Multiple forms of working memory emerge from synapse–astrocyte interactions in a neuron–glia network model

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Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
Astrocytes integrate and drive action potential firing in inhibitory subnetworks
Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
Glia, Neurobiology Journal
Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
PDF) Multiple forms of working memory emerge from synapse-astrocyte interactions in a neuron-glia network model
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
Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
Glia, Neurobiology Journal
Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
Rapid astrocyte-dependent facilitation amplifies multi-vesicular release in hippocampal synapses - ScienceDirect
Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
In Focus — Glial Cells the forgotten half of the brain
Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
Frontiers Roles of Glial Cells in Sculpting Inhibitory Synapses and Neural Circuits
Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
Frontiers A Logic Model of Neuronal-Glial Interaction Suggests Altered Homeostatic Regulation in the Perpetuation of Neuroinflammation
Multiple forms of working memory emerge from synapse–astrocyte interactions  in a neuron–glia network model
Astrocytic processes: from tripartite synapses to the active milieu: Trends in Neurosciences
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