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Visualization of spatial patterns of cells using a 3-D simulation model for multicellular tissue growth

机译:使用3-D模拟模型对多细胞组织生长的细胞空间模式进行可视化

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In this paper, we apply a previously developed computational model for the growth of multicellular tissues using a discrete approach based on cellular automata to simulate the tissue growth rates and visualize the spatial patterns of three populations of proliferating and migrating cells. We use the obtained 3-D time-varying data to visualize the generated spatial patterns of the simulated grown tissue. We then briefly compare the tissue growth rates for two seeding modes, mixed and segmented, using a uniform cell distribution. Slow, moderate, and fast moving cells are utilized with each cell population having its own division characteristics. Our visualization results show that the placement of fast cells may impact not only the tissue growth rate but also the spatial characteristics of the grown tissue pattern. The developed computational model contains a number of system parameters that allow us to explore their effects on many other aspects of cell behavior as well as to study the temporal dynamics of such a complex system.
机译:在本文中,我们应用先前开发的计算模型,该模型使用基于细胞自动机的离散方法模拟多细胞组织的生长,以模拟组织生长速率并可视化三个正在增殖和迁移的细胞群体的空间格局。我们使用获得的3-D时变数据来可视化模拟生长组织的生成的空间模式。然后,我们使用均匀的细胞分布简要比较两种播种模式(混合和分段)的组织生长速率。使用慢速,中速和快速移动的细胞,每个细胞群都有自己的分裂特征。我们的可视化结果表明,快速细胞的放置可能不仅影响组织生长速率,而且还会影响生长的组织模式的空间特征。发达的计算模型包含许多系统参数,这些参数使我们能够探索它们对细胞行为的许多其他方面的影响,以及研究这种复杂系统的时间动态。

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