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无颜色,不成果:跨模态启动和 EEG 揭示跨语义类别不同特征的不同作用。

No fruits without color: Cross-modal priming and EEG reveal different roles for different features across semantic categories.

机构信息

International School for Advanced Studies (SISSA), Trieste, Italy.

出版信息

PLoS One. 2021 Apr 14;16(4):e0234219. doi: 10.1371/journal.pone.0234219. eCollection 2021.

DOI:10.1371/journal.pone.0234219
PMID:33852575
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8046255/
Abstract

Category-specific impairments witnessed in patients with semantic deficits have broadly dissociated into natural and artificial kinds. However, how the category of food (more specifically, fruits and vegetables) fits into this distinction has been difficult to interpret, given a pattern of deficit that has inconsistently mapped onto either kind, despite its intuitive membership to the natural domain. The present study explores the effects of a manipulation of a visual sensory (i.e., color) or functional (i.e., orientation) feature on the consequential semantic processing of fruits and vegetables (and tools, by comparison), first at the behavioral and then at the neural level. The categorization of natural (i.e., fruits/vegetables) and artificial (i.e., utensils) entities was investigated via cross-modal priming. Reaction time analysis indicated a reduction in priming for color-modified natural entities and orientation-modified artificial entities. Standard event-related potentials (ERP) analysis was performed, in addition to linear classification. For natural entities, a N400 effect at central channel sites was observed for the color-modified condition compared relative to normal and orientation conditions, with this difference confirmed by classification analysis. Conversely, there was no significant difference between conditions for the artificial category in either analysis. These findings provide strong evidence that color is an integral property to the categorization of fruits/vegetables, thus substantiating the claim that feature-based processing guides as a function of semantic category.

摘要

在语义缺陷患者中观察到的特定类别损伤广泛分为自然和人工类别。然而,鉴于一种模式的缺陷,即尽管其直观上属于自然领域,但不一致地映射到任何一种类别,因此很难解释食物类(更具体地说,水果和蔬菜)如何适应这种区别。本研究通过操纵视觉感官(即颜色)或功能(即方向)特征,首先在行为层面,然后在神经层面,来探索其对水果和蔬菜(以及工具)的语义处理的影响。通过跨模态启动来研究自然(即水果/蔬菜)和人工(即器具)实体的分类。反应时间分析表明,对颜色修饰的自然实体和方向修饰的人工实体的启动减少了。除了线性分类之外,还进行了标准事件相关电位(ERP)分析。对于自然实体,与正常和方向条件相比,在颜色修饰条件下在中央通道部位观察到 N400 效应,分类分析证实了这一差异。相反,在两种分析中,对于人工类别,条件之间没有显着差异。这些发现有力地证明了颜色是对水果/蔬菜进行分类的固有属性,从而证实了特征处理是作为语义类别的功能的说法。

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What Cognitive Neurology Teaches Us about Our Experience of Color.认知神经学关于我们对颜色体验的启示
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Vector-Space Models of Semantic Representation From a Cognitive Perspective: A Discussion of Common Misconceptions.
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