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通过减少早期对分心物的空间注意,视觉工作记忆的滤波性能得到提高。

Filtering performance in visual working memory is improved by reducing early spatial attention to the distractors.

机构信息

Department of Psychology, The Ohio State University, Columbus, Ohio.

The School of Psychological Sciences and Sagol School of Neuroscience, Tel Aviv University, Tel Aviv, Israel.

出版信息

Psychophysiology. 2019 May;56(5):e13323. doi: 10.1111/psyp.13323. Epub 2019 Jan 4.

Abstract

We investigated the underlying processes that enable improving filtering irrelevant items from entering visual working memory (WM). To this end, participants performed a bilateral change-detection task in which either targets or targets along with distractors (i.e., the filtering condition) appeared in the memory array while ERPs were recorded. In the cue-present condition, we provided a spatial cue coupled with a temporal cue regarding where and when the distractors would appear. On some of the filtering trials, after the offset of the memory array, task-irrelevant probes were briefly flashed either at the locations of the targets or at the locations of the distractors. This enabled measuring whether reactivating the filtering settings resulted in reducing spatial attentional resources to the distractors, allocating additional spatial attentional resources to the targets, or both, as was measured by the P1/N1 amplitude. Results revealed that, relative to the cue-absent condition, in the cue-present condition the P1/N1 amplitude was reduced for probes at the distractors and was similar for probes at the targets. In addition, the reduction in the P1/N1 amplitude was accompanied by a reduced filtering cost in accuracy performance in the cue-present condition relative to the cue-absent condition. These findings suggest that reactivating the distractor filtering settings improved filtering performance in visual WM by reducing the allocation of spatial attention to the distractors already at early processing stages, and not by allocating additional spatial attentional resources to the targets.

摘要

我们研究了使改善从视觉工作记忆(WM)中过滤无关项目的潜在过程。为此,参与者执行了一项双侧变化检测任务,在该任务中,目标或目标以及干扰项(即过滤条件)出现在记忆数组中,同时记录 ERP。在提示呈现条件下,我们提供了关于干扰项将出现在何处和何时的空间提示和时间提示。在一些过滤试验中,在记忆数组的偏移后,任务无关的探针会短暂地出现在目标的位置或干扰项的位置。这使得我们能够测量重新激活过滤设置是否会导致减少对干扰项的空间注意资源,或者将额外的空间注意资源分配给目标,这可以通过 P1/N1 振幅来衡量。结果表明,与无提示条件相比,在有提示条件下,干扰项位置的 P1/N1 振幅降低,而目标位置的 P1/N1 振幅则相似。此外,与无提示条件相比,在有提示条件下,P1/N1 振幅的降低伴随着准确性表现的过滤成本降低,这表明重新激活干扰过滤设置通过减少已经在早期处理阶段对干扰项的空间注意分配,而不是通过向目标分配额外的空间注意资源,从而提高了视觉 WM 的过滤性能。

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