Uppsala Child & Babylab, Department of Psychology, Uppsala University, Box 1225, 75142, Uppsala, Sweden.
Centre for Brain & Cognitive Development, Birkbeck, University of London, London, UK.
J Autism Dev Disord. 2021 Jan;51(1):364-370. doi: 10.1007/s10803-020-04523-2.
Research indicates that individuals with autism spectrum disorder (ASD) are superior at local processing while the integration of local features to global percepts is reduced. Here, we compared infants at familiar risk for ASD to typically developing infants in terms of global coherence processing at 5 months of age, using steady state visually evoked potentials (SSVEP). We found a different topographical organization for global form and motion processing in infants at risk (n = 50) than in controls (n = 23). In contrast, activation patterns for local visual change were strikingly similar between groups. Although preliminary, the results represent the first neurophysiological evidence supporting the view that basic atypicalities in perception may play a role in the developmental pathways leading to ASD.
研究表明,自闭症谱系障碍(ASD)个体在局部处理方面表现出色,而局部特征与整体感知的整合能力则降低。在这里,我们使用稳态视觉诱发电位(SSVEP)比较了具有 ASDR 风险的婴儿和正常发育的婴儿在 5 个月大时的整体连贯性处理。我们发现,风险婴儿(n=50)的全局形状和运动处理的拓扑组织与对照组(n=23)不同。相比之下,两组之间的局部视觉变化的激活模式非常相似。尽管这只是初步结果,但这些结果代表了支持以下观点的第一个神经生理学证据,即感知中的基本异常可能在导致 ASD 的发育途径中发挥作用。