| Literature DB >> 31596238 |
Shinichiro Tsutsumi1,2, Naoki Hidaka1,2,3, Yoshikazu Isomura2,4,5, Masanori Matsuzaki2,6, Kenji Sakimura7, Masanobu Kano1,8, Kazuo Kitamura1,2,3.
Abstract
The cerebellum has a parasagittal modular architecture characterized by precisely organized climbing fiber (CF) projections that are congruent with alternating aldolase C/zebrin II expression. However, the behavioral relevance of CF inputs into individual modules remains poorly understood. Here, we used two-photon calcium imaging in the cerebellar hemisphere Crus II in mice performing an auditory go/no-go task to investigate the functional differences in CF inputs to modules. CF signals in medial modules show anticipatory decreases, early increases, secondary increases, and reward-related increases or decreases, which represent quick motor initiation, go cues, fast motor behavior, and positive reward outcomes. CF signals in lateral modules show early increases and reward-related decreases, which represent no-go and/or go cues and positive reward outcomes. The boundaries of CF functions broadly correspond to those of aldolase C patterning. These results indicate that spatially segregated CF inputs in different modules play distinct roles in the execution of goal-directed behavior.Entities:
Keywords: cerebellum; climbing fiber; go/no-go task; mouse; neuroscience
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Year: 2019 PMID: 31596238 PMCID: PMC6844646 DOI: 10.7554/eLife.47021
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.140