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首页> 外文期刊>NanoBioscience, IEEE Transactions on >Slime Mold Solves Maze in One Pass, Assisted by Gradient of Chemo-Attractants
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Slime Mold Solves Maze in One Pass, Assisted by Gradient of Chemo-Attractants

机译:史莱姆霉菌在化学吸引剂梯度的帮助下一次解决迷宫问题

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摘要

Plasmodium of Physarum polycephalum is a large cell, visible by unaided eye, which exhibits sophisticated patterns of foraging behaviour. The plasmodium's behaviour is well interpreted in terms of computation, where data are spatially extended configurations of nutrients and obstacles, and results of computation are networks of protoplasmic tubes formed by the plasmodium. In laboratory experiments and numerical simulation we show that if plasmodium of P. polycephalum is inoculated in a maze's peripheral channel and an oat flake (source of attractants) in a the maze's central chamber then the plasmodium grows toward target oat flake and connects the flake with the site of original inoculation with a pronounced protoplasmic tube. The protoplasmic tube represents a path in the maze. The plasmodium solves maze in one pass because it is assisted by a gradient of chemo-attractants propagating from the target oat flake.
机译:cephal头疟原虫是一个大细胞,肉眼可见,表现出复杂的觅食行为模式。疟原虫的行为在计算方面得到了很好的解释,其中数据是营养物和障碍物在空间上的扩展配置,计算结果是由疟原虫形成的原生质管网络。在实验室实验和数值模拟中,我们表明,如果迷宫的疟原虫接种在迷宫的外围通道中,并且在迷宫的中央室中接种燕麦片(引诱剂的来源),则疟原虫会朝着目标燕麦片生长并将其与用明显的原生质管接种的部位。原生质管代表迷宫中的路径。疟原虫一次解决迷宫,因为它由从目标燕麦片中传播的化学吸引剂梯度协助。

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