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The Development of Multisensory Integration in High-Functioning Autism: High-Density Electrical Mapping and Psychophysical Measures Reveal Impairments in the Processing of Audiovisual Inputs

机译:高功能自闭症中多感官整合的发展:高密度电图和心理物理措施揭示了视听输入处理中的障碍

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摘要

Successful integration of auditory and visual inputs is crucial for both basic perceptual functions and for higher-order processes related to social cognition. Autism spectrum disorders (ASD) are characterized by impairments in social cognition and are associated with abnormalities in sensory and perceptual processes. Several groups have reported that individuals with ASD are impaired in their ability to integrate socially relevant audiovisual (AV) information, and it has been suggested that this contributes to the higher-order social and cognitive deficits observed in ASD. However, successful integration of auditory and visual inputs also influences detection and perception of nonsocial stimuli, and integration deficits may impair earlier stages of information processing, with cascading downstream effects. To assess the integrity of basic AV integration, we recorded high-density electrophysiology from a cohort of high-functioning children with ASD (7-16 years) while they performed a simple AV reaction time task. Children with ASD showed considerably less behavioral facilitation to multisensory inputs, deficits that were paralleled by less effective neural integration. Evidence for processing differences relative to typically developing children was seen as early as 100 ms poststimulation, and topographic analysis suggested that children with ASD relied on different cortical networks during this early multisensory processing stage.
机译:听觉和视觉输入的成功整合对于基本的感知功能和与社会认知有关的高阶过程都至关重要。自闭症谱系障碍(ASD)的特征是社交认知受损,并与感觉和知觉过程异常有关。几个研究小组报告说,患有ASD的人整合社交相关视听(AV)信息的能力受到损害,并且有人提出,这会导致ASD中观察到的较高阶的社会和认知缺陷。但是,听觉和视觉输入的成功整合也会影响非社会刺激的检测和感知,整合缺陷可能会损害信息处理的早期阶段,并产生下游影响。为了评估基本AV整合的完整性,我们记录了一群高功能性ASD儿童(7-16岁)在执行简单的AV反应时间任务时的高密度电生理学。患有自闭症的儿童对多感觉输入的行为促进明显减少,与有效神经整合不足相伴的缺陷。相对于典型发育中的儿童,在刺激后100毫秒就可以看到加工差异的证据,并且地形分析表明,在早期的多感官加工阶段,患有ASD的儿童依赖于不同的皮质网络。

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