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Computational universality of fungal sandpile automata

机译:真菌砂皮自动机的计算普遍性

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摘要

Hyphae within the mycelia of the ascomycetous fungi are compartmentalised by septa. Each septum has a pore that allows for inter-compartmental and inter-hyphal streaming of cytosol and even organelles. The compartments, however, have special organelles, Woronin bodies, that can plug the pores. When the pores are blocked, no flow of cytoplasm takes place. Inspired by the controllable compartmentalisation within the mycelium of the ascomycetous fungi we designed two-dimensional fungal automata. A fungal automaton is a cellular automaton where communication between neighbouring cells can be blocked on demand. We demonstrate computational universality of the fungal automata by implementing sandpile cellular automata circuits there. We reduce the Monotone Circuit Value Problem to the Fungal Automaton Prediction Problem. We construct families of wires, cross-overs and gates to prove that the fungal automata are P-complete. (C) 2020 Elsevier B.V. All rights reserved.
机译:亚霉菌菌丝体内的菌丝被隔膜的分区化。 每种隔膜都有一个孔,允许胞间胞间卵醇甚至细胞器的间隔内和晶状体流。 然而,隔间有特殊的细胞器,可以堵塞毛孔。 当孔隙被堵塞时,不会发生细胞质流。 灵感灵感来自烟害真菌菌丝体内的可控舱位化,我们设计了二维真菌自动机。 真菌自动机是一种蜂窝自动机,其中邻近电池之间的通信可以按需阻塞。 我们通过在那里实施Sandpile Cellular Automata电路来证明真菌自动机的计算普遍性。 我们减少了真菌自动机预测问题的单调电路值问题。 我们构建电线的家庭,交叉和门,证明真菌自动机是p-temply。 (c)2020 Elsevier B.v.保留所有权利。

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