工作记忆
编码(内存)
心理学
视觉短时记忆
对象(语法)
背景(考古学)
视觉记忆
特征(语言学)
认知
认知心理学
标志性记忆
可视对象
视觉感受
神经活动
计算机科学
语义记忆
视觉搜索
功能(生物学)
短时记忆
长期记忆
视觉对象识别的认知神经科学
脑电图
沟通
模式识别(心理学)
财产(哲学)
简单(哲学)
神经科学
意识的神经相关物
识别记忆
人工智能
备忘录
空间记忆
认知科学
视皮层
大脑活动与冥想
作者
Yong Hoon Chung,Timothy F. Brady,Viola S. Störmer
摘要
Visual working memory is a core cognitive function that allows active storage of task-relevant visual information. Contrary to the common assumption that the capacity of this system is fixed with respect to a single feature dimension, recent research has shown that working memory performance for a simple visual feature-color-is improved when this feature is encoded as part of a real-world object relative to an unrecognizable scrambled object. Using EEG (n = 24), we here demonstrate that this performance benefit is supported by increased neural engagement during the retention period, as indexed by enlarged contralateral delay activity during maintenance. Furthermore, the pattern of neural activity across parietal-occipital electrodes was more stable across time, suggesting that real-world objects may support more robust memory representations. Finally, we report a novel fronto-central ERP that distinguishes between real-world objects and scrambled objects during encoding and maintenance processes. Overall, our results demonstrate that active visual working memory capacity for simple features is not fixed but can expand depending on what context these features are encoded in.
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