Memristive model of amoeba learning
Abstract
Recently, it was shown that the amoebalike cell Physarum polycephalum when exposed to a pattern of periodic environmental changes learns and adapts its behavior in anticipation of the next stimulus to come. Here we show that such behavior can be mapped into the response of a simple electronic circuit consisting of a LC contour and a memory-resistor (a memristor) to a train of voltage pulses that mimic environment changes. We also identify a possible biological origin of the memristive behavior in the cell. These biological memory features are likely to occur in other unicellular as well as multicellular organisms, albeit in different forms. Therefore, the above memristive circuit model, which has learning properties, is useful to better understand the origins of primitive intelligence.
- Publication:
-
Physical Review E
- Pub Date:
- August 2009
- DOI:
- 10.1103/PhysRevE.80.021926
- arXiv:
- arXiv:0810.4179
- Bibcode:
- 2009PhRvE..80b1926P
- Keywords:
-
- 87.18.Hf;
- 87.17.Aa;
- Spatiotemporal pattern formation in cellular populations;
- Theory and modeling;
- computer simulation;
- Quantitative Biology - Cell Behavior;
- Condensed Matter - Other Condensed Matter
- E-Print:
- Phys. Rev. E 80, 021926 (2009)