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Auditory encoding abnormalities in children with autism spectrum disorder suggest delayed development of auditory cortex

机译:自闭症谱系障碍儿童的听觉编码异常表明听觉皮层的延迟发展

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Findings of auditory abnormalities in children with autism spectrum disorder (ASD) include delayed superior temporal gyrus auditory responses, pre- and post-stimulus superior temporal gyrus (STG) auditory oscillatory abnormalities, and atypical hemispheric lateralization. These abnormalities are likely associated with abnormal brain maturation. To better understand changes in brain activity as a function of age, the present study investigated associations between age and STG auditory time-domain and time-frequency neural activity. While 306-channel magnetoencephalography (MEG) data were recorded, 500- and 1000-Hz tones of 300-ms duration were binaurally presented. Evaluable data were obtained from 63 typically developing children (TDC) (6 to 14?years old) and 52 children with ASD (6 to 14?years old). T1-weighted structural MRI was obtained, and a source model created using single dipoles anatomically constrained to each participant's left and right STG. Using this source model, left and right 50-ms (M50), 100-ms (M100), and 200-ms (M200) time-domain and time-frequency measures (total power (TP) and inter-trial coherence (ITC)) were obtained. Paired t tests showed a right STG M100 latency delay in ASD versus TDC (significant for right 500?Hz and marginally significant for right 1000?Hz). In the left and right STG, time-frequency analyses showed a greater pre- to post-stimulus increase in 4- to 16-Hz TP for both tones in ASD versus TDC after 150?ms. In the right STG, greater post-stimulus 4- to 16-Hz ITC for both tones was observed in TDC versus ASD after 200?ms. Analyses of age effects suggested M200 group differences that were due to a maturational delay in ASD, with left and right M200 decreasing with age in TDC but significantly less so in ASD. Additional evidence indicating delayed maturation of auditory cortex in ASD included atypical hemispheric functional asymmetries, including a right versus left M100 latency advantage in TDC but not ASD, and a stronger left than right M50 response in TDC but not ASD. Present findings indicated maturational abnormalities in the development of primary/secondary auditory areas in children with ASD. It is hypothesized that a longitudinal investigation of the maturation of auditory network activity will indicate delayed development of each component of the auditory processing system in ASD.
机译:具有自闭症谱系障碍(ASD)的儿童的听觉异常的结果包括延迟优越的时间回归检测反应,刺激前和后期颞次谐波(STG)听觉振荡异常,以及非典型半球横向化。这些异常可能与脑成熟异常相关。为了更好地了解脑活动的变化作为年龄的函数,本研究研究了年龄和STG听觉时域和时频神经活动之间的关联。虽然记录了306沟道磁性脑图(MEG)数据,但300-MS持续时间为500次和1000 Hz音调。评估数据是从63名通常发展儿童(TDC)(6至14岁)(6至14岁)和52名带ASD的儿童(6至14岁)。获得T1加权结构MRI,并使用统一约束的单个偶极物创建的源模型对每个参与者的左右STG。使用该源模型,左右50-ms(M50),100-ms(M100)和200-MS(M200)时域和时频测量(TO总功率(TP)和试用间连贯(ITC) ))是得到的。配对T检验显示ASD与TDC的正确STG M100延迟延迟(对于右500.右右500.右侧,对于右1000次Hz而言,略微意义)。在左右STG的STG中,时间频率分析显示在150℃之后,对于ASD与TDC中的两个音调,在4至16-Hz TP中显示出更大的刺激前后刺激。在正确的STG中,在TDC与ASD中观察到两个色调的更大的刺激后4-16-Hz ITC在200?MS之后。年龄效应的分析表明,由于ASD的成熟延迟,左右M200在TDC中随着年龄的增长而降低了M200组差异,但在ASD中显着较低。额外的证据表明ASD中听觉皮层延迟成熟包括非典型半球功能不对称,包括在TDC但不是ASD中的右侧M100延迟优势,并且在TDC中的右M50响应较强,而不是ASD。目前的调查结果表明,在ASD中儿童的主要/二次听觉区域的发展中的成熟异常。假设对听觉网络活动成熟的纵向调查将表明ASD中听觉处理系统的每个部件的延迟开发。

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