Publication Date
In 2025 | 0 |
Since 2024 | 1 |
Since 2021 (last 5 years) | 3 |
Since 2016 (last 10 years) | 3 |
Since 2006 (last 20 years) | 8 |
Descriptor
Children | 14 |
Error Patterns | 14 |
Spatial Ability | 14 |
Cognitive Processes | 5 |
Task Analysis | 5 |
Age Differences | 4 |
Comparative Analysis | 4 |
Developmental Stages | 4 |
Visual Perception | 4 |
Cognitive Ability | 3 |
Adolescents | 2 |
More ▼ |
Source
Author
Bialystok, Ellen | 2 |
Alex L. White | 1 |
Bellana, Buddhika | 1 |
Belmonti, Vittorio | 1 |
Berthoz, Alain | 1 |
Carson, Audrey | 1 |
Chiarotti, F. | 1 |
Cioni, Giovanni | 1 |
Cornwell, Brian | 1 |
Crone, Eveline A. | 1 |
Cutuli, D. | 1 |
More ▼ |
Publication Type
Reports - Research | 14 |
Journal Articles | 12 |
Speeches/Meeting Papers | 1 |
Education Level
Audience
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Möhring, Wenke; Szubielska, Magdalena – Cognitive Research: Principles and Implications, 2023
The present study examined whether scaling direction and perceptual modality affect children's spatial scaling. Children aged 6-8 years (N = 201) were assigned to a visual, visuo-haptic, and haptic condition in which they were presented with colourful, embossed graphics. In the haptic condition, they were asked to wear a blindfold during the test…
Descriptors: Children, Spatial Ability, Tactual Perception, Visual Perception
Mastrogiuseppe, Marilina; Gianni, Eugenia; Lee, Sang Ah – Developmental Psychology, 2023
Unlike children's early ability to navigate by continuous boundaries, their ability to extract geometric information from an array of objects emerges gradually over childhood. To investigate children's developing representation of object arrays for navigation and its relation to their mental representation of the global spatial layout,…
Descriptors: Children, Error Patterns, Spatial Ability, Geometric Concepts
Mahalakshmi Ramamurthy; Alex L. White; Jason D. Yeatman – Developmental Science, 2024
In the search for mechanisms that contribute to dyslexia, the term "attention" has been invoked to explain performance in a variety of tasks, creating confusion since all tasks do, indeed, demand "attention." Many studies lack an experimental manipulation of attention that would be necessary to determine its influence on task…
Descriptors: Children, Adolescents, Dyslexia, Spatial Ability
Belmonti, Vittorio; Cioni, Giovanni; Berthoz, Alain – Developmental Science, 2015
Navigational and reaching spaces are known to involve different cognitive strategies and brain networks, whose development in humans is still debated. In fact, high-level spatial processing, including allocentric location encoding, is already available to very young children, but navigational strategies are not mature until late childhood. The…
Descriptors: Cognitive Processes, Navigation, Spatial Ability, Hypothesis Testing
Greenberg, Anastasia; Bellana, Buddhika; Bialystok, Ellen – Cognitive Development, 2013
Monolingual and bilingual 8-year-olds performed a computerized spatial perspective-taking task. Children were asked to decide how an observer saw a four-block array from one of three different positions (90 degrees, 180 degrees, and 270 degrees counter-clockwise from the child's position) by selecting one of four responses--the correct response,…
Descriptors: Bilingualism, Monolingualism, Children, Executive Function
Salowitz, Nicole M. G.; Eccarius, Petra; Karst, Jeffrey; Carson, Audrey; Schohl, Kirsten; Stevens, Sheryl; Van Hecke, Amy Vaughan; Scheidt, Robert A. – Journal of Autism and Developmental Disorders, 2013
Thirteen autistic and 14 typically developing children (controls) imitated hand/arm gestures and performed mirror drawing; both tasks assessed ability to reorganize the relationship between spatial goals and the motor commands needed to acquire them. During imitation, children with autism were less accurate than controls in replicating hand shape,…
Descriptors: Autism, Imitation, Cognitive Processes, Pervasive Developmental Disorders
Foti, F.; Petrosini, L.; Cutuli, D.; Menghini, D.; Chiarotti, F.; Vicari, S.; Mandolesi, L. – Research in Developmental Disabilities: A Multidisciplinary Journal, 2011
