GABAergic interneurons play an important role in shaping the activity of excitatory pyramidal cells (PCs). How the various inhibitory cell types contribute to neuronal information processing, however, is not resolved. Here, we propose a functional role for a widespread network motif consisting of parvalbumin- (PV), somatostatin- (SOM) and vasoactive intestinal peptide (VIP)-expressing interneurons. Following the idea that PV and SOM interneurons control the distribution of somatic and dendritic inhibition onto PCs, we suggest that mutual inhibition between VIP and SOM cells translates weak inputs to VIP interneurons into large changes of somato-dendritic inhibition of PCs. Using a computational model, we show that the neuronal and synaptic ...
GABAergic interneurons in the hippocampus provide for local and long-distance coordination of neuron...
Abstract In the neocortex, fast synaptic inhibition orchestrates both spontaneous and sensory-evoked...
Cortical networks depend upon inhibition through the neurotransmitter GABA to control and coordinate...
GABAergic interneurons play an important role in shaping the activity of excitatory pyramidal cells ...
The central nervous system is a crystalline-like structure which is constructed through the repeated...
Neural circuits in the cerebral cortex consist primarily of excitatory pyramidal (Pyr) cells and inh...
Summary Simultaneous co-activation of neocortical neurons is likely critical for brain computations ...
Excitation/inhibition balance is critical for optimal brain function, yet the mechanisms underlying ...
(A) Connectivity of the circuit model, inspired by experimentally observed connectivity of excitator...
The recurrent network composed of excitatory and inhibitory neurons is fundamental to neocortical fu...
Contains fulltext : 168022.pdf (publisher's version ) (Open Access)Disinhibition o...
Various subtypes of inhibitory interneurons contact one another to organize cortical networks. Most ...
Cortical circuits process information by rich recurrent interactions between excitatory neurons and ...
© 2004 Nature Publishing Group. All rights reservedVasoactive intestinal peptide (VIP) is present in...
Cortical networks depend upon inhibition through the neurotransmitter GABA to control and coordinate...
GABAergic interneurons in the hippocampus provide for local and long-distance coordination of neuron...
Abstract In the neocortex, fast synaptic inhibition orchestrates both spontaneous and sensory-evoked...
Cortical networks depend upon inhibition through the neurotransmitter GABA to control and coordinate...
GABAergic interneurons play an important role in shaping the activity of excitatory pyramidal cells ...
The central nervous system is a crystalline-like structure which is constructed through the repeated...
Neural circuits in the cerebral cortex consist primarily of excitatory pyramidal (Pyr) cells and inh...
Summary Simultaneous co-activation of neocortical neurons is likely critical for brain computations ...
Excitation/inhibition balance is critical for optimal brain function, yet the mechanisms underlying ...
(A) Connectivity of the circuit model, inspired by experimentally observed connectivity of excitator...
The recurrent network composed of excitatory and inhibitory neurons is fundamental to neocortical fu...
Contains fulltext : 168022.pdf (publisher's version ) (Open Access)Disinhibition o...
Various subtypes of inhibitory interneurons contact one another to organize cortical networks. Most ...
Cortical circuits process information by rich recurrent interactions between excitatory neurons and ...
© 2004 Nature Publishing Group. All rights reservedVasoactive intestinal peptide (VIP) is present in...
Cortical networks depend upon inhibition through the neurotransmitter GABA to control and coordinate...
GABAergic interneurons in the hippocampus provide for local and long-distance coordination of neuron...
Abstract In the neocortex, fast synaptic inhibition orchestrates both spontaneous and sensory-evoked...
Cortical networks depend upon inhibition through the neurotransmitter GABA to control and coordinate...