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The structural-functional connectome and the default mode network of the human brain

机译:人脑的结构功能连接体和默认模式网络

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An emerging field of human brain imaging deals with the characterization of the connectome, a comprehensive global description of structural and functional connectivity within the human brain. However, the question of how functional and structural connectivity are related has not been fully answered yet. Here, we used different methods to estimate the connectivity between each voxel of the cerebral cortex based on functional magnetic resonance imaging (fMRI) and diffusion tensor imaging (DTI) data in order to obtain observer-independent functional-structural connectomes of the human brain. Probabilistic fiber-tracking and a novel global fiber-tracking technique were used to measure structural connectivity whereas for functional connectivity, full and partial correlations between each voxel pair's fMRI-time courses were calculated. For every voxel, two vectors consisting of functional and structural connectivity estimates to all other voxels in the cortex were correlated with each other. In this way, voxels structurally and functionally connected to similar regions within the rest of the brain could be identified. Areas forming parts of the 'default mode network' (DMN) showed the highest agreement of structure function connectivity. Bilateral precuneal and inferior parietal regions were found using all applied techniques, whereas the global tracking algorithm additionally revealed bilateral medial prefrontal cortices and early visual areas. There were no significant differences between the results obtained from full and partial correlations. Our data suggests that the DMN is the functional brain network, which uses the most direct structural connections. Thus, the anatomical profile of the brain seems to shape its functional repertoire and the computation of the whole-brain functional-structural connectome appears to be a valuable method to characterize global brain connectivity within and between populations. (C) 2013 Elsevier Inc. All rights reserved.
机译:人脑成像的新兴领域涉及连接体的表征,这是对人脑内部结构和功能连接性的全面描述。但是,功能和结构连通性如何关联的问题尚未完全解决。在这里,我们使用不同的方法基于功能磁共振成像(fMRI)和扩散张量成像(DTI)数据来估计大脑皮层的每个体素之间的连通性,从而获得与观察者无关的人脑功能结构连接体。概率纤维跟踪和一种新颖的全局纤维跟踪技术用于测量结构连接性,而对于功能连接性,计算每个体素对的fMRI时间过程之间的全部和部分相关性。对于每个体素,两个与皮质中所有其他体素的功能和结构连接性估计值组成的向量相互关联。通过这种方式,可以确定在结构上和功能上连接到大脑其余部分内相似区域的体素。构成“默认模式网络”(DMN)一部分的区域显示出结构功能连接性的最高一致性。使用所有应用的技术都发现了双侧的前骨顶壁和下顶骨区域,而全局跟踪算法另外显示了双侧的内侧前额叶皮层和早期的视觉区域。从完全相关和部分相关获得的结果之间没有显着差异。我们的数据表明DMN是功能性大脑网络,它使用最直接的结构连接。因此,大脑的解剖学特征似乎在塑造其功能体系,而全脑功能结构连接体的计算似乎是表征人群内部和人群之间整体大脑连通性的一种有价值的方法。 (C)2013 Elsevier Inc.保留所有权利。

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