This selective review explores biologically inspired learning as a model for intelligent robot control and sensing technology on the basis of specific examples. Hebbian synaptic learning is discussed as a functionally relevant model for machine learning and intelligence, as explained on the basis of examples from the highly plastic biological neural networks of invertebrates and vertebrates. Its potential for adaptive learning and control without supervision, the generation of functional complexity, and control architectures based on self-organization is brought forward. Learning without prior knowledge based on excitatory and inhibitory neural mechanisms accounts for the process through which survival-relevant or task-relevant representati...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
We propose the architecture of a novel robot system merging biological and artificial intelligence b...
This selective review explores biologically inspired learning as a model for intelligent robot contr...
This selective review explores biologically inspired learning as a model for intelligent robot contr...
This selective review explores biologically inspired learning as a model for intelligent robot contr...
This selective review explores biologically inspired learning as a model for intelligent robot contr...
In the attempt to build adaptive and intelligent machines, roboticists have looked at neuroscience f...
Artificial intelligence and learning is a growing field. There are many ways of making a computer pr...
The intelligent controlling mechanism of a typical mobile robot is usually a computer system. Some r...
The behavior and skills of living systems depend on the distributed control provided by specialized ...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
Many researchers are developing frameworks inspired by natural, especially biological, systems to so...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
We propose the architecture of a novel robot system merging biological and artificial intelligence b...
This selective review explores biologically inspired learning as a model for intelligent robot contr...
This selective review explores biologically inspired learning as a model for intelligent robot contr...
This selective review explores biologically inspired learning as a model for intelligent robot contr...
This selective review explores biologically inspired learning as a model for intelligent robot contr...
In the attempt to build adaptive and intelligent machines, roboticists have looked at neuroscience f...
Artificial intelligence and learning is a growing field. There are many ways of making a computer pr...
The intelligent controlling mechanism of a typical mobile robot is usually a computer system. Some r...
The behavior and skills of living systems depend on the distributed control provided by specialized ...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
Many researchers are developing frameworks inspired by natural, especially biological, systems to so...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
oai:ojs3.localhost:article/11The intelligent controlling mechanism of a typical mobile robot is usua...
We propose the architecture of a novel robot system merging biological and artificial intelligence b...