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Halvorson, Kimberly M.; Ebner, Herschel; Hazeltine, Eliot – Journal of Experimental Psychology: Human Perception and Performance, 2013
Why are dual-task costs reduced with ideomotor (IM) compatible tasks (Greenwald & Shulman, 1973; Lien, Proctor & Allen, 2002)? In the present experiments, we first examine three different measures of single-task performance (pure single-task blocks, mixed blocks, and long stimulus onset asynchrony [SOA] trials in dual-task blocks) and two…
Descriptors: Psychomotor Skills, Stimuli, Reaction Time, Cognitive Processes
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McDonald, John J.; Green, Jessica J.; Jannati, Ali; Di Lollo, Vincent – Journal of Experimental Psychology: Human Perception and Performance, 2013
The presence of a salient distractor interferes with visual search. According to the salience-driven selection hypothesis, this interference is because of an initial deployment of attention to the distractor. Three event-related potential (ERP) findings have been regarded as evidence for this hypothesis: (a) salient distractors were found to…
Descriptors: Evidence, Attention Control, Visual Perception, Theories
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Irons, Jessica L.; Folk, Charles L.; Remington, Roger W. – Journal of Experimental Psychology: Human Perception and Performance, 2012
Although models of visual search have often assumed that attention can only be set for a single feature or property at a time, recent studies have suggested that it may be possible to maintain more than one attentional control setting. The aim of the present study was to investigate whether spatial attention could be guided by multiple attentional…
Descriptors: Attention Control, Spatial Ability, Color, Priming
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Sewell, David K.; Smith, Philip L. – Journal of Experimental Psychology: Human Perception and Performance, 2012
The attention literature distinguishes two general mechanisms by which attention can benefit performance: gain (or resource) models and orienting (or switching) models. In gain models, processing efficiency is a function of a spatial distribution of capacity or resources; in orienting models, an attentional spotlight must be aligned with the…
Descriptors: Reaction Time, Attention Control, Experimental Psychology, Visual Stimuli
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Zehetleitner, Michael; Goschy, Harriet; Muller, Hermann J. – Journal of Experimental Psychology: Human Perception and Performance, 2012
When searching for a "pop-out" target, interference from a salient but irrelevant distractor can be reduced or even prevented under certain circumstances. Here, five experiments were conducted to further our understanding of three different aspects of top-down interference reduction: first, whether or not qualitatively different search modes can…
Descriptors: Attention Control, Attention, Experiments, Reaction Time
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Lee, Hyunkyu; Mozer, Michael C.; Kramer, Arthur F.; Vecera, Shaun P. – Journal of Experimental Psychology: Human Perception and Performance, 2012
How is attention guided by past experience? In visual search, numerous studies have shown that recent trials influence responses to the current trial. Repeating features such as color, shape, or location of a target facilitates performance. Here we examine whether recent experience also modulates a more abstract dimension of attentional control,…
Descriptors: Visual Stimuli, Cognitive Development, Attention Control, Experience
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Jannati, Ali; Spalek, Thomas M.; Lagroix, Hayley E. P.; Di Lollo, Vincent – Journal of Experimental Psychology: Human Perception and Performance, 2012
Identification of the second of two targets (T2) is impaired when presented shortly after the first (T1). This "attentional blink" (AB) is thought to arise from a delay in T2 processing during which T2 is vulnerable to masking. Conventional studies have measured T2 accuracy which is constrained by the 100% ceiling. We avoided this problem by using…
Descriptors: Eye Movements, Attention, Identification, Cognitive Processes
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Becker, Stefanie I.; Folk, Charles L.; Remington, Roger W. – Journal of Experimental Psychology: Human Perception and Performance, 2010
On the contingent capture account, top-down attentional control settings restrict involuntary attentional capture to items that match the features of the search target. Attention capture is involuntary, but contingent on goals and intentions. The observation that only target-similar items can capture attention has usually been taken to show that…
Descriptors: Attention Control, Cognitive Processes, Prompting, Cues
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Flevaris, Anastasia V.; Bentin, Shlomo; Robertson, Lynn C. – Journal of Experimental Psychology: Human Perception and Performance, 2011
Ample evidence suggests that global perception may involve low spatial frequency (LSF) processing and that local perception may involve high spatial frequency (HSF) processing (Shulman, Sullivan, Gish, & Sakoda, 1986; Shulman & Wilson, 1987; Robertson, 1996). It is debated whether SF selection is a low-level mechanism associating global…
Descriptors: Spatial Ability, Cognitive Processes, Attention Control, Visual Stimuli
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Donk, Mieke; Soesman, Leroy – Journal of Experimental Psychology: Human Perception and Performance, 2010
Salient objects in the visual field tend to capture attention. The present study aimed to examine the time-course of salience effects using a probe-detection task. Eight experiments investigated how the salience of different orientation singletons affected probe reaction time as a function of stimulus onset asynchrony (SOA) between the…
Descriptors: Reaction Time, Experiments, Investigations, Attention Control
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Lien, Mei-Ching; Ruthruff, Eric; Johnston, James C. – Journal of Experimental Psychology: Human Perception and Performance, 2010
The classic theory of spatial attention hypothesized 2 modes, voluntary and involuntary. Folk, Remington, and Johnston (1992) reported that even involuntary attention capture by stimuli requires a match between stimulus properties and what the observer is looking for. This surprising conclusion has been confirmed by many subsequent studies. In…
Descriptors: Visual Stimuli, Attention Control, Spatial Ability, Visual Perception
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Tsal, Yehoshua; Benoni, Hanna – Journal of Experimental Psychology: Human Perception and Performance, 2010
The substantial distractor interference obtained for small displays when the target appears alone is reduced in large displays when the target is embedded among neutral letters. This finding has been interpreted as reflecting low-load and high-load processing, respectively, thereby supporting the theory of perceptual load (Lavie & Tsal, 1994).…
Descriptors: Attention Control, Attention, Perception, Memory
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Miller, Jeff; Van Nes, Fenna – Journal of Experimental Psychology: Human Perception and Performance, 2007
Two experiments tested predictions of the hemispheric coactivation model for redundancy gain (J. O. Miller, 2004). Simple reaction time was measured in divided attention tasks with visual stimuli presented to the left or right of fixation or redundantly to both sides. Experiment 1 tested the prediction that redundancy gain--the decrease in…
Descriptors: Prediction, Visual Stimuli, Redundancy, Reaction Time
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Rowland, Lee A.; Shanks, David R. – Journal of Experimental Psychology: Human Perception and Performance, 2006
The authors studied the role of attention as a selection mechanism in implicit learning by examining the effect on primary sequence learning of performing a demanding target-selection task. Participants were trained on probabilistic sequences in a novel version of the serial reaction time (SRT) task, with dual- and triple-stimulus participants…
Descriptors: Sequential Learning, Attention Control, Reaction Time, Stimuli
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Hunt, Amelia R.; von Muhlenen, Adrian; Kingstone, Alan – Journal of Experimental Psychology: Human Perception and Performance, 2007
Eye movements are often misdirected toward a distractor when it appears abruptly, an effect known as oculomotor capture. Fundamental differences between eye movements and attention have led to questions about the relationship of oculomotor capture to the more general effect of sudden onsets on performance, known as attentional capture. This study…
Descriptors: Human Body, Eye Movements, Attention Control, Motor Reactions
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