4.2 Article

Early development of neurophysiological processes involved in normal reading and reading disability: A magnetic source imaging

Journal

NEUROPSYCHOLOGY
Volume 19, Issue 6, Pages 787-798

Publisher

AMER PSYCHOLOGICAL ASSOC
DOI: 10.1037/0894-4105.19.6.787

Keywords

magnetoencephalography; functional brain imaging; dyslexia; reading; development

Funding

  1. NICHD NIH HHS [HD38346-01] Funding Source: Medline

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This longitudinal study examined the development of the brain mechanism involved in phonological decoding in beginning readers using Magnetic source imaging. Kindergarten students were assigned to 2 groups: those who showed mastery of skills that are important predictors of proficient reading (low-fisk group) and those who initially did not show mastery but later benefited from systematic reading instruction and developed average-range reading skills at the end of Grade I (high-risk responders). Spatiotemporal profiles of brain activity were obtained during performance of letter-sound and pseudoword naming tasks before and after Grade 1 instruction. With few exceptions, low-risk children early development of brain activation profiles that are typical of older skilled readers. Provided that temporoparietal and visual association areas were recruited into the brain mechanism that supported reading, the majority of high-risk responder children benefited from systematic reading instruction and developed adequate reading abilities.

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