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时空上与任务无关的面孔对注意力的捕获:对佐藤和川原(2015年)的支持性证据。

Attentional capture by spatiotemporally task-irrelevant faces: supportive evidence for Sato and Kawahara (2015).

作者信息

Ariga Atsunori, Arihara Katsuhiko

机构信息

Graduate School of Integrated Arts and Sciences, Hiroshima University, 1-7-1 Kagamiyama, Higashi-hiroshima, Hiroshima, 739-8521, Japan.

Graduate School of Psychology, Rissho University, 4-2-16 Osaki, Shinagawa-ku, Tokyo, 141-8602, Japan.

出版信息

Psychol Res. 2018 Sep;82(5):859-865. doi: 10.1007/s00426-017-0869-3. Epub 2017 Apr 28.

Abstract

Visual attention is captured exogenously by stimuli that are congruent with the viewer's current behavioral goals or intentions. However, Sato and Kawahara (Psychol Res 79:523-533, 2015) recently suggested that distractor faces capture attention in an entirely stimulus-driven manner without top-down control of attention, which then attenuates subsequent target identification, using a rapid serial visual presentation paradigm. We tested this suggestion, developing a hypothesis that the faces used in the previous study served as task-relevant temporal cues that predicted target timing. To evaluate this hypothesis, we eliminated the task relevance by widely varying distractor-target temporal lags (Experiment 1) and by counterbalancing the distractor-target temporal order (Experiment 2). In both experiments, the deterioration in performance resulting from attentional capture by the peripheral distractor face preceding the target remained robust; this effect was, however, eliminated when the face was inverted (Experiment 3). The present results provide clear evidence that upright faces capture attention exogenously even when they are spatiotemporally task irrelevant.

摘要

视觉注意力会被与观看者当前行为目标或意图相符的刺激外源性地捕获。然而,佐藤和川原(《心理学研究》79:523 - 533,2015年)最近提出,干扰面孔以完全由刺激驱动的方式捕获注意力,而无需自上而下的注意力控制,然后使用快速序列视觉呈现范式削弱后续的目标识别。我们对这一观点进行了测试,提出了一个假设,即先前研究中使用的面孔充当了预测目标出现时间的与任务相关的时间线索。为了评估这一假设,我们通过广泛改变干扰物 - 目标的时间间隔(实验1)以及平衡干扰物 - 目标的时间顺序(实验2)来消除任务相关性。在这两个实验中,目标之前外周干扰面孔引起的注意力捕获导致的表现下降仍然很明显;然而,当面孔倒置时,这种效应就消除了(实验3)。目前的结果提供了明确的证据,表明即使正立面孔在时空上与任务无关,它们也会外源性地捕获注意力。

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