How can systems in which individuals' inner workings are very similar to each other, as neural networks or ant colonies, produce so many qualitatively different behaviors, giving rise to roles and specialization? In this work, we bring new perspectives to this question by focusing on the underlying network that defines how individuals in these systems interact. We applied a genetic algorithm to optimize rules and connections of cellular automata in order to solve the density classification task, a classical problem used to study emergent behaviors in decentralized computational systems. The networks used were all generated by the introduction of shortcuts in an originally regular topology, following the small-world model. Even though all ce...
How does an evolutionary process interact with a decentralized, distributed system in order to produ...
Abstract Our understanding of real-world connected systems has benefited from studying their evoluti...
Over the last decade, significant progress has been made in understanding complex biological systems...
How can systems in which individuals' inner workings are very similar to each other, as neural netwo...
We investigate the ability of a genetic algorithm to design cellular automata that perform computati...
All animals are social – ranging from bacteria that perform quorum-sensing, all the way to humans wi...
We investigate the ability of a genetic algorithm to design cellular automata that perform computati...
Over the last decade, significant progress has been made in understanding complex biological systems...
The Turing pattern model is one of the theories used to describe organism formation patterns. Using ...
We review recent work done by our group on applying genetic algorithms (GAs) to the design of cellul...
Cell organization is governed and maintained via specific interactions between its constituent macro...
Cell organization is governed and maintained via specific interactions between its constituent macro...
Cell organization is governed and maintained via specific interactions between its constituent macro...
Cell organization is governed and maintained via specific interactions between its constituent macro...
Cell organization is governed and maintained via specific interactions between its constituent macro...
How does an evolutionary process interact with a decentralized, distributed system in order to produ...
Abstract Our understanding of real-world connected systems has benefited from studying their evoluti...
Over the last decade, significant progress has been made in understanding complex biological systems...
How can systems in which individuals' inner workings are very similar to each other, as neural netwo...
We investigate the ability of a genetic algorithm to design cellular automata that perform computati...
All animals are social – ranging from bacteria that perform quorum-sensing, all the way to humans wi...
We investigate the ability of a genetic algorithm to design cellular automata that perform computati...
Over the last decade, significant progress has been made in understanding complex biological systems...
The Turing pattern model is one of the theories used to describe organism formation patterns. Using ...
We review recent work done by our group on applying genetic algorithms (GAs) to the design of cellul...
Cell organization is governed and maintained via specific interactions between its constituent macro...
Cell organization is governed and maintained via specific interactions between its constituent macro...
Cell organization is governed and maintained via specific interactions between its constituent macro...
Cell organization is governed and maintained via specific interactions between its constituent macro...
Cell organization is governed and maintained via specific interactions between its constituent macro...
How does an evolutionary process interact with a decentralized, distributed system in order to produ...
Abstract Our understanding of real-world connected systems has benefited from studying their evoluti...
Over the last decade, significant progress has been made in understanding complex biological systems...