论文标题

探索真菌蜂窝自动机的动力学

Exploring the Dynamics of Fungal Cellular Automata

论文作者

Sepúlveda, Carlos S., Goles, Eric, Ríos-Wilson, Martín, Adamatzky, Andrew

论文摘要

真菌菌丝中的细胞被内壁分离(SEPTA)。隔sa有微小的孔,可以使细胞之间流动细胞质。如果细胞受伤,则可以关闭其隔s,从而阻止其余细丝的流体损失。该动作是由称为Woronin体的特殊细胞器来实现的。使用可控毛孔作为灵感,我们通过将Woronin体的概念添加到细胞状态过渡规则中,将一维细胞自动机推向基本真菌蜂窝自动机(EFCA)和多数真菌自动机(MFA)。 EFCA是一种细胞自动机,其中邻近细胞之间的通信可以通过Woronin体(WB)的激活来阻止,从而允许或阻止它们之间的信息流(由细胞质和携带的化学元素表示)。我们探索了真菌自动机的新颖版本,其中系统的演变仅受WB的激活影响。我们探讨了两项案例研究:基本真菌细胞自动机(EFCA),它是该变体用于基本蜂窝自动机规则的直接应用,而大多数真菌自动机(MFA)对应于WB将WB应用于两二维自动机与vonNeumann邻里的二维自动机。通过研究EFCA模型,我们分析了256个基本细胞自动机规则如何受到不同模式中WB激活的影响,从而在某些情况下增加了应用规则的复杂性。另外,当由于Woronin体的激活而中断信息流时,我们还探讨了在MFA上的共识如何受到影响。

Cells in a fungal hyphae are separated by internal walls (septa). The septa have tiny pores that allow cytoplasm flowing between cells. Cells can close their septa blocking the flow if they are injured, preventing fluid loss from the rest of filament. This action is achieved by special organelles called Woronin bodies. Using the controllable pores as an inspiration we advance one and two-dimensional cellular automata into Elementary fungal cellular automata (EFCA) and Majority fungal automata (MFA) by adding a concept of Woronin bodies to the cell state transition rules. EFCA is a cellular automaton where the communications between neighboring cells can be blocked by the activation of the Woronin bodies (Wb), allowing or blocking the flow of information (represented by a cytoplasm and chemical elements it carries) between them. We explore a novel version of the fungal automata where the evolution of the system is only affected by the activation of the Wb. We explore two case studies: the Elementary Fungal Cellular Automata (EFCA), which is a direct application of this variant for elementary cellular automata rules, and the Majority Fungal Automata (MFA), which correspond to an application of the Wb to two dimensional automaton with majority rule with Von Neumann neighborhood. By studying the EFCA model, we analyze how the 256 elementary cellular automata rules are affected by the activation of Wb in different modes, increasing the complexity on applied rule in some cases. Also we explore how a consensus over MFA is affected when the continuous flow of information is interrupted due to the activation of Woronin bodies.

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