International audienceAstrocytic Ca2+ signals can be fast and local, supporting the idea that astrocytes have the ability to regulate single synapses. However, the anatomical basis of such specific signaling remains unclear, owing to difficulties in resolving the spongiform domain of astrocytes where most tripartite synapses are located. Using 3D-STED microscopy in living organotypic brain slices, we imaged the spongiform domain of astrocytes and observed a reticular meshwork of nodes and shafts that often formed loop-like structures. These anatomical features were also observed in acute hippocampal slices and in barrel cortex in vivo. The majority of dendritic spines were contacted by nodes and their sizes were correlated. FRAP experiments...
Our understanding of the role of astrocytes in the brain has been completely overturned in the last ...
Astrocyte communication is typically studied by two-dimensional calcium ion (Ca2+) imaging, but this...
While astrocytes have long been recognized for their involvement in countless vital synaptic process...
International audienceAstrocytic Ca2+ signals can be fast and local, supporting the idea that astroc...
Astrocytic Ca2+ signals regulate synaptic activity. Most of those signals are spatially restricted t...
International audienceMuch of the Ca2+ activity in astrocytes is spatially restricted to microdomain...
Intracellular Ca(2+) transients are considered a primary signal by which astrocytes interact with ne...
Distal astrocytic processes have a complex morphology, reminiscent of branchlets and leaflets. Astro...
The synaptic control of the astrocytic intracellular Ca2+ is crucial in the reciprocal astrocyte-neu...
Astrocyte Ca(2+) signalling has been proposed to link neuronal information in different spatial-temp...
During the last years, a great amount of evidence demonstrates the existence of bidirectional commun...
Distal astrocytic processes have a complex morphology, reminiscent of branchlets and leaflets. Astro...
In recent years, numerous studies have shown that astrocytes play an important role in neuronal proc...
Astrocytes communicate with synapses by means of intracellular calcium ([Ca(2+)](i)) elevations, but...
In the central nervous system, synaptic transmission is heavily regulated by the activity of astrocy...
Our understanding of the role of astrocytes in the brain has been completely overturned in the last ...
Astrocyte communication is typically studied by two-dimensional calcium ion (Ca2+) imaging, but this...
While astrocytes have long been recognized for their involvement in countless vital synaptic process...
International audienceAstrocytic Ca2+ signals can be fast and local, supporting the idea that astroc...
Astrocytic Ca2+ signals regulate synaptic activity. Most of those signals are spatially restricted t...
International audienceMuch of the Ca2+ activity in astrocytes is spatially restricted to microdomain...
Intracellular Ca(2+) transients are considered a primary signal by which astrocytes interact with ne...
Distal astrocytic processes have a complex morphology, reminiscent of branchlets and leaflets. Astro...
The synaptic control of the astrocytic intracellular Ca2+ is crucial in the reciprocal astrocyte-neu...
Astrocyte Ca(2+) signalling has been proposed to link neuronal information in different spatial-temp...
During the last years, a great amount of evidence demonstrates the existence of bidirectional commun...
Distal astrocytic processes have a complex morphology, reminiscent of branchlets and leaflets. Astro...
In recent years, numerous studies have shown that astrocytes play an important role in neuronal proc...
Astrocytes communicate with synapses by means of intracellular calcium ([Ca(2+)](i)) elevations, but...
In the central nervous system, synaptic transmission is heavily regulated by the activity of astrocy...
Our understanding of the role of astrocytes in the brain has been completely overturned in the last ...
Astrocyte communication is typically studied by two-dimensional calcium ion (Ca2+) imaging, but this...
While astrocytes have long been recognized for their involvement in countless vital synaptic process...