Frontiers in Computational Neuroscience · 2012 · 93 citations · 200 references
The complexity of the signaling network that underlies astrocyte-synapse interactions may seem discouraging when tackled from a theoretical perspective. Computational modeling is challenged by the fact that many details remain hitherto unknown and conventional approaches to describe synaptic function are unsuitable to explain experimental observations when astrocytic signaling is taken into account. Supported by experimental evidence is the possibility that astrocytes perform genuine information processing by means of their calcium signaling and are players in the physiological setting of the basal tone of synaptic transmission. Here we consider the plausibility of this scenario from a theoretical perspective, focusing on the modulation of synaptic release probability by the astrocyte and its implications on synaptic plasticity. The analysis of the signaling pathways underlying such modulation refines our notion of tripartite synapse and has profound implications on our understanding of brain function.
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Quantal components of the end‐plate potential
J. del Castillo, B. Katz · The Journal of Physiology · 1954 · 2.2K citations · Full text
Synaptic scaling mediated by glial TNF-α
David Stellwagen, Robert C. Malenka · Nature · 2006 · 1.7K citations
Synaptic Scaling, Synaptic Plasticity, Molecular Neuroscience +9
Protoplasmic Astrocytes in CA1 Stratum Radiatum Occupy Separate Anatomical Domains
Eric A. Bushong, Maryann E. Martone, Ying Jones et al. · Journal of Neuroscience · 2002 · 1.5K citations · Full text