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Learning improves decoding of odor identity with phase-referenced oscillations in the olfactory bulb

Learning improves decoding of odor identity with phase-referenced oscillations in the olfactory bulb

来源:bioRxiv_logobioRxiv
英文摘要

SUMMARY Local field potential oscillations reflect temporally coordinated neuronal ensembles— coupling distant brain regions, gating processing windows, and providing a reference for spike timing-based codes. In phase amplitude coupling (PAC), the amplitude of the envelope of a faster oscillation is larger within a phase window of a slower carrier wave. Here, we characterized PAC, and the related theta phase-referenced high gamma and beta power (PRP), in the olfactory bulb of mice learning to discriminate odorants. PAC changes throughout learning, and odorant-elicited changes in PRP increase for rewarded and decrease for unrewarded odorants. Odorant identity can be decoded from peak PRP in animals proficient in odorant discrimination, but not in na?ve mice. As the animal learns to discriminate the odorants the dimensionality of PRP decreases. Therefore, modulation of phase-referenced chunking of information in the course of learning plays a role in early sensory processing in the high input dimensionality sense of olfaction.

Gilmer Jesse、Losacco Justin、Restrepo Diego、Ramirez-Gordillo Daniel

Neuroscience Graduate Program||Department of Physiology and Biophysics University of Colorado Anschutz Medical CampusNeuroscience Graduate Program||Department of Cell and Developmental BiologyNeuroscience Graduate Program||Department of Cell and Developmental BiologyDepartment of Cell and Developmental Biology

10.1101/758813

生物物理学

Gilmer Jesse,Losacco Justin,Restrepo Diego,Ramirez-Gordillo Daniel.Learning improves decoding of odor identity with phase-referenced oscillations in the olfactory bulb[EB/OL].(2025-03-28)[2025-05-02].https://www.biorxiv.org/content/10.1101/758813.点此复制

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