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注意力转移过程中扫视抑制的适得其反效应。

Counterproductive effect of saccadic suppression during attention shifts.

作者信息

Zénon Alexandre, Corneil Brian D, Alamia Andrea, Filali-Sadouk Nabil, Olivier Etienne

机构信息

Institute of Neuroscience, University of Louvain, Brussels, Belgium.

Departments of Physiology & Pharmacology, Psychology, Western University, London, Ontario, Canada ; Robarts Research Institute, London, Ontario, Canada.

出版信息

PLoS One. 2014 Jan 23;9(1):e86633. doi: 10.1371/journal.pone.0086633. eCollection 2014.

Abstract

During saccadic eye movements, the processing of visual information is transiently interrupted by a mechanism known as "saccadic suppression" [1] that is thought to ensure perceptual stability [2]. If, as proposed in the premotor theory of attention [3], covert shifts of attention rely on sub-threshold recruitment of oculomotor circuits, then saccadic suppression should also occur during covert shifts. In order to test this prediction, we designed two experiments in which participants had to orient towards a cued letter, with or without saccades. We analyzed the time course of letter identification score in an "attention" task performed without saccades, using the saccadic latencies measured in the "saccade" task as a marker of covert saccadic preparation. Visual conditions were identical in all tasks. In the "attention" task, we found a drop in perceptual performance around the predicted onset time of saccades that were never performed. Importantly, this decrease in letter identification score cannot be explained by any known mechanism aligned on cue onset such as inhibition of return, masking, or microsaccades. These results show that attentional allocation triggers the same suppression mechanisms as during saccades, which is relevant during eye movements but detrimental in the context of covert orienting.

摘要

在快速眼动期间,视觉信息的处理会被一种称为“扫视抑制”的机制短暂中断[1],这种机制被认为能确保感知稳定性[2]。如果如注意力的运动前理论[3]所提出的,注意力的隐蔽转移依赖于动眼神经回路的阈下募集,那么在隐蔽转移期间也应该会出现扫视抑制。为了检验这一预测,我们设计了两个实验,让参与者在有或没有眼跳的情况下朝向一个提示字母定向。我们在不进行眼跳的“注意力”任务中分析字母识别分数的时间进程,将在“眼跳”任务中测量的眼跳潜伏期用作隐蔽眼跳准备的标志。所有任务中的视觉条件都是相同的。在“注意力”任务中,我们发现在预测的但从未执行的眼跳开始时间左右,感知性能有所下降。重要的是,字母识别分数的这种下降不能用任何与提示开始相关的已知机制来解释,比如返回抑制、掩蔽或微眼跳。这些结果表明,注意力分配触发了与眼跳期间相同的抑制机制,这在眼动期间是相关的,但在隐蔽定向的情况下是有害的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7813/3900577/5b64fd7494c9/pone.0086633.g001.jpg

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