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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Coherence analysis of the human sleep electroencephalogram.
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Coherence analysis of the human sleep electroencephalogram.

机译:人类睡眠脑电图的相干分析。

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Animal studies have shown that the sleep-related oscillations in the frequency range of spindles and slow-waves, and in the gamma band occur synchronously over large parts of the cerebral cortex. Coherence analysis was used to investigate these oscillations in the human sleep electroencephalogram. In all-night electroencephalogram recordings from eight young subjects power and coherence spectra within and between cerebral hemispheres were computed from bipolar derivations placed bilaterally along the antero-posterior axis. The 0.75-50 Hz range was examined with a resolution of 0.25 Hz. Distinct peaks in coherence were present in non-rapid eye movement sleep but not in rapid eye movement sleep. The most prominent and consistent peak was seen in the range of sleep spindles (13-14 Hz), and additional peaks were present in the alpha band (9-10 Hz) and low delta band (1-2 Hz). Whereas coherence in the spindle range was highest in stage 2, the alpha peak was most prominent in slow-wave sleep (stages 3 and 4). Interhemispheric coherence at 30 Hz was higher in rapid eye movement sleep than in non-rapid eye movement sleep. There were also marked sleep state-independent regional differences. Coherence between homologous interhemispheric derivations was high in the low frequency range and declined with increasing frequencies, whereas coherence of intrahemispheric and non-homologous interhemispheric derivations was at a low level throughout the spectra. It is concluded that coherence analysis may provide insights into large-scale functional connectivities of brain regions during sleep. The high coherence of sleep spindles is an indication for their widespread and quasi-synchronous occurrence throughout the cortex and may point to their specific role in the sleep process.
机译:动物研究表明,与睡眠相关的振荡在纺锤体和慢波的频率范围内以及在γ波段内在大脑皮质的大部分区域同步发生。相干分析用于研究人类睡眠脑电图中的这些振荡。在整夜的脑电图记录中,来自八个年轻受试者的大脑半球内部和之间的功率和相干光谱是通过沿前后轴双向放置的双极导数计算得出的。以0.25 Hz的分辨率检查0.75-50 Hz的范围。不连贯的峰值出现在快速眼动睡眠中,而不是快速眼动睡眠中。在睡眠纺锤体(13-14 Hz)范围内观察到最突出和一致的峰,在alpha频段(9-10 Hz)和低增量频段(1-2 Hz)中出现了其他峰。在第2阶段,纺锤体范围内的相干性最高,而在慢波睡眠中(第3阶段和第4阶段),α峰最为突出。快速眼动睡眠中30 Hz的半球间相干性高于非快速眼动睡眠。还存在明显的与睡眠状态无关的区域差异。同源半球间导数之间的相干性在低频范围内较高,并且随着频率的增加而降低,而整个光谱中半球内和非同源半球间导数的相干性均较低。结论是,相干分析可以提供有关睡眠期间大脑区域大规模功能连接的见解。睡眠纺锤体的高度连贯性表明它们在整个皮层中广泛且准同步地出现,并可能表明它们在睡眠过程中的特定作用。

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