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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Analysis of the interrelations between a low-frequency and a high-frequency signal component in human neonatal EEG during quiet sleep.
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Analysis of the interrelations between a low-frequency and a high-frequency signal component in human neonatal EEG during quiet sleep.

机译:分析人类新生儿脑电图在安静睡眠过程中低频和高频信号成分之间的相互关系。

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摘要

It can be shown that dominant rhythmic signal components of neonatal EEG burst patterns (discontinuous EEG in quiet sleep) are characterised by a quadratic phase coupling (bispectral analysis). A so-called 'initial wave' (narrow band rhythm within a frequency range of 3-12 Hz) can be demonstrated within the first part of the burst pattern. The detection of this signal component and of the phase coupling is more successful in the frontal region. By means of amplitude demodulation of the 'initial wave' and a subsequent coherence analysis the phase coupling can be attributed to an amplitude modulation, i.e. the envelope curve of the 'initial wave' shows for a distinct period of time the same qualitative course as the signal trace of a 'lower' frequency component (0.75-3 Hz). The results were derived from six neonates (20 burst patterns for each neonate; 8 channel recordings).
机译:可以证明,新生儿脑电图突发模式(安静睡眠中的间断性脑电图)的主要节律信号成分的特征在于二次相位耦合(双频谱分析)。可以在突发模式的第一部分内演示所谓的“初始波”(3-12 Hz频率范围内的窄带节律)。该信号分量和相位耦合的检测在额叶区域更为成功。通过对“初始波”进行幅度解调和随后的相干分析,可以将相位耦合归因于幅度调制,即“初始波”的包络曲线在不同的时间段内显示出与初始波相同的定性过程。 “较低”频率分量(0.75-3 Hz)的信号轨迹。结果来自六个新生儿(每个新生儿20个突发模式; 8个通道记录)。

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