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使用多模态 MRI 揭示人类注视控制的皮质网络。

Cortical network for gaze control in humans revealed using multimodal MRI.

机构信息

UCL Institute of Cognitive Neuroscience, London WC1N 3AR, UK.

出版信息

Cereb Cortex. 2012 Apr;22(4):765-75. doi: 10.1093/cercor/bhr110. Epub 2011 Jun 21.

Abstract

Functional magnetic resonance imaging (fMRI) techniques allow definition of cortical nodes that are presumed to be components of large-scale distributed brain networks involved in cognitive processes. However, very few investigations examine whether such functionally defined areas are in fact structurally connected. Here, we used combined fMRI and diffusion MRI-based tractography to define the cortical network involved in saccadic eye movement control in humans. The results of this multimodal imaging approach demonstrate white matter pathways connecting the frontal eye fields and supplementary eye fields, consistent with the known connectivity of these regions in macaque monkeys. Importantly, however, these connections appeared to be more prominent in the right hemisphere of humans. In addition, there was evidence of a dorsal frontoparietal pathway connecting the frontal eye field and the inferior parietal lobe, also right hemisphere dominant, consistent with specialization of the right hemisphere for directed attention in humans. These findings demonstrate the utility and potential of using multimodal imaging techniques to define large-scale distributed brain networks, including those that demonstrate known hemispheric asymmetries in humans.

摘要

功能磁共振成像(fMRI)技术允许定义皮质节点,这些节点被认为是参与认知过程的大规模分布式脑网络的组成部分。然而,很少有研究检查这些功能定义的区域实际上是否存在结构连接。在这里,我们使用结合 fMRI 和基于扩散 MRI 的束追踪技术来定义人类扫视眼动控制涉及的皮质网络。这种多模态成像方法的结果表明,存在连接额眼区和辅助眼区的白质通路,这与猕猴这些区域的已知连接性一致。然而,重要的是,这些连接在人类的右半球似乎更为突出。此外,有证据表明存在一条连接额眼区和下顶叶的背侧额顶叶通路,这也是右半球占主导地位的,与人类的定向注意力的右半球专门化相一致。这些发现证明了使用多模态成像技术定义大规模分布式脑网络的实用性和潜力,包括那些在人类中表现出已知的半球不对称性的网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3420/3306571/13e169f68ed3/cercorbhr110f01_4c.jpg

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