Anatomical and behavioural correlates of auditory perception in developmental dyslexia

心理学 诵读困难 听力学 听觉皮层 旋回作用 颞上回 言语感知 颞平面 听觉系统 感知 认知心理学 阅读(过程) 神经科学 功能磁共振成像 医学 大脑皮层 法学 政治学
作者
Ting Qi,Maria Luisa Mandelli,Christa L. Watson Pereira,Emma Wellman,Rian Bogley,Abigail Licata,Zachary Miller,Boon Lead Tee,Jessica de Leon,Edward F. Chang,Yulia Oganian,Maria Luisa Gorno‐Tempini
出处
期刊:Brain [Oxford University Press]
被引量:2
标识
DOI:10.1093/brain/awae298
摘要

Abstract Developmental dyslexia is typically associated with difficulties in basic auditory processing and in manipulating speech sounds. However, the neuroanatomical correlates of auditory difficulties in developmental dyslexia (DD) and their contribution to individual clinical phenotypes are still unknown. Recent intracranial electrocorticography findings associated processing of sound amplitude rises and speech sounds with posterior and middle superior temporal gyrus (STG), respectively. We hypothesize that regional STG anatomy will relate to specific auditory abilities in DD, and that auditory processing abilities will relate to behavioral difficulties with speech and reading. One hundred and ten children (78 DD, 32 typically developing, age 7-15 years) completed amplitude rise time and speech in noise discrimination tasks. They also underwent a battery of cognitive tests. Anatomical MRI scans were used to identify regions in which local cortical gyrification complexity correlated with auditory behavior. Behaviorally, amplitude rise time but not speech in noise performance was impaired in DD. Neurally, amplitude rise time and speech in noise performance correlated with gyrification in posterior and middle STG, respectively. Furthermore, amplitude rise time significantly contributed to reading impairments in DD, while speech in noise only explained variance in phonological awareness. Finally, amplitude rise time and speech in noise performance were not correlated, and each task was correlated with distinct neuropsychological measures, emphasizing their unique contributions to DD. Overall, we provide a direct link between the neurodevelopment of the left STG and individual variability in auditory processing abilities in neurotypical and dyslexic populations.
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