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Parallel odor processing by mitral and middle tufted cells in the OB (Cavarretta et al 2016, 2018)
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"[...] experimental findings suggest that MC and mTC may encode parallel and complementary odor representations. We have analyzed the functional roles of these pathways by using a morphologically and physiologically realistic three-dimensional model to explore the MC and mTC microcircuits in the glomerular layer and deeper plexiform layers. [...]"
Cavarretta F, Burton SD, Igarashi KM, Shepherd GM, Hines ML, Migliore M (2018) Parallel odor processing by mitral and middle tufted cells in the olfactory bulb.
Cavarretta F, Marasco A, Hines ML, Shepherd GM, Migliore M (2016) Glomerular and Mitral-Granule Cell Microcircuits Coordinate Temporal and Spatial Information Processing in the Olfactory Bulb.
Front Comput Neurosci
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Olfactory bulb main tufted middle GLU cell;
Olfactory bulb main interneuron granule MC GABA cell;
Olfactory bulb main interneuron granule TC GABA cell;
Olfactory bulb (accessory) mitral cell;
Olfactory bulb main tufted cell external;
Olfactory bulb short axon cell;
Action Potential Initiation;
Long-term Synaptic Plasticity;
Spatio-temporal Activity Patterns;
Temporal Pattern Generation;
Cavarretta, Francesco [francescocavarretta at hotmail.it];
Hines, Michael [Michael.Hines at Yale.edu];
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Olfactory bulb main interneuron granule MC GABA cell
Olfactory bulb main tufted middle GLU cell
Olfactory bulb main interneuron granule TC GABA cell
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