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自闭症中生物运动知觉异常:概念综述与元分析。

Anomalous Perception of Biological Motion in Autism: A Conceptual Review and Meta-Analysis.

机构信息

Child Psychopathology Unit, Theoretical and Cognitive Neuroscience Group, Scientific Institute IRCCS E. Medea, Bosisio Parini, Lecco, Italy.

MoMiLab Research Unit, IMT School of Advanced Studies Lucca, Lucca, Italy.

出版信息

Sci Rep. 2020 Mar 12;10(1):4576. doi: 10.1038/s41598-020-61252-3.

Abstract

Despite its popularity, the construct of biological motion (BM) and its putative anomalies in autism spectrum disorder (ASD) are not completely clarified. In this article, we present a meta-analysis investigating the putative anomalies of BM perception in ASD. Through a systematic literature search, we found 30 studies that investigated BM perception in both ASD and typical developing peers by using point-light display stimuli. A general meta-analysis including all these studies showed a moderate deficit of individuals with ASD in BM processing, but also a high heterogeneity. This heterogeneity was explored in different additional meta-analyses where studies were grouped according to levels of complexity of the BM task employed (first-order, direct and instrumental), and according to the manipulation of low-level perceptual features (spatial vs. temporal) of the control stimuli. Results suggest that the most severe deficit in ASD is evident when perception of BM is serving a secondary purpose (e.g., inferring intentionality/action/emotion) and, interestingly, that temporal dynamics of stimuli are an important factor in determining BM processing anomalies in ASD. Our results question the traditional understanding of BM anomalies in ASD as a monolithic deficit and suggest a paradigm shift that deconstructs BM into distinct levels of processing and specific spatio-temporal subcomponents.

摘要

尽管生物运动(BM)的构建及其在自闭症谱系障碍(ASD)中的假定异常已广为人知,但仍未完全阐明。在本文中,我们进行了一项荟萃分析,旨在研究 ASD 中 BM 感知的假定异常。通过系统的文献检索,我们发现了 30 项研究,这些研究使用光点显示刺激物调查了 ASD 患者和典型发育同伴的 BM 感知。一项包括所有这些研究的综合荟萃分析表明,ASD 个体在 BM 处理方面存在中等程度的缺陷,但也存在高度的异质性。在不同的额外荟萃分析中探讨了这种异质性,其中根据所采用的 BM 任务的复杂程度(一阶、直接和工具)对研究进行分组,并且根据对照刺激物的低水平感知特征(空间与时间)进行分组。结果表明,当 BM 感知服务于次要目的(例如,推断意图/动作/情绪)时,ASD 中最严重的缺陷最为明显,有趣的是,刺激的时间动态是确定 ASD 中 BM 处理异常的一个重要因素。我们的结果对 ASD 中 BM 异常的传统理解提出了质疑,认为这是一种单一的缺陷,并提出了一种范式转变,将 BM 分解为不同的处理水平和特定的时空子成分。

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