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Slime mould: The fundamental mechanisms of biological cognition

机译:粘液模具:生物认知的基本机制

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摘要

The slime mould Physarum polycephalum has been used in developing unconventional computing devices for in which the slime mould played a role of a sensing, actuating, and computing device. These devices treated the slime mould as an active living substrate, yet it is a self-consistent living creature which evolved over millions of years and occupied most parts of the world, but in any case, that living entity did not own true cognition, just automated biochemical mechanisms. To "rehabilitate" slime mould from the rank of a purely living electronics element to a "creature of thoughts" we are analyzing the cognitive potential of P. polycephalum. We base our theory of minimal cognition of the slime mould on a bottom up approach, from the biological and biophysical nature of the slime mould and its regulatory systems using frameworks such as Lyon's biogenic cognition, Muller, di Primio-Lengeler modifiable pathways, Bateson's "patterns that connect" framework, Maturana's autopoietic network, or proto-consciousness and Morgan's Canon. (C) 2018 Elsevier B.V. All rights reserved.
机译:粘液模子生理聚粒已经用于开发非传统计算装置,其中粘液模具起到感测,致动和计算装置的作用。这些设备将粘液模具视为活性生物基材,但它是一种自我一致的生物,在数百万年中发展并占据了世界上大部分地区,但在任何情况下,生活实体都没有真正的认知,只是自动化生物化学机制。从纯净的电子元素的级别“恢复”粘液模具,以“思想生物”,我们正在分析P. Polycephalum的认知潜力。我们将粘液模具的最小认知理论基于底层的方法,从粘液模具的生物和生物物理性质及其使用框架等框架的生物物理性质,例如利龙的生物成像认知,Muller,di prioio-lengeler可修改的途径,Bateson的“连接“框架,Maturana的自动流动网络或原始意识和摩根的佳能的模式。 (c)2018 Elsevier B.v.保留所有权利。

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