Astrocytes reuptake synaptically released glutamate with electrogenic transporters (GluT), and buffer the spike-dependent extracellular K(+) ([K(+)]o) excess with background K(+) channels. We studied neuronal spikes and the slower astrocytic signals on reverberating neocortical cultures and organotypic slices from mouse brains. Spike trains and glial responses were simultaneously captured from individual sites of multi-electrode arrays (MEA), by splitting the recorded traces into appropriate filters, and reconstructing the original signal by deconvolution. GluT currents were identified by using DL-threo-beta-benzyloxyaspartate (TBOA). K(+) currents were blocked by 30 µM Ba(2+), suggesting a major contribution of inwardly rectifying K(+) cur...
Brain function is recognized to rely on neuronal activity and signaling processes between neurons, w...
A–Representative fluorescence images of hippocampal slices transduced with iGluSnFR sensor (encapsul...
Brain waves are rhythmic voltage oscillations emerging from the synchronization of individual neuron...
Astrocytes reuptake synaptically released glutamate with electrogenic transporters (GluT), and buffe...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Astrocytes are neuroglial cells that exhibit functional electrical properties sensitive to neuronal ...
Neuron-astrocyte communication is an important regulatory mechanism in various brain functions but i...
Chemical transmission between neurons and glial cells is an important element of integration in the ...
Astrocytes are neuroglial cells that exhibit functional electrical properties sensitive to neuronal ...
AbstractNeuron-glia interactions are essential for synaptic function, and glial glutamate (re)uptake...
During the past few years, it has been established that astrocytes sense neuronal activity and are i...
In the nervous system, the roles of Kv channels are well established as being critical for regulatin...
Abstract: Astrocytes are involved in maintenance of synaptic microenvironment by glutamate uptake a...
Interactions between separate synaptic inputs converging on the same target appear to contribute to ...
<p>The spontaneous transmembrane currents were monitored in the layer 2/3 pyramidal neurons of neoco...
Brain function is recognized to rely on neuronal activity and signaling processes between neurons, w...
A–Representative fluorescence images of hippocampal slices transduced with iGluSnFR sensor (encapsul...
Brain waves are rhythmic voltage oscillations emerging from the synchronization of individual neuron...
Astrocytes reuptake synaptically released glutamate with electrogenic transporters (GluT), and buffe...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Astrocytes are neuroglial cells that exhibit functional electrical properties sensitive to neuronal ...
Neuron-astrocyte communication is an important regulatory mechanism in various brain functions but i...
Chemical transmission between neurons and glial cells is an important element of integration in the ...
Astrocytes are neuroglial cells that exhibit functional electrical properties sensitive to neuronal ...
AbstractNeuron-glia interactions are essential for synaptic function, and glial glutamate (re)uptake...
During the past few years, it has been established that astrocytes sense neuronal activity and are i...
In the nervous system, the roles of Kv channels are well established as being critical for regulatin...
Abstract: Astrocytes are involved in maintenance of synaptic microenvironment by glutamate uptake a...
Interactions between separate synaptic inputs converging on the same target appear to contribute to ...
<p>The spontaneous transmembrane currents were monitored in the layer 2/3 pyramidal neurons of neoco...
Brain function is recognized to rely on neuronal activity and signaling processes between neurons, w...
A–Representative fluorescence images of hippocampal slices transduced with iGluSnFR sensor (encapsul...
Brain waves are rhythmic voltage oscillations emerging from the synchronization of individual neuron...