Perceptual load modulates the processing of distractors presented at task-irrelevant locations during the attentional blink

被引:0
|
作者
Elliott J.C. [1 ]
Giesbrecht B. [1 ]
机构
[1] University of California, Santa Barbara, CA
关键词
Human Perception; Selective Attention; Attentional Blink; Rapid Serial Visual Presentation; Perceptual Load;
D O I
10.3758/BF03196687
中图分类号
学科分类号
摘要
The distribution of attention in both space and time is critical for processing our dynamic environment. Studies of spatial attention suggest that the distribution of attention is decreased when the perceptual load of a task increases, resulting in decreased processing of task-irrelevant distractors. Studies of the attentional blink (AB) suggest that the temporal distribution of attention also influences distractor processing, such that distractor processing increases during the AB relative to outside the AB (Jiang & Chun, 2001). Two experiments are reported in which the extent to which the difficulty of the first target task (T1) modulates the processing of task-irrelevant distractors during the AB was tested. To investigate this issue, both the first and second target tasks (T1 and T2) required identifying a central stimulus that was flanked by low-load or high-load distractors. Consistent with previous studies of the AB, there was evidence of more distractor processing during the AB than outside the AB. Critically, however, the interference caused by distractors presented simultaneously with T2 during the AB was reduced when T1 perceptual load was high relative to when it was low. These results suggest that increasing T1 perceptual load decreases distractor processing during the AB and that perceptual processes influence both the temporal and spatial distribution of attention. © 2010 The Psychonomic Society, Inc.
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页码:2106 / 2114
页数:8
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  • [1] Perceptual load modulates the processing of distractors presented at task-irrelevant locations during the attentional blink
    Elliott, James C.
    Giesbrecht, Barry
    [J]. ATTENTION PERCEPTION & PSYCHOPHYSICS, 2010, 72 (08) : 2106 - 2114
  • [2] Selective Attention to Task-Irrelevant Emotional Distractors Is Unaffected by the Perceptual Load Associated with a Foreground Task
    Attar, Catherine Hindi
    Mueller, Matthias M.
    [J]. PLOS ONE, 2012, 7 (05):
  • [3] Task-irrelevant visual motion and flicker attenuate the attentional blink
    Isabel Arend
    Stephen Johnston
    Kimron Shapiro
    [J]. Psychonomic Bulletin & Review, 2006, 13 : 600 - 607
  • [4] Task-irrelevant visual motion and flicker attenuate the attentional blink
    Arend, Isabel
    Johnston, Stephen
    Shapiro, Igmron
    [J]. PSYCHONOMIC BULLETIN & REVIEW, 2006, 13 (04) : 600 - 607
  • [5] Expectation modulates the preferential processing of task-irrelevant fear in the attentional blink: evidence from event-related potentials
    Meng Sun
    Chenyang Shang
    Xi Jia
    Fang Liu
    Lixia Cui
    Ping Wei
    Qin Zhang
    [J]. Behavioral and Brain Functions, 18
  • [6] Expectation modulates the preferential processing of task-irrelevant fear in the attentional blink: evidence from event-related potentials
    Sun, Meng
    Shang, Chenyang
    Jia, Xi
    Liu, Fang
    Cui, Lixia
    Wei, Ping
    Zhang, Qin
    [J]. BEHAVIORAL AND BRAIN FUNCTIONS, 2022, 18 (01)
  • [7] Previous attentional set can induce an attentional blink with task-irrelevant initial targets
    Thompson, Catherine
    Underwood, Geoffrey
    Crundall, David
    [J]. QUARTERLY JOURNAL OF EXPERIMENTAL PSYCHOLOGY, 2007, 60 (12): : 1603 - 1609
  • [8] The effect of visuospatial attentional load on the processing of irrelevant acoustic distractors
    Zhang, Peng
    Chen, Xiangchuan
    Yuan, Peng
    Zhang, Daren
    He, Sheng
    [J]. NEUROIMAGE, 2006, 33 (02) : 715 - 724
  • [9] The effects of perceptual load on adaptation to task-irrelevant visual motion
    Taya, S.
    Adams, W. J.
    Lavie, N.
    [J]. PERCEPTION, 2008, 37 : 11 - 12
  • [10] Monetary Reward Modulates Task-Irrelevant Perceptual Learning for Invisible Stimuli
    Pascucci, David
    Mastropasqua, Tommaso
    Turatto, Massimo
    [J]. PLOS ONE, 2015, 10 (05):