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概念性动作知识提取过程中的功能交互作用:一项功能磁共振成像研究

Functional interactions during the retrieval of conceptual action knowledge: an fMRI study.

作者信息

Assmus Ann, Giessing Carsten, Weiss Peter H, Fink Gereon R

机构信息

Institute of Neuroscience and Biophysics-Medicine, Research Center Jülich, Jülich, Germany.

出版信息

J Cogn Neurosci. 2007 Jun;19(6):1004-12. doi: 10.1162/jocn.2007.19.6.1004.

Abstract

Impaired retrieval of conceptual knowledge for actions has been associated with lesions of left premotor, left parietal, and left middle temporal areas [Tranel, D., Kemmerer, D., Adolphs, R., Damasio, H., & Damasio, A. R. Neural correlates of conceptual knowledge for actions. Cognitive Neuropsychology, 409-432, 2003]. Here we aimed at characterizing the differential contribution of these areas to the retrieval of conceptual knowledge about actions. During functional magnetic resonance imaging (fMRI), different categories of pictograms (whole-body actions, manipulable and nonmanipulable objects) were presented to healthy subjects. fMRI data were analyzed using SPM2. A conjunction analysis of the neural activations elicited by all pictograms revealed ( p<.05, corrected) a bilateral inferior occipito-temporal neural network with strong activations in the right and left fusiform gyri. Action pictograms contrasted to object pictograms showed differential activation of area MT+, the inferior and superior parietal cortex, and the premotor cortex bilaterally. An analysis of psychophysiological interactions identified contribution-dependent changes in the neural responses when pictograms triggered the retrieval of conceptual action knowledge: Processing of action pictograms specifically enhanced the neural interaction between the right and left fusiform gyri, the right and left middle temporal cortices (MT+), and the left superior and inferior parietal cortex. These results complement and extend previous neuropsychological and neuroimaging studies by showing that knowledge about action concepts results from an increased coupling between areas concerned with semantic processing (fusiform gyrus), movement perception (MT+), and temporospatial movement control (left parietal cortex).

摘要

动作概念知识的提取受损与左侧运动前区、左侧顶叶和左侧颞中区的损伤有关[特拉内尔,D.,凯默勒,D.,阿道夫斯,R.,达马西奥,H.,&达马西奥,A. R.动作概念知识的神经关联。《认知神经心理学》,409 - 432,2003年]。在这里,我们旨在描述这些区域对动作概念知识提取的不同贡献。在功能磁共振成像(fMRI)过程中,向健康受试者呈现了不同类别的象形图(全身动作、可操作和不可操作物体)。使用SPM2分析fMRI数据。对所有象形图引发的神经激活进行联合分析发现(p <.05,校正后),在双侧枕颞下回神经网络中,右侧和左侧梭状回有强烈激活。与物体象形图相比,动作象形图显示出MT +区、双侧顶叶上下皮质和运动前皮质的差异激活。一项心理生理相互作用分析确定了象形图触发动作概念知识提取时神经反应中依赖于贡献的变化:动作象形图的处理特别增强了右侧和左侧梭状回、右侧和左侧颞中皮质(MT +)以及左侧顶叶上下皮质之间的神经相互作用。这些结果通过表明动作概念知识源于与语义处理(梭状回)、运动感知(MT +)和颞空间运动控制(左侧顶叶皮质)相关区域之间增强的耦合,补充并扩展了先前的神经心理学和神经影像学研究。

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