Parvalbumin (PV)-positive interneurons modulate cortical activity through highly specialized connectivity patterns onto excitatory pyramidal neurons (PNs) and other inhibitory cells. PV cells are autoconnected through powerful autapses, but the contribution of this form of fast disinhibition to cortical function is unknown. We found that autaptic transmission represents the most powerful inhibitory input of PV cells in neocortical layer V. Autaptic strength was greater than synaptic strength onto PNs as a result of a larger quantal size, whereas autaptic and heterosynaptic PV-PV synapses differed in the number of release sites. Overall, single-axon autaptic transmission contributed to approximately 40% of the global inhibition (mostly peris...
Neural circuits in the cerebral cortex consist primarily of excitatory pyramidal (Pyr) cells and inh...
SummaryBackgroundSynaptic interactions between excitatory and inhibitory neocortical neurons are imp...
Action potential (AP) generation in inhibitory interneurons is critical for cortical excitation-inhi...
International audienceParvalbumin (PV)-positive interneurons modulate cortical activity through high...
Parvalbumin (PV)-positive interneurons modulate cortical activity through highly specialized connect...
SummaryIn vivo studies suggest that precise firing of neurons is important for correct sensory repre...
Networks of specific inhibitory interneurons regulate principal cell firing in several forms of neoc...
Different hippocampal activity patterns are determined primarily by the interaction of excitatory ce...
Networks of specific inhibitory interneurons regulate principal cell firing in several forms of neoc...
International audienceIn the neocortex, synaptic inhibition shapes all forms of spontaneous and sens...
The morphological and electrophysiological properties of parvalbumin-expressing inhibitory interneur...
In the neocortex, critical periods (CPs) of plasticity are closed following the accumulation of peri...
Inhibitory autapses are self-innervating synaptic connections in GABAergic interneurons in the brain...
The perirhinal (PER) and lateral entorhinal (LEC) cortex form an anatomical link between the neocort...
<div><p>Action potential (AP) generation in inhibitory interneurons is critical for cortical excitat...
Neural circuits in the cerebral cortex consist primarily of excitatory pyramidal (Pyr) cells and inh...
SummaryBackgroundSynaptic interactions between excitatory and inhibitory neocortical neurons are imp...
Action potential (AP) generation in inhibitory interneurons is critical for cortical excitation-inhi...
International audienceParvalbumin (PV)-positive interneurons modulate cortical activity through high...
Parvalbumin (PV)-positive interneurons modulate cortical activity through highly specialized connect...
SummaryIn vivo studies suggest that precise firing of neurons is important for correct sensory repre...
Networks of specific inhibitory interneurons regulate principal cell firing in several forms of neoc...
Different hippocampal activity patterns are determined primarily by the interaction of excitatory ce...
Networks of specific inhibitory interneurons regulate principal cell firing in several forms of neoc...
International audienceIn the neocortex, synaptic inhibition shapes all forms of spontaneous and sens...
The morphological and electrophysiological properties of parvalbumin-expressing inhibitory interneur...
In the neocortex, critical periods (CPs) of plasticity are closed following the accumulation of peri...
Inhibitory autapses are self-innervating synaptic connections in GABAergic interneurons in the brain...
The perirhinal (PER) and lateral entorhinal (LEC) cortex form an anatomical link between the neocort...
<div><p>Action potential (AP) generation in inhibitory interneurons is critical for cortical excitat...
Neural circuits in the cerebral cortex consist primarily of excitatory pyramidal (Pyr) cells and inh...
SummaryBackgroundSynaptic interactions between excitatory and inhibitory neocortical neurons are imp...
Action potential (AP) generation in inhibitory interneurons is critical for cortical excitation-inhi...