Maladaptive compensation of right fusiform gyrus in developmental dyslexia: A hub-based white matter network analysis

Cortex. 2021 Dec:145:57-66. doi: 10.1016/j.cortex.2021.07.016. Epub 2021 Sep 24.

Abstract

Cognitive theories have been proposed to clarify the causes and symptoms of dyslexia. However, correlations between local network parameters of white matter connectivity and literacy skills remain poorly known. An unbiased hypothesis-free approach was adopted to examine the correlations between literacy symptoms (reading and spelling) and hub-based white matter networks' connectivity parameters [nodal degree fractional anisotropy (FA) values] of 90 brain regions based on Anatomical Atlas Labels (AAL) in a group of French children with dyslexia aged 9-14 years. Results revealed that the higher the right fusiform gyrus's (FFG) nodal degree FA values, the lower the reading accuracy for words and pseudowords in dyslexic children. The results indicate that the severity of word/pseudoword reading symptoms in dyslexia relates to a white matter network centered around the right FFG. The negative correlation between right FFG network connectivity and reading accuracy, in particular pseudoword reading accuracy, suggests that right FFG represents a maladaptive compensation towards a general orthography-to-phonology decoding ability in developmental dyslexia.

Keywords: Developmental dyslexia; Fusiform gyrus; Literacy skills; White matter network.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Brain / diagnostic imaging
  • Child
  • Dyslexia* / diagnostic imaging
  • Humans
  • Reading
  • Temporal Lobe
  • White Matter* / diagnostic imaging