GABAergic interneurons are critical components of cortical circuits. However, understanding their function has become extremely challenging because they constitute one of the most diverse groups of cells in the central nervous system. Indeed, cortical GABAergic interneurons are heterogeneous in so many different ways—morphology, molecular profiling, electrical properties—that even attempts to discern what parameters should be used to identify cortical interneuron subtypes have failed to generate broad consensus among experts in the field. The extent to which cortical interneuron diversity emerges during development is largely unknown, but it is likely that insights on how this process takes place may help us understand their role as integra...
The mature neocortex contains many different classes of GABAergic inhibitory interneurons, distribut...
How neuronal connections are established and organized into functional networks determines brain fun...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
SummaryInterneurons of the cerebral cortex represent a heterogeneous population of cells with import...
International audienceIf the classical functional attribute of cortical GABAergic interneurons is to...
GABA-containing (GABAergic) interneurons comprise a very heterogeneous group of cells that are cruci...
The cellular diversity of interneurons in the neocortex is thought to reflect subtype-specific roles...
International audienceIf the classical functional attribute of cortical GABAergic interneurons is to...
Cortical GABAergic interneurons constitute an extremely diverse population of cells organized in a ...
International audienceIf the classical functional attribute of cortical GABAergic interneurons is to...
The origins of cortical interneurons in rodents have been localized to the embryonic subcortical tel...
SummaryA key obstacle to understanding neural circuits in the cerebral cortex is that of unraveling ...
Cortical interneurons display striking differences in shape, physiology, and other attributes, chall...
Neocortical interneurons are very diverse in morphological, physiological, molecular, and developmen...
SummaryThe mammalian neocortex is composed of two major neuronal cell types with distinct origins: e...
The mature neocortex contains many different classes of GABAergic inhibitory interneurons, distribut...
How neuronal connections are established and organized into functional networks determines brain fun...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
SummaryInterneurons of the cerebral cortex represent a heterogeneous population of cells with import...
International audienceIf the classical functional attribute of cortical GABAergic interneurons is to...
GABA-containing (GABAergic) interneurons comprise a very heterogeneous group of cells that are cruci...
The cellular diversity of interneurons in the neocortex is thought to reflect subtype-specific roles...
International audienceIf the classical functional attribute of cortical GABAergic interneurons is to...
Cortical GABAergic interneurons constitute an extremely diverse population of cells organized in a ...
International audienceIf the classical functional attribute of cortical GABAergic interneurons is to...
The origins of cortical interneurons in rodents have been localized to the embryonic subcortical tel...
SummaryA key obstacle to understanding neural circuits in the cerebral cortex is that of unraveling ...
Cortical interneurons display striking differences in shape, physiology, and other attributes, chall...
Neocortical interneurons are very diverse in morphological, physiological, molecular, and developmen...
SummaryThe mammalian neocortex is composed of two major neuronal cell types with distinct origins: e...
The mature neocortex contains many different classes of GABAergic inhibitory interneurons, distribut...
How neuronal connections are established and organized into functional networks determines brain fun...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...