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doi: 10.1515/sh-2016-0002
AbstractThe paper considers main features of two groups of logics for biological devices, called Physarum Chips, based on the plasmodium. Let us recall that the plasmodium is a single cell with many diploid nuclei. It propagates networks by growing pseudopodia to connect scattered nutrients (pieces of food). As a result, we deal with a kind of computing. The first group of logics for Physarum Chips formalizes the plasmodium behaviour under conditions of nutrient-poor substrate. This group can be defined as standard storage modification machines. The second group of logics for Physarum Chips covers the plasmodium computing under conditions of nutrient-rich substrate. In this case the plasmodium behaves in a massively parallel manner and propagates in all possible directions. The logics of the second group are unconventional and deal with non-well-founded data such as infinite streams.
modern voronoi diagram, p-adic valued logic, unconventional computing, physarum polycephalum, petri nets, B1-5802, Philosophy (General)
modern voronoi diagram, p-adic valued logic, unconventional computing, physarum polycephalum, petri nets, B1-5802, Philosophy (General)
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