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Karaminis, Themis; Arrighi, Roberto; Forth, Georgia; Burr, David; Pellicano, Elizabeth – Journal of Autism and Developmental Disorders, 2020
Autistic individuals often present atypicalities in adaptation--the continuous recalibration of perceptual systems driven by recent sensory experiences. Here, we examined such atypicalities in human biological motion. We used a dual-task paradigm, including a running-speed discrimination task ('comparing the speed of two running silhouettes') and…
Descriptors: Foreign Countries, Elementary School Students, Secondary School Students, Autism
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Ball, Karlene; Sekuler, Robert – Science, 1982
Training improves the ability of human observers to discriminate between two similar directions of motion. This gradual improvement is specific to the direction on which an observer is trained, enduring for several months. Improvement does not affect motion perception generally, nor does it depend on recognition of details of the movement. (Author)
Descriptors: Eye Movements, Motion, Training, Visual Discrimination
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Farroni, Teresa; Massaccesi, Stefano; Pividori, Donatella; Johnson, Mark H. – Infancy, 2004
Eye gaze has been shown to be an effective cue for directing attention in adults. Whether this ability operates from birth is unknown. Three experiments were carried out with 2- to 5-day-old newborns. The first experiment replicated the previous finding that newborns are able to discriminate between direct and averted gaze, and extended this…
Descriptors: Eye Movements, Neonates, Visual Perception, Cues
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McLeod, Peter; Reed, Nick; Dienes, Zoltan – Journal of Experimental Psychology: Human Perception and Performance, 2006
The generalized optic acceleration cancellation (GOAC) theory of catching proposes that the path of a fielder running to catch a ball is determined by the attempt to satisfy 2 independent constraints. The 1st is to keep the angle of elevation of gaze to the ball increasing at a decreasing rate. The 2nd is to control the rate of horizontal rotation…
Descriptors: Optics, Physics, Motion, Simulation