工作记忆表象的再激活会影响注意力的引导。

Psychophysiology Pub Date : 2024-03-01 Epub Date: 2024-01-06 DOI:10.1111/psyp.14514
Xiaowei Che, Haomin Lian, Feiyan Zhang, Shouxin Li, Yuanjie Zheng
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摘要

最近的研究表明,支持工作记忆(WM)存储的神经活动是随时间变化的,而这种动态存储决定了记忆效果。WM 表征的时间动态是否也会影响视觉搜索?为了解决这些问题,我们在实验一和实验二中分别通过分析脑电图(EEG)和事件相关光学信号(EROS)跟踪了视觉搜索过程中 WM 表征重新激活的时间过程,并在实验三中研究了表征重新激活与分心抑制之间的相互作用。参与者必须在高精度或低精度要求下在 WM 中保持一种颜色,并完成随后的搜索任务。WM 表征的重新激活由高于机会的解码准确率来定义。脑电图结果显示,与低精确度要求相比,在高精确度要求下,WM匹配的分心物吸引了更多注意力,WM表征被重新激活的频率也更高。EROS结果显示,与低精度要求相比,在高精度要求下的视觉搜索过程中,枕叶皮层在WM匹配与WM不匹配条件下的活动增加出现在224毫秒处。回归分析表明,视觉搜索过程中的表象再激活直接预测了基于WM的行为注意捕获效应,而视觉搜索前的表象再激活则通过视觉搜索过程中的分心抑制来影响基于WM的注意捕获效应。这些结果表明,WM表象的再激活和分心抑制共同决定了基于WM的注意捕获。
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The Reactivation of working memory representations affects attentional guidance.

Recent studies have suggested that the neural activity that supported working memory (WM) storage is dynamic over time and this dynamic storage decides memory performance. Does the temporal dynamic of the WM representation also affect visual search, and how does it interact with distractor suppression over time? To address these issues, we tracked the time course of the reactivation of WM representations during visual search by analyzing the electroencephalogram (EEG) and event-related optical signals (EROS) in Experiments 1 and 2, respectively, and investigated the interaction between the representation reactivation and distractor suppression in Experiment 3. Participants had to maintain a color in WM under high- or low-precision requirement and perform a subsequent search task. The reactivation of WM representations was defined by the above-chance decoding accuracy. The EEG results showed that compared with the low-precision requirement, WM-matching distractors captured more attention and the WM representation were reactivated more frequently under high-precision requirement. The EROS results showed that compared with the low-precision requirement, the increased activity in occipital cortex in the WM-matching versus WM-mismatching conditions was observed at 224 ms during visual search under high-precision requirement. Regression analysis showed that the representation reactivation during visual search directly predicted the behavioral WM-based attentional capture effect, while the representation reactivation before visual search impacted the WM-based attentional capture effect through the mediation of distractor suppression during visual search. These results suggest that the reactivation of WM representations and distractor suppression collectively determine WM-based attentional capture.

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