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Simulating Cell-Cell Interactions Using a Multicellular Three-Dimensional Computational Model of Tissue Growth

机译:使用组织生长的多细胞三维计算模型模拟细胞之间的相互作用。

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We report simulation results describing cell-cell interactions using a versatile computational model to simulate the growth of multicellular tissues employing a discrete approach based on cellular automata. In particular, we present results of cell collision and aggregation for three cell populations each having its own division and motion characteristics based on experimental data. The developed model allows us to study the tissue growth rates and population dynamics of different populations of migrating and proliferating mammalian cells in a mixed and segmented seeding distribution. In this regard, the model assumes that nutrient and growth factor concentrations remain constant in space and time. Cell migration is modeled using a discrete-time Markov chain approach. Both heterotypic and homotypic cell-cell interactions play important roles in cell and tissue functions. The temporal evolution of the frequency of cell collision and aggregation and their relations to other variables that quantify some of the dynamics of cell populations can be predicted by this model for different cell seeding distributions.
机译:我们报告了模拟结果,该结果描述了使用通用计算模型使用基于细胞自动机的离散方法来模拟多细胞组织生长的细胞间相互作用。特别是,我们根据实验数据介绍了三个细胞群体的细胞碰撞和聚集的结果,每个细胞群体都有自己的分裂和运动特征。所开发的模型使我们能够以混合和分段的播种分布研究迁移和增殖的哺乳动物细胞不同种群的组织生长率和种群动态。在这方面,该模型假设营养物和生长因子的浓度在空间和时间上保持恒定。使用离散时间马尔可夫链方法对细胞迁移进行建模。异型和同型细胞之间的相互作用都在细胞和组织功能中发挥重要作用。通过此模型,可以针对不同的细胞播种分布预测细胞碰撞和聚集的频率的时间演变及其与量化细胞群体动态的其他变量的关系。

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