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Abnormal Oscillatory Neural Coupling in Children with Language-Learning Problems and Auditory Processing Disorder

机译:语言学习问题和听觉加工障碍儿童的振荡神经耦合异常

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Children with language-learning problems (LLP) often demonstrate auditory processing deficits on tasks using nonlinguistic stimuli, which may indicate an underlying auditory processing disorder (APD) that leads to delayed language skills. However, recent studies of event-related potentials provide evidence that APD is the result of, rather than the cause of, language impairments in children with LLP. To further address these conflicting accounts, we examined event-related spectral perturbations (ERSPs) in 14 children with LLP and in 14 age-matched, normal hearing controls. ERSPs were computed from electroencephalogram (EEG) responses to nonlinguistic speech sounds in two different stimulus rate conditions. Results revealed that children with LLP have abnormal shifts in the characteristic operating frequencies (COFs) and phase-amplitude coupling of the alpha and beta EEG bands. Further, children with LLP show multiple COFs in the beta EEG band, which are not present in normal-hearing controls. These results suggest that insufficient oscillatory neural coupling may underlie the APD and language deficits present in children with LLP and might further be explained by interhemispheric asymmetries in this population.
机译:有语言学习问题(LLP)的儿童通常会在使用非语言刺激的情况下表现出听觉处理缺陷,这可能表明潜在的听觉处理障碍(APD)导致语言技能延迟。但是,最近对事件相关电位的研究提供了证据,表明APD是LLP儿童语言障碍的结果,而不是其原因。为了进一步解决这些矛盾的问题,我们检查了14位LLP儿童和14位年龄匹配的正常听力对照者的事件相关频谱扰动(ERSP)。 ERSP是根据两种不同刺激率条件下对非语言语音的脑电图(EEG)响应计算得出的。结果显示,患有LLP的儿童在特征工作频率(COF)以及α和βEEG谱带的相位-幅度耦合上有异常变化。此外,患有LLP的儿童在beta脑电图谱带中显示多个COF,而在正常听力的对照组中则不存在。这些结果表明,振荡神经耦合不足可能是LLP儿童出现APD和语言缺陷的基础,并且可能由该人群的半球间不对称性进一步解释。

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