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Discrimination of Small Forms in a Deviant-Detection Paradigm by 10-month-old Infants

机译:10个月大婴儿在偏差检测范式中的小形式歧视

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摘要

Using eye tracking, we investigated if 10-month-old infants could discriminate between members of a set of small forms based on geometric properties in a deviant-detection paradigm, as suggested by the idea of a core cognitive system for Euclidian geometry. We also investigated the precision of infants' ability to discriminate as well as how the discrimination process unfolds over time. Our results show that infants can discriminate between small forms based on geometrical properties, but only when the difference is sufficiently large. Furthermore, our results also show that it takes infants, on average, <3.5 s to detect a deviant form. Our findings extend previous research in three ways: by showing that infants can make similar discriminative judgments as children and adults with respect to geometric properties; by providing a first crude estimate on the limit of the discriminative abilities in infants, and finally; by providing a first demonstration of how the discrimination process unfolds over time.
机译:使用眼动追踪,我们研究了10个月大的婴儿是否可以根据偏差检测范式中的几何特性来区分一组小形式的成员,这是由欧几里得几何学的核心认知系统的想法所建议的。我们还研究了婴儿辨别能力的精确度以及辨别过程如何随时间发展。我们的研究结果表明,婴儿可以基于几何属性区分较小的形状,但是只有当差异足够大时才可以区分。此外,我们的结果还表明,婴儿平均需要不到3.5 s的时间才能检测出畸形。我们的发现以三种方式扩展了先前的研究:通过证明婴儿在几何特性方面可以做出与儿童和成人类似的判别判断;通过提供对婴儿区分能力极限的初步估算,最后;通过提供关于歧视过程如何随时间演变的第一个证明。

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