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Showing 1 to 15 of 41 results Save | Export
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Jarrad A. G. Lum; Kaila M. Hamilton; Li-Ann Leow; Welber Marinovic; Ian Fuelscher; Pamela Barhoun; Talitha C. Ford; Aron T. Hill; Samaneh Nahravani; Melissa Kirkovski; Peter G. Enticott; Christian Hyde – Developmental Science, 2025
Procedural learning difficulties are commonly reported in children with developmental coordination disorder (DCD), yet the neural basis of this impairment remains unclear. This study addressed this gap by examining the correlation between cortical oscillatory activity and procedural learning of a sequence of finger movements in children with and…
Descriptors: Learning Problems, Learning Disabilities, Developmental Disabilities, Perceptual Motor Coordination
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Stephan E. Vogel; Bert De Smedt – npj Science of Learning, 2021
The development of numerical and arithmetic abilities constitutes a crucial cornerstone in our modern and educated societies. Difficulties to acquire these central skills can lead to severe consequences for an individual's well-being and nation's economy. In the present review, we describe our current broad understanding of the functional and…
Descriptors: Cognitive Ability, Mathematics Skills, Numeracy, Arithmetic
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Rebecca A. Marks; Courtney Pollack; Steven L. Meisler; Anila M. D'Mello; Tracy M. Centanni; Rachel R. Romeo; Karolina Wade; Anna A. Matejko; Daniel Ansari; John D. E. Gabrieli; Joanna A. Christodoulou – Developmental Science, 2024
Children with dyslexia frequently also struggle with math. However, studies of reading disability (RD) rarely assess math skill, and the neurocognitive mechanisms underlying co-occurring reading and math disability (RD+MD) are not clear. The current study aimed to identify behavioral and neurocognitive factors associated with co-occurring MD among…
Descriptors: Dyslexia, Executive Function, Visual Perception, Spatial Ability
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Margolis, Amy E.; Davis, Katie S.; Pao, Lisa S.; Lewis, Amy; Yang, Xiao; Tau, Gregory; Zhao, Guihu; Wang, Zhishun; Marsh, Rachel – Developmental Science, 2018
Verbal--spatial discrepancies are common in healthy individuals and in those with neurodevelopmental disorders associated with cognitive control deficits including: Autism Spectrum Disorder, Non-Verbal Learning Disability, Fragile X, 22q11 deletion, and Turner Syndrome. Previous data from healthy individuals suggest that the magnitude of the…
Descriptors: Verbal Ability, Spatial Ability, Autism, Pervasive Developmental Disorders
Pearson, 2018
The Wechsler Intelligence Test for Children -- Fifth Edition (WISC-V) is a comprehensive intellectual ability assessment for children. The WISC-V was developed over the course of five years by an expert team including doctoral-level scientists and clinicians and an advisory panel, who provided expert advice about intellectual ability testing,…
Descriptors: Intelligence Tests, Children, Cognitive Ability, Adolescents
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Rosenberg-Lee, Miriam; Ashkenazi, Sarit; Chen, Tianwen; Young, Christina B.; Geary, David C.; Menon, Vinod – Developmental Science, 2015
Developmental dyscalculia (DD) is marked by specific deficits in processing numerical and mathematical information despite normal intelligence (IQ) and reading ability. We examined how brain circuits used by young children with DD to solve simple addition and subtraction problems differ from those used by typically developing (TD) children who…
Descriptors: Developmental Disabilities, Learning Disabilities, Numbers, Mathematics Skills
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Martínez, Fernando; Barraza, Claudia; González, Nimrod; González, Juan – Educational Technology & Society, 2016
Affective computing seeks to create computational systems that adapt content and resources according to the affective states of the users. However, the detection of the user's affection such as motivation and emotion is challenging especially when an attention problem is present. An approach to convey learning resources to children with learning…
Descriptors: Foreign Countries, Children, Affective Behavior, Attention Deficit Hyperactivity Disorder
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Kaufmann, L.; Vogel, S. E.; Starke, M.; Kremser, C.; Schocke, M. – Cognitive Development, 2009
Ordinality is--beyond numerical magnitude (i.e., quantity)--an important characteristic of the number system. There is converging empirical evidence that (intra)parietal brain regions mediate number magnitude processing. Furthermore, recent findings suggest that the human intraparietal sulcus (IPS) supports magnitude and ordinality in a…
Descriptors: Number Systems, Learning Disabilities, Brain, Numeracy
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Cuevas, Kimberly; Hubble, Morgan; Bell, Martha Ann – Early Education and Development, 2012
Research Findings: This study examined whether children's executive functions before kindergarten would predict variance in executive functions after kindergarten. We obtained behavioral (working memory task performance), parent-reported (temperament-based inhibitory control), and psychophysiological (working memory-related changes in heart rate…
Descriptors: Metabolism, Personality, Psychophysiology, Parent Attitudes
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De Smet, Hyo Jung; Engelborghs, Sebastiaan; Paquier, Philippe F.; De Deyn, Peter P.; Marien, Peter – Brain and Cognition, 2011
Apraxic agraphia is a writing disorder due to a loss or lack of access to motor engrams that program the movements necessary to produce letters. Clinical and functional neuroimaging studies have demonstrated that the neural network responsible for writing includes the superior parietal region and the dorsolateral and medial premotor cortex. Recent…
Descriptors: Syntax, Written Language, Etiology, Brain Hemisphere Functions
Ukrainetz, Teresa A., Ed. – PRO-ED, Inc., 2015
"School-Age Language Intervention: Evidence-based Practices" explains how to teach the language and literacy skills, strategies, and underlying processes needed for educational success. This book brings together an array of experts to provide the latest practical and evidence-based guidance to school speech-language pathologists.…
Descriptors: Speech Language Pathology, Allied Health Personnel, Language Acquisition, Intervention
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Geary, David C. – Learning and Individual Differences, 2010
The collection of articles in this special issue and related studies over the past decade provides a fine example of the substantial progress that has been made in our understanding and remediation of mathematical learning disabilities and difficulties since 1993 (Geary, 1993). The originally proposed procedural and retrieval deficits have been…
Descriptors: Mathematics Education, Learning Disabilities, Short Term Memory, Neuropsychology
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Oosterman, Joukje M.; Vogels, Raymond L. C.; van Harten, Barbera; Gouw, Alida A.; Scheltens, Philip; Poggesi, Anna; Weinstein, Henry C.; Scherder, Erik J. A. – Brain and Cognition, 2008
Various studies support an association between white matter hyperintensities (WMH) and deficits in executive function in nondemented ageing. Studies examining executive functions and WMH have generally adopted executive function as a phrase including various functions such as flexibility, inhibition, and working memory. However, these functions…
Descriptors: Learning Disabilities, Inhibition, Short Term Memory, Cognitive Processes
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Avtzon, Sarah Abitbol – Learning Disabilities: A Multidisciplinary Journal, 2012
Working memory, executive functions, and cognitive processes associated with specific academic areas, are empirically identified as being the core underlying cognitive deficits in students with specific learning disabilities. Using Hebb's theory of neuroplasticity and the principle of automaticity as theoretical bases, this experimental study…
Descriptors: Thinking Skills, Learning Disabilities, Control Groups, Experimental Groups
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Varma, Sashank; Schwartz, Daniel L. – Educational Research, 2008
Background: There is increasing interest in applying neuroscience findings to topics in education. Purpose: This application requires a proper conceptualization of the relation between cognition and brain function. This paper considers two such conceptualizations. The area focus understands each cognitive competency as the product of one (and only…
Descriptors: Mathematics Education, Learning Disabilities, Mathematics Skills, Brain
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