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Exploring the Anatomical Basis of Effective Connectivity Models with DTI-Based Fiber Tractography

机译:探索基于DTI的光纤连接法的有效连通性模型的解剖基础

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Diffusion tensor imaging (DTI) is considered to be a promising tool for revealing the anatomical basis of functional networks. In this study, we investigate the potential of DTI to provide the anatomical basis of paths that are used in studies of effective connectivity, using structural equation modeling. We have taken regions of interest from eight previously published studies, and examined the connectivity as defined by DTI-based fiber tractography between these regions. The resulting fiber tracts were then compared with the paths proposed in the original studies. For a substantial number of connections, we found fiber tracts that corresponded to the proposed paths. More importantly, we have also identified a number of cases in which tractography suggested direct connections which were not included in the original analyses. We therefore conclude that DTI-based fiber tractography can be a valuable tool to study the anatomical basis of functional networks.
机译:弥散张量成像(DTI)被认为是揭示功能网络解剖基础的有前途的工具。在这项研究中,我们使用结构方程模型研究DTI潜力,以提供有效连接性研究中所用路径的解剖基础。我们从八项先前发表的研究中选取了感兴趣的区域,并检查了这些区域之间基于DTI的纤维束成像所定义的连通性。然后将所得的纤维束与原始研究中提出的路径进行比较。对于大量的连接,我们发现与提议的路径相对应的光纤束。更重要的是,我们还发现了一些病例,其中,超声检查提示直接连接,但原始分析中未包括。因此,我们得出结论,基于DTI的纤维束描记术可以成为研究功能性网络的解剖学基础的有价值的工具。

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