activity
20102014
most citedTime-dependent wave selection for information processing in excitable media

36 citations · 41 across the 5 of their papers we have counts for

collaborators

5 papers

cs.ET20145 cited

Physarum Chip: Developments in growing computers from slime mould

James G. H. Whiting, Ben P. J. de Lacy Costello, Andrew Adamatzky

The Phychip project is a collaborative European research initiative to design and implement computation using the organism Physarum polycephalum; it is funded by the Seventh Framew…

cs.ET2014

Slime Mould Logic Gates Based on Frequency Changes of Electrical Potential Oscillation

James G. H. Whiting, Ben P. J. de Lacy Costello, Andrew Adamatzky

Physarum polycephalum is a large single amoeba cell, which in its plasmodial phase,forages and connects nearby food sources with protoplasmic tubes. The organism forages for food b…

cs.ET2014

Sensory fusion in Physarum polycephalum and implementing multi-sensory functional computation

James Gerald Holland Whiting, Ben de Lacy Costello, Andrew Adamatzky

Surface electrical potential and observational growth recordings were made of a protoplasmic tube of the slime mould Physarum polycephalum in response to a multitude of stimuli wit…

nlin.PS201236 cited

Time-dependent wave selection for information processing in excitable media

William M. Stevens, Andrew Adamatzky, Ishrat Jahan +1

We demonstrate an improved technique for implementing logic circuits in light-sensitive chemical excitable media. The technique makes use of the constant-speed propagation of waves…

nlin.CG2010

Computational Modalities of Belousov-Zhabotinsky Encapsulated Vesicles

Julian Holley, Andrew Adamatzky, Larry Bull +2

We present both simulated and partial empirical evidence for the computational utility of many connected vesicle analogs of an encapsulated non-linear chemical processing medium. B…