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Brocas region subserves imagery of motion: A combined cytoarchitectonic and fMRI study

机译:Broca区域可保留运动图像:细胞构建与功能磁共振成像研究的结合

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摘要

Broca's region in the dominant cerebral hemisphere is known to mediate the production of language but also contributes to comprehension. Here, we report the differential participation of Broca's region in imagery of motion in humans. Healthy volunteers were studied with functional magnetic resonance imaging (fMRI) while they imagined movement trajectories following different instructions. Imagery of right‐hand finger movements induced a cortical activation pattern including dorsal and ventral portions of the premotor cortex, frontal medial wall areas, and cortical areas lining the intraparietal sulcus in both cerebral hemispheres. Imagery of movement observation and of a moving target specifically activated the opercular portion of the inferior frontal cortex. A left‐hemispheric dominance was found for egocentric movements and a right‐hemispheric dominance for movement characteristics in space. To precisely localize these inferior frontal activations, the fMRI data were coregistered with cytoarchitectonic maps of Broca's areas 44 and 45 in a common reference space. It was found that the activation areas in the opercular portion of the inferior frontal cortex were localized to area 44 of Broca's region. These activations of area 44 can be interpreted to possibly demonstrate the location of the human analogue to the so‐called mirror neurones found in inferior frontal cortex of nonhuman primates. We suggest that area 44 mediates higher‐order forelimb movement control resembling the neuronal mechanisms subserving speech. © 2000 Wiley‐Liss, Inc.
机译:众所周知,占主导地位的大脑半球中的布罗卡区域介导语言的产生,但也有助于理解。在这里,我们报告了Broca区域在人类运动图像中的不同参与。健康的志愿者接受了功能性磁共振成像(fMRI)的研究,他们想象着遵循不同指令的运动轨迹。右手手指运动的图像诱发了皮层激活模式,包括运动前皮层的背侧和腹侧部分,额叶内侧壁区域以及位于两个大脑半球顶壁沟内的皮层区域。运动观察的图像和运动目标的图像专门激活了额下皮质的操作部分。在以自我为中心的运动中发现了左半球的优势,而在空间中的运动特性中发现了右半球的优势。为了精确定位这些下额叶激活,将fMRI数据与Broca区域44和45在共同的参考空间中的细胞建筑图共同注册。发现下额叶皮层的可动部分中的激活区域位于布罗卡区域的区域44。区域44的这些激活可以解释为可能证明人类类似物位于非人类灵长类动物的额叶下皮质中的所谓镜像神经元的位置。我们建议区域44介导类似于保护语音的神经元机制的高级前肢运动控制。 ©2000 Wiley‐Liss,Inc.

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