International audienceInformation transfer may not be limited only to synapses. Therefore, the processes and dynamics of biological neuron-astrocyte coupling and intercellular interaction within this domain are worth investigating. Existing models of tripartite synapse consider an astrocyte as a point process. Here, we extended the tripartite synapse model by considering the astrocytic processes (synaptic and perinodal) as compartments. The scattered extrinsic signals in the extracellular space and the presence of calcium stores in different astrocytic sites create local transient [Ca2+]. We investigated the Ca2+ dynamics and found that the increase in astrocytic intracellular [Ca2+] enhances the probability of neurotransmitter release. How...
During the last years, a great amount of evidence demonstrates the existence of bidirectional commun...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
Recent research in neuroscience indicates the importance of tripartite synapses and gliotransmission...
International audienceInformation transfer may not be limited only to synapses. Therefore, the proce...
International audienceInformation transfer may not be limited only to synapses. Therefore, the proce...
In this paper we present a mathematical model of tripartite synapses, where astrocytes mediate infor...
In the last years, the classical view of glial cells (in particular of astrocytes) as a simple suppo...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
The concept of a tripartite synapse holds that astrocytes can affect both the pre- and postsynaptic ...
During the last years, a great amount of evidence demonstrates the existence of bidirectional commun...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
Recent research in neuroscience indicates the importance of tripartite synapses and gliotransmission...
International audienceInformation transfer may not be limited only to synapses. Therefore, the proce...
International audienceInformation transfer may not be limited only to synapses. Therefore, the proce...
In this paper we present a mathematical model of tripartite synapses, where astrocytes mediate infor...
In the last years, the classical view of glial cells (in particular of astrocytes) as a simple suppo...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
Astrocytes can sense local synaptic release of glutamate by metabotropic glutamate receptors. Recept...
The concept of a tripartite synapse holds that astrocytes can affect both the pre- and postsynaptic ...
During the last years, a great amount of evidence demonstrates the existence of bidirectional commun...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
Recent research in neuroscience indicates the importance of tripartite synapses and gliotransmission...