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Comparison Of Brain Connectomes Using Geodesic Distance On Manifold: A Twins Study

机译:在流形上使用测地距离比较大脑连接体:双胞胎研究

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FMRI is a unique non-invasive approach for understanding the functional organization of the human brain, and task-based fMRI promotes identification of functionally relevant brain regions associated with a given task. Here, we use fMRI (using the Poffenberger Paradigm) data collected in mono- and dizygotic twin pairs to propose a novel approach for assessing similarity in functional networks. In particular, we compared network similarity between pairs of twins in task-relevant and task-orthogonal networks. The proposed method measures the similarity between functional networks using a geodesic distance between graph Laplacians. With method we show that networks are more similar in monozygotic twins compared to dizygotic twins. Furthermore, the similarity in monozygotic twins is higher for task-relevant, than task-orthogonal networks.
机译:功能磁共振成像是一种独特的非侵入性方法,可用于了解人脑的功能组织,基于任务的功能磁共振成像可促进识别与给定任务相关的功能相关的大脑区域。在这里,我们使用在单卵双生子和双卵双生子对中收集的功能磁共振成像(使用Poffenberger范例)数据来提出一种评估功能网络相似性的新颖方法。特别是,我们比较了任务相关和任务正交网络中双胞胎对之间的网络相似性。所提出的方法使用图拉普拉斯算子之间的测地距离来测量功能网络之间的相似性。通过方法,我们证明了与同卵双胞胎相比,同卵双胞胎中的网络更为相似。此外,与任务正交的网络相比,与任务相关的单卵双胞胎的相似性更高。

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