Reactivating and reorganizing activity-silent working memory: two distinct mechanisms underlying pinging the brain.

IF 2.9 2区 医学 Q2 NEUROSCIENCES Cerebral cortex Pub Date : 2025-02-05 DOI:10.1093/cercor/bhae494
Can Yang, Xianhui He, Ying Cai
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Abstract

Recent studies have proposed that visual information in working memory (WM) can be maintained in an activity-silent state and reactivated by task-irrelevant high-contrast visual impulses ("ping"). Although pinging the brain has become a popular tool for exploring activity-silent WM, its underlying mechanisms remain unclear. In the current study, we directly compared the neural reactivation effects and behavioral consequences of spatial-nonmatching and spatial-matching pings to distinguish the noise-reduction and target-interaction hypotheses of pinging the brain. Initially, in an electroencephalogram study, our neural decoding results showed that spatial-nonmatching pings reactivated activity-silent WM transiently without changing the original WM representations or recall performance. Conversely, spatial-matching pings reactivated activity-silent WM more durably and further reorganized WM information by decreasing neural representations' dynamics. Notably, only the reactivation strength of spatial-matching pings correlated with recall performance and was modulated by the location of memorized items, with neural reactivation occurring only when both items and pings were presented horizontally. Consistently, in a follow-up behavioral study, we found that only spatial-matching, horizontal pings impaired recall performance compared to no ping. Together, our results demonstrated two distinct mechanisms underlying pinging the brain, highlighting the critical role of the ping's context (i.e. spatial information) in reactivating and reorganizing activity-silent WM.

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重新激活和重新组织活动——沉默的工作记忆:两种不同的机制在刺激大脑。
最近的研究表明,工作记忆中的视觉信息可以保持在活动沉默状态,并通过与任务无关的高对比度视觉脉冲(“ping”)重新激活。尽管对大脑进行脉冲探测已成为一种流行的探索无活动脑损伤的工具,但其潜在机制仍不清楚。在本研究中,我们直接比较了空间不匹配和空间匹配ping信号的神经再激活效应和行为后果,以区分ping信号对大脑的降噪和目标交互假设。最初,在脑电图研究中,我们的神经解码结果表明,空间不匹配的ping信号会短暂地重新激活无活动的WM,而不会改变原始WM的表征或回忆性能。相反,空间匹配ping可以更持久地重新激活无活动的WM,并通过降低神经表征的动态来进一步重组WM信息。值得注意的是,只有空间匹配ping信号的再激活强度与记忆的表现相关,并且受到记忆项目位置的调节,只有当项目和ping信号都水平呈现时才会发生神经再激活。在后续的行为研究中,我们一致发现,与没有ping信号相比,只有空间匹配、水平ping信号会损害回忆能力。总之,我们的研究结果显示了两种不同的大脑ping机制,突出了ping的上下文(即空间信息)在重新激活和重组活动-沉默的WM中的关键作用。
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来源期刊
Cerebral cortex
Cerebral cortex 医学-神经科学
CiteScore
6.30
自引率
8.10%
发文量
510
审稿时长
2 months
期刊介绍: Cerebral Cortex publishes papers on the development, organization, plasticity, and function of the cerebral cortex, including the hippocampus. Studies with clear relevance to the cerebral cortex, such as the thalamocortical relationship or cortico-subcortical interactions, are also included. The journal is multidisciplinary and covers the large variety of modern neurobiological and neuropsychological techniques, including anatomy, biochemistry, molecular neurobiology, electrophysiology, behavior, artificial intelligence, and theoretical modeling. In addition to research articles, special features such as brief reviews, book reviews, and commentaries are included.
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