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Use of evolved artificial regulatory networks to simulate 3D cell differentiation

机译:使用进化的人工调控网络模拟3D细胞分化

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摘要

Cell differentiation has a crucial role in both artificial and natural developments. This paper presents results from simulations in which a genetic algorithm (GA) was used to evolve artificial regulatory networks (ARNs) to produce predefined 3D cellular structures through the selective activation and inhibition of genes. The ARNs used in this work are extensions of a model previously used to create 2D geometrical patterns. The GA worked by evolving the gene regulatory networks that were used to control cell reproduction, which took place in a testbed based on cellular automata (CA). After the final chromosomes were produced, a single cell in the middle of the CA lattice was allowed to replicate controlled by the ARN found by the GA, until the desired cellular structures were formed. Two simple cubic layered structures were first developed to test multiple gene synchronization. The model was then applied to the problem of generating a 3D French flag pattern using morphogenetic gradients to provide cells with positional information that constrained cellular replication.
机译:细胞分化在人工和自然发育中都起着至关重要的作用。本文介绍了模拟结果,其中使用遗传算法(GA)进化了人工调节网络(ARN),以通过选择性激活和抑制基因来产生预定义的3D细胞结构。这项工作中使用的ARN是先前用于创建2D几何图案的模型的扩展。遗传算法通过发展用于控制细胞繁殖的基因调控网络而发挥作用,该网络在基于细胞自动机(CA)的测试台上进行。产生最终的染色体后,让CA晶格中间的单个细胞受GA发现的ARN的控制进行复制,直到形成所需的细胞结构。首先开发了两个简单的立方分层结构来测试多基因同步。然后将该模型应用于使用形态发生梯度生成3D法国国旗图案的问题,以向细胞提供限制细胞复制的位置信息。

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