Competition is a well-studied and powerful mechanism for information processing in neuronal networks, providing noise rejection, signal restoration, decision making and associative memory properties, with relatively simple requirements for network architecture. Models based on competitive interactions have been used to describe the shaping of functional properties in visual cortex, as well as the development of functional maps in columnar cortex. These models require competition within a cortical area to occur on a wider spatial scale than cooperation, usually implemented by lateral inhibitory connections having a longer range than local excitatory connections. However, measurements of cortical anatomy reveal that the spatial extent of inhi...
It has long been known that lateral inhibition in neural networks can lead to a winner-take-all comp...
Topographically organized neurons represent multiple stimuli within complex visual scenes and compet...
Neurons in the brain are known to operate under a careful balance of excitation and inhibition, whic...
Competition is a well-studied and powerful mechanism for information processing in neuronal networks...
The responses of neurons in sensory cortex depend on the summation of excitatory and inhibitory syna...
Models of cortical neuronal circuits commonly depend on inhibitory feedback to control gain, pro-vid...
Inhibitory synapses contacting the soma and axon initial segment are commonly presumed to participat...
Models of cortical neuronal circuits commonly depend on inhibitory feedback to control gain, provide...
Models of cortical neuronal circuits commonly depend on inhibitory feedback to control gain, provide...
Models of cortical neuronal circuits commonly depend on inhibitory feedback to control gain, provide...
We study how excitation and inhibition are distributed mesoscopically in small brain regions, by mea...
The presence of a large number of inhibitory contacts at the soma and axon initial segment of cortic...
We study how excitation and inhibition are distributed mesoscopically in small brain regions, by mea...
Maps of ocular dominance and orientation in primary visual cortex have a highly characteristic struc...
The spatial organization of cortical axon and dendritic fields could be an interesting structural pa...
It has long been known that lateral inhibition in neural networks can lead to a winner-take-all comp...
Topographically organized neurons represent multiple stimuli within complex visual scenes and compet...
Neurons in the brain are known to operate under a careful balance of excitation and inhibition, whic...
Competition is a well-studied and powerful mechanism for information processing in neuronal networks...
The responses of neurons in sensory cortex depend on the summation of excitatory and inhibitory syna...
Models of cortical neuronal circuits commonly depend on inhibitory feedback to control gain, pro-vid...
Inhibitory synapses contacting the soma and axon initial segment are commonly presumed to participat...
Models of cortical neuronal circuits commonly depend on inhibitory feedback to control gain, provide...
Models of cortical neuronal circuits commonly depend on inhibitory feedback to control gain, provide...
Models of cortical neuronal circuits commonly depend on inhibitory feedback to control gain, provide...
We study how excitation and inhibition are distributed mesoscopically in small brain regions, by mea...
The presence of a large number of inhibitory contacts at the soma and axon initial segment of cortic...
We study how excitation and inhibition are distributed mesoscopically in small brain regions, by mea...
Maps of ocular dominance and orientation in primary visual cortex have a highly characteristic struc...
The spatial organization of cortical axon and dendritic fields could be an interesting structural pa...
It has long been known that lateral inhibition in neural networks can lead to a winner-take-all comp...
Topographically organized neurons represent multiple stimuli within complex visual scenes and compet...
Neurons in the brain are known to operate under a careful balance of excitation and inhibition, whic...