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BrainSync: An Orthogonal Transformation for Synchronization of fMRI Data Across Subjects

机译:BRINSYNC:用于跨对象的FMRI数据同步的正交变换

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We describe a method that allows direct comparison of resting fMRI (rfMRI) time series across subjects. For this purpose, we exploit the geometry of the rfMRI signal space to conjecture the existence of an orthogonal transformation that synchronizes fMRI time series across sessions and subjects. The method is based on the observation that rfMRI data exhibit similar connectivity patterns across subjects, as reflected in the pairwise correlations between different brain regions. The orthogonal transformation that performs the synchronization is unique, invertible, efficient to compute, and preserves the connectivity structure of the original data for all subjects. Similarly to image registration, where we spatially align the anatomical brain images, this synchronization of brain signals across a population or within subject across sessions facilitates longitudinal and cross-sectional studies of rfMRI data. The utility of this transformation is illustrated through applications to quantification of fMRI variability across subjects and sessions, joint cortical clustering of a population and comparison of task-related and resting fMRI.
机译:我们描述了一种方法,允许直接比较跨对象的休息FMRI(RFMRI)时间序列。为此目的,我们利用RFMRI信号空间的几何形状来猜想在会话和主题中同步FMRI时间序列同步的正交变换的存在。该方法基于观察结果,即RFMRI数据在不同脑区之间的成对相关性中表现出相似的连接模式。执行同步的正交变换是唯一的,可逆性,有效地计算,并保留所有受试者的原始数据的连接结构。类似于图像配准,在我们在空间对齐解剖学脑图像的情况下,这种脑中脑信号的同步跨越会话的受试者促进了RFMRI数据的纵向和横截面研究。通过应用于在跨对象和会话中定量FMRI可变性,人口联合皮质聚类和任务相关和休息FMRI的比较来说明该转换的效用。

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