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Showing 1 to 15 of 31 results Save | Export
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Zhou, Cherie; Lorist, Monicque M.; Mathôt, Sebastiaan – Cognitive Science, 2022
Recent studies on visual working memory (VWM) have shown that visual information can be stored in VWM as continuous (e.g., a specific shade of red) as well as categorical representations (e.g., the general category red). It has been widely assumed, yet never directly tested, that continuous representations require more VWM mental effort than…
Descriptors: Visual Perception, Short Term Memory, Classification, Motor Reactions
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Skelton, Alice E.; Maule, John; Franklin, Anna – Child Development Perspectives, 2022
A remarkable amount of perceptual development occurs in the first year after birth. In this article, we spotlight the case of color perception. We outline how within just 6 months, infants go from very limited detection of color as newborns to a more sophisticated perception of color that enables them to make sense of objects and the world around…
Descriptors: Infants, Visual Perception, Perceptual Development, Color
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Štepánková, Lenka; Urbánek, Tomáš – Journal of Psycholinguistic Research, 2023
The presented study examines the question of colour categorization in relation to the hypothesis of linguistic relativity. The study is based on research conducted by Gilbert et al. (2006) and their claim that linguistic colour categorization in a particular language helps colour recognition and speeds the process of colour discrimination for…
Descriptors: Color, Classification, Psycholinguistics, Visual Discrimination
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Hagmann, Carl Erick; Wyble, Bradley; Shea, Nicole; LeBlanc, Megan; Kates, Wendy R.; Russo, Natalie – Journal of Autism and Developmental Disorders, 2016
Enhanced perception may allow for visual search superiority by individuals with Autism Spectrum Disorder (ASD), but does it occur over time? We tested high-functioning children with ASD, typically developing (TD) children, and TD adults in two tasks at three presentation rates (50, 83.3, and 116.7 ms/item) using rapid serial visual presentation.…
Descriptors: Autism, Visual Perception, Color, Task Analysis
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Wyble, Brad; Folk, Charles; Potter, Mary C. – Journal of Experimental Psychology: Human Perception and Performance, 2013
Attentional capture is an unintentional shift of visuospatial attention to the location of a distractor that is either highly salient, or relevant to the current task set. The latter situation is referred to as contingent capture, in that the effect is contingent on a match between characteristics of the stimuli and the task-defined…
Descriptors: Stimuli, Classification, Coding, Attention
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Rhodes, Gillian; Jeffery, Linda; Boeing, Alexandra; Calder, Andrew J. – Journal of Experimental Psychology: Human Perception and Performance, 2013
Despite the discovery of body-selective neural areas in occipitotemporal cortex, little is known about how bodies are visually coded. We used perceptual adaptation to determine how body identity is coded. Brief exposure to a body (e.g., anti-Rose) biased perception toward an identity with opposite properties (Rose). Moreover, the size of this…
Descriptors: Foreign Countries, Human Body, Color, Photography
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Kerzel, Dirk; Born, Sabine; Schonhammer, Josef – Journal of Experimental Psychology: Human Perception and Performance, 2012
A salient stimulus may interrupt visual search because of attentional capture. It has been shown that attentional capture occurs with a wide, but not with a small attentional window. We tested the hypothesis that capture depends more strongly on the shape of the attentional window than on its size. Search elements were arranged in two nested…
Descriptors: Attention, Visual Perception, Classification, Color
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Suegami, Takashi; Laeng, Bruno – Brain and Cognition, 2013
It has been shown that the left and right cerebral hemispheres (LH and RH) respectively process qualitative or "categorical" spatial relations and metric or "coordinate" spatial relations. However, categorical spatial information could be thought as divided into two types: semantically-coded and visuospatially-coded categorical information. We…
Descriptors: Spatial Ability, Semantics, Stimuli, Brain Hemisphere Functions
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Collisson, Beverly Anne; Grela, Bernard; Spaulding, Tammie; Rueckl, Jay G.; Magnuson, James S. – Developmental Science, 2015
We investigated whether preschool children with specific language impairment (SLI) exhibit the shape bias in word learning: the bias to generalize based on shape rather than size, color, or texture in an object naming context ("This is a wek; find another wek") but not in a non-naming similarity classification context ("See this?…
Descriptors: Preschool Children, Language Impairments, Bias, Geometric Concepts
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Clifford, Alexandra; Franklin, Anna; Holmes, Amanda; Drivonikou, Vicky G.; Ozgen, Emre; Davies, Ian R. L. – Brain and Cognition, 2012
Category training can induce category effects, whereby color discrimination of stimuli spanning a newly learned category boundary is enhanced relative to equivalently spaced stimuli from within the newly learned category (e.g., categorical perception). However, the underlying mechanisms of these acquired category effects are not fully understood.…
Descriptors: Control Groups, Stimuli, Classification, Correlation
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Nosofsky, Robert M.; Little, Daniel R.; Donkin, Christopher; Fific, Mario – Psychological Review, 2011
Exemplar-similarity models such as the exemplar-based random walk (EBRW) model (Nosofsky & Palmeri, 1997b) were designed to provide a formal account of multidimensional classification choice probabilities and response times (RTs). At the same time, a recurring theme has been to use exemplar models to account for old-new item recognition and to…
Descriptors: Short Term Memory, Classification, Probability, Cognitive Development
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Clifford, Alexandra; Franklin, Anna; Davies, Ian R. L.; Holmes, Amanda – Brain and Cognition, 2009
The origin of color categories has been debated by psychologists, linguists and cognitive scientists for many decades. Here, we present the first electrophysiological evidence for categorical responding to color before color terms are acquired. Event-related potentials were recorded on a visual oddball task in 7-month old infants. Infants were…
Descriptors: Stimuli, Psychologists, Infants, Cognitive Processes
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Davidoff, Jules; Goldstein, Julie; Roberson, Debi – Journal of Experimental Child Psychology, 2009
We respond to the commentary of Franklin, Wright, and Davies ("Journal of Experimental Child Psychology, 102", 239-245 [2009]) by returning to the simple contrast between nature and nurture. We find no evidence from the toddler data that makes us revise our ideas that color categories are learned and never innate. (Contains 1 figure.)
Descriptors: Child Psychology, Nature Nurture Controversy, Toddlers, Color
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Glaz, Adam – Language Sciences, 2010
The applicability of Vantage Theory (VT), a model of (colour) categorization, to linguistic data largely depends on the modifications and adaptations of the model for the purpose. An attempt to do so proposed here, called Extended Vantage Theory (EVT), slightly reformulates the VT conception of vantage by capitalizing on some of the entailments of…
Descriptors: Form Classes (Languages), Language Processing, Language Patterns, English
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Franklin, Anna; Wright, Oliver; Davies, Ian R. L. – Journal of Experimental Child Psychology, 2009
We comment on Goldstein, Davidoff, and Roberson's replication and extension ("Journal of Experimental Child Psychology, 102", 219-238 [2009]) of our study of the effect of toddlers' color term knowledge on their categorical perception (CP) of color ("Journal of Experimental Child Psychology, 90", 114-141 [2005]). First, we discuss how best to…
Descriptors: Investigations, Toddlers, Word Recognition, Child Psychology
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