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Zhaoping, Li; Frith, Uta – Journal of Experimental Psychology: Human Perception and Performance, 2011
It is harder to find the letter "N" among its mirror reversals than vice versa, an inconvenient finding for bottom-up saliency accounts based on primary visual cortex (V1) mechanisms. However, in line with this account, we found that in dense search arrays, gaze first landed on either target equally fast. Remarkably, after first landing,…
Descriptors: Visual Discrimination, Alphabets, Geometric Concepts, Eye Movements
Kolinsky, Regine; Verhaeghe, Arlette; Fernandes, Tania; Mengarda, Elias Jose; Grimm-Cabral, Loni; Morais, Jose – Journal of Experimental Psychology: General, 2011
To examine whether enantiomorphy (i.e., the ability to discriminate lateral mirror images) is influenced by the acquisition of a written system that incorporates mirrored letters (e.g., b and d), unschooled illiterate adults were compared with people reading the Latin alphabet, namely, both schooled literate adults and unschooled adults…
Descriptors: Literacy Education, Illiteracy, Latin, Visual Discrimination
Lourenco, Stella F.; Huttenlocher, Janellen – Infancy, 2008
There is evidence that, from an early age, humans are sensitive to spatial information such as simple landmarks and the size of objects. This study concerns the ability to represent a particular kind of spatial information, namely, the "geometry" of an enclosed layout--an ability present in older children, adults, and nonhuman animals (e.g.,…
Descriptors: Cues, Infants, Spatial Ability, Geometric Concepts
Cowan, Nelson; Naveh-Benjamin, Moshe; Kilb, Angela; Saults, J. Scott – Developmental Psychology, 2006
We asked whether the ability to keep in working memory the binding between a visual object and its spatial location changes with development across the life span more than memory for item information. Paired arrays of colored squares were identical or differed in the color of one square, and in the latter case, the changed color was unique on…
Descriptors: Geometric Concepts, Memory, Older Adults, Children

Spencer, Ian; Krizel, Peter – Child Development, 1994
Children, ages 9 to 13 years, made judgments of proportion with a variety of graphical elements in 2 experiments. A characteristic pattern of over- and underestimation was observed; this pattern was also present, but previously unnoticed, in judgments made by adults. (MDM)
Descriptors: Adults, Age Differences, Children, Cognitive Development
Lu, Hongjing; Morrison, Robert G.; Hummel, John E.; Holyoak, Keith J. – Journal of Experimental Psychology: Human Perception and Performance, 2006
Previous research has shown that synchronized flicker can facilitate detection of a single Kanizsa square. The present study investigated the role of temporally structured priming in discrimination tasks involving perceptual relations between multiple Kanizsa-type figures. Results indicate that visual information presented as temporally structured…
Descriptors: Reaction Time, Geometric Concepts, Visual Perception, Visual Discrimination
Leek, E. Charles; Reppa, Irene; Arguin, Martin – Journal of Experimental Psychology: Human Perception and Performance, 2005
This article examines how the human visual system represents the shapes of 3-dimensional (3D) objects. One long-standing hypothesis is that object shapes are represented in terms of volumetric component parts and their spatial configuration. This hypothesis is examined in 3 experiments using a whole-part matching paradigm in which participants…
Descriptors: Vision, Experiments, Cognitive Processes, Visual Perception

Scher, Anat; Olson, David R. – Perceptual and Motor Skills, 1982
Seven-year-olds compared successively presented oblique lines which varied as to their position within a square display and their relation to the diagonal axis of the display. Children apparently encoded lines in terms of position and axis features. They used a categorical spatial representational system to compare oblique lines. (Author/RD)
Descriptors: Cognitive Development, Cognitive Processes, Geometric Concepts, Perceptual Development