Astrocytes play important roles in synaptic transmission and plasticity. Despite in vitro evidence, their causal contribution to cortical network activity and sensory information processing in vivo remains unresolved. Here we report that selective photostimulation of astrocytes with channelrhodopsin-2 in primary visual cortex enhances both excitatory and inhibitory synaptic transmission, through the activation of type 1a metabotropic glutamate receptors. Photostimulation of astrocytes in vivo increases the spontaneous firing of parvalbumin-positive (PV[superscript +]) inhibitory neurons, while excitatory and somatostatin-positive (SOM[superscript +]) neurons show either an increase or decrease in their activity. Moreover, PV[superscript +] ...
Astrocytes play a major role in the removal of glutamate from the extracellular compartment. This cl...
SummaryBasal synaptic transmission involves the release of neurotransmitters at individual synapses ...
Studies over the past two decades have demonstrated that astrocytes are tightly associated with neur...
Astrocytes play important roles in synaptic transmission and plasticity. Despite in vitro evidence, ...
While neurons principally mediate brain function, astrocytes are emerging as cells with important ne...
SummaryAstrocytes perform crucial supportive functions, including neurotransmitter clearance, ion bu...
Brain circuits process information through specialized neuronal subclasses interacting within a netw...
Astrocytes are vital for preserving correct brain functioning by continuously sustaining neuronal ac...
A single astrocyte can ensheath more than 100,000 synapses within its domain. Thus, astrocytes are i...
The influence of astrocytes on synaptic function has been increasingly studied, owing to the discove...
Understanding the mechanism by which the brain transforms simple sensory inputs into rich perceptual...
The signaling diversity of GABAergic interneurons to post-synaptic neurons is crucial to generate th...
Astrocytes are a major cell type in the mammalian nervous system, are in close proximity to neurons,...
Removal of synaptically-released glutamate by astrocytes is necessary to spatially and temporally li...
SummaryBackgroundSynaptic interactions between excitatory and inhibitory neocortical neurons are imp...
Astrocytes play a major role in the removal of glutamate from the extracellular compartment. This cl...
SummaryBasal synaptic transmission involves the release of neurotransmitters at individual synapses ...
Studies over the past two decades have demonstrated that astrocytes are tightly associated with neur...
Astrocytes play important roles in synaptic transmission and plasticity. Despite in vitro evidence, ...
While neurons principally mediate brain function, astrocytes are emerging as cells with important ne...
SummaryAstrocytes perform crucial supportive functions, including neurotransmitter clearance, ion bu...
Brain circuits process information through specialized neuronal subclasses interacting within a netw...
Astrocytes are vital for preserving correct brain functioning by continuously sustaining neuronal ac...
A single astrocyte can ensheath more than 100,000 synapses within its domain. Thus, astrocytes are i...
The influence of astrocytes on synaptic function has been increasingly studied, owing to the discove...
Understanding the mechanism by which the brain transforms simple sensory inputs into rich perceptual...
The signaling diversity of GABAergic interneurons to post-synaptic neurons is crucial to generate th...
Astrocytes are a major cell type in the mammalian nervous system, are in close proximity to neurons,...
Removal of synaptically-released glutamate by astrocytes is necessary to spatially and temporally li...
SummaryBackgroundSynaptic interactions between excitatory and inhibitory neocortical neurons are imp...
Astrocytes play a major role in the removal of glutamate from the extracellular compartment. This cl...
SummaryBasal synaptic transmission involves the release of neurotransmitters at individual synapses ...
Studies over the past two decades have demonstrated that astrocytes are tightly associated with neur...