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对侧延迟活动,而不是 alpha 侧化,为工作记忆存储优先处理信息。

Contralateral delay activity, but not alpha lateralization, indexes prioritization of information for working memory storage.

机构信息

University of Münster, Münster, Germany.

Otto Creutzfeldt Center for Cognitive and Behavioral Neuroscience, Münster, Germany.

出版信息

Atten Percept Psychophys. 2023 Apr;85(3):718-733. doi: 10.3758/s13414-023-02681-w. Epub 2023 Mar 14.

Abstract

Working memory is inherently limited, which makes it important to select and maintain only task-relevant information and to protect it from distraction. Previous research has suggested the contralateral delay activity (CDA) and lateralized alpha oscillations as neural candidates for such a prioritization process. While most of this work focused on distraction during encoding, we examined the effect of external distraction presented during memory maintenance. Participants memorized the orientations of three lateralized objects. After an initial distraction-free maintenance interval, distractors appeared in the same location as the targets or in the opposite hemifield. This distraction was followed by another distraction-free interval. Our results show that CDA amplitudes were stronger in the interval before compared with the interval after the distraction (i.e., CDA amplitudes were stronger in response to targets compared with distractors). This amplitude reduction in response to distractors was more pronounced in participants with higher memory accuracy, indicating prioritization and maintenance of relevant over irrelevant information. In contrast, alpha lateralization did not change from the interval before distraction compared with the interval after distraction, and we found no correlation between alpha lateralization and memory accuracy. These results suggest that alpha lateralization plays no direct role in either selective maintenance of task-relevant information or inhibition of distractors. Instead, alpha lateralization reflects the current allocation of spatial attention to the most salient information regardless of task-relevance. In contrast, CDA indicates flexible allocation of working memory resources depending on task-relevance.

摘要

工作记忆的容量是有限的,因此选择并保持与任务相关的信息并防止信息受到干扰非常重要。先前的研究表明,对侧延迟活动(CDA)和侧化的α振荡是这种优先级处理过程的神经候选者。虽然这项工作的大部分都集中在编码过程中的干扰,但我们研究了在记忆维持过程中呈现外部干扰的效果。参与者记忆三个侧化物体的方向。在最初的无干扰维持间隔之后,干扰物出现在与目标相同的位置或在对侧视野中。干扰之后是另一个无干扰间隔。我们的结果表明,与干扰后的间隔相比,CDA 振幅在干扰前的间隔更强(即,与干扰物相比,CDA 振幅对目标的反应更强)。与干扰物相比,这种对干扰物的振幅降低在记忆准确性较高的参与者中更为明显,表明相关信息的优先排序和维持以及无关信息的抑制。相比之下,与干扰前的间隔相比,α侧化在干扰后的间隔中没有变化,并且我们发现α侧化与记忆准确性之间没有相关性。这些结果表明,α侧化在选择性地维持任务相关信息或抑制干扰物方面没有直接作用。相反,α侧化反映了当前对最显著信息的空间注意力分配,而与任务相关性无关。相比之下,CDA 表示根据任务相关性灵活分配工作记忆资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da47/10066168/359ecf451dba/13414_2023_2681_Fig1_HTML.jpg

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