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自闭症儿童运动处理能力的发展。

Development of motion processing in children with autism.

机构信息

Department of Developmental Sciences, Division of Psychology and Language Science, University College London, UK.

出版信息

Dev Sci. 2010 Nov;13(6):826-38. doi: 10.1111/j.1467-7687.2009.00939.x.

Abstract

Recent findings suggest that children with autism may be impaired in the perception of biological motion from moving point-light displays. Some children with autism also have abnormally high motion coherence thresholds. In the current study we tested a group of children with autism and a group of typically developing children aged 5 to 12 years of age on several motion perception tasks, in order to establish the specificity of the biological motion deficit in relation to other visual discrimination skills. The first task required the recognition of biological from scrambled motion. Three quasi-psychophysical tasks then established individual thresholds for the detection of biological motion in dynamic noise, of motion coherence and of form-from-motion. Lastly, individual thresholds for a task of static perception--contour integration (Gabor displays)--were also obtained. Compared to controls, children with autism were particularly impaired in processing biological motion in relation to any developmental measure (chronological or mental age). In contrast, there was some developmental overlap in ability to process other types of visual motion between typically developing children and the children with autism, and evidence of developmental change in both groups. Finally, Gabor display thresholds appeared to develop typically in children with autism.

摘要

最近的研究结果表明,自闭症儿童可能在感知运动点光源显示的生物运动方面存在障碍。一些自闭症儿童的运动连贯性阈值也异常高。在当前的研究中,我们测试了一组自闭症儿童和一组年龄在 5 至 12 岁的典型发育儿童,以确定生物运动缺陷与其他视觉辨别技能的特异性。第一项任务要求识别生物运动和随机运动。然后,三个准心理物理任务分别确定了在动态噪声中检测生物运动、运动连贯性和运动形态的个体阈值。最后,还获得了静态感知任务——轮廓整合(Gabor 显示)的个体阈值。与对照组相比,自闭症儿童在处理生物运动方面特别有障碍,而与任何发育指标(年龄或心理年龄)相比都是如此。相比之下,典型发育儿童和自闭症儿童在处理其他类型的视觉运动方面存在一定的发育重叠,两组都有发育变化的证据。最后,Gabor 显示阈值在自闭症儿童中似乎正常发育。

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