Multiple forms of working memory emerge from synapse–astrocyte interactions in a neuron–glia network model
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Glial Connexins and Pannexins in the Healthy and Diseased Brain
Frontiers The Paradox of Astroglial Ca2 + Signals at the Interface of Excitation and Inhibition
Glia, Neurobiology Journal
BCAM and Duke University researchers introduce the first model of cognitive processing involving glial cells - BCAM News
Astrocytes Are Endogenous Regulators of Basal Transmission at Central Synapses: Cell
Astrocyte's self-repairing characteristics improve working memory in spiking neuronal networks - ScienceDirect
Frontiers Reactive Astrocytes Contribute to Alzheimer's Disease-Related Neurotoxicity and Synaptotoxicity in a Neuron-Astrocyte Co-culture Assay
Astrocytes may play a more profound role in controlling neuronal synaptic plasticity than previously thought
Multiple forms of working memory emerge from synapse–astrocyte interactions in a neuron–glia network model
Random fluctuations and synaptic plasticity enhance working memory activities in the neuron–astrocyte network
Astrocytic processes: from tripartite synapses to the active milieu: Trends in Neurosciences
Frontiers From Synapses to Circuits, Astrocytes Regulate Behavior
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