The discovery of direct communication between astrocytes and neurons has changed the perception of astrocytes from passive support cells to active partners in information processing. Astrocytes express myriad neurotransmitter receptors and have been shown to release neurotransmitters, allowing these cells to respond and signal to adjacent neurons, respectively. Astrocytes can rapidly respond to neurotransmitters with a rise in [Ca²⁺]i and astrocyte neurotransmitter release has been shown to be calcium dependent. The purpose of this research was to investigate unknown aspects of astrocyteneuron communication with in situ calcium imaging to improve our understanding of how these cells interact functionally. The first objective of thi...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Neuron-astrocyte communication is an important regulatory mechanism in various brain functions but i...
Astrocytes play active roles in brain physiology. They respond to neurotransmitters and modulate neu...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
Brain function is recognized to rely on neuronal activity and signaling processes between neurons, w...
Astroglial cells are the most common cell type in the central nervous system and express a wide arra...
Astrocytes comprise approximately half of the volume of the adult mammalian brain and are the primar...
During the past few years, it has been established that astrocytes sense neuronal activity and are i...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
The synaptic control of the astrocytic intracellular Ca2+ is crucial in the reciprocal astrocyte-neu...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
Astrocytes are glial cells that play many roles in maintaining homeostasis of the central nervous sy...
Astrocytes comprise approximately half of the volume of the adult mammalian brain and are the primar...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Astrocytes comprise approximately half of the volume of the adult mammalian brain and are the primar...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Neuron-astrocyte communication is an important regulatory mechanism in various brain functions but i...
Astrocytes play active roles in brain physiology. They respond to neurotransmitters and modulate neu...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
Brain function is recognized to rely on neuronal activity and signaling processes between neurons, w...
Astroglial cells are the most common cell type in the central nervous system and express a wide arra...
Astrocytes comprise approximately half of the volume of the adult mammalian brain and are the primar...
During the past few years, it has been established that astrocytes sense neuronal activity and are i...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
The synaptic control of the astrocytic intracellular Ca2+ is crucial in the reciprocal astrocyte-neu...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
Astrocytes are glial cells that play many roles in maintaining homeostasis of the central nervous sy...
Astrocytes comprise approximately half of the volume of the adult mammalian brain and are the primar...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Astrocytes comprise approximately half of the volume of the adult mammalian brain and are the primar...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Neuron-astrocyte communication is an important regulatory mechanism in various brain functions but i...
Astrocytes play active roles in brain physiology. They respond to neurotransmitters and modulate neu...