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超越催眠图:使用声电刺激评估睡眠稳定性。

Beyond Hypnograms: Assessing Sleep Stability Using Acoustic and Electrical Stimulation.

机构信息

Department of Neurophysiology, National Institute of Mental Health and Neuro Sciences (NIMHANS), Bengaluru, KA, India.

Axxonet Brain Research Laboratory (ABRL), Axxonet System Technologies Pvt Ltd, Bengaluru, KA, India.

出版信息

Neuromodulation. 2019 Dec;22(8):911-915. doi: 10.1111/ner.12847. Epub 2018 Sep 20.

Abstract

OBJECTIVE

Conventional polysomnographic recordings reflect brain dynamics associated with sleep architecture. We hypothesized that noninvasive tools like transcranial alternating current stimulation (tACS) and acoustic stimulation (for generating event related potentials [ERPs]) would help to predict sleep stability and provide a window to actively assess brain activity during sleep.

MATERIALS AND METHODS

Twelve healthy male volunteers participated in the multiple whole-night polysomnography (PSG) recording protocol. Acoustic tones (100 msec duration) were presented throughout night to evaluate ERP during sleep. Furthermore, 30 sec tACS were presented during nonrapid eye movement (NREM) and rapid eye movement (REM) sleep on subsequent two nights without disturbing the subject's sleep. For ERP analysis, event-locked artifact-free epochs from each sleep stage were averaged separately. For tACS analysis, 30 sec prestimulus and poststimulus artifact-free EEG epochs were subjected to bootstrapping-based comparison of power spectral values.

RESULTS

Acoustic stimulation generated sleep stage-dependent ERP components (N350, N550, and P900) in all participants. The tACS stimulation during NREM sleep (0.75 Hz) increased parietal delta power but decreased frontocentral theta and increased frontal gamma power when delivered during REM sleep (40Hz). These interventions provide details on sleep stability as larger N550-P900 ERP-complex correlated with lower NREM disruptions (Spearman's rho = -0.553; p = 0.049; n = 10) and tACS-related theta power perturbation with higher REM disruptions (Spearman's rho = 0.734; p = 0.030; n = 7).

CONCLUSIONS

Noninvasive brain stimulation approaches such as sleep ERP and sleep tACS are reliable tools to evaluate sleep stability during NREM and REM sleep, respectively, but more large-sample studies are warranted.

摘要

目的

常规多导睡眠图记录反映与睡眠结构相关的大脑动力学。我们假设,像经颅交流电刺激(tACS)和声音刺激(用于产生事件相关电位[ERPs])这样的非侵入性工具将有助于预测睡眠稳定性,并提供一个主动评估睡眠期间大脑活动的窗口。

材料和方法

12 名健康男性志愿者参与了多次全夜多导睡眠图(PSG)记录方案。在整个夜间都呈现声音音调(持续 100 毫秒),以评估睡眠期间的 ERP。此外,在随后的两个晚上,在非快速眼动(NREM)和快速眼动(REM)睡眠期间,在不干扰受试者睡眠的情况下,呈现 30 秒的 tACS。对于 ERP 分析,分别对每个睡眠阶段的事件锁定无伪迹的时段进行平均。对于 tACS 分析,将 30 秒的刺激前和刺激后无伪迹 EEG 时段进行基于引导的功率谱值比较。

结果

在所有参与者中,声音刺激都产生了睡眠阶段依赖性的 ERP 成分(N350、N550 和 P900)。在 NREM 睡眠期间(0.75 Hz)进行 tACS 刺激会增加顶叶 delta 功率,但在 REM 睡眠期间(40Hz)进行刺激时会降低额中央 theta 功率并增加额伽马功率。这些干预措施提供了睡眠稳定性的详细信息,因为较大的 N550-P900 ERP 复合体与较少的 NREM 中断相关(Spearman's rho = -0.553;p = 0.049;n = 10),而 tACS 相关的 theta 功率扰动与较高的 REM 中断相关(Spearman's rho = 0.734;p = 0.030;n = 7)。

结论

非侵入性脑刺激方法,如睡眠 ERP 和睡眠 tACS,是分别评估 NREM 和 REM 睡眠稳定性的可靠工具,但需要更多的大样本研究。

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