Department of Applied Social Sciences, The Hong Kong Polytechnic University, Hong Kong, People's Republic of China.
The State Key Laboratory of Brain and Cognitive Sciences, The University of Hong Kong, Hong Kong, People's Republic of China.
PLoS Biol. 2023 Nov 20;21(11):e3002399. doi: 10.1371/journal.pbio.3002399. eCollection 2023 Nov.
Understanding how individual memories are reactivated during sleep is essential in theorizing memory consolidation. Here, we employed the targeted memory reactivation (TMR) paradigm to unobtrusively replaying auditory memory cues during human participants' slow-wave sleep (SWS). Using representational similarity analysis (RSA) on cue-elicited electroencephalogram (EEG), we found temporally segregated and functionally distinct item-specific neural representations: the early post-cue EEG activity (within 0 to 2,000 ms) contained comparable item-specific representations for memory cues and control cues, signifying effective processing of auditory cues. Critically, the later EEG activity (2,500 to 2,960 ms) showed greater item-specific representations for post-sleep remembered items than for forgotten and control cues, indicating memory reprocessing. Moreover, these later item-specific neural representations were supported by concurrently increased spindles, particularly for items that had not been tested prior to sleep. These findings elucidated how external memory cues triggered item-specific neural representations during SWS and how such representations were linked to successful long-term memory. These results will benefit future research aiming to perturb specific memory episodes during sleep.
理解个体记忆在睡眠中是如何被重新激活的,对于记忆巩固理论的构建至关重要。在这里,我们采用了目标记忆再激活(TMR)范式,在人类参与者的慢波睡眠(SWS)期间,非侵入性地回放听觉记忆线索。通过对线索诱发的脑电图(EEG)进行表示相似性分析(RSA),我们发现了时间分离且功能上不同的特定项目的神经表示:在 cue-elicited EEG 中,早期的后线索 EEG 活动(0 到 2000ms 内)包含了对记忆线索和控制线索的可比较的特定项目的表示,表明对听觉线索的有效处理。至关重要的是,后期的 EEG 活动(2500 到 2960ms)对于睡眠后被记住的项目表现出更大的特定项目的表示,而对于遗忘的和控制的线索则表现出记忆再处理。此外,这些后期特定项目的神经表示得到了同时增加的纺锤波的支持,特别是对于那些在睡眠前没有进行测试的项目。这些发现阐明了外部记忆线索如何在 SWS 期间触发特定项目的神经表示,以及这些表示如何与成功的长期记忆相关联。这些结果将有益于未来旨在在睡眠期间干扰特定记忆事件的研究。