<div><p>Although non-specific at the onset of eye opening, networks in rodent visual cortex attain a non-random structure after eye opening, with a specific bias for connections between neurons of similar preferred orientations. As orientation selectivity is already present at eye opening, it remains unclear how this specificity in network wiring contributes to feature selectivity. Using large-scale inhibition-dominated spiking networks as a model, we show that feature-specific connectivity leads to a linear amplification of feedforward tuning, consistent with recent electrophysiological single-neuron recordings in rodent neocortex. Our results show that optimal amplification is achieved at an intermediate regime of specific connectivity. I...
Local excitatory connections in mouse primary visual cortex (V1) are stronger and more prevalent bet...
<div><p>Local excitatory connections in mouse primary visual cortex (V1) are stronger and more preva...
Pas de résuméThe local cortical network connectivity significantly deviates from a random network, g...
Although non-specific at the onset of eye opening, networks in rodent visual cortex attain a non-ran...
Although non-specific at the onset of eye opening, networks in rodent visual cortex attain a non-ran...
Although non-specific at the onset of eye opening, networks in rodent visual cortex attain a non-ran...
<div><p>The neuronal mechanisms underlying the emergence of orientation selectivity in the primary v...
<div><p>In rodent visual cortex, synaptic connections between orientation-selective neurons are unsp...
The neuronal mechanisms underlying the emergence of orientation selectivity in the primary visual co...
In rodent visual cortex, synaptic connections between orientation-selective neurons are unspecific a...
In rodent visual cortex, synaptic connections between orientation-selective neurons are unspecific a...
Mechanisms underlying the emergence of orientation selectivity in the primary visual cortex are high...
Neurons in different layers of sensory cortex generally have different functional properties. But wh...
Local excitatory connections in mouse primary visual cortex (V1) are stronger and more prevalent bet...
Neurons in the primary visual cortex are more or less selective for the orientation of a light bar u...
Local excitatory connections in mouse primary visual cortex (V1) are stronger and more prevalent bet...
<div><p>Local excitatory connections in mouse primary visual cortex (V1) are stronger and more preva...
Pas de résuméThe local cortical network connectivity significantly deviates from a random network, g...
Although non-specific at the onset of eye opening, networks in rodent visual cortex attain a non-ran...
Although non-specific at the onset of eye opening, networks in rodent visual cortex attain a non-ran...
Although non-specific at the onset of eye opening, networks in rodent visual cortex attain a non-ran...
<div><p>The neuronal mechanisms underlying the emergence of orientation selectivity in the primary v...
<div><p>In rodent visual cortex, synaptic connections between orientation-selective neurons are unsp...
The neuronal mechanisms underlying the emergence of orientation selectivity in the primary visual co...
In rodent visual cortex, synaptic connections between orientation-selective neurons are unspecific a...
In rodent visual cortex, synaptic connections between orientation-selective neurons are unspecific a...
Mechanisms underlying the emergence of orientation selectivity in the primary visual cortex are high...
Neurons in different layers of sensory cortex generally have different functional properties. But wh...
Local excitatory connections in mouse primary visual cortex (V1) are stronger and more prevalent bet...
Neurons in the primary visual cortex are more or less selective for the orientation of a light bar u...
Local excitatory connections in mouse primary visual cortex (V1) are stronger and more prevalent bet...
<div><p>Local excitatory connections in mouse primary visual cortex (V1) are stronger and more preva...
Pas de résuméThe local cortical network connectivity significantly deviates from a random network, g...