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Resolving the dynamics of EEG generators by multichannel recordings

机译:通过多通道录音解决脑电图生成器的动力学问题

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摘要

The voltage recorded over the cortex (ECoG) or over the scalp (EEG) is generated by currents derived from many sources called “generators”. Different patterns and amplitudes are observed in aroused, sleepy, epileptic or other brain states. Differences in amplitude are generally attributed to differences in synchrony among generators. The degree of EEG synchrony is measured by the correlation between electrodes placed over different cortical regions. We present a new way to quantitatively assess the degree of synchronization of these generators via multichannel recordings. We illustrate how situations where there are several groups of generators with different inter-group and intra-group synchronies can be analyzed. Finally, we present a way to identify the organization of groups exhibiting topographic organization. Although the model presented here is highly simplified, several methods are based on averaging activity over increasingly larger areas. These types of measurements may be applied as well to EEG and ECoG recordings.
机译:大脑皮层(ECoG)或头皮(EEG)上记录的电压是由从称为“发电机”的许多来源获得的电流产生的。在唤醒,困倦,癫痫或其他大脑状态下观察到不同的模式和幅度。幅度的差异通常归因于发电机之间的同步差异。脑电同步程度通过放置在不同皮质区域上的电极之间的相关性来衡量。我们提出了一种通过多通道录音定量评估这些发生器的同步程度的新方法。我们说明了如何分析具有不同组间和组内同步的几组生成器的情况。最后,我们提出一种方法来识别展现地形组织的团体的组织。尽管此处介绍的模型已高度简化,但是有几种方法是基于对越来越大的区域进行平均活动的。这些类型的测量也可以应用于EEG和ECoG记录。

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