This study aimed to evaluate spatial function in subjects with Williams syndrome (WS) by using a large-scale task with multiple rewards and comparing the spatial abilities of WS subjects with those of mental age-matched control children. In the present spatial task, WS participants had to explore an open space to search nine rewards placed in…
Descriptors: Measures (Individuals), Spatial Ability, Rewards, Genetic Disorders
Mueller, Sven C.; Temple, Veronica; Cornwell, Brian; Grillon, Christian; Pine, Daniel S.; Ernst, Monique – Journal of Child Psychology and Psychiatry, 2009
Background: Previous theories implicate hippocampal dysfunction in anxiety disorders. Most of the data supporting these theories stem from animal research, particularly lesion studies. The generalization of findings from rodent models to human function is hampered by fundamental inter-species differences. The present work uses a task of spatial…
Descriptors: Pediatrics, Spatial Ability, Anxiety, Neurological Impairments

Bialystok, Ellen – Journal of Experimental Child Psychology, 1989
Three studies examined the hypotheses that: (1) codability and not extent of distance determines difficulty; (2) critical features and not whole objects are coded; and (3) implicit perceptual axes provide a frame of reference for coding the display. Results supporting these hypotheses are discussed in terms of a description of spatial…
Descriptors: Children, Cognitive Ability, Difficulty Level, Error Patterns
Hoffman, James E.; Landau, Barbara; Pagani, Barney – Cognitive Psychology, 2003
We investigated the role of executive and spatial representational processes in impaired performance of block construction tasks by children with Williams syndrome (WS), a rare genetic defect that results in severely impaired spatial cognition. In Experiment 1, we examined performance in two kinds of block construction tasks, Simple Puzzles, in…
Descriptors: Eye Movements, Racial Differences, Human Body, Spatial Ability

Halford, Graeme S. – International Journal of Behavioral Development, 1980
Four groups of children (N=80; C.A. 6.6. to 12.5; M.A. 7.9 to 14.7) were tested for ability to reproduce five-element two- and three-dimensional patterns. Significant interaction and main effects were found. Three-dimensional pattern performance increased with age; all ages performed well on two-dimensional patterns. (Author/DB)
Descriptors: Age Differences, Children, Cognitive Development, Developmental Stages
Switching between Spatial Stimulus-Response Mappings: A Developmental Study of Cognitive Flexibility
Crone, Eveline A.; Ridderinkhof, K. Richard; Worm, Mijkje; Somsen, Riek J. M.; van der Molen, Maurits W. – Developmental Science, 2004
Four different age groups (8-9-year-olds, 11-12-year-olds, 13-15-year-olds and young adults) performed a spatial rule-switch task in which the sorting rule had to be detected on the basis of feedback or on the basis of switch cues. Performance errors were examined on the basis of a recently introduced method of error scoring for the Wisconsin Card…
Descriptors: Feedback (Response), Cues, Children, Adolescents
Dean, Anne L. – 1982
A program of research was conducted to study transitions from preoperational to concrete operational forms of spatial imagery (area 1), to compare results from spatial imagery studies based on open-ended measures (such as drawings) with results based on reaction time measures (area 2), and to study anticipatory imagery in the contexts of memory…
Descriptors: Age Differences, Children, Cognitive Processes, Comparative Analysis
van Hoek, Karen; And Others – 1987
A study examined aspects of the acquisition of spatialized morphology and syntax in American Sign Language (ASL) learned natively by deaf children of deaf parents. Children aged 2 to 8 were shown story books to elicit narratives, and the resulting use of verbs contained morphological forms not appearing in adult grammar. Analysis of the creative…
Descriptors: American Sign Language, Child Language, Children, Deafness