期刊论文详细信息
Spatial maps in piriform cortex during olfactory navigation
Article
关键词: HIPPOCAMPAL PLACE CELLS;    ODOR REPRESENTATIONS;    EVOKED ACTIVITY;    DISCRIMINATION;    MODULATION;    RAT;    ASSOCIATION;    RESPONSES;    SPARSENESS;    CIRCUITRY;   
DOI  :  10.1038/s41586-021-04242-3
来源: SCIE
【 摘 要 】

Odours are a fundamental part of the sensory environment used by animals to guide behaviours such as foraging and navigation(1,2). Primary olfactory (piriform) cortex is thought to be the main cortical region for encoding odour identity(3-8). Here, using neural ensemble recordings in freely moving rats performing an odour-cued spatial choice task, we show that posterior piriform cortex neurons carry a robust spatial representation of the environment. Piriform spatial representations have features of a learned cognitive map, being most prominent near odour ports, stable across behavioural contexts and independent of olfactory drive or reward availability. The accuracy of spatial information carried by individual piriform neurons was predicted by the strength of their functional coupling to the hippocampal theta rhythm. Ensembles of piriform neurons concurrently represented odour identity as well as spatial locations of animals, forming an odour-place map. Our results reveal a function for piriform cortex in spatial cognition and suggest that it is well-suited to form odour-place associations and guide olfactory-cued spatial navigation.

【 授权许可】

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