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睡眠期间通过气味激活记忆:气味特异性及睡眠振荡的相关变化

Reactivating memories during sleep by odors: odor specificity and associated changes in sleep oscillations.

作者信息

Rihm Julia S, Diekelmann Susanne, Born Jan, Rasch Björn

机构信息

University of Zurich, Switzerland.

出版信息

J Cogn Neurosci. 2014 Aug;26(8):1806-18. doi: 10.1162/jocn_a_00579. Epub 2014 Jan 23.

Abstract

Memories are reactivated during sleep. Re-exposure to olfactory cues during sleep triggers this reactivation and improves later recall performance. Here, we tested if the effects of odor-induced memory reactivations are odor-specific, that is, requiring the same odor during learning and subsequent sleep. We also tested whether odor-induced memory reactivation affects oscillatory EEG activity during sleep, as a putative mechanism underlying memory processing during sleep. Participants learned a visuospatial memory task under the presence of an odor. During subsequent SWS, the same odor, a different odor, or an odorless vehicle was presented. We found that odor re-exposure during sleep significantly improves memory only when the same odor was presented again, whereas exposure to a new odor or the odorless vehicle had no effect. The memory-enhancing effect of the congruent odor was accompanied by significant increases in frontal delta (1.5-4.5 Hz) and parietal fast spindle (13.0-15.0 Hz) power as well as by an increased negative-to-positive slope of the frontal slow oscillation. Our results indicate that odor-induced memory reactivations are odor specific and trigger changes in slow-wave and spindle power possibly reflecting a bottom-up influence of hippocampal memory replay on cortical slow oscillations as well as thalamo-cortical sleep spindles.

摘要

记忆在睡眠期间会被重新激活。睡眠期间再次接触嗅觉线索会触发这种重新激活,并提高之后的回忆表现。在此,我们测试了气味诱导的记忆重新激活的效果是否具有气味特异性,即学习期间和随后睡眠期间需要相同的气味。我们还测试了气味诱导的记忆重新激活是否会影响睡眠期间的脑电振荡活动,这是睡眠期间记忆处理的一种潜在机制。参与者在一种气味存在的情况下学习一项视觉空间记忆任务。在随后的慢波睡眠期间,呈现相同的气味、不同的气味或无味载体。我们发现,只有当再次呈现相同的气味时,睡眠期间的气味重新接触才会显著改善记忆,而接触新气味或无味载体则没有效果。一致气味的记忆增强作用伴随着额叶δ波(1.5 - 4.5赫兹)和顶叶快纺锤波(13.0 - 15.0赫兹)功率的显著增加,以及额叶慢振荡的负向到正向斜率的增加。我们的结果表明,气味诱导的记忆重新激活具有气味特异性,并触发慢波和纺锤波功率的变化,这可能反映了海马体记忆重演对皮层慢振荡以及丘脑 - 皮层睡眠纺锤波的自下而上的影响。

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