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A functional differential equation model for biological cell sorting due to differential adhesion

机译:差分粘附引起的用于生物细胞分选的功能微分方程模型

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摘要

This paper presents a mathematical model to describe the sorting of two different types of cells, arising from differential adhesion mechanisms within biological tissue. The model is based on a continuum approach that takes into account individual cell behavior including aspects of the cell-migration process, dynamics of the adhesions between contacting cells, and finite cell size. Numerical solutions and bifurcation analyses for the case of a collection of two different cell types show a variety of behaviors observed in experiments, including spatially uniform mixing of cells and the formation of two distinct, containing both types of cells or just one. The mathematical model, which is in the form of a set of functional differential equations, represents a novel approach to continuum modeling of cell sorting and migration within biological tissue.
机译:本文提出了一种数学模型来描述两种不同类型的细胞的分类,这是由生物组织内的不同粘附机制引起的。该模型基于连续性方法,该方法考虑了单个细胞的行为,包括细胞迁移过程,接触细胞之间粘附的动力学以及有限的细胞大小等方面。对于两种不同细胞类型的集合的情况,数值解和分叉分析显示了在实验中观察到的多种行为,包括细胞在空间上的均匀混合以及包含两种或两种类型细胞的两种不同细胞的形成。以一组功能微分方程形式的数学模型代表了一种对生物组织内细胞分选和迁移进行连续建模的新颖方法。

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