Andrew Adamatzky Andrew.Adamatzky@uwe.ac.uk
Professor
Plasmodium of Physarum polycephalum is a single cell visible by unaided eye. During its foraging behavior the cell spans spatially distributed sources of nutrients with a protoplasmic network. Geometrical structure of the protoplasmic networks allows the plasmodium to optimize transfer of nutrients between remote parts of its body, to distributively sense its environment, and make a decentralized decision about further routes of migration. We consider the ten most populated urban areas in United Kingdom and study what would be an optimal layout of transport links between these urban areas from the "plasmodium's point of view". We represent geographical locations of urban areas by oat flakes, inoculate the plasmodium in Greater London area and analyze the plasmodium's foraging behavior. We simulate the behavior of the plasmodium using a particle collective which responds to the environmental conditions to construct and minimize transport networks. Results of our scoping experiments show that during its colonization of the experimental space the plasmodium forms a protoplasmic network isomorphic to a network of major motorways except the motorway linking England with Scotland. We also imitate the reaction of transport network to disastrous events and show how the transport network can be reconfigured during natural or artificial cataclysms. The results of the present research lay a basis for future science of bio-inspired urban and road planning. © 2010 World Scientific Publishing Company.
Journal Article Type | Article |
---|---|
Publication Date | Jan 1, 2010 |
Journal | International Journal of Bifurcation and Chaos |
Print ISSN | 0218-1274 |
Electronic ISSN | 1793-6551 |
Publisher | World Scientific Publishing |
Peer Reviewed | Peer Reviewed |
Volume | 20 |
Issue | 10 |
Pages | 3065-3084 |
DOI | https://doi.org/10.1142/S0218127410027568 |
Keywords | Road planning, slime mould, Physarum |
Public URL | https://uwe-repository.worktribe.com/output/982594 |
Publisher URL | http://dx.doi.org/10.1142/S0218127410027568 |
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