首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Gamma and beta frequency oscillations in response to novel auditory stimuli: A comparison of human electroencephalogram (EEG) data with in vitro models
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Gamma and beta frequency oscillations in response to novel auditory stimuli: A comparison of human electroencephalogram (EEG) data with in vitro models

机译:伽玛和β频率振荡响应新型听觉刺激:人类脑电图(EEG)数据与体外模型的比较

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摘要

Investigations using hippocampal slices maintained in vitro have demonstrated that bursts of oscillatory field potentials in the gamma frequency range (30–80 Hz) are followed by a slower oscillation in the beta 1 range (12–20 Hz). In this study, we demonstrate that a comparable gamma-to-beta transition is seen in the human electroencephalogram (EEG) in response to novel auditory stimuli. Correlations between gamma and beta 1 activity revealed a high degree of interdependence of synchronized oscillations in these bands in the human EEG. Evoked (stimulus-locked) gamma oscillations preceded beta 1 oscillations in response to novel stimuli, suggesting that this may be analogous to the gamma-to-beta shift observed in vitro. Beta 1 oscillations were the earliest discriminatory responses to show enhancement to novel stimuli, preceding changes in the broad-band event-related potential (mismatch negativity). Later peaks of induced beta activity over the parietal cortex were always accompanied by an underlying gamma frequency oscillation as seen in vitro. A further analogy between in vitro and human recordings was that both gamma and beta oscillations habituated markedly after the initial novel stimulus presentation.
机译:使用体外维持的海马切片进行的研究表明,在伽马频率范围(30–80 Hz)中爆发出振荡场电势,随后在β1范围(12–20 Hz)中出现较慢的振荡。在这项研究中,我们证明了在人类脑电图(EEG)中可以看到对新的听觉刺激做出类似的从伽玛到β的转变。 γ和β1活性之间的相关性揭示了人类脑电图这些频段中同步振荡的高度相互依赖性。响应新的刺激,诱发的(刺激锁定)伽马振荡先于beta 1振荡,这表明这可能类似于体外观察到的伽马到β的转变。 Beta 1振荡是最早的歧视性反应,显示出对新刺激的增强作用,而宽带事件相关电位(失配负性)发生变化之前。如在体外所见,在顶叶皮质上诱导的β活性的后来峰值总是伴随着潜在的伽马频率振荡。体外和人类记录之间的进一步类比是,在最初的新型刺激表现之后,γ和β振荡均显着习性。

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