Autistic individuals show less grouping-induced bias in numerosity judgments

Antonella Pomè, T. Karaminis, D. Burr
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Abstract

When items are connected together, they tend to be perceived as an integrated whole rather than as individual dots, causing a strong underestimation of the numerosity of the ensemble. Previous evidence on grouping-induced biases of numerosity has shown a dependency on autistic-like personality traits in neurotypical adults, with a weaker tendency for grouping into meaningful segmented objects in individuals with strong autistic traits. Here we asked whether this result would generalize to the autistic population.Twenty-two adults with a diagnosis of Autism Spectrum Disorder (ASD) and 22 matched neurotypical controls judged the numerosity of clouds of dot-pairs connected by thin lines.Results showed no significant group difference in discrimination precision, suggesting that both groups were equally capable performing the task. However, while connecting pairs of dots at moderate numerosities caused large changes in apparent numerosity in the neurotypical controls, particularly those with low autistic-like traits, it had little effect in the group of autistic participants, suggesting significant differences in numerosity estimation between autistic and neurotypical perception. Consistent with earlier studies, the magnitude of the effect covaried strongly with AQ-defined autistic traits in the neurotypical range, reinforcing the idea that autistic traits predict the strength of grouping.These results provide strong support for the theories of autistic perception that highlight dissimilarities in global vs. local processing, and open the door to study grouping mechanisms indirectly, by asking participants to report on the apparent numerosity rather than on the grouping organization per se.
自闭症个体在数量判断中表现出较少的群体偏见
当物品连接在一起时,它们往往被视为一个整体,而不是单个的点,这导致了对整体数量的严重低估。先前关于分组诱导的数量偏差的证据表明,神经正常的成年人依赖于自闭症样的人格特征,而在具有强烈自闭症特征的个体中,分组成有意义的分段对象的倾向较弱。在这里,我们问这个结果是否可以推广到自闭症人群。22名被诊断为自闭症谱系障碍(ASD)的成年人和22名与之匹配的神经正常对照组,对由细线连接的点对云的数量进行判断。结果显示,两组在识别精度上没有显著差异,这表明两组在执行任务时具有同等的能力。然而,虽然中等数量的点对连接在神经正常的控制组,特别是那些具有低自闭症样特征的控制组中引起了明显的数字变化,但它对自闭症组参与者的影响很小,这表明自闭症和神经正常感知之间的数字估计存在显著差异。与早期的研究一致,在神经典型范围内,这种效应的大小与由iq定义的自闭症特征有很强的共变,这加强了自闭症特征预测群体强度的观点。这些结果为自闭症感知理论提供了强有力的支持,该理论强调了整体与局部加工的差异,并通过要求参与者报告表观数量而不是分组组织本身,为间接研究分组机制打开了大门。
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