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Atypical brain lateralisation in the auditory cortex and language performance in 3- to 7-year-old children with high-functioning autism spectrum disorder: a child-customised magnetoencephalography (MEG) study

机译:高功能自闭症谱系障碍的3到7岁儿童的听觉皮层和语言表现中的非典型性大脑偏侧化:儿童定制的脑磁图(MEG)研究

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Background Magnetoencephalography (MEG) is used to measure the auditory evoked magnetic field (AEF), which reflects language-related performance. In young children, however, the simultaneous quantification of the bilateral auditory-evoked response during binaural hearing is difficult using conventional adult-sized MEG systems. Recently, a child-customised MEG device has facilitated the acquisition of bi-hemispheric recordings, even in young children. Using the child-customised MEG device, we previously reported that language-related performance was reflected in the strength of the early component (P50m) of the auditory evoked magnetic field (AEF) in typically developing (TD) young children (2 to 5 years old) [Eur J Neurosci 2012, 35:644–650]. The aim of this study was to investigate how this neurophysiological index in each hemisphere is correlated with language performance in autism spectrum disorder (ASD) and TD children. Methods We used magnetoencephalography (MEG) to measure the auditory evoked magnetic field (AEF), which reflects language-related performance. We investigated the P50m that is evoked by voice stimuli (e/) bilaterally in 33 young children (3 to 7 years old) with ASD and in 30 young children who were typically developing (TD). The children were matched according to their age (in months) and gender. Most of the children with ASD were high-functioning subjects. Results The results showed that the children with ASD exhibited significantly less leftward lateralisation in their P50m intensity compared with the TD children. Furthermore, the results of a multiple regression analysis indicated that a shorter P50m latency in both hemispheres was specifically correlated with higher language-related performance in the TD children, whereas this latency was not correlated with non-verbal cognitive performance or chronological age. The children with ASD did not show any correlation between P50m latency and language-related performance; instead, increasing chronological age was a significant predictor of shorter P50m latency in the right hemisphere. Conclusions Using a child-customised MEG device, we studied the P50m component that was evoked through binaural human voice stimuli in young ASD and TD children to examine differences in auditory cortex function that are associated with language development. Our results suggest that there is atypical brain function in the auditory cortex in young children with ASD, regardless of language development.
机译:背景脑磁图(MEG)用于测量听觉诱发磁场(AEF),该磁场反映了语言相关的表现。然而,在幼儿中,使用常规成人大小的MEG系统很难同时量化双耳听觉过程中双侧听觉诱发的反应。最近,儿童定制的MEG设备甚至在年幼的儿童中也促进了双半球记录的获取。使用儿童定制的MEG设备,我们以前曾报道过,与语言有关的表现反映在典型发育中(TD)幼儿(2至5岁)的听觉诱发磁场(AEF)的早期分量(P50m)的强度上旧版)[Eur J Neurosci 2012,35:644–650]。这项研究的目的是调查自闭症谱系障碍(ASD)和TD儿童中每个半球的神经生理指标与语言表现之间的关系。方法我们使用脑磁图(MEG)来测量听觉诱发磁场(AEF),这反映了语言相关的表现。我们调查了33名患有ASD的幼儿(3至7岁)和30名典型发育中的幼儿(TD)的双边语音刺激(/ ne /)诱发的P50m。根据年龄(以月为单位)和性别对孩子进行匹配。大多数患有自闭症的儿童都是高功能受试者。结果结果表明,与TD儿童相比,ASD儿童的P50m强度向左偏侧性明显降低。此外,多元回归分析的结果表明,两个半球中较短的P50m潜伏期与TD儿童较高的语言相关表现特别相关,而该潜伏期与非语言认知表现或年代年龄无关。 ASD患儿在P50m潜伏期与语言相关表现之间无相关性。相反,年龄增长是右半球P50m潜伏期缩短的重要预测指标。结论我们使用儿童定制的MEG设备,研究了ASD和TD儿童的双耳人类语音刺激诱发的P50m成分,以检查与语言发展相关的听觉皮层功能的差异。我们的结果表明,不论语言发展如何,ASD幼儿的听觉皮层都有非典型的大脑功能。

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