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婴儿视觉皮层的全局运动处理与自闭症的出现。

Global motion processing in infants' visual cortex and the emergence of autism.

机构信息

Center of Neurodevelopmental Disorders at Karolinska Institutet (KIND), Department of Women's and Children's Health, Karolinska Institutet & Stockholm Health Care Services, Stockholm, Sweden.

Uppsala Child and Baby Lab, Department of Psychology, Uppsala University, Uppsala, Sweden.

出版信息

Commun Biol. 2023 Mar 28;6(1):339. doi: 10.1038/s42003-023-04707-3.

Abstract

Autism is a heritable and common neurodevelopmental condition, with behavioural symptoms typically emerging around age 2 to 3 years. Differences in basic perceptual processes have been documented in autistic children and adults. Specifically, data from many experiments suggest links between autism and alterations in global visual motion processing (i.e., when individual motion information is integrated to perceive an overall coherent pattern). Yet, no study has investigated whether a distinctive organization of global motion processing precede the emergence of autistic symptoms in early childhood. Here, using a validated infant electroencephalography (EEG) experimental paradigm, we first establish the normative activation profiles for global form, global motion, local form, and local motion in the visual cortex based on data from two samples of 5-month-old infants (total n = 473). Further, in a sample of 5-month-olds at elevated likelihood of autism (n = 52), we show that a different topographical organization of global motion processing is associated with autistic symptoms in toddlerhood. These findings advance the understanding of neural organization of infants' basic visual processing, and its role in the development of autism.

摘要

自闭症是一种遗传性和常见的神经发育障碍,其行为症状通常在 2 至 3 岁左右出现。自闭症儿童和成人的基本感知过程存在差异。具体来说,许多实验数据表明自闭症与整体视觉运动处理的改变有关(即,当个体运动信息被整合以感知整体连贯的模式时)。然而,尚无研究调查自闭症症状在幼儿期出现之前,是否存在整体运动处理的独特组织。在这里,我们使用经过验证的婴儿脑电图(EEG)实验范式,首先根据来自两个 5 个月大婴儿样本(总共 n=473)的数据,为视觉皮层中的整体形式、整体运动、局部形式和局部运动建立了规范的激活图谱。此外,在自闭症高可能性的 5 个月大婴儿样本中(n=52),我们发现整体运动处理的不同拓扑组织与幼儿期的自闭症症状有关。这些发现推进了对婴儿基本视觉处理的神经组织及其在自闭症发展中的作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdc5/10050234/950edcdaf312/42003_2023_4707_Fig1_HTML.jpg

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