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Visual event-related potentials to biological motion stimuli in autism spectrum disorders

机译:自闭症谱系障碍中与视觉事件相关的生物运动刺激潜能

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摘要

Atypical visual processing of biological motion contributes to social impairments in autism spectrum disorders (ASD). However, the exact temporal sequence of deficits of cortical biological motion processing in ASD has not been studied to date. We used 64-channel electroencephalography to study event-related potentials associated with human motion perception in 17 children and adolescents with ASD and 21 typical controls. A spatio-temporal source analysis was performed to assess the brain structures involved in these processes. We expected altered activity already during early stimulus processing and reduced activity during subsequent biological motion specific processes in ASD. In response to both, random and biological motion, the P100 amplitude was decreased suggesting unspecific deficits in visual processing, and the occipito-temporal N200 showed atypical lateralization in ASD suggesting altered hemispheric specialization. A slow positive deflection after 400 ms, reflecting top-down processes, and human motion-specific dipole activation differed slightly between groups, with reduced and more diffuse activation in the ASD-group. The latter could be an indicator of a disrupted neuronal network for biological motion processing in ADS. Furthermore, early visual processing (P100) seems to be correlated to biological motion-specific activation. This emphasizes the relevance of early sensory processing for higher order processing deficits in ASD.
机译:生物运动的非典型视觉处理导致自闭症谱系障碍(ASD)的社会障碍。然而,迄今为止尚未研究ASD中皮质生物运动处理的缺陷的确切时间序列。我们使用64通道脑电图技术研究了17名患有ASD的儿童和青少年以及21名典型对照中与人类运动感知相关的事件相关电位。进行时空源分析以评估参与这些过程的大脑结构。我们预期在ASD中,早期刺激过程已经改变了活动,而随后的特定于生物运动的过程却降低了活动。响应随机运动和生物运动,P100振幅降低,表明视觉处理无特异性缺陷,枕颞N200在ASD中表现出非典型侧偏,提示半球专业性改变。 400毫秒后缓慢的正偏转,反映了自上而下的过程,以及特定于人体运动的偶极子激活在各组之间略有不同,而在ASD组中则有所减少,而弥散激活更多。后者可能是ADS中生物运动处理的神经网络被破坏的指示。此外,早期视觉处理(P100)似乎与生物运动特异性激活相关。这强调了早期感觉处理与ASD中高阶处理缺陷的相关性。

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