Wada Makoto, Suzuki Mayuko, Takaki Akiko, Miyao Masutomo, Spence Charles, Kansaku Kenji
1] Systems Neuroscience Section, Department of Rehabilitation for Brain Functions, Research Institute of National Rehabilitation Center for Persons with Disabilities, Tokorozawa 359-8555, Japan [2] Developmental Disorders Section, Department of Rehabilitation for Brain Functions, Research Institute of National Rehabilitation Center for Persons with Disabilities, Tokorozawa 359-8555, Japan.
Information Center for Persons with Developmental Disabilities, National Rehabilitation Center for Persons with Disabilities, Tokorozawa 359-8555, Japan.
Sci Rep. 2014 Aug 7;4:5985. doi: 10.1038/srep05985.
Altered multisensory integration has been reported in autism; however, little is known concerning how the autistic brain processes spatio-temporal information concerning tactile stimuli. We report a study in which a crossed-hands illusion was investigated in autistic children. Neurotypical individuals often experience a subjective reversal of temporal order judgments when their hands are stimulated while crossed, and the illusion is known to be acquired in early childhood. However, under those conditions where the somatotopic representation is given priority over the actual spatial location of the hands, such reversals may not occur. Here, we showed that a significantly smaller illusory reversal was demonstrated in autistic children than in neurotypical children. Furthermore, in an additional experiment, the young boys who had higher Autism Spectrum Quotient (AQ) scores generally showed a smaller crossed hands deficit. These results suggest that rudimentary spatio-temporal processing of tactile stimuli exists in autistic children, and the altered processing may interfere with the development of an external frame of reference in real-life situations.
已有研究报道自闭症患者存在多感官整合改变的情况;然而,关于自闭症大脑如何处理与触觉刺激相关的时空信息,我们却知之甚少。我们报告了一项针对自闭症儿童进行的交叉手错觉研究。神经典型个体在双手交叉时受到刺激时,常常会经历时间顺序判断的主观逆转,并且已知这种错觉在幼儿期就已形成。然而,在躯体感觉表征优先于双手实际空间位置的情况下,这种逆转可能不会发生。在此,我们发现自闭症儿童表现出的错觉逆转明显小于神经典型儿童。此外,在另一项实验中,自闭症谱系商数(AQ)得分较高的小男孩通常表现出较小的交叉手缺陷。这些结果表明,自闭症儿童存在基本的触觉刺激时空处理能力,而这种处理改变可能会干扰现实生活中外部参照框架的发展。