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Using single-trial EEG to predict and analyze subsequent memory

机译:使用单次EEG预测和分析后续记忆

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We show that it is possible to successfully predict subsequent memory performance based on single-trial EEG activity before and during item presentation in the study phase. Two-class classification was conducted to predict subsequently remembered vs. forgotten trials based on subjects' responses in the recognition phase. The overall accuracy across 18 subjects was 59.6% by combining pre- and during-stimulus information. The single-trial classification analysis provides a dimensionality reduction method to project the high-dimensional EEG data onto a discriminative space. These projections revealed novel findings in the pre- and during-stimulus periods related to levels of encoding. It was observed that the pre-stimulus information (specifically oscillatory activity between 25 and 35 Hz) -300 to 0 ms before stimulus presentation and during-stimulus alpha (7-12 Hz) information between 1000 and 1400 ms after stimulus onset distinguished between recollection and familiarity while the during-stimulus alpha information and temporal information between 400 and 800 ms after stimulus onset mapped these two states to similar values.
机译:我们表明,有可能根据研究阶段项目介绍之前和期间的单次EEG活动,成功预测后续的记忆表现。根据受试者在识别阶段的反应,进行了两类分类,以预测随后被记住或被遗忘的试验。结合刺激前和刺激中的信息,18位受试者的总体准确性为59.6%。单次试验分类分析提供了降维方法,可将高维EEG数据投影到判别空间上。这些预测揭示了刺激前和刺激期间与编码水平有关的新颖发现。观察到,刺激前的信息(特别是在25和35 Hz之间的振荡活动)在刺激出现前为-300到0 ms,在刺激发作后1000到1400 ms之间在刺激期间的alpha(7-12 Hz)信息之间有所区别刺激发生后的400到800毫秒之间的刺激过程中的alpha信息和时间信息将这两个状态映射为相似的值。

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