Zipfian distributions facilitate children's learning of novel word-referent mappings

IF 2.8 1区 心理学 Q1 PSYCHOLOGY, EXPERIMENTAL
Lucie Wolters , Ori Lavi-Rotbain , Inbal Arnon
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引用次数: 0

Abstract

The word-frequency distributions children hear during language learning are highly skewed (Zipfian). Previous studies suggest that such skewed environments confer a learnability advantage in tasks that require the learner to discover the units that have to be learned, as in word-segmentation or cross-situational learning. This facilitative effect has been attributed to contextual facilitation from high frequency items in learning lower frequency items, and to better learning under the increased predictability (lower entropy) of skewed distributions. Here, we ask whether Zipfian distributions facilitate learning beyond the discovery of units, as expected under the predictability account. We tested children's learning of novel word-referent mappings in a learning task where each mapping was presented in isolation during training, and did not need to be dicovered. We compared learning in a uniform environment to two skewed environments with different entropy levels. Children's learning was overall better in the two skewed environments, even for low frequency items. These results extend the facilitative effect of Zipfian distributions to additional learning tasks and show they can facilitate language learning beyond the discovery of units.

齐普菲分布有助于儿童学习新词-参照物映射
儿童在语言学习过程中听到的词频分布是高度倾斜的(Zipfian)。以往的研究表明,在需要学习者发现必须学习的单元的任务中,如在单词分词或跨情景学习中,这种倾斜环境会赋予学习者学习优势。这种促进作用被归因于高频项目在学习低频项目时的情境促进作用,以及在倾斜分布的可预测性增强(熵值降低)的情况下更好的学习效果。在此,我们要问的是,Zipfian 分布是否会像可预测性理论所预期的那样,在发现单位之外促进学习。我们在一项学习任务中测试了儿童对新词-指代映射的学习能力,在这项任务中,每个映射在训练过程中都是单独呈现的,不需要被发现。我们将统一环境下的学习与两种不同熵水平的倾斜环境下的学习进行了比较。在两种倾斜环境中,儿童的学习效果总体较好,即使是低频项目。这些结果将齐普菲分布的促进作用扩展到了更多的学习任务中,并表明齐普菲分布可以在发现单位之外促进语言学习。
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来源期刊
Cognition
Cognition PSYCHOLOGY, EXPERIMENTAL-
CiteScore
6.40
自引率
5.90%
发文量
283
期刊介绍: Cognition is an international journal that publishes theoretical and experimental papers on the study of the mind. It covers a wide variety of subjects concerning all the different aspects of cognition, ranging from biological and experimental studies to formal analysis. Contributions from the fields of psychology, neuroscience, linguistics, computer science, mathematics, ethology and philosophy are welcome in this journal provided that they have some bearing on the functioning of the mind. In addition, the journal serves as a forum for discussion of social and political aspects of cognitive science.
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