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The neural correlates of implicit and explicit sequence learning: Interacting networks revealed by the process dissociation procedure

机译:内隐和外显序列学习的神经相关:过程分解程序揭示的交互网络

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摘要

In two H215O PET scan experiments, we investigated the cerebral correlates of explicit and implicit knowledge in a serial reaction time (SRT) task. To do so, we used a novel application of the Process Dissociation Procedure, a behavioral paradigm that makes it possible to separately assess conscious and unconscious contributions to performance during a subsequent sequence generation task. To manipulate the extent to which the repeating sequential pattern was learned explicitly, we varied the pace of the choice reaction time task—a variable that is known to have differential effects on the extent to which sensitivity to sequence structure involves implicit or explicit knowledge. Results showed that activity in the striatum subtends the implicit component of performance during recollection of a learned sequence, whereas the anterior cingulate/mesial prefrontal cortex (ACC/MPFC) supports the explicit component. Most importantly, we found that the ACC/MPFC exerts control on the activity of the striatum during retrieval of the sequence after explicit learning, whereas the activity of these regions is uncoupled when learning had been essentially implicit. These data suggest that implicit learning processes can be successfully controlled by conscious knowledge when learning is essentially explicit. They also supply further evidence for a partial dissociation between the neural substrates supporting conscious and nonconscious components of performance during recollection of a learned sequence.
机译:在两个H215O PET扫描实验中,我们研究了串行反应时间(SRT)任务中显性知识和隐性知识的大脑相关性。为此,我们使用了过程解离过程的一种新颖应用程序,这是一种行为范式,可以在随后的序列生成任务中分别评估有意识和无意识对性能的贡献。为了操纵重复序列模式被明确学习的程度,我们改变了选择反应时间任务的步调-已知该变量对序列结构的敏感性涉及隐性或显性知识的程度具有不同的影响。结果表明,纹状体中的活动在记忆学习序列的过程中隐含了表现的隐性组成部分,而前扣带回/中额前额叶皮层(ACC / MPFC)支持显性组成部分。最重要的是,我们发现ACC / MPFC在显式学习后的序列检索过程中控制了纹状体的活动,而当学习本质上是隐性的时,这些区域的活动是不耦合的。这些数据表明,当学习本质上是显性的时,隐性学习过程可以被有意识的知识成功地控制。他们还提供了进一步的证据,表明在记忆序列的学习过程中,神经底物之间的部分解离支持了有意识和无意识的表演。

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