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Classification aided analysis of oscillatory signatures in controlled retrieval

机译:控制检索中振荡签名的分类辅助分析

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Control processes are critical for both facilitating and suppressing memory retrieval, but these processes are not well understood. The current work, inspired by a similar fMRI design (Detre et al., in press), used a modified Think/No-Think(TNT) paradigm to investigate the neural signatures of volition over enhancing and suppressing memory retrieval. Previous studies have shown memory enhancement when well-learned stimulus pairs are restudied in cued recall ("Recall or think of studied pair item"), and degradation when restudied with cued suppression ("Avoid thinking of studied pair item"). We used category-based (faces vs.-scenes) multivariate classification of electroencephalography signals to determine if individual target items were successfully retrieved or suppressed. A logistic regression based on classifier output determined that retrieval activation during the cued recall/suppression period was a predictor for subsequent memory. Labeling trials with this internal measure, as opposed to their nominal Think vs. No-Think condition, revealed the classic TNT pattern of enhanced memory for successful cued-retrieval and degraded memory for cued-suppression. This classification process enabled a more selective investigation into the time-frequency signatures of control over retrieval. Comparing controlled retrieval vs. controlled suppression, results showed more prominent Theta oscillations (3 to 8 Hz) in controlled retrieval. Beta oscillations (12 to 30 Hz) were involved in high levels of both controlled retrieval and suppression, suggesting it may have a more general control-related role. These results suggest unique roles for these frequency bands in retrieval processes.
机译:控制过程对于促进和抑制存储器检索,但这些过程并不顺利。目前的工作,灵感来自类似的FMRI设计(Detre等,在压力机),使用了修改的思维/无思想(TNT)范式来调查激怒增强和抑制内存检索的神经签名。先前的研究表明,当在CUE召回(“召回或思考研究的对项目”)中重新确定了学习良好的刺激对时,研究了内存增强,并且在用抑制抑制时劣质时劣化(“避免思考研究的对项目”)。我们使用基于类别的(Faces Vs.-Scales)脑电图信号的多变量分类,以确定是否成功检索或抑制了各个目标项。基于分类器输出的逻辑回归确定了在呼叫/抑制周期期间的检索激活是后续存储器的预测器。标签试验与这种内部措施相反,与他们的名义思维与无思想条件相反,揭示了增强内存的经典TNT模式,用于成功的抑制和降级的抑制记忆。该分类过程使得能够更具选择性的调查来对检索的控制的时频签名。比较受控检索与受控抑制,结果在受控检索中显示出更突出的θ振荡(3至8 Hz)。 β振荡(12至30 Hz)涉及高水平的控制检索和抑制,表明它可能具有更一般的控制相关的作用。这些结果表明了检索过程中这些频段的独特角色。

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