SummaryDiverse inhibitory pathways shape cortical information processing; however, the relevant interneurons recruited by sensory stimuli and how they impact principal cells are unclear. Here we show that two major interneuron circuits govern dynamic inhibition in space and time within the olfactory cortex. Dendritic-targeting layer 1 interneurons receive strong input from the olfactory bulb and govern early-onset feedforward inhibition. However, this circuit is only transiently engaged during bursts of olfactory bulb input. In contrast, somatic-targeting layer 3 interneurons, recruited exclusively by recurrent excitation from pyramidal cells, produce late-onset feedback inhibition. Our results reveal two complementary interneuron circuits ...
Stimulus encoding by primary sensory brain areas provides a data-rich context for understanding thei...
SummaryOdor representations are initially formed in the olfactory bulb, which contains a topographic...
We are surrounded by a world, which makes sense, only because we make sense of it. At every instant ...
In sensory areas of cortex, inhibitory neurons play a critical role in regulating the activity of pr...
Local inhibition by GABA-releasing neurons is important for the operation of sensory cortices, but t...
SummaryOlfactory cortex pyramidal cells integrate sensory input from olfactory bulb mitral and tufte...
Inhibitory interneurons are the “shush”-ers of the brain—their output causes a reduction in the outp...
AbstractNew work suggests that feedback inhibition of neurons in the hippocampus is mediated by two ...
Cortical feedback is a universal feature of all sensory systems, and represents an important general...
SummaryIn the piriform cortex, individual odorants activate a unique ensemble of neurons that are di...
International audienceThe olfactory bulb receives signals from olfactory sensory neurons and conveys...
Events in our external world are transformed into internal percepts and experiences. How can we begi...
<div><p>Stimulus encoding by primary sensory brain areas provides a data-rich context for understand...
The central nervous system is a crystalline-like structure which is constructed through the repeated...
In chemical sensation, multiple models have been proposed to explain how odors are represented in ol...
Stimulus encoding by primary sensory brain areas provides a data-rich context for understanding thei...
SummaryOdor representations are initially formed in the olfactory bulb, which contains a topographic...
We are surrounded by a world, which makes sense, only because we make sense of it. At every instant ...
In sensory areas of cortex, inhibitory neurons play a critical role in regulating the activity of pr...
Local inhibition by GABA-releasing neurons is important for the operation of sensory cortices, but t...
SummaryOlfactory cortex pyramidal cells integrate sensory input from olfactory bulb mitral and tufte...
Inhibitory interneurons are the “shush”-ers of the brain—their output causes a reduction in the outp...
AbstractNew work suggests that feedback inhibition of neurons in the hippocampus is mediated by two ...
Cortical feedback is a universal feature of all sensory systems, and represents an important general...
SummaryIn the piriform cortex, individual odorants activate a unique ensemble of neurons that are di...
International audienceThe olfactory bulb receives signals from olfactory sensory neurons and conveys...
Events in our external world are transformed into internal percepts and experiences. How can we begi...
<div><p>Stimulus encoding by primary sensory brain areas provides a data-rich context for understand...
The central nervous system is a crystalline-like structure which is constructed through the repeated...
In chemical sensation, multiple models have been proposed to explain how odors are represented in ol...
Stimulus encoding by primary sensory brain areas provides a data-rich context for understanding thei...
SummaryOdor representations are initially formed in the olfactory bulb, which contains a topographic...
We are surrounded by a world, which makes sense, only because we make sense of it. At every instant ...