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An attempt to localize brain electrical activity sources using EEG with limited number of electrodes

机译:尝试使用数量有限的电极的EEG定位大脑电活动源

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A very interesting research goal is to find underlying sources generating the EEG signal referred to as the "EEG inverse problem''. Its aim is to determine spatial distribution of brain activity, described by local brain currents density, on the basis of potentials measured on the scalp as EEG signal. The purpose of the research presented in the article was to check whether the results of the inverse problem solution, obtained by the LORETA algorithm for the reduced set of 8 electrodes selected by the authors will be close to the results for the initial set of 32 electrodes. EEG signals were registered during the BCI operation based on ERD/ERS potentials. Obtained results showed no significant differences in the location of the most important sources in both cases. It is worth emphasizing that reducing the number of electrodes would have a significant impact on an BCI ergonomics. (C) 2016 Nalecz Institute of Biocybernetics and Biomedical Engineering of the Polish Academy of Sciences. Published by Elsevier Sp. z o.o. All rights reserved.
机译:一个非常有趣的研究目标是找到产生EEG信号的潜在来源,称为“ EEG逆问题”,其目的是确定脑活动的空间分布,并根据测得的电势来确定局部脑电流密度。本文提出的研究目的是检查通过LORETA算法获得的反问题解的结果是否接近于作者选择的8个电极的简化结果。最初的32个电极,在BCI操作期间根据ERD / ERS电势记录了脑电信号,获得的结果表明,两种情况下最重要的源位置均无显着差异,值得强调的是减少电极的数量(C)2016波兰科学院纳莱茨生物控制论与生物医学工程研究所,P。由Elsevier Sp。动物园。版权所有。

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