非周期图
工作记忆
脑电图
心理学
阿尔法(金融)
感知
任务(项目管理)
神经科学
意识的神经相关物
视觉感受
认知心理学
听力学
信号(编程语言)
神经活动
视觉短时记忆
阿尔法节律
同步(交流)
视觉记忆
大脑活动与冥想
沟通
对比度(视觉)
巴德利工作记忆模型
事件相关电位
视皮层
认知
大脑定位
作者
Molly A. Erickson,Charlotte Li
出处
期刊:PubMed
[National Institutes of Health]
日期:2026-04-07
卷期号:36 (4)
标识
DOI:10.1093/cercor/bhag033
摘要
To date, the physiological mechanisms that support visual working memory (WM) remain poorly understood. One reason is that a typical WM task is unable to distinguish between multiple underlying sub-processes (e.g. perception, attentional control, consolidation/storage), which map onto different neural signals. We used a modified change detection task sequence to examine electroencephalography (EEG) correlates of perception, attentional engagement, and memory consolidation/storage in a sample of 42 individuals. Additionally, we applied a novel analysis approach designed to disentangle the aperiodic and oscillatory components of the EEG signal during the prestimulus and the poststimulus period. We observed: (i) aperiodic parameters were significantly elevated during the pretrial period of the memory consolidation/storage task variant compared to the perception and attention task variants; (ii) prestimulus aperiodic parameters and oscillatory alpha were significantly associated with WM capacity and attentional control, respectively; and (iii) unexpectedly, higher oscillatory alpha was associated with better attentional engagement across participants, as well as within participants. Poststimulus aperiodic parameters and alpha oscillations showed a load-dependent effect in the poststimulus period; however, these parameters were not associated with task performance. This work suggests that aperiodic and alpha oscillatory elements of the EEG signal may serve unique roles in WM capacity and attention.
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