Literature DB >> 24431448

An investigation into the origin of anatomical differences in dyslexia.

Anthony J Krafnick1, D Lynn Flowers, Megan M Luetje, Eileen M Napoliello, Guinevere F Eden.   

Abstract

Studies have converged in their findings of relatively less gray matter volume (GMV) in developmental dyslexia in bilateral temporoparietal and left occipitotemporal cortical regions. However, the interpretation of these results has been difficult. The reported neuroanatomical differences in dyslexia may be causal to the reading problems, following from, for example, neural migration errors that occurred during early human development and before learning to read. Alternatively, less GMV may represent the consequence of an impoverished reading experience, akin to the experience-dependent GMV differences attributed to illiterate compared with literate adults. Most likely, a combination of these factors is driving these observations. Here we attempt to disambiguate these influences by using a reading level-matched design, where dyslexic children were contrasted not only with age-matched controls, but also with younger controls who read at the same level as the dyslexics. Consistent with previous reports, dyslexics showed less GMV in multiple left and right hemisphere regions, including left superior temporal sulcus when compared with age-matched controls. However, not all of these differences emerged when dyslexics were compared with controls matched on reading abilities, with only right precentral gyrus GMV surviving this second analysis. When similar analyses were performed for white matter volume, no regions emerged from both comparisons. These results indicate that the GMV differences in dyslexia reported here and in prior studies are in large part the outcome of experience (e.g., disordered reading experience) compared with controls, with only a fraction of the differences being driven by dyslexia per se.

Entities:  

Keywords:  MRI; VBM; anatomy; dyslexia; reading

Mesh:

Year:  2014        PMID: 24431448      PMCID: PMC3891966          DOI: 10.1523/JNEUROSCI.2092-13.2013

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  42 in total

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Review 3.  Developmental dyslexia.

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4.  Reading acquisition enhances an early visual process of contour integration.

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5.  Structural correlates of implicit learning deficits in subjects with developmental dyslexia.

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Journal:  Ann N Y Acad Sci       Date:  2008-12       Impact factor: 5.691

6.  An anatomical signature for literacy.

Authors:  Manuel Carreiras; Mohamed L Seghier; Silvia Baquero; Adelina Estévez; Alfonso Lozano; Joseph T Devlin; Cathy J Price
Journal:  Nature       Date:  2009-10-15       Impact factor: 49.962

7.  Gray matter volume changes following reading intervention in dyslexic children.

Authors:  Anthony J Krafnick; D Lynn Flowers; Eileen M Napoliello; Guinevere F Eden
Journal:  Neuroimage       Date:  2010-10-26       Impact factor: 6.556

8.  Phonological awareness predicts activation patterns for print and speech.

Authors:  Stephen J Frost; Nicole Landi; W Einar Mencl; Rebecca Sandak; Robert K Fulbright; Eleanor T Tejada; Leslie Jacobsen; Elena L Grigorenko; R Todd Constable; Kenneth R Pugh
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  35 in total

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3.  Reading Acquisition in Children: Developmental Processes and Dyslexia-Specific Effects.

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4.  The functional anatomy of single-digit arithmetic in children with developmental dyslexia.

Authors:  Tanya M Evans; D Lynn Flowers; Eileen M Napoliello; Olumide A Olulade; Guinevere F Eden
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5.  Neurobiological bases of reading disorder Part I: Etiological investigations.

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6.  Disrupted white matter connectivity underlying developmental dyslexia: A machine learning approach.

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7.  Cortical Thickness and Local Gyrification in Children with Developmental Dyslexia.

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Journal:  Cereb Cortex       Date:  2018-03-01       Impact factor: 5.357

8.  Frontal volume as a potential source of the comorbidity between attention-deficit/hyperactivity disorder and reading disorders.

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Review 9.  Neurobiology of dyslexia.

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10.  Integrating MRI brain imaging studies of pre-reading children with current theories of developmental dyslexia: A review and quantitative meta-analysis.

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