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Predicting brain organization with a computational model: 50-year perspective on lateral inhibition and oscillatory gating by dendrodendritic synapses

Academic Article
Publication Date:
2020
abstract:
The first compartmental computer models of brain neurons using the Rall method predicted novel and unexpected dendrodendritic interactions between mitral and granule cells in the olfactory bulb. We review the models from a 50-year perspective on the work that has challenged. supported, and extended the original proposal that these interactions mediate both lateral inhibition and oscillatory activity, essential steps in the neural basis of olfactory processing and perception. We highlight strategies behind the neurophysiological experiments and the Rail methods that enhance the ability of detailed compartmental modeling to give counter-intuitive predictions that lead to deeper insights into neural organization at the synaptic and circuit level. The application of these methods to mechanisms of neurogenesis and plasticity are exciting challenges for the future.
Iris type:
01.01 Articolo in rivista
Keywords:
adult neurogenesis; computer model; lateral inhibition; olfactory bulb; oscillatory waves; ACTION-POTENTIAL INITIATION; GRANULE CELL SPINES; OLFACTORY-BULB; SYNAPTIC-INTERACTIONS; SENSORY INFORMATION; GAMMA-OSCILLATIONS; BETA-OSCILLATIONS; GLOMERULAR LAYER; MITRAL CELLS; DENDRITES
List of contributors:
Migliore, Michele
Authors of the University:
MIGLIORE MICHELE
Handle:
https://iris.cnr.it/handle/20.500.14243/381347
Published in:
JOURNAL OF NEUROPHYSIOLOGY
Journal
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