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High-Pass filtering and dynamic gain regulation enhance vertical bursts transmission along the mossy fiber pathway of cerebellum

Articolo
Data di Pubblicazione:
2010
Abstract:
Signal elaboration in the cerebellum mossy fiber input pathway presents controversial aspects, especially concerning gain regulation and the spot-like (rather than beam-like) appearance of granular to molecular layer transmission. By using voltage-sensitive dye imaging in rat cerebellar slices (Mapelli et al., 2010), we found that mossy fiber bursts optimally excited the granular layer above similar to 50 Hz and the overlaying molecular layer above similar to 100 Hz, thus generating a cascade of high-pass filters. NMDA receptors enhanced transmission in the granular, while GABA-A receptors depressed transmission in both the granular and molecular layer. Burst transmission gain was controlled through a dynamic frequency-dependent involvement of these receptors. Moreover, while high-frequency transmission was enhanced along vertical lines connecting the granular to molecular layer, no high-frequency enhancement was observed along the parallel fiber axis in the molecular layer. This was probably due to the stronger effect of Purkinje cell GABA-A receptor-mediated inhibition occurring along the parallel fibers than along the granule cell axon ascending branch. The consequent amplification of burst responses along vertical transmission lines could explain the spot-like activation of Purkinje cells observed following punctuate stimulation in vivo
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
cerebellum; neurophysiology; granular layer; neuronal excitablity; synaptic transmission; synaptic plasticity; ionic channels; NMDA receptors
Elenco autori:
Mapelli, J; Gandolfi, Daniela; D'Angelo, EGIDIO UGO
Autori di Ateneo:
D'ANGELO EGIDIO UGO
Link alla scheda completa:
https://iris.unipv.it/handle/11571/218245
Pubblicato in:
FRONTIERS IN CELLULAR NEUROSCIENCE
Journal
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