Liu Tianqiang, Thiebaut de Schotten Michel, Altarelli Irene, Ramus Franck, Zhao Jingjing
School of Psychology, Shaanxi Normal University, Shaanxi Provincial Key Research Center of Child Mental and Behavioral Health, Xi'an, China.
Groupe d'Imagerie Neurofonctionnelle, Institut des Maladies Neurodégénératives-UMR 5293, CNRS, CEA, University of Bordeaux, Bordeaux, France; Brain Connectivity and Behaviour Laboratory, Sorbonne Universities, Paris, France.
Cortex. 2021 Dec;145:57-66. doi: 10.1016/j.cortex.2021.07.016. Epub 2021 Sep 24.
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.
认知理论已被提出以阐明诵读困难的成因和症状。然而,白质连通性的局部网络参数与读写能力之间的相关性仍鲜为人知。我们采用了一种无偏的无假设方法,来研究一组9至14岁的法国诵读困难儿童中,读写症状(阅读和拼写)与基于解剖图谱标签(AAL)的90个脑区的基于枢纽的白质网络连通性参数[节点度分数各向异性(FA)值]之间的相关性。结果显示,诵读困难儿童右侧梭状回(FFG)的节点度FA值越高,其对单词和假词的阅读准确性越低。结果表明,诵读困难中单词/假词阅读症状的严重程度与以右侧FFG为中心的白质网络有关。右侧FFG网络连通性与阅读准确性,尤其是假词阅读准确性之间的负相关表明,右侧FFG代表了发育性诵读困难中对一般正字法到语音解码能力的一种适应不良的补偿。