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Decoding hierarchical control of sequential behavior in oscillatory EEG activity

机译:解码脑电活动中行为的分层控制

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Despite strong theoretical reasons for assuming that abstract representations organize complex action sequences in terms of subplans (chunks) and sequential positions, we lack methods to directly track such content-independent, hierarchical representations in humans. We applied time-resolved, multivariate decoding analysis to the pattern of rhythmic EEG activity that was registered while participants planned and executed individual elements from pre-learned, structured sequences. Across three experiments, the theta and alpha-band activity coded basic elements and abstract control representations, in particular, the ordinal position of basic elements, but also the identity and position of chunks. Further, a robust representation of higher level, chunk identity information was only found in individuals with above-median working memory capacity, potentially providing a neural-level explanation for working-memory differences in sequential performance. Our results suggest that by decoding oscillatory activity we can track how the cognitive system traverses through the states of a hierarchical control structure.
机译:尽管有很强的理论理由假设抽象表示根据子计划(块)和顺序位置来组织复杂的动作序列,但我们仍缺乏直接跟踪人类中与内容无关的层次表示的方法。我们将时间分辨的多元解码分析应用于有节奏的脑电活动模式,该模式在参与者计划和执行来自预先学习的结构化序列的单个元素时进行了记录。在三个实验中,theta和alpha波段活动编码了基本元素和抽象控件表示形式,尤其是基本元素的序数位置,还有块的标识和位置。此外,仅在具有中等以上工作记忆容量的个人中发现了较高级别的组块身份信息的可靠表示,这可能为顺序性能中的工作内存差异提供了神经层次的解释。我们的结果表明,通过解码振荡活动,我们可以跟踪认知系统如何遍历分层控制结构的状态。

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