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The neural dynamics of task context in free recall

机译:自由召回中任务情境的神经动力学

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Multivariate pattern analysis (MVPA) is a powerful tool for relating theories of cognitive function to the neural dynamics observed while people engage in cognitive tasks. Here, we use the Context Maintenance and Retrieval model of free recall (CMR; Polyn et al., 2009a) to interpret variability in the strength of task-specific patterns of distributed neural activity as participants study and recall lists of words. The CMR model describes how temporal and source-related (here, encoding task) information combine in a contextual representation that is responsible for guiding memory search. Each studied word in the free-recall paradigm is associated with one of two encoding tasks (size and animacy) that have distinct neural representations during encoding. We find evidence for the context retrieval hypothesis central to the CMR model: Task-specific patterns of neural activity are reactivated during memory search, as the participant recalls an item previously associated with a particular task. Furthermore, we find that the fidelity of these task representations during study is related to task-shifting, the serial position of the studied item, and variability in the magnitude of the recency effect across participants. The CMR model suggests that these effects may be related to a central parameter of the model that controls the rate that an internal contextual representation integrates information from the surrounding environment.
机译:多元模式分析(MVPA)是一种强大的工具,可将认知功能理论与人们从事认知任务时观察到的神经动力学联系起来。在这里,我们使用参与者的学习和回忆单词列表,使用自由回忆的上下文维护和检索模型(CMR; Polyn等,2009a)来解释特定任务的分布式神经活动模式强度的可变性。 CMR模型描述了时间和与源相关的信息(在此为编码任务)如何组合在负责指导内存搜索的上下文表示中。自由调用范例中的每个已研究单词都与两个编码任务(大小和动画)之一相关联,在编码过程中它们具有不同的神经表示形式。我们找到了针对CMR模型的上下文检索假设的证据:在记忆搜索过程中,特定于特定任务的神经活动模式被重新激活,因为参与者回忆起以前与特定任务相关的项目。此外,我们发现在研究过程中这些任务表示的保真度与任务转移,研究项目的序列位置以及跨参与者的新近度效果的大小有关。 CMR模型表明,这些影响可能与模型的中央参数有关,该参数控制内部上下文表示集成来自周围环境的信息的速率。

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