织本身正在生长。因此,细胞迁移和定植受到组织域生长的强烈影响。没有域增长的趋化迁移数学模型的数值解会导致细胞以恒定速度传播。畴增长的增加会导致行波具有非恒定速度。这些观察结果提出了对整个系统方程的数学近似,从而允许将特征方法应用于简化的趋化迁移模型。分析了迁移细胞波的前锋的演变。考虑线性,指数和逻辑均匀域增长。生长域的成功定植取决于细胞迁移速度与域生长速度和形式之间的竞争,以及细胞的初始穿透距离。在某些情况下,细胞将永远无法成功地定居正在生长的区域。这些模型提供了对胚胎生长过程中细胞迁移及其对结构域生长形式和时间的依赖性的见解。

著录项

  • 来源
    《Bulletin of Mathematical Biology》 |2003年第2期|235-262|共28页
  • 作者单位

    Department of Mathematics and Statistics University of Melbourne;

    Centre in Statistical Science and Industrial Mathematics School of Mathematical Sciences Queensland University of Technology;

    The Embryology Laboratory The Murdoch Childrens Research Institute Royal Children’s Hospital;

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  • 正文语种 eng
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