Department for Systems Neuroscience, NeuroImage Nord, University Medical Center Hamburg, Hamburg, Germany.
Cereb Cortex. 2010 Dec;20(12):2787-97. doi: 10.1093/cercor/bhq025. Epub 2010 Mar 1.
In incidental learning situations, contingencies are extracted from the environment without the intention to learn and can change behavior without awareness for the extracted regularity. The development of explicit access to the learned regularity is an important learning mechanism that is rarely examined. With a series of behavioral, electroencephalography (EEG) and functional magnetic resonance imaging (fMRI) studies, we were able to show that the emergence of awareness for a hidden regularity is accompanied by an increase in neural activity and in high-frequency coupling between distant brain areas as observed with a time-frequency resolved EEG analysis. More importantly, the increase in neural coupling was observed before awareness for the learned material was established behaviorally. In addition, coupling increases were paralleled by an fMRI-signal increase in the ventral striatum and the right ventrolateral prefrontal cortex directly preceding the emergence of awareness. The involvement of this system, which has already been linked to the processing of predictions and prediction errors, indicates the relevance of a reinforcement signal to generate awareness for the learned contingencies. Thus, our data provide direct evidence for the necessity of large-scale coupling and the evaluation of a predictive stimulus value as the basis for a transition from implicit to explicit memory.
在偶然学习情境中,人们在没有学习意图的情况下从环境中提取偶然事件,并在没有意识到所提取规律的情况下改变行为。明确获取所学规律的发展是一种重要的学习机制,但很少有研究对此进行检验。通过一系列行为学、脑电图(EEG)和功能磁共振成像(fMRI)研究,我们能够表明,对隐藏规律的意识的出现伴随着神经活动的增加和远距离脑区之间的高频耦合的增加,如时间-频率分辨 EEG 分析所观察到的那样。更重要的是,在行为上建立对所学材料的意识之前,就观察到了神经耦合的增加。此外,耦合的增加与意识出现之前腹侧纹状体和右侧腹外侧前额叶皮层的 fMRI 信号增加平行,这直接表明了强化信号在产生对所学关联的意识方面的相关性。因此,我们的数据为大规模耦合的必要性以及预测刺激值的评估提供了直接证据,这是从内隐记忆到外显记忆转变的基础。
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