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Kelly, Ashleigh J.; Dux, Paul E. – Journal of Experimental Psychology: Human Perception and Performance, 2011
To study the temporal dynamics and capacity-limits of attentional selection and encoding, researchers often employ the attentional blink (AB) phenomenon: subjects' impaired ability to report the second of two targets in a rapid serial visual presentation (RSVP) stream that appear within 200-500 ms of one another. The AB has now been the subject of…
Descriptors: Investigations, Cognitive Processes, Information Processing, Eye Movements
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Bayliss, Andrew P.; Bartlett, Jessica; Naughtin, Claire K.; Kritikos, Ada – Journal of Experimental Psychology: Human Perception and Performance, 2011
How information is exchanged between the cognitive mechanisms responsible for gaze perception and social attention is unclear. These systems could be independent; the "gaze cueing" effect could emerge from the activation of a general-purpose attentional mechanism that is ignorant of the social nature of the gaze cue. Alternatively, orienting to…
Descriptors: Eye Movements, Cues, Attention, Interpersonal Communication
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Potter, Mary C.; Wyble, Brad; Olejarczyk, Jennifer – Journal of Experimental Psychology: Human Perception and Performance, 2011
In whole report, a sentence presented sequentially at the rate of about 10 words/s can be recalled accurately, whereas if the task is to report only two target words (e.g., red words), the second target suffers an attentional blink if it appears shortly after the first target. If these two tasks are carried out simultaneously, is there an…
Descriptors: Sentences, Memory, Vocabulary Development, Experiments
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Brascamp, Jan W.; Blake, Randolph; Kristjansson, Arni – Journal of Experimental Psychology: Human Perception and Performance, 2011
With attention and eye-movements humans orient to targets of interest. This orienting occurs faster when the same target repeats: priming of pop-out (PoP). While reaction times (RTs) can be important, PoP's real function could be to steer "where" to orient, a possibility underexposed in many current paradigms, as these predesignate a target to…
Descriptors: Priming, Reaction Time, Models, Evaluation Methods
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Harris, Irina M.; Benito, Claire T.; Dux, Paul E. – Journal of Experimental Psychology: Human Perception and Performance, 2010
We investigated distractor processing in a dual-target rapid serial visual presentation (RSVP) task containing familiar objects, by measuring repetition priming from a priming distractor (PD) to Target 2 (T2). Priming from a visually identical PD was contrasted with priming from a PD in a different orientation from T2. We also tested the effect of…
Descriptors: Priming, Language Processing, Infants, Investigations
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Nieuwenstein, Mark R.; Potter, Mary C.; Theeuwes, Jan – Journal of Experimental Psychology: Human Perception and Performance, 2009
When asked to identify 2 visual targets (T1 and T2 for the 1st and 2nd targets, respectively) embedded in a sequence of distractors, observers will often fail to identify T2 when it appears within 200-500 ms of T1--an effect called the "attentional blink". Recent work shows that attention does not blink when the task is to encode a…
Descriptors: Eye Movements, Identification, Observation, Visual Stimuli
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Staub, Adrian; White, Sarah J.; Drieghe, Denis; Hollway, Elizabeth C.; Rayner, Keith – Journal of Experimental Psychology: Human Perception and Performance, 2010
Recent research using word recognition paradigms, such as lexical decision and speeded pronunciation, has investigated how a range of variables affect the location and shape of response time distributions, using both parametric and non-parametric techniques. In this article, we explore the distributional effects of a word frequency manipulation on…
Descriptors: Reaction Time, Eye Movements, Word Recognition, Human Body
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Elder, David M.; Grossberg, Stephen; Mingolla, Ennio – Journal of Experimental Psychology: Human Perception and Performance, 2009
A neural model is developed to explain how humans can approach a goal object on foot while steering around obstacles to avoid collisions in a cluttered environment. The model uses optic flow from a 3-dimensional virtual reality environment to determine the position of objects on the basis of motion discontinuities and computes heading direction,…
Descriptors: Computer Simulation, Eye Movements, Optics, Infants
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Mitterer, Holger; McQueen, James M. – Journal of Experimental Psychology: Human Perception and Performance, 2009
Two experiments examined how Dutch listeners deal with the effects of connected-speech processes, specifically those arising from word-final /t/ reduction (e.g., whether Dutch [tas] is "tas," bag, or a reduced-/t/ version of "tast," touch). Eye movements of Dutch participants were tracked as they looked at arrays containing 4…
Descriptors: Speech, Eye Movements, Auditory Perception, Indo European Languages
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Huang, Yang-Ming; Baddeley, Alan; Young, Andrew W. – Journal of Experimental Psychology: Human Perception and Performance, 2008
The attentional blink paradigm was used to examine whether emotional stimuli always capture attention. The processing requirement for emotional stimuli in a rapid sequential visual presentation stream was manipulated to investigate the circumstances under which emotional distractors capture attention, as reflected in an enhanced attentional blink…
Descriptors: Stimuli, Semantics, Attention Control, Language Processing
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Wyble, Brad; Bowman, Howard; Potter, Mary C. – Journal of Experimental Psychology: Human Perception and Performance, 2009
Transient attention to a visually salient cue enhances processing of a subsequent target in the same spatial location between 50 to 150 ms after cue onset (K. Nakayama & M. Mackeben, 1989). Do stimuli from a categorically defined target set, such as letters or digits, also generate transient attention? Participants reported digit targets among…
Descriptors: Stimuli, Attention, Cognitive Processes, Cues
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Vachon, Francois; Tremblay, Sebastien; Jones, Dylan M. – Journal of Experimental Psychology: Human Perception and Performance, 2007
When two visual targets, Target 1 (T1) and Target 2 (T2), are presented among a rapid sequence of distractors, processing of T1 produces an attentional blink. Typically, processing of T2 is markedly impaired, except when T1 and T2 are adjacent (Lag 1 sparing). However, if a shift of task set--a change in task requirements from T1 to T2--occurs,…
Descriptors: Semantics, Visual Stimuli, Cognitive Processes, Eye Movements
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Huber, Susanne; Krist, Horst – Journal of Experimental Psychology: Human Perception and Performance, 2004
Performance in 2 versions of a computer-animated task was compared. Participants either indicated the time of arrival of a target that rolled off a horizontal surface and fell--hidden from view--onto a landing point (production task) or judged flight time on a rating scale (judgment task). As predicted, performance was significantly better in the…
Descriptors: Motion, Imagery, Eye Movements, Visual Perception
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Olivers, Christian N. L.; Nieuwenhuis, Sander – Journal of Experimental Psychology: Human Perception and Performance, 2006
The attentional blink reflects the impaired ability to identify the 2nd of 2 targets presented in close succession--a phenomenon that is generally thought to reflect a fundamental cognitive limitation. However, the fundamental nature of this impairment has recently been called into question by the counterintuitive finding that task-irrelevant…
Descriptors: Attention, Task Analysis, Hypothesis Testing, Memory
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Alvarez, George A.; Horowitz, Todd S.; Arsenio, Helga C.; DiMase, Jennifer S.; Wolfe, Jeremy M. – Journal of Experimental Psychology: Human Perception and Performance, 2005
Multielement visual tracking and visual search are 2 tasks that are held to require visual-spatial attention. The authors used the attentional operating characteristic (AOC) method to determine whether both tasks draw continuously on the same attentional resource (i.e., whether the 2 tasks are mutually exclusive). The authors found that observers…
Descriptors: Visual Perception, Task Analysis, Attention, Spatial Ability