分类匹配任务中的ERP组件

Jun Ji , Bernice Porjesz , Henri Begleiter
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引用次数: 14

摘要

本实验旨在探讨(1)语义信息对视觉短期记忆(VMP) ERP相关的影响;(2)利用ERP作为一种客观的研究工具,用于临床观察脑分类系统的存在。记录39名健康成人头皮61个部位的事件相关电位(ERPs),并将其分为匹配/非匹配S1-S2模式(动物或水果/蔬菜)。电流源密度(CSD)图显示,与非匹配图像相比,类别匹配图像在脑后区域的振幅要小得多,颞枕脑区域的激活从最初的右半球到后来的左半球变化更大。动物类别诱发的erp大于蔬菜类别,动物-动物匹配条件诱发的erp也大于蔬菜-蔬菜匹配条件。此外,植物诱发的erp的地形分布表明,动物诱发的erp的地形分布中没有右侧额叶皮层的参与。VMP的空间格局具有特定的语义加工特征,erp区分了动物类别和植物类别,为研究脑损伤患者的类别特异性信息加工提供了一种客观的在线方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ERP components in category matching tasks

The current experiment attempts to investigate (1) the effect of semantic information on the ERP correlate of visual short-term memory (VMP) and (2) the utilizing of the ERP as an objective investigative tool for the clinical observation of the existence of category-specific brain systems. Event-related potentials (ERPs) were recorded from 61 locations on the scalp of 39 healthy adults in a category (either animals or fruits/vegetables) match/non-match S1-S2 paradigm. The ERPs revealed a substantially smaller amplitude for the category matching than for non-matching pictures at the posterior brain regions, with greater activation of temporo-occipital brain regions changing from the right hemisphere at first to the left hemisphere later, as demonstrated by the current source density (CSD) maps. The ERPs elicited by the category of animal were larger than the vegetable category, similarly, the animal-animal matching condition elicited larger ERPs than did the vegetable-vegetable matching condition. In addition, the topographic distribution of the vegetable-elicited ERPs revealed additional involvement of the right frontal cortex which was absent in the topographic distribution of the animal-elicited ERPs. The spatial pattern of the VMP possesses features specific to semantic processing, and the ERPs differentiate the animal category from the vegetable category, suggesting an objective on-line method to investigate the category-specific information processing among brain-damaged patients.

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