视觉单词处理中左右半球的半球内/半球间交互模式。

IF 2 4区 医学 Q3 NEUROSCIENCES
Cognitive Neuroscience Pub Date : 2023-01-01 Epub Date: 2023-09-15 DOI:10.1080/17588928.2023.2259555
Sangyub Kim, Jisoo Song, Wonjae Lee, Kichun Nam
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引用次数: 1

摘要

本研究旨在通过在已启动的偏侧化词汇决策任务中操纵刺激起始异步(SOA),研究视觉单词处理过程中大脑半球内/半球间的交互。为了评估半球内/半球间启动效应,在相同或相反的单侧视野中呈现相同的启动靶对。研究发现,当韩语单词在大脑半球内按顺序呈现时,可以观察到右视野优势(RVFA),这表明导致半球不对称的是两个半球的固有特征,而不是记忆或词汇处理的语言方面的差异。此外,半球内启动效应在两个半球都是对称的,SOA 120中单词和非单词的启动增加相似 ms到SOA 600 此外,半球间启动效应是不对称的,当刺激以LH序列出现时,启动更强→相对湿度大于相对湿度→LH。这些发现表明,两个半球在词汇处理方面的内在差异可能与视觉词汇处理中半球互动的不对称模式有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The pattern of intra-/inter-hemispheric interactions of left and right hemispheres in visual word processing.

This study aimed to investigate the intra-/inter-hemispheric interactions during visual word processing, by manipulating stimulus onset asynchrony (SOA) in a primed-lateralized lexical decision task. To assess intra-/inter-hemispheric priming effects, identical prime-target pairs were presented in the same or opposite unilateral visual fields. The study found that the right visual field advantage (RVFA) was observed when Korean words were presented sequentially within hemispheres, indicating that the inherent characteristics of the two hemispheres, rather than differences in memory or linguistic aspects of lexical processing, contributed to the hemispheric asymmetry. Additionally, intra-hemispheric priming effects were symmetrical in both hemispheres, with similar increases in priming for words and nonwords from SOA 120 ms to SOA 600 ms. Furthermore, inter-hemispheric priming effects were asymmetrical, with stronger priming when stimuli were presented in a sequence of LH→RH than in RH→LH. These findings suggest that the intrinsic differences in lexical processing between the two hemispheres may be related to the asymmetric pattern of hemispheric interactions in visual word processing.

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来源期刊
Cognitive Neuroscience
Cognitive Neuroscience NEUROSCIENCES-
CiteScore
3.60
自引率
0.00%
发文量
27
审稿时长
>12 weeks
期刊介绍: Cognitive Neuroscience publishes high quality discussion papers and empirical papers on any topic in the field of cognitive neuroscience including perception, attention, memory, language, action, social cognition, and executive function. The journal covers findings based on a variety of techniques such as fMRI, ERPs, MEG, TMS, and focal lesion studies. Contributions that employ or discuss multiple techniques to shed light on the spatial-temporal brain mechanisms underlying a cognitive process are encouraged.
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