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Auditory Processing in Noise Is Associated With Complex Patterns of Disrupted Functional Connectivity in Autism Spectrum Disorder

机译:噪声中的听觉处理与自闭症频谱障碍中功能连接中断的复杂模式相关

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摘要

Autism spectrum disorder (ASD) is associated with difficulty in processing speech in a noisy background, but the neural mechanisms that underlie this deficit have not been mapped. To address this question, we used magnetoencephalography to compare the cortical responses between ASD and typically developing (TD) individuals to a passive mismatch paradigm. We repeated the paradigm twice, once in a quiet background, and once in the presence of background noise. We focused on both the evoked mismatch field (MMF) response in temporal and frontal cortical locations, and functional connectivity with spectral specificity between those locations. In the quiet condition, we found common neural sources of the MMF response in both groups, in the right temporal gyrus and inferior frontal gyrus (IFG). In the noise condition, the MMF response in the right IFG was preserved in the TD group, but reduced relative to the quiet condition in ASD group. The MMF response in the right IFG also correlated with severity of ASD. Moreover, in noise, we found significantly reduced normalized coherence (deviant normalized by standard) in ASD relative to TD, in the beta band (14–25 Hz), between left temporal and left inferior frontal sub-regions. However, unnormalized coherence (coherence during deviant or standard) was significantly increased in ASD relative to TD, in multiple frequency bands. Our findings suggest increased recruitment of neural resources in ASD irrespective of the task difficulty, alongside a reduction in top-down modulations, usually mediated by the beta band, needed to mitigate the impact of noise on auditory processing.
机译:自闭症谱系障碍(ASD)与在嘈杂的背景下处理语音的难度有关,但是尚未阐明造成这种缺陷的神经机制。为了解决这个问题,我们使用了脑磁图技术来比较ASD和典型发育(TD)个体之间的皮质反应与被动失配范例。我们重复了两次示例,一次是在安静的背景下,一次是在有背景噪音的情况下。我们既关注颞叶和额叶皮质位置的诱发失配场(MMF)响应,又关注这些位置之间具有光谱特异性的功能连接。在安静的条件下,我们在右颞回和下额回(IFG)的两组中都发现了MMF反应的常见神经源。在噪声条件下,右侧IFG中的MMF响应在TD组中得以保留,但相对于ASD组的安静状态而言有所降低。正确的IFG中的MMF反应也与ASD的严重程度相关。此外,在噪声中,我们发现,相对于TD,在左颞部和左下额叶下部区域之间的β波段(14-25 Hz)中,ASD的归一化相干性(按标准归一化)明显降低。但是,相对于TD,在多个频带中,未标准化的相干性(异常或标准期间的相干性)显着增加。我们的研究结果表明,无论任务难度如何,ASD中神经资源的募集都增加了,同时减轻了通常由β谱带介导的自上而下的调制减少,以减轻噪声对听觉处理的影响。

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