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全头皮人类睡眠中频谱成分与同步性的结构:一项初步研究。

Structure of Spectral Composition and Synchronization in Human Sleep on the Whole Scalp: A Pilot Study.

作者信息

Pastor Jesús, Garrido Zabala Paula, Vega-Zelaya Lorena

机构信息

Clinical Neurophysiology and Instituto de Investigación Biomédica, Hospital Universitario de La Princesa, C/Diego de León 62, 28006 Madrid, Spain.

Facultad de Ciencias de la Salud, Universidad Camilo José Cela, C/Castillo de Alarcón 49, Villafranca del Castillo, 28692 Madrid, Spain.

出版信息

Brain Sci. 2024 Oct 6;14(10):1007. doi: 10.3390/brainsci14101007.

Abstract

We used numerical methods to define the normative structure of the different stages of sleep and wake (W) in a pilot study of 19 participants without pathology (18-64 years old) using a double-banana bipolar montage. Artefact-free 120-240 s epoch lengths were visually identified and divided into 1 s windows with a 10% overlap. Differential channels were grouped into frontal, parieto-occipital, and temporal lobes. For every channel, the power spectrum (PS) was calculated via fast Fourier transform and used to compute the areas for the delta (0-4 Hz), theta (4-8 Hz), alpha (8-13 Hz), and beta (13-30 Hz) bands, which were log-transformed. Furthermore, Pearson's correlation coefficient and coherence by bands were computed. Differences in logPS and synchronization from the whole scalp were observed between the sexes for specific stages. However, these differences vanished when specific lobes were considered. Considering the location and stages, the logPS and synchronization vary highly and specifically in a complex manner. Furthermore, the average spectra for every channel and stage were very well defined, with phase-specific features (e.g., the sigma band during N2 and N3, or the occipital alpha component during wakefulness), although the slow alpha component (8.0-8.5 Hz) persisted during NREM and REM sleep. The average spectra were symmetric between hemispheres. The properties of K-complexes and the sigma band (mainly due to sleep spindles-SSs) were deeply analyzed during the NREM N2 stage. The properties of the sigma band are directly related to the density of SSs. The average frequency of SSs in the frontal lobe was lower than that in the occipital lobe. In approximately 30% of the participants, SSs showed bimodal components in the anterior regions. qEEG can be easily and reliably used to study sleep in healthy participants and patients.

摘要

在一项针对19名无病理状况(年龄在18 - 64岁之间)参与者的初步研究中,我们采用数值方法,使用双香蕉双极导联组合来定义睡眠和清醒(W)不同阶段的规范结构。通过视觉识别出无伪迹的120 - 240秒时长的时段,并将其划分为重叠率为10%的1秒窗口。差分通道被分组为额叶、顶枕叶和颞叶。对于每个通道,通过快速傅里叶变换计算功率谱(PS),并用于计算δ(0 - 4 Hz)、θ(4 - 8 Hz)、α(8 - 13 Hz)和β(13 - 30 Hz)频段的面积,这些面积进行了对数变换。此外,还计算了各频段的皮尔逊相关系数和相干性。在特定阶段,观察到男女之间在整个头皮的对数PS和同步性存在差异。然而,当考虑特定脑叶时,这些差异消失了。考虑到位置和阶段,对数PS和同步性以复杂的方式高度且具体地变化。此外,每个通道和阶段的平均频谱定义良好,具有阶段特异性特征(例如,N2和N3期间的σ频段,或清醒期间枕叶α成分),尽管在非快速眼动睡眠和快速眼动睡眠期间慢α成分(8.0 - 8.5 Hz)持续存在。平均频谱在半球之间是对称的。在非快速眼动睡眠N2阶段,对K复合波和σ频段的特性(主要归因于睡眠纺锤波 - SSs)进行了深入分析。σ频段的特性与SSs的密度直接相关。额叶中SSs的平均频率低于枕叶。在大约30%的参与者中,SSs在前部区域显示出双峰成分。定量脑电图(qEEG)可轻松且可靠地用于研究健康参与者和患者的睡眠情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a5f/11505715/4bd3b37eb4d0/brainsci-14-01007-g0A1.jpg

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