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The transition from implicit to explicit representations in incidental learning situations: More evidence from high-frequency EEG coupling

机译:偶然学习情况下从隐式表示到显式表示的转变:高频脑电耦合的更多证据

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摘要

Implicit learning, i.e. knowledge acquisition in incidental learning situations, is a fundamental feature of the human mind. The extraction of (and subsequent adaptation to) regular patterns in the environment facilitates everyday actions. The cognitive and neural processes accompanying the transition from subconscious (implicit) to verbally reportable (explicit) knowledge about task contingencies are of high interest to the cognitive neurosciences, since they indicate a process that generates awareness for learned associations. Previous studies indicated an important role of high-frequency coupling (gamma-band) for the process that initiates the emergence of awareness for an implicitly learned task-underlying structure. It is unclear, however, whether this EEG coupling is indicative of a general, task-independent process accompanying the shift between implicit and explicit knowledge. To test the general role of this synchrony effect, we investigated EEG gamma-band coherence in the time period where this transition takes place using a serial reaction time paradigm. As expected, we find increased coupling in the gamma-band EEG between right prefrontal and occipital electrode sites just before the behavioural manifestation of emerging explicit sequence representation. These results support both the notion of general involvement of widespread cortical associative couplings in the generation of conscious knowledge and the necessity to study emerging consciously available memory representations using fine-grained properties of behavioural data.
机译:内隐学习,即偶然学习情况下的知识获取,是人脑的基本特征。提取(以及随后适应)环境中的常规模式有助于日常行动。认知和神经过程伴随着从潜意识(内隐)到口头可报告(显性)的关于任务紧急情况的知识的转变,引起认知神经科学的极大兴趣,因为它们表明了一个过程,该过程可以生成对已学会联想的认识。先前的研究表明,高频耦合(伽马波段)在该过程中起着重要作用,该过程引发了对隐性学习的任务基础结构的认识的出现。然而,目前尚不清楚这种EEG耦合是否表示伴随着内隐知识和外显知识之间的转移的,一般的,与任务无关的过程。为了测试这种同步效应的一般作用,我们使用串行反应时间范式研究了在这种过渡发生的时间段内的脑电图伽玛带相干性。正如预期的那样,我们发现在新兴显式序列表示的行为表现出现之前,右前额叶和枕叶电极位点之间的伽马波段脑电图的耦合增加。这些结果既支持广泛的皮质联想耦合普遍参与有意识知识的生成的观点,也支持使用行为数据的细粒度属性研究新兴的有意识可用记忆表示的必要性。

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