previous studies have reported anomalies in the arcuate fasciculus (AF) lateralization in developmental dyslexia (DD). Still, the relationship between AF lateralization and literacy skills in DD remains largely unknown. the purpose of our study is to investigate the relationship between lateralization of three segments of AF (AF anterior segment (AFAS), AF long segment (AFLS), and AF posterior segment (AFPS)) and literacy skills in DD. A total of 26 children with dyslexia and 31 age-matched control children were included in this study. high angular diffusion imaging, combined with spherical deconvolution tractog- raphy, was used to reconstruct the AF. connectivity measures of hindrance-modulated orientational anisotropy (HMOA) were computed for each of the three segments of the AF. the lateralization index (LI) of each AF segment was calculated by (right HMOA - left HMOA)/(right HMOA þ left HMOA). results showed that the LIs of AFAS and AFLS were positively correlated with reading accuracy in children with dyslexia. specifically, the LI of AFAS was positively correlated with nonword and meaningless text reading accuracy, while the LI of AFLS accounted for word reading accuracy. the results suggest adaptive compensation of arcuate fasciculus lateralization in developmental dyslexia and functional dissociation of the anterior segment and long segment in the compensation.
Zhao, J., Zhao, Y., Song, Z., Thiebaut de Schotten, M., Altarelli, I., Ramus, F. (2023). Adaptive compensation of arcuate fasciculus lateralization in developmental dyslexia. CORTEX, 167, 1-11 [10.1016/j.cortex.2023.05.017].
Adaptive compensation of arcuate fasciculus lateralization in developmental dyslexia
Altarelli, Irene;
2023-01-01
Abstract
previous studies have reported anomalies in the arcuate fasciculus (AF) lateralization in developmental dyslexia (DD). Still, the relationship between AF lateralization and literacy skills in DD remains largely unknown. the purpose of our study is to investigate the relationship between lateralization of three segments of AF (AF anterior segment (AFAS), AF long segment (AFLS), and AF posterior segment (AFPS)) and literacy skills in DD. A total of 26 children with dyslexia and 31 age-matched control children were included in this study. high angular diffusion imaging, combined with spherical deconvolution tractog- raphy, was used to reconstruct the AF. connectivity measures of hindrance-modulated orientational anisotropy (HMOA) were computed for each of the three segments of the AF. the lateralization index (LI) of each AF segment was calculated by (right HMOA - left HMOA)/(right HMOA þ left HMOA). results showed that the LIs of AFAS and AFLS were positively correlated with reading accuracy in children with dyslexia. specifically, the LI of AFAS was positively correlated with nonword and meaningless text reading accuracy, while the LI of AFLS accounted for word reading accuracy. the results suggest adaptive compensation of arcuate fasciculus lateralization in developmental dyslexia and functional dissociation of the anterior segment and long segment in the compensation.| File | Dimensione | Formato | |
|---|---|---|---|
|
Zhao_Cortex_2023.pdf
solo utenti autorizzati
Tipologia:
Versione Editoriale (PDF)
Licenza:
Non specificato
Dimensione
1.19 MB
Formato
Adobe PDF
|
1.19 MB | Adobe PDF | Visualizza/Apri Richiedi una copia |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


