睡眠(系统调用)
多导睡眠图
唤醒
听力学
慢波睡眠
心率变异性
心理学
非快速眼动睡眠
睡眠阶段
睡眠剥夺
医学
心率
内科学
昼夜节律
脑电图
神经科学
血压
操作系统
计算机科学
作者
Emil Hein,Risto Halonen,Thomas Wolbers,Tommi Makkonen,Markus Kyllönen,Liisa Kuula,Ilmari Kurki,Philipp Stepnicka,Anu‐Katriina Pesonen
标识
DOI:10.1016/j.ynstr.2024.100613
摘要
Evidence of the impact of chronic stress on sleep is abundant, yet experimental sleep studies with a focus on acute stress are scarce and the results are mixed. Our study aimed to fill this gap by experimentally investigating the effects of pre-sleep social stress on sleep dynamics during the subsequent night, as measured with polysomnography (PSG). Thirty-four healthy individuals (65% females, Mage = 25.76 years SD = 3.35) underwent a stress-inducing (SC) or neutral control condition (CC) in virtual reality (VR). We used overnight EEG measurements to analyze sleep architecture and power spectral density (PSD) across the sleep cycles, and measured heart rate and its variability (HRV), skin electrodermal activity (EDA), and salivary cortisol to capture physiological arousal during the VR task and the pre-sleep period. Following acute stress (SC), the amount of slow-wave sleep (SWS) was higher and N2 sleep lower relative to CC, specifically in the first sleep cycle. In SC, PSD was elevated in the beta-low (16–24Hz) and beta-high (25–35Hz) frequency ranges during both stages N2 and SWS over the entire night. Sleep promoted adaptation to acute social stress by a longer duration of SWS in the subsequent sleep period, especially in early sleep. A similar homeostatic effect towards restorative sleep is well-evidenced in animal model stress studies but has not been previously reported in experimental human studies. Whether the high-frequency PSD activity during stages N2 and SWS also serves in the resolution of transient stress, remains open.
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