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即时感觉运动语义学:大脑活动在 150 毫秒内区分概念类别。

Sensorimotor semantics on the spot: brain activity dissociates between conceptual categories within 150 ms.

机构信息

MRC Cognition and Brain Sciences Unit, Cambridge, UK.

出版信息

Sci Rep. 2013;3:1928. doi: 10.1038/srep01928.

Abstract

Although semantic processing has traditionally been associated with brain responses maximal at 350-400 ms, recent studies reported that words of different semantic types elicit topographically distinct brain responses substantially earlier, at 100-200 ms. These earlier responses have, however, been achieved using insufficiently precise source localisation techniques, therefore casting doubt on reported differences in brain generators. Here, we used high-density MEG-EEG recordings in combination with individual MRI images and state-of-the-art source reconstruction techniques to compare localised early activations elicited by words from different semantic categories in different cortical areas. Reliable neurophysiological word-category dissociations emerged bilaterally at ~ 150 ms, at which point action-related words most strongly activated frontocentral motor areas and visual object-words occipitotemporal cortex. These data now show that different cortical areas are activated rapidly by words with different meanings and that aspects of their category-specific semantics is reflected by dissociating neurophysiological sources in motor and visual brain systems.

摘要

虽然语义处理传统上与大脑反应相关联,大脑反应最大值出现在 350-400 毫秒,但最近的研究报告称,不同语义类型的单词会在更早的 100-200 毫秒时间内引发明显不同的大脑反应。然而,这些早期反应是通过使用不够精确的源定位技术实现的,因此对报告的大脑发生器差异表示怀疑。在这里,我们使用高密度 MEG-EEG 记录与个体 MRI 图像以及最先进的源重建技术相结合,比较了不同皮质区域中来自不同语义类别的单词所引起的局部早期激活。在大约 150 毫秒时出现了双侧可靠的神经生理学单词类别分离,此时与动作相关的单词最强激活了额中央运动区,而视觉物体单词则激活了枕颞叶皮层。这些数据现在表明,不同的皮质区域可以快速地被具有不同含义的单词激活,并且它们的特定语义的某些方面可以通过在运动和视觉大脑系统中分离神经生理学源来反映出来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf1e/3671355/8981522e890a/srep01928-f1.jpg

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