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首夜效应降低了睡眠对视觉可塑性的有益影响,并改变了潜在的神经化学过程。

First-night effect reduces the beneficial effects of sleep on visual plasticity and modifies the underlying neurochemical processes.

机构信息

Cognitive Somnology RIKEN Hakubi Research Team, RIKEN Cluster for Pioneering Research, Saitama, 351-0106, Japan.

RIKEN Center for Brain Science, Saitama, 351-0106, Japan.

出版信息

Sci Rep. 2024 Jun 22;14(1):14388. doi: 10.1038/s41598-024-64091-8.

Abstract

Individuals experience difficulty falling asleep in a new environment, termed the first night effect (FNE). However, the impact of the FNE on sleep-induced brain plasticity remains unclear. Here, using a within-subject design, we found that the FNE significantly reduces visual plasticity during sleep in young adults. Sleep-onset latency (SOL), an indicator of the FNE, was significantly longer during the first sleep session than the second session, confirming the FNE. We assessed performance gains in visual perceptual learning after sleep and increases in the excitatory-to-inhibitory neurotransmitter (E/I) ratio in early visual areas during sleep using magnetic resonance spectroscopy and polysomnography. These parameters were significantly smaller in sleep with the FNE than in sleep without the FNE; however, these parameters were not correlated with SOL. These results suggest that while the neural mechanisms of the FNE and brain plasticity are independent, sleep disturbances temporarily block the neurochemical process fundamental for brain plasticity.

摘要

个体在新环境中入睡困难,这种现象被称为第一晚效应(FNE)。然而,FNE 对睡眠诱导的大脑可塑性的影响尚不清楚。在这里,我们采用了一种被试内设计,发现 FNE 显著降低了年轻人在睡眠期间的视觉可塑性。睡眠潜伏期(SOL)是 FNE 的一个指标,在第一个睡眠阶段明显长于第二个睡眠阶段,证实了 FNE 的存在。我们使用磁共振波谱和多导睡眠图评估了睡眠后的视觉知觉学习能力的提高,以及睡眠期间早期视觉区域中兴奋性神经递质与抑制性神经递质(E/I)比值的增加。在有 FNE 的睡眠中,这些参数明显小于无 FNE 的睡眠;然而,这些参数与 SOL 无关。这些结果表明,虽然 FNE 和大脑可塑性的神经机制是独立的,但睡眠障碍会暂时阻断对大脑可塑性至关重要的神经化学过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1141/11193735/dd2cd2823e14/41598_2024_64091_Fig1_HTML.jpg

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