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Slime Mould Memristors

In laboratory experiments we demonstrate that protoplasmic tubes of acellular slime mould \emph{Physarum polycephalum} show current versus voltage profiles consistent with memristive systems and that the effect is due to the living protoplasm of the mould. This complements previous findings on memristive properties of other living systems (human skin and blood) and contributes to development of self-growing bio-electronic circuits. Distinctive asymmetric $V$-$I$ curves which were occasionally observed when the internal current is on the same order as the driven current, are well-modelled by the concept of active memristors.

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Co-authorshipCo-authorshipCo-authorshipAuthorshipAuthorshipAuthorshipTopic signalTopic signalTopic signalWSlime Mould Memristorspreprint / 2014AElla GaleResearcherAAndrew AdamatzkyResearcherABen De Lacy CostelloResearcherTBiological Physics1983 worksTcond-mat.other1057 worksTEmerging Technologies917 works
PaperSignal 106 links

Slime Mould Memristors

preprint / 2014

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