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Temporal Expectations Guide Dynamic Prioritization in Visual Working Memory through Attenuated α Oscillations

机译:时间期望通过衰减的α振荡指导视觉工作记忆中的动态优先级排序

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摘要

Although working memory is generally considered a highly dynamic mnemonic store, popular laboratory tasks used to understand its psychological and neural mechanisms (such as change detection and continuous reproduction) often remain relatively “static,” involving the retention of a set number of items throughout a shared delay interval. In the current study, we investigated visual working memory in a more dynamic setting, and assessed the following: (1) whether internally guided temporal expectations can dynamically and reversibly prioritize individual mnemonic items at specific times at which they are deemed most relevant; and (2) the neural substrates that support such dynamic prioritization. Participants encoded two differently colored oriented bars into visual working memory to retrieve the orientation of one bar with a precision judgment when subsequently probed. To test for the flexible temporal control to access and retrieve remembered items, we manipulated the probability for each of the two bars to be probed over time, and recorded EEG in healthy human volunteers. Temporal expectations had a profound influence on working memory performance, leading to faster access times as well as more accurate orientation reproductions for items that were probed at expected times. Furthermore, this dynamic prioritization was associated with the temporally specific attenuation of contralateral α (8–14 Hz) oscillations that, moreover, predicted working memory access times on a trial-by-trial basis. We conclude that attentional prioritization in working memory can be dynamically steered by internally guided temporal expectations, and is supported by the attenuation of α oscillations in task-relevant sensory brain areas.>SIGNIFICANCE STATEMENT In dynamic, everyday-like, environments, flexible goal-directed behavior requires that mental representations that are kept in an active (working memory) store are dynamic, too. We investigated working memory in a more dynamic setting than is conventional, and demonstrate that expectations about when mnemonic items are most relevant can dynamically and reversibly prioritize these items in time. Moreover, we uncover a neural substrate of such dynamic prioritization in contralateral visual brain areas and show that this substrate predicts working memory retrieval times on a trial-by-trial basis. This places the experimental study of working memory, and its neuronal underpinnings, in a more dynamic and ecologically valid context, and provides new insights into the neural implementation of attentional prioritization within working memory.
机译:尽管通常认为工作记忆是一种高度动态的助记符存储,但用于了解其心理和神经机制(例如变化检测和连续复制)的流行实验室任务通常仍保持相对“静态”,涉及在整个过程中保留一定数量的项。共享延迟间隔。在当前的研究中,我们以更动态的方式研究了视觉工作记忆,并评估了以下内容:(1)内部指导的时间期望是否可以在被认为最相关的特定时间动态地和可逆地对单个助记符进行优先排序; (2)支持这种动态优先级排序的神经底物。参与者将两个颜色不同的定向条编码到视觉工作记忆中,以便在随后探查时以精确的判断来检索一个条的定向。为了测试灵活的时间控制来访问和检索已记住的项目,我们操纵了随时间推移探测两个条形中每个条形的可能性,并记录了健康人类志愿者中的EEG。时间上的期望对工作记忆性能产生了深远的影响,从而导致更快的访问时间以及在期望的时间探查到的物品的方向复制更加准确。此外,这种动态优先级与对侧α(8–14 Hz)振荡在时间上的特定衰减相关,此外,该衰减还可以逐次预测工作记忆的访问时间。我们得出的结论是,工作记忆中的注意优先级可以通过内部指导的时间期望来动态控制,并得到与任务相关的感觉脑区域中α振荡的衰减的支持。>意义声明 ,环境,以目标为导向的灵活行为,还要求保持在活动(工作记忆)存储区中的心理表达也是动态的。我们以比传统更动态的方式研究了工作记忆,并证明对记忆项目何时最相关的期望可以动态地和可逆地对这些项目进行优先排序。此外,我们在对侧视觉大脑区域中发现了这种动态优先级排序的神经基质,并表明该基质在逐个试验的基础上预测了工作记忆的检索时间。这将工作记忆及其神经元基础的实验研究置于更加动态和生态有效的环境中,并为工作记忆中注意优先级的神经实现提供了新见识。

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