Neocortical GABAergic neurons have diverse molecular, structural and electrophysiological features, but the functional correlates of this diversity are largely unknown. We found unique membrane potential dynamics of somatostatin-expressing (SOM) neurons in layer 2/3 of the primary somatosensory barrel cortex of awake behaving mice. SOM neurons were spontaneously active during periods of quiet wakefulness. However, SOM neurons hyperpolarized and reduced action potential firing in response to both passive and active whisker sensing, in contrast with all other recorded types of nearby neurons, which were excited by sensory input. Optogenetic inhibition of SOM neurons increased burst firing in nearby excitatory neurons. We hypothesize that the ...
The influence of motor activity on sensory processing is crucial for perception and motor execution....
The rodent primary somatosensory cortex is spontaneously active in the form of locally synchronous m...
Computations in neocortical circuits are predominantly driven by synaptic integration of excitatory ...
Neocortical GABAergic neurons have diverse molecular, structural and electrophysiological features, ...
SummaryComputations in cortical circuits are mediated by synaptic interactions between excitatory an...
GABAergic inhibitory interneurons play a pivotal role in balancing neuronal activity in the neocorte...
SummarySensory processing in neocortex is primarily driven by glutamatergic excitation, which is cou...
Sensory processing in neocortex is primarily driven by glutamatergic excitation, which is counterbal...
Sparse population activity is a well-known feature of supragranular sensory neurons in neocortex. Th...
SummaryBackgroundUnderstanding the dynamic range for excitatory transmission is a critical component...
During non-rapid eye-movement (NREM) sleep, cortical and thalamic neurons oscillate every second or ...
The prefrontal cortex (PFC) enables mammals to respond to situations, including internal states, wit...
Fast synaptic transmission relies upon the activation of ionotropic receptors by neurotransmitter re...
Neocortical microcircuits are thought to contribute importantly to the sophisticated processing abil...
Cortical processing of sensory information relies on a diversity of inhibitory control. This thesis ...
The influence of motor activity on sensory processing is crucial for perception and motor execution....
The rodent primary somatosensory cortex is spontaneously active in the form of locally synchronous m...
Computations in neocortical circuits are predominantly driven by synaptic integration of excitatory ...
Neocortical GABAergic neurons have diverse molecular, structural and electrophysiological features, ...
SummaryComputations in cortical circuits are mediated by synaptic interactions between excitatory an...
GABAergic inhibitory interneurons play a pivotal role in balancing neuronal activity in the neocorte...
SummarySensory processing in neocortex is primarily driven by glutamatergic excitation, which is cou...
Sensory processing in neocortex is primarily driven by glutamatergic excitation, which is counterbal...
Sparse population activity is a well-known feature of supragranular sensory neurons in neocortex. Th...
SummaryBackgroundUnderstanding the dynamic range for excitatory transmission is a critical component...
During non-rapid eye-movement (NREM) sleep, cortical and thalamic neurons oscillate every second or ...
The prefrontal cortex (PFC) enables mammals to respond to situations, including internal states, wit...
Fast synaptic transmission relies upon the activation of ionotropic receptors by neurotransmitter re...
Neocortical microcircuits are thought to contribute importantly to the sophisticated processing abil...
Cortical processing of sensory information relies on a diversity of inhibitory control. This thesis ...
The influence of motor activity on sensory processing is crucial for perception and motor execution....
The rodent primary somatosensory cortex is spontaneously active in the form of locally synchronous m...
Computations in neocortical circuits are predominantly driven by synaptic integration of excitatory ...