The fundamental attribute of neurons is their cellular electrical excitability, which is based on the expression of a plethora of ligand- and voltage-gated membrane channels that give rise to prominent membrane currents and membrane potential variations that represent the biophysical substrate underlying the transfer and integration of information at the cellular level. Dendrites have both an electrical and a biochemical character, which are closely linked. In contrast, glial cells are non-electrically excitable but nevertheless display a form of excitability that is based on variations of the Ca2+ concentration in the cytosol rather than electrical changes in the membrane. Cytoplasmic Ca2+ serves as an intracellular signal that is respons...
The changes in the intracellular free Ca2+ concentration, [Ca2+]i, mediated by glutamate and D-aspar...
Astroglial networks constitute a non-neuronal communication system in the brain and are acknowledged...
<div><p>Neuron-astrocyte communication is an important regulatory mechanism in various brain functio...
Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium cu...
Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium cu...
Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium cu...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Epilepsy is characterized by the hyperexcitability of individual neurons and hyper synchronization o...
Empirical research in the last decade revealed that astrocytes can respond to neurotransmitters with...
The synaptic control of the astrocytic intracellular Ca2+ is crucial in the reciprocal astrocyte-neu...
Empirical research in the last decade revealed that astrocytes can respond to neurotransmitters with...
Glial cells respond to various electrical, mechanical, and chemical stimuli, including neurotransmit...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Astrocytes are considered active partners to neurons in information processing. Heterogeneous, bidir...
The changes in the intracellular free Ca2+ concentration, [Ca2+]i, mediated by glutamate and D-aspar...
Astroglial networks constitute a non-neuronal communication system in the brain and are acknowledged...
<div><p>Neuron-astrocyte communication is an important regulatory mechanism in various brain functio...
Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium cu...
Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium cu...
Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium cu...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Epilepsy is characterized by the hyperexcitability of individual neurons and hyper synchronization o...
Empirical research in the last decade revealed that astrocytes can respond to neurotransmitters with...
The synaptic control of the astrocytic intracellular Ca2+ is crucial in the reciprocal astrocyte-neu...
Empirical research in the last decade revealed that astrocytes can respond to neurotransmitters with...
Glial cells respond to various electrical, mechanical, and chemical stimuli, including neurotransmit...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
International audienceNeuron-astrocyte communication is an important regulatory mechanism in various...
Astrocytes are considered active partners to neurons in information processing. Heterogeneous, bidir...
The changes in the intracellular free Ca2+ concentration, [Ca2+]i, mediated by glutamate and D-aspar...
Astroglial networks constitute a non-neuronal communication system in the brain and are acknowledged...
<div><p>Neuron-astrocyte communication is an important regulatory mechanism in various brain functio...