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Bacterial Route Finding and Collective Escape in Mazes and Fractals

机译:在迷宫和分形的细菌路线发现和集体逃脱

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Bacteria which grow not on the featureless agar plates of the microbiology lab but in the real world must navigate topologies which are nontrivially complex, such as mazes or fractals. We show that chemosensitive motile E. coli can efficiently explore nontrivial mazes in times much shorter than a no-memory (Markovian) walk would predict, and can collectively escape from a fractal topology. The strategies used by the bacteria include individual power-law probability distribution function exploration, the launching of chemotactic collective waves with preferential branching at maze nodes and defeating of fractal pumping, and bet hedging in case the more risky attempts to find food fail.
机译:不在微生物学实验室的无特征琼脂板上生长的细菌,但在现实世界中必须导行拓扑,这些拓扑结构是非激动的复杂性,例如迷宫或分形。我们展示了化学敏感动机大肠杆菌可以有效地探索不比没有记忆(马尔可夫)步行的时间更短的非体内迷宫,并且可以集体从分形拓扑中逃逸。细菌使用的策略包括单独的幂律概率分布功能探索,在迷宫节​​点的优先分支和击败分形泵的比赛中发射趋化集集体波,并在危险的尝试失败时下注对冲。

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