Top-down biological motion perception does not differ between adults scoring high versus low on autism traits

IF 2.7 3区 医学 Q1 BEHAVIORAL SCIENCES
Danna Oomen , Jan R. Wiersema , Guido Orgs , Emiel Cracco
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引用次数: 0

Abstract

The perception of biological motion is an important social cognitive ability. Models of biological motion perception recognize two processes that contribute to the perception of biological motion: a bottom-up process that binds optic-flow patterns into a coherent percept of biological motion and a top-down process that binds sequences of body-posture ‘snapshots’ over time into a fluent percept of biological motion. The vast majority of studies on autism and biological motion perception have used point-light figure stimuli, which elicit biological motion perception predominantly via bottom-up processes. Here, we investigated whether autism is associated with deviances in the top-down processing of biological motion. For this, we tested a sample of adults scoring low vs high on autism traits on a recently validated EEG paradigm in which apparent biological motion is combined with frequency tagging (Cracco et al., 2022) to dissociate between two percepts: 1) the representation of individual body postures, and 2) their temporal integration into movements. In contrast to our hypothesis, we found no evidence for a diminished temporal body posture integration in the high-scoring group. We did, however, find a group difference that suggests that adults scoring high on autism traits have a visual processing style that focuses more on a single percept (i.e. either body postures or movements, contingent on saliency) compared to adults scoring low on autism traits who instead seemed to represent the two percepts included in the paradigm in a more balanced manner. Although unexpected, this finding aligns well with the autism literature on perceptual stability.

自上而下的生物运动感知在自闭症特质得分高与低的成年人之间没有差异。
生物运动感知是一种重要的社会认知能力。生物运动感知模型认为,生物运动感知有两个过程:一个是自下而上的过程,它将光流模式结合成一个连贯的生物运动感知;另一个是自上而下的过程,它将一段时间内的身体姿势 "快照 "序列结合成一个流畅的生物运动感知。绝大多数有关自闭症和生物运动感知的研究都使用了点光图形刺激,这种刺激主要通过自下而上的过程激发生物运动感知。在此,我们研究了自闭症是否与生物运动的自上而下处理过程的偏差有关。为此,我们对自闭症特质得分较低和较高的成人样本进行了最新验证的脑电图范式测试,在该范式中,表观生物运动与频率标记相结合(Cracco 等人,2022 年),以区分两种感知:1) 单个身体姿势的表征,以及 2) 运动的时间整合。与我们的假设相反,我们没有发现任何证据表明高分组的肢体姿势时间整合能力减弱。然而,我们确实发现了一个群体差异,这表明自闭症特质得分高的成年人的视觉处理风格更专注于单一感知(即身体姿势或动作,取决于突出度),而自闭症特质得分低的成年人似乎以更平衡的方式表现范式中的两种感知。尽管出乎意料,但这一发现与有关自闭症知觉稳定性的文献十分吻合。
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来源期刊
Biological Psychology
Biological Psychology 医学-行为科学
CiteScore
4.20
自引率
11.50%
发文量
146
审稿时长
3 months
期刊介绍: Biological Psychology publishes original scientific papers on the biological aspects of psychological states and processes. Biological aspects include electrophysiology and biochemical assessments during psychological experiments as well as biologically induced changes in psychological function. Psychological investigations based on biological theories are also of interest. All aspects of psychological functioning, including psychopathology, are germane. The Journal concentrates on work with human subjects, but may consider work with animal subjects if conceptually related to issues in human biological psychology.
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