心理学
脑电图
自闭症
自闭症谱系障碍
听力学
动作(物理)
眼动
典型地发展
发展心理学
眼球运动
认知心理学
神经科学
人工智能
物理
医学
量子力学
计算机科学
作者
Mohammad Saber Sotoodeh,Hamidreza Taheri,Nouchine Hadjikhani,Amandine Lassalle
摘要
Abstract Individuals with Autism Spectrum Disorder (ASD) have difficulties recognizing and understanding others’ actions. The goal of the present study was to determine whether children with and without ASD show differences in the way they process stimuli depicting Biological Motion (BM). Thirty‐two children aged 7–16 (16 ASD and 16 typically developing (TD) controls) participated in two experiments. In the first experiment, electroencephalography (EEG) was used to record low (8‒10 Hz) and high (10‒13 Hz) mu and beta (15‒25 Hz) bands during the observation three different Point Light Displays (PLD) of action. In the second experiment, participants answered to action‐recognition tests and their accuracy and response time were recorded, together with their eye‐movements. There were no group differences in EEG data (first experiment), indicating that children with and without ASD do not differ in their mu suppression (8‒13 Hz) and beta activity (15‒25 Hz). However, behavioral data from second experiment revealed that children with ASD were less accurate and slower than TD children in their responses to an action recognition task. In addition, eye‐tracking data indicated that children with ASD paid less attention to the body compared to the background when watching PLD stimuli. Our results indicate that the more the participants focused on the PLDs, the more they displayed mu suppressions. These results could challenge the results of previous studies that had not controlled for visual attention and found a possible deficit in MNS functions of individuals with ASD. We discuss possible mechanisms and interpretations.
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