To date, it has been difficult to reveal physiological Ca(2+) events occurring within the fine astrocytic processes of mature animals. The objective of the study was to explore whether neuronal activity evokes astrocytic Ca(2+) signals at glutamatergic synapses of adult mice. We stimulated the Schaffer collateral/commissural fibers in acute hippocampal slices from adult mice transduced with the genetically encoded Ca(2+) indicator GCaMP5E driven by the glial fibrillary acidic protein promoter. Two-photon imaging revealed global stimulation-evoked astrocytic Ca(2+) signals with distinct latencies, rise rates, and amplitudes in fine processes and somata. Specifically, the Ca(2+) signals in the processes were faster and of higher amplitude tha...
SummaryThe spatiotemporal activities of astrocyte Ca2+ signaling in mature neuronal circuits remain ...
Intracellular Ca(2+) signaling is considered to be important for multiple astrocyte functions in neu...
Sensory stimulation evokes intracellular calcium signals in astrocytes; however, the timing of these...
To date, it has been difficult to reveal physiological Ca(2+) events occurring within the fine astro...
Astrocytes communicate with synapses by means of intracellular calcium ([Ca(2+)](i)) elevations, but...
The synaptic control of the astrocytic intracellular Ca2+ is crucial in the reciprocal astrocyte-neu...
SummaryAstrocytes are considered the third component of the synapse, responding to neurotransmitter ...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Brain function is recognized to rely on neuronal activity and signaling processes between neurons, w...
Neuron-astrocyte communication is an important regulatory mechanism in various brain functions but i...
Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium cu...
In addition to synaptic communication between neurons, there is now strong evidence for neuron-to-as...
<div><p>Neuron-astrocyte communication is an important regulatory mechanism in various brain functio...
Intracellular Ca(2+) signaling is considered to be important for multiple astrocyte functions in neu...
SummaryThe spatiotemporal activities of astrocyte Ca2+ signaling in mature neuronal circuits remain ...
Intracellular Ca(2+) signaling is considered to be important for multiple astrocyte functions in neu...
Sensory stimulation evokes intracellular calcium signals in astrocytes; however, the timing of these...
To date, it has been difficult to reveal physiological Ca(2+) events occurring within the fine astro...
Astrocytes communicate with synapses by means of intracellular calcium ([Ca(2+)](i)) elevations, but...
The synaptic control of the astrocytic intracellular Ca2+ is crucial in the reciprocal astrocyte-neu...
SummaryAstrocytes are considered the third component of the synapse, responding to neurotransmitter ...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Brain function is recognized to rely on neuronal activity and signaling processes between neurons, w...
Neuron-astrocyte communication is an important regulatory mechanism in various brain functions but i...
Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium cu...
In addition to synaptic communication between neurons, there is now strong evidence for neuron-to-as...
<div><p>Neuron-astrocyte communication is an important regulatory mechanism in various brain functio...
Intracellular Ca(2+) signaling is considered to be important for multiple astrocyte functions in neu...
SummaryThe spatiotemporal activities of astrocyte Ca2+ signaling in mature neuronal circuits remain ...
Intracellular Ca(2+) signaling is considered to be important for multiple astrocyte functions in neu...
Sensory stimulation evokes intracellular calcium signals in astrocytes; however, the timing of these...