Multisensory top-down sets: Evidence for contingent crossmodal capture

被引:0
作者
Frank Mast
Christian Frings
Charles Spence
机构
[1] University of Trier,Department of Psychology
[2] University of Oxford,Crossmodal Research Laboratory, Department of Experimental Psychology
来源
Attention, Perception, & Psychophysics | 2015年 / 77卷
关键词
Contingent capture; Crossmodal attention; Multisensory integration; Action control; Touch; Vision;
D O I
暂无
中图分类号
学科分类号
摘要
Numerous studies that have investigated visual selective attention have demonstrated that a salient but task-irrelevant stimulus can involuntarily capture a participant’s attention. Over the years, a lively debate has erupted concerning the impact of contingent top-down control settings on such stimulus-driven attentional capture. In the research reported here, we investigated whether top-down sets would also affect participants’ performance in a multisensory task setting. A nonspatial compatibility task was used, in which the target and the distractor were always presented sequentially from the same spatial location. We manipulated target–distractor similarity by varying the visual and tactile features of the stimuli. Participants always responded to the visual target features (color); the tactile features were incorporated into the participants’ top-down set only when the experimental context allowed for the tactile feature to be used in order to discriminate the target from the distractor. Larger compatibility effects after bimodal distractors were observed only when the participants were searching for a bimodal target and when tactile information was useful. Taken together, these results provide the first demonstration of nonspatial contingent crossmodal capture.
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页码:1970 / 1985
页数:15
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  • [1] Anderson BA(2010)Variations in the magnitude of attentional capture: Testing a two-process model Attention, Perception, & Psychophysics 72 342-352
  • [2] Folk CL(2003)Top-down contingencies in peripheral cuing: The roles of color and location Journal of Experimental Psychology: Human Perception and Performance 29 937-948
  • [3] Ansorge U(2004)Peripheral cuing by abrupt-onset cues: The influence of color in S–R corresponding conditions Acta Psychologica 116 115-143
  • [4] Heumann M(2002)Influences of visibility, intentions, and probability in a peripheral cuing task Consciousness and Cognition 11 528-545
  • [5] Ansorge U(2012)Top-down versus bottom-up attentional control: A failed theoretical dichotomy Trends in Cognitive Sciences 16 437-443
  • [6] Heumann M(2007)Displaywide visual features associated with a search display’s appearance can mediate attentional capture Psychonomic Bulletin & Review 14 392-422
  • [7] Ansorge U(2009)The roles of feature-specific task set and bottom-up salience in attentional capture: An ERP study Journal of Experimental Psychology: Human Perception and Performance 35 1316-1328
  • [8] Heumann M(2002)Made you blink! Contingent attentional capture produces a spatial blink Perception & Psychophysics 64 741-753
  • [9] Scharlau I(2008)Top-down control settings and the attentional blink: Evidence for nonspatial contingent capture Visual Cognition 16 616-642
  • [10] Awh E(1998)Selectivity in distraction by irrelevant featural singletons: Evidence for two forms of attentional capture Journal of Experimental Psychology: Human Perception and Performance 24 847-858