White matter microstructure integrity in relation to reading proficiency☆.

C Nikki Arrington, Paulina A Kulesz, Jenifer Juranek, Paul T Cirino, Jack M Fletcher
Author Information
  1. C Nikki Arrington: Texas Institute for Measurement, Evaluation and Statistics (TIMES), and Department of Psychology, University of Houston, 4849 Calhoun Rd., Houston, TX 77204, USA. Electronic address: carrington3@gsu.edu.
  2. Paulina A Kulesz: Texas Institute for Measurement, Evaluation and Statistics (TIMES), and Department of Psychology, University of Houston, 4849 Calhoun Rd., Houston, TX 77204, USA.
  3. Jenifer Juranek: Department of Pediatrics, Division of Developmental Pediatrics, The University of Texas Medical School at Houston, 6655 Travis St. Suite 1000, Houston, TX 77030, USA.
  4. Paul T Cirino: Texas Institute for Measurement, Evaluation and Statistics (TIMES), and Department of Psychology, University of Houston, 4849 Calhoun Rd., Houston, TX 77204, USA.
  5. Jack M Fletcher: Texas Institute for Measurement, Evaluation and Statistics (TIMES), and Department of Psychology, University of Houston, 4849 Calhoun Rd., Houston, TX 77204, USA.

Abstract

Components of reading proficiency such asaccuracy, fluency, and comprehension require the successful coordination of numerous, yet distinct, cortical regions. Underlying white matter tracts allow for communication among these regions. This study utilized unique residualized tract - based spatial statistics methodology to identify the relations of white matter microstructure integrity to three components of reading proficiency in 49 school - aged children with typically developing phonological decoding skills and 27 readers with poor decoders. Results indicated that measures of white matter integrity were differentially associated with components of reading proficiency. In both typical and poor decoders, reading comprehension correlated with measures of integrity of the right uncinate fasciculus; reading comprehension was also related to the left inferior longitudinal fasciculus in poor decoders. Also in poor decoders, word reading fluency was related to the right uncinate and left inferior fronto - occipital fasciculi. Word reading was unrelated to white matter integrity in either group. These findings expand our knowledge of the association between white matter integrity and different elements of reading proficiency.

Keywords

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Grants

  1. P2C HD086844/NICHD NIH HHS
  2. P50 HD052117/NICHD NIH HHS

MeSH Term

Brain
Child
Comprehension
Female
Humans
Male
Nerve Fibers
Nerve Net
Neural Pathways
Reading
White Matter

Word Cloud

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