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首页> 外文期刊>Journal of memory and language >Semantic transparency is not invisibility: A computational model of perceptually-grounded conceptual combination in word processing
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Semantic transparency is not invisibility: A computational model of perceptually-grounded conceptual combination in word processing

机译:语义透明度不是隐形:文字处理中感知 - 接地的概念组合的计算模型

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Previous studies found that an automatic meaning-composition process affects the processing of morphologically complex words, and related this operation to conceptual combination. However, research on embodied cognition demonstrates that concepts are more than just lexical meanings, rather being also grounded in perceptual experience. Therefore, perception-based information should also be involved in mental operations on concepts, such as conceptual combination. Consequently, we should expect to find perceptual effects in the processing of morphologically complex words. In order to investigate this hypothesis, we present the first fully-implemented and data-driven model of perception-based (more specifically, vision-based) conceptual combination, and use the predictions of such a model to investigate processing times for compound words in four large-scale behavioral experiments employing three paradigms (naming, lexical decision, and timed sensibility judgments). We observe facilitatory effects of vision-based compositionality in all three paradigms, over and above a strong language-based (lexical and semantic) baseline, thus demonstrating for the first time perceptually grounded effects at the sub-lexical level. This suggests that perceptually-grounded information is not only utilized according to specific task demands but rather automatically activated when available.
机译:以前的研究发现,自动意义 - 组合过程影响形态学复杂的单词的处理,并将这种操作与概念组合相关。然而,对体现认知的研究表明,概念不仅仅是词汇意义,而是也在感知体验中接地。因此,基于感知的信息也应参与概念的智能操作,例如概念组合。因此,我们应该期望在处理形态学复杂的单词中找到感知效果。为了调查这一假设,我们介绍了基于感知(更具体地说,基于视觉)的概念组合的第一个完全实现的和数据驱动模型,并使用这种模型的预测来研究复合词的处理时间采用三种范例的四个大型行为实验(命名,词汇决定和定时敏感性判断)。我们观察基于视觉的组成性的促进作用,超过三种范式,超过基于强语言(词汇和语义)基线,从而证明了第一次在亚词汇水平上的感知接地效果。这表明感知地接地的信息不仅根据特定的任务要求使用,而是在可用时自动激活。

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