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Hollingworth, Andrew; Maxcey-Richard, Ashleigh M.; Vecera, Shaun P. – Journal of Experimental Psychology: Human Perception and Performance, 2012
Attention operates to select both spatial locations and perceptual objects. However, the specific mechanism by which attention is oriented to objects is not well understood. We examined the means by which object structure constrains the distribution of spatial attention (i.e., a "grouped array"). Using a modified version of the Egly et…
Descriptors: Visual Perception, Spatial Ability, Attention, Cues
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Girardi, Giovanna; Lindemann, Oliver; Bekkering, Harold – Journal of Experimental Psychology: Human Perception and Performance, 2010
In 4 experiments, we investigated the effects of object affordance in reach-to-grasp actions. Participants indicated whether a depicted small or large object was natural or manmade by means of different object-grasping responses (i.e., with a power or a precision grip). We observed that the size of the depicted object affected the grasping…
Descriptors: Observation, Experiments, Experimental Psychology, Cognitive Processes
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van de Langenberg, Rolf; Kingma, Idsart; Beek, Peter J. – Journal of Experimental Psychology: Human Perception and Performance, 2006
The authors investigated the mechanical basis of length perception through dynamic touch using specially designed rods in which the various moments of mass distribution (mass, static moment, and rotational inertia) were varied independently. In a series of 4 experiments, exploration style and rod orientation were manipulated such that the relative…
Descriptors: Experimental Psychology, Spatial Ability, Tactual Perception, Physics
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Kliegl, Reinhold; Risse, Sarah; Laubrock, Jochen – Journal of Experimental Psychology: Human Perception and Performance, 2007
Using the gaze-contingent boundary paradigm with the boundary placed after word n, the experiment manipulated preview of word n + 2 for fixations on word n. There was no preview benefit for 1st-pass reading on word n + 2, replicating the results of K. Rayner, B. J. Juhasz, and S. J. Brown (2007), but there was a preview benefit on the 3-letter…
Descriptors: Eye Movements, Perceptual Motor Coordination, Object Manipulation, Word Order
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Franz, V. H.; Scharnowski, F.; Gegenfurtner, K. R. – Journal of Experimental Psychology: Human Perception and Performance, 2005
The authors tested whether the effects of the Ebbinghaus illusion on grasping are corrected during late phases of the movement. Surprisingly, the grasp aperture was corrected neither under no-vision (N = 52) nor under full-vision (N = 48) conditions. The authors show that previous reports of a correction (e.g., S. Glover & P. Dixon, 2002a) are due…
Descriptors: Psychomotor Skills, Visual Perception, Reaction Time, Models
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Liu, Yeou-Teh; Mayer-Kress, Gottfried; Newell, Karl M. – Journal of Experimental Psychology: Human Perception and Performance, 2006
The experiments examined qualitative and quantitative changes in the dynamics of learning a novel motor skill (roller ball task) as a function of the manipulation of a control parameter (initial ball speed). The focus was on the relation between the rates of change in performance over practice time and the changing time scales of the evolving…
Descriptors: Perceptual Motor Learning, Experimental Psychology, Object Manipulation, Reaction Time
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Gray, Rob; Sieffert, Randy – Journal of Experimental Psychology: Human Perception and Performance, 2005
Previous studies on ball catching have had the limitation that the catcher was restricted to lateral hand movements. The authors investigated catching behavior in the more natural situation in which hand movements were unconstrained. Movements of the hand were tracked as participants tried to "catch" an approaching ball simulated with changing…
Descriptors: Motion, Human Body, Psychomotor Skills, Cues
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Fajen, Brett R. – Journal of Experimental Psychology: Human Perception and Performance, 2005
Braking to avoid a collision can be controlled by keeping the deceleration required to stop (i.e., ideal deceleration) in the "safe" region below maximum deceleration, but maximum deceleration is not optically specified and can vary as conditions change. When brake strength was manipulated between participants using a simulated braking task, the…
Descriptors: Experimental Psychology, Traffic Safety, Visual Perception, Cognitive Processes