International audienceMany complex systems, ranging from neural cell assemblies to insect societies, involve and rely on some division of labor. How to enforce such a division in a decentralized and distributed way, is tackled in this paper, using a spiking neuron network architecture. Specifically, a spatio-temporal model called SpikeAnts is shown to enforce the emergence of synchronized activities in an ant colony. Each ant is modelled from two spiking neurons; the ant colony is a sparsely connected spiking neuron network. Each ant makes its decision (among foraging, sleeping and self-grooming) from the competition between its two neurons, after the signals received from its neighbor ants. Interestingly, three types of temporal patterns e...
Biology is suffused with rhythmic behaviour, and interacting biological oscillators often synchroniz...
Swarm cognition is the field that explores the possibility of implanting human cognitive functions o...
Rhythmical activity patterns are ubiquitous in nature. We study an oscillatory biological system: co...
International audienceMany complex systems, ranging from neural cell assemblies to insect societies,...
International audienceMany complex systems, ranging from neural cell assemblies to insect societies,...
International audienceBiological populations often exhibit complex and efficient behaviors, where tem...
International audienceBiological populations often exhibit complex and efficient behaviors, where tem...
International audienceBiological populations often exhibit complex and efficient behaviors, where tem...
International audienceBiological populations often exhibit complex and efficient behaviors, where tem...
Biological populations often exhibit complex and efficient behaviors, where temporal and spatial cou...
Rhythmical activity patterns are ubiquitous in nature. We study an oscillatory biological system: co...
The collective behavior of social insects has been a puzzling problem for scientists for a long time...
Abstract — Division of labour is one of the possible strategies to efficiently exploit the resources...
Ant colonies, and more generally social insect societies, are distributed systems that, in spite of ...
Modeling the activity of an ant community based on the individual behavior of a single ant is a ver...
Biology is suffused with rhythmic behaviour, and interacting biological oscillators often synchroniz...
Swarm cognition is the field that explores the possibility of implanting human cognitive functions o...
Rhythmical activity patterns are ubiquitous in nature. We study an oscillatory biological system: co...
International audienceMany complex systems, ranging from neural cell assemblies to insect societies,...
International audienceMany complex systems, ranging from neural cell assemblies to insect societies,...
International audienceBiological populations often exhibit complex and efficient behaviors, where tem...
International audienceBiological populations often exhibit complex and efficient behaviors, where tem...
International audienceBiological populations often exhibit complex and efficient behaviors, where tem...
International audienceBiological populations often exhibit complex and efficient behaviors, where tem...
Biological populations often exhibit complex and efficient behaviors, where temporal and spatial cou...
Rhythmical activity patterns are ubiquitous in nature. We study an oscillatory biological system: co...
The collective behavior of social insects has been a puzzling problem for scientists for a long time...
Abstract — Division of labour is one of the possible strategies to efficiently exploit the resources...
Ant colonies, and more generally social insect societies, are distributed systems that, in spite of ...
Modeling the activity of an ant community based on the individual behavior of a single ant is a ver...
Biology is suffused with rhythmic behaviour, and interacting biological oscillators often synchroniz...
Swarm cognition is the field that explores the possibility of implanting human cognitive functions o...
Rhythmical activity patterns are ubiquitous in nature. We study an oscillatory biological system: co...