GABAergic activity is thought to influence developing neocortical sensory circuits. Yet the late postnatal maturation of local layer (L)4 circuits suggests alternate sources of GABAergic control in nascent thalamocortical networks. We show that a population of L5b, somatostatin (SST)-positive interneuron receives early thalamic synaptic input and, using laser-scanning photostimulation, identify an early transient circuit between these cells and L4 spiny stellates (SSNs) that disappears by the end of the L4 critical period. Sensory perturbation disrupts the transition to a local GABAergic circuit, suggesting a link between translaminar and local control of SSNs. Conditional silencing of SST+ interneurons or conversely biasing the circuit tow...
Intracortical inhibition is crucial to proper functioning of the mature neocortex, yet, paradoxicall...
Summary: Synchronized activity is a universal characteristic of immature neural circuits that is ess...
SummarySubtypes of GABAergic interneurons (INs) are crucial for cortical function, yet their specifi...
SummaryGABAergic activity is thought to influence developing neocortical sensory circuits. Yet the l...
GABAergic activity is thought to influence developing neocortical sensory circuits. Yet the late pos...
GABAergic activity is thought to influence developing neocortical sensory circuits. Yet the late pos...
GABAergic activity is thought to influence developing neocortical sensory circuits. Yet the late pos...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
GABAergic interneurons play critical roles during cortical development in mammals, by maintaining ex...
How sensory activity contributes to the development of the brain has been a long-standing question ...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
The main input to primary sensory cortex is via thalamocortical (TC) axons that form the greatest nu...
The main input to primary sensory cortex is via thalamocortical (TC) axons that form the greatest nu...
The main input to primary sensory cortex is via thalamocortical (TC) axons that form the greatest nu...
Intracortical inhibition is crucial to proper functioning of the mature neocortex, yet, paradoxicall...
Summary: Synchronized activity is a universal characteristic of immature neural circuits that is ess...
SummarySubtypes of GABAergic interneurons (INs) are crucial for cortical function, yet their specifi...
SummaryGABAergic activity is thought to influence developing neocortical sensory circuits. Yet the l...
GABAergic activity is thought to influence developing neocortical sensory circuits. Yet the late pos...
GABAergic activity is thought to influence developing neocortical sensory circuits. Yet the late pos...
GABAergic activity is thought to influence developing neocortical sensory circuits. Yet the late pos...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
GABAergic interneurons play critical roles during cortical development in mammals, by maintaining ex...
How sensory activity contributes to the development of the brain has been a long-standing question ...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
The main input to primary sensory cortex is via thalamocortical (TC) axons that form the greatest nu...
The main input to primary sensory cortex is via thalamocortical (TC) axons that form the greatest nu...
The main input to primary sensory cortex is via thalamocortical (TC) axons that form the greatest nu...
Intracortical inhibition is crucial to proper functioning of the mature neocortex, yet, paradoxicall...
Summary: Synchronized activity is a universal characteristic of immature neural circuits that is ess...
SummarySubtypes of GABAergic interneurons (INs) are crucial for cortical function, yet their specifi...