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跨大脑半球的生物与非生物领域的功能表征:一项事件相关电位/经颅磁刺激联合研究。

Functional representation of living and nonliving domains across the cerebral hemispheres: a combined event-related potential/transcranial magnetic stimulation study.

作者信息

Fuggetta Giorgio, Rizzo Silvia, Pobric Gorana, Lavidor Michal, Walsh Vincent

机构信息

School of Psychology, Faculty of Medicine and Biological Sciences, University of Leicester, Leicester, UK.

出版信息

J Cogn Neurosci. 2009 Feb;21(2):403-14. doi: 10.1162/jocn.2008.21030.

Abstract

Transcranial magnetic stimulation (TMS) over the left hemisphere has been shown to disrupt semantic processing but, to date, there has been no direct demonstration of the electrophysiological correlates of this interference. To gain insight into the neural basis of semantic systems, and in particular, study the temporal and functional organization of object categorization processing, we combined repetitive TMS (rTMS) and ERPs. Healthy volunteers performed a picture-word matching task in which Snodgrass drawings of natural (e.g., animal) and artifactual (e.g., tool) categories were associated with a word. When short trains of high-frequency rTMS were applied over Wernicke's area (in the region of the CP5 electrode) immediately before the stimulus onset, we observed delayed response times to artifactual items, and thus, an increased dissociation between natural and artifactual domains. This behavioral effect had a direct ERP correlate. In the response period, the stimuli from the natural domain elicited a significant larger late positivity complex than those from the artifactual domain. These differences were significant over the centro-parietal region of the right hemisphere. These findings demonstrate that rTMS interferes with post-perceptual categorization processing of natural and artifactual stimuli that involve separate subsystems in distinct cortical areas.

摘要

经颅磁刺激(TMS)作用于左半球已被证明会干扰语义加工,但迄今为止,尚未有对这种干扰的电生理相关性的直接证明。为了深入了解语义系统的神经基础,特别是研究物体分类加工的时间和功能组织,我们将重复经颅磁刺激(rTMS)和事件相关电位(ERP)结合起来。健康志愿者执行了一项图片-单词匹配任务,其中自然类别(如动物)和人造类别(如工具)的斯诺德格拉斯绘图与一个单词相关联。当在刺激开始前立即在韦尼克区(CP5电极区域)施加短串高频rTMS时,我们观察到对人造物品的反应时间延迟,因此,自然领域和人造领域之间的分离增加。这种行为效应有直接的ERP相关性。在反应期,来自自然领域的刺激比来自人造领域的刺激引发了显著更大的晚期正性复合体。这些差异在右半球的中央顶叶区域显著。这些发现表明,rTMS会干扰自然和人造刺激的知觉后分类加工,这些刺激涉及不同皮质区域中的不同子系统。

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