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Classes of Multichannel EEG Microstates in Light and Deep Hypnotic Conditions

机译:轻度和深度催眠条件下的多通道脑电微状态类别

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摘要

The study assessed the brain electric mechanisms of light and deep hypnotic conditions in the framework of EEG temporal microstates. Multichannel EEG of healthy volunteers during initial resting, light hypnosis, deep hypnosis, and eventual recovery was analyzed into temporal EEG microstates of four classes. Microstates are defined by the spatial configuration of their potential distribution maps (?potential landscapes’) on the head surface. Because different potential landscapes must have been generated by different active neural assemblies, it is reasonable to assume that they also incorporate different brain functions. The observed four microstate classes were very similar to the four standard microstate classes A, B, C, D [Koenig, T. et al. Neuroimage, 2002;16: 41–8] and were labeled correspondingly. We expected a progression of microstate characteristics from initial resting to light to deep hypnosis. But, all three microstate parameters (duration, occurrence/second and %time coverage) yielded values for initial resting and final recovery that were between those of the two hypnotic conditions of light and deep hypnosis. Microstates of the classes B and D showed decreased duration, occurrence/second and %time coverage in deep hypnosis compared to light hypnosis; this was contrary to microstates of classes A and C which showed increased values of all three parameters. Reviewing the available information about microstates in other conditions, the changes from resting to light hypnosis in certain respects are reminiscent of changes to meditation states, and changes to deep hypnosis of those in schizophrenic states.
机译:该研究在EEG颞微状态的框架内评估了轻度和深度催眠状态的脑电机制。将健康志愿者在初始静息,轻度催眠,深度催眠和最终恢复过程中的多通道脑电图分析为四个类别的暂时性脑电图微状态。微状态是由其在头部表面上的潜在分布图(“潜在景观”)的空间配置定义的。由于必须由不同的活动神经组件生成不同的潜在景观,因此可以合理地假设它们还具有不同的大脑功能。观察到的四个微状态类别与四个标准微状态类别A,B,C,D非常相似[Koenig,T.等。 Neuroimage,2002; 16:41-8],并进行了相应的标记。我们预期微状态特征将从最初的静息发展到轻度催眠到深度催眠。但是,所有三个微状态参数(持续时间,发生率/秒和%时间覆盖率)产生的初始静息和最终恢复值介于轻度和深度催眠的两种催眠条件之间。与轻度催眠相比,B级和D级微状态显示深部催眠的持续时间,发生率/秒和%时间覆盖率降低;这与A级和C级微状态相反,后者显示所有三个参数的值均增加。回顾其他条件下有关微状态的可用信息,从静息催眠到轻度催眠的某些方面的变化让人联想到冥想状态的改变,以及精神分裂症状态下的深度催眠的变化。

著录项

  • 来源
    《Brain Topography》 |2007年第1期|7-14|共8页
  • 作者单位

    The KEY Institute for Brain-Mind Research University Hospital of Psychiatry Lenggstrasse 31 CH-8032 Zurich Switzerland;

    The KEY Institute for Brain-Mind Research University Hospital of Psychiatry Lenggstrasse 31 CH-8032 Zurich Switzerland;

    Department of Psychiatry Kansai Memorial Hospital Hirakata Osaka Japan;

    The KEY Institute for Brain-Mind Research University Hospital of Psychiatry Lenggstrasse 31 CH-8032 Zurich Switzerland;

    Nara Self-Control Clinic and Institute of Psychology Nara Japan;

    Department of Neuropsychiatry Kansai Medical University Moriguchi Osaka Japan;

    The KEY Institute for Brain-Mind Research University Hospital of Psychiatry Lenggstrasse 31 CH-8032 Zurich Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    EEG Microstates; Hypnosis; Multichannel EEG; Schizophrenia; Meditation;

    机译:脑电微状态;催眠;多通道脑电图;精神分裂症;冥想;

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