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1
Putative protective neural mechanisms in prereaders with a family history of dyslexia who subsequently develop typical reading skills
In: Wiley (2021)
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Putative protective neural mechanisms in prereaders with a family history of dyslexia who subsequently develop typical reading skills
In: Wiley (2021)
Abstract: Human Brain Mapping published by Wiley Periodicals, Inc. Developmental dyslexia affects 40–60% of children with a familial risk (FHD+) compared to a general prevalence of 5–10%. Despite the increased risk, about half of FHD+ children develop typical reading abilities (FHD+Typical). Yet the underlying neural characteristics of favorable reading outcomes in at-risk children remain unknown. Utilizing a retrospective, longitudinal approach, this study examined whether putative protective neural mechanisms can be observed in FHD+Typical at the prereading stage. Functional and structural brain characteristics were examined in 47 FHD+ prereaders who subsequently developed typical (n = 35) or impaired (n = 12) reading abilities and 34 controls (FHD−Typical). Searchlight-based multivariate pattern analyses identified distinct activation patterns during phonological processing between FHD+Typical and FHD−Typical in right inferior frontal gyrus (RIFG) and left temporo-parietal cortex (LTPC) regions. Follow-up analyses on group-specific classification patterns demonstrated LTPC hypoactivation in FHD+Typical compared to FHD−Typical, suggesting this neural characteristic as an FHD+ phenotype. In contrast, RIFG showed hyperactivation in FHD+Typical than FHD−Typical, and its activation pattern was positively correlated with subsequent reading abilities in FHD+ but not controls (FHD−Typical). RIFG hyperactivation in FHD+Typical was further associated with increased interhemispheric functional and structural connectivity. These results suggest that some protective neural mechanisms are already established in FHD+Typical prereaders supporting their typical reading development. ; National Institute of Child Health and Human Development (Awards R01HD067312 and R01HD65762‐01)
URL: https://hdl.handle.net/1721.1/130434.2
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3
Widespread effects of dMRI data quality on diffusion measures in children
In: Hum Brain Mapp (2021)
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4
Neurite density and arborization is associated with reading skill and phonological processing in children
In: Neuroimage (2021)
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5
Putative protective neural mechanisms in prereaders with a family history of dyslexia who subsequently develop typical reading skills
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6
Putative protective neural mechanisms in prereaders with a family history of dyslexia who subsequently develop typical reading skills
In: Hum Brain Mapp (2020)
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7
From BDNF to Reading: Neural Activation and Phonological Processing as Multiple Mediators
In: Behav Brain Res (2020)
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8
Neural correlates of phonological processing: Disrupted in children with dyslexia and enhanced in musically trained children
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9
Neural correlates of phonological processing: Disrupted in children with dyslexia and enhanced in musically trained children ...
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10
Emergence of the neural network underlying phonological processing from the prereading to the emergent reading stage: A longitudinal study ...
Yu, Xi; Raney, Talia; Perdue, Meaghan V. - : Wiley-Blackwell Publishing, Inc., 2018
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11
Neural correlates of phonological processing: Disrupted in children with dyslexia and enhanced in musically trained children
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12
Emergence of the neural network underlying phonological processing from the pre-reading to the emergent reading stage: a longitudinal study
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