Interdisciplinary Program in Bioengineering, Graduate School, Seoul National University, Seoul, Republic of Korea.
Institute of Medical and Biological Engineering, Medical Research Center, Seoul National University, Seoul, Republic of Korea.
Sleep. 2021 Jun 11;44(6). doi: 10.1093/sleep/zsaa285.
Sleep is a unique behavioral state that affects body functions and memory. Although previous studies suggested stimulation methods to enhance sleep, a new method is required that is practical for long-term and unconstrained use by people. In this study, we used a novel closed-loop vibration stimulation method that delivers a stimulus in interaction with the intrinsic heart rhythm and examined the effects of stimulation on sleep and memory. Twelve volunteers participated in the experiment and each underwent one adaptation night and two experimental conditions-a stimulation condition (STIM) and a no-stimulation condition (SHAM). The heart rate variability analysis showed a significant increase in the normalized high frequency and the normalized low frequency significantly decreased under the STIM during the slow-wave sleep (SWS) stage. Furthermore, the synchronization ratio between the heartbeat and the stimulus significantly increased under the STIM in the SWS stage. From the electroencephalogram (EEG) spectral analysis, EEG relative powers of slow-wave activity and theta frequency bands showed a significant increase during the STIM in the SWS stage. Additionally, memory retention significantly increased under the STIM compared to the SHAM. These findings suggest that the closed-loop stimulation improves the SWS-stage depth and memory retention, and further provides a new technique for sleep enhancement.
睡眠是一种独特的行为状态,影响着身体机能和记忆。尽管先前的研究提出了一些刺激方法来增强睡眠,但需要一种新的方法,使其能够长期、无约束地被人们使用。在这项研究中,我们使用了一种新的闭环振动刺激方法,该方法与内在的心率相互作用,并研究了刺激对睡眠和记忆的影响。12 名志愿者参与了实验,每个人都经历了一个适应之夜和两个实验条件——刺激条件(STIM)和无刺激条件(SHAM)。心率变异性分析显示,在慢波睡眠(SWS)阶段,STIM 下的归一化高频显著增加,归一化低频显著降低。此外,在 SWS 阶段,STIM 下的心跳与刺激之间的同步比显著增加。从脑电图(EEG)频谱分析来看,在 SWS 阶段,STIM 下的慢波活动和θ频带的 EEG 相对功率显著增加。此外,与 SHAM 相比,STIM 下的记忆保持显著增加。这些发现表明,闭环刺激可以提高 SWS 阶段的深度和记忆保持,并为增强睡眠提供了一种新的技术。