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解码视觉选择准备过程中工作记忆表征的状态。

Decoding the status of working memory representations in preparation of visual selection.

机构信息

Department of Experimental and Applied Psychology, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Van der Boechorststraat 1, 1081BT, Amsterdam, Netherlands.

Department of Experimental and Applied Psychology, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Van der Boechorststraat 1, 1081BT, Amsterdam, Netherlands.

出版信息

Neuroimage. 2019 May 1;191:549-559. doi: 10.1016/j.neuroimage.2019.02.069. Epub 2019 Mar 3.

Abstract

Daily life is filled with sequences of multiple tasks, each with their own relevant perceptual input. Working memory needs to dissociate representations that drive attention towards currently relevant information from prospective representations that are needed for future tasks, but that until then should be prevented from guiding attention. Yet, little is known about how the brain initiates and controls such sequential prioritization of selection. In the current study we recorded EEG while subjects remembered a color as the target template for one of two sequential search tasks, thus making it either currently relevant (when it was the target for the first search) or prospectively relevant (when it was the target for the second search) prior to the task sequence. Using time-frequency specific linear classifiers, we were able to predict the priority status (current versus prospective) of the memory representation from multivariate patterns of delta (2-4 Hz) and non-lateralized alpha power (8-14 Hz) during both delay periods. The delta band was only transiently involved when initializing the priority status at the start of the first delay, or when switching priority during the second delay, which we interpret as reflecting the momentary top-down control over prioritization. In contrast, alpha power decoding was based on a more stable pattern of activity that generalized across time both within and between delay periods, which we interpret as reflecting a difference in the prioritized memory representations themselves. Taken together, we reveal the involvement of a complex, distributed and dynamic spatiotemporal landscape of frequency-specific oscillatory activity in controlling prioritization of information within working memory.

摘要

日常生活充满了一系列的多项任务,每项任务都有其相关的感知输入。工作记忆需要将注意力驱动到当前相关信息的表示与未来任务所需的预期表示区分开来,但在此之前,应防止预期表示引导注意力。然而,大脑如何启动和控制这种选择的顺序优先化,人们知之甚少。在目前的研究中,我们在被试者回忆颜色作为两个连续搜索任务之一的目标模板时记录了 EEG,从而使颜色在任务序列之前成为当前相关(当它是第一个搜索的目标时)或预期相关(当它是第二个搜索的目标时)。使用时频特定的线性分类器,我们能够从多变量模式的 delta(2-4 Hz)和非侧向化 alpha 功率(8-14 Hz)中预测记忆表示的优先级状态(当前与预期)在两个延迟期间。当在第一个延迟开始时初始化优先级状态时,或者当在第二个延迟期间切换优先级时,delta 频带仅暂时参与,我们将其解释为反映了对优先级的即时自上而下控制。相比之下,alpha 功率解码基于更稳定的活动模式,该模式在时间内和延迟期间都具有通用性,我们将其解释为反映了优先级记忆表示本身的差异。总之,我们揭示了在控制工作记忆中信息的优先级时,特定于频率的振荡活动的复杂、分布式和动态时空景观的参与。

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