Biological neural networks are systems of extraordinary computational capabilities shaped by evolution, development, and lifelong learning. The interplay of these elements leads to the emergence of biological intelligence. Inspired by such intricate natural phenomena, Evolved Plastic Artificial Neural Networks (EPANNs) employ simulated evolution in-silico to breed plastic neural networks with the aim to autonomously design and create learning systems. EPANN experiments evolve networks that include both innate properties and the ability to change and learn in response to experiences in different environments and problem domains. EPANNs’ aims include autonomously creating learning systems, bootstrapping learning from scratch, recovering perfo...
Evolutionary development as a strategy for the design of artificial neural networks is an enticing i...
In this report we present the results of a series of simulations in which neural networks undergo ch...
Designing articial systems with ever more biologically-plausible `brains ' continues apace and ...
Biological neural networks are systems of extraordinary computational capabilities shaped by evoluti...
Biological neural networks are systems of extraordinary computational capabilities shaped by evoluti...
A major goal of bio-inspired artificial intelligence is to design artificial neural networks with ab...
A major goal of bio-inspired artificial intelligence is to design artificial neural networks with ab...
An ambitious long-term goal for neuroevolution, which studies how artificial evolutionary processes ...
An ambitious long-term goal for neuroevolution, which studies how artificial evolutionary processes ...
Evolutionary development as a strategy for the design of artificial neural networks is an enticing i...
Abstract—An ambitious long-term goal for neuroevolution, which studies how artificial evolutionary p...
A fundamental aspect of learning in biological neural networks (BNNs) is the plasticity property whi...
A fundamental aspect of learning in biological neural networks (BNNs) is the plasticity property whi...
A fundamental aspect of learning in biological neural networks (BNNs) is the plasticity property whi...
A fundamental aspect of learning in biological neural networks (BNNs) is the plasticity property whi...
Evolutionary development as a strategy for the design of artificial neural networks is an enticing i...
In this report we present the results of a series of simulations in which neural networks undergo ch...
Designing articial systems with ever more biologically-plausible `brains ' continues apace and ...
Biological neural networks are systems of extraordinary computational capabilities shaped by evoluti...
Biological neural networks are systems of extraordinary computational capabilities shaped by evoluti...
A major goal of bio-inspired artificial intelligence is to design artificial neural networks with ab...
A major goal of bio-inspired artificial intelligence is to design artificial neural networks with ab...
An ambitious long-term goal for neuroevolution, which studies how artificial evolutionary processes ...
An ambitious long-term goal for neuroevolution, which studies how artificial evolutionary processes ...
Evolutionary development as a strategy for the design of artificial neural networks is an enticing i...
Abstract—An ambitious long-term goal for neuroevolution, which studies how artificial evolutionary p...
A fundamental aspect of learning in biological neural networks (BNNs) is the plasticity property whi...
A fundamental aspect of learning in biological neural networks (BNNs) is the plasticity property whi...
A fundamental aspect of learning in biological neural networks (BNNs) is the plasticity property whi...
A fundamental aspect of learning in biological neural networks (BNNs) is the plasticity property whi...
Evolutionary development as a strategy for the design of artificial neural networks is an enticing i...
In this report we present the results of a series of simulations in which neural networks undergo ch...
Designing articial systems with ever more biologically-plausible `brains ' continues apace and ...