Computational Astrocyence: Astrocytes encode inhibitory activity into the frequency and spatial extent of their calcium elevations

March 18, 2019 Β· Declared Dead Β· πŸ› 2019 IEEE EMBS International Conference on Biomedical & Health Informatics (BHI)

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Authors Ioannis E. Polykretis, Vladimir A. Ivanov, Konstantinos P. Michmizos arXiv ID 1903.07533 Category q-bio.CB Cross-listed cs.NE Citations 4 Venue 2019 IEEE EMBS International Conference on Biomedical & Health Informatics (BHI) Last Checked 3 months ago
Abstract
Deciphering the complex interactions between neurotransmission and astrocytic $Ca^{2+}$ elevations is a target promising a comprehensive understanding of brain function. While the astrocytic response to excitatory synaptic activity has been extensively studied, how inhibitory activity results to intracellular $Ca^{2+}$ waves remains elusive. In this study, we developed a compartmental astrocytic model that exhibits distinct levels of responsiveness to inhibitory activity. Our model suggested that the astrocytic coverage of inhibitory terminals defines the spatial and temporal scale of their $Ca^{2+}$ elevations. Understanding the interplay between the synaptic pathways and the astrocytic responses will help us identify how astrocytes work independently and cooperatively with neurons, in health and disease.
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