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Evaluating the reliability of different preprocessing steps to estimate graph theoretical measures in resting state fMRI data

机译:评估不同预处理步骤的可靠性以估计静止状态fMRI数据中的图形理论量

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摘要

With resting-state functional MRI (rs-fMRI) there are a variety of post-processing methods that can be used to quantify the human brain connectome. However, there is also a choice of which preprocessing steps will be used prior to calculating the functional connectivity of the brain. In this manuscript, we have tested seven different preprocessing schemes and assessed the reliability between and reproducibility within the various strategies by means of graph theoretical measures. Different preprocessing schemes were tested on a publicly available dataset, which includes rs-fMRI data of healthy controls. The brain was parcellated into 190 nodes and four graph theoretical (GT) measures were calculated; global efficiency (GEFF), characteristic path length (CPL), average clustering coefficient (ACC), and average local efficiency (ALE). Our findings indicate that results can significantly differ based on which preprocessing steps are selected. We also found dependence between motion and GT measurements in most preprocessing strategies. We conclude that by using censoring based on outliers within the functional time-series as a processing, results indicate an increase in reliability of GT measurements with a reduction of the dependency of head motion.
机译:使用静止状态功能MRI(rs-fMRI),可以使用多种后处理方法来量化人脑的连接体。但是,在计算大脑的功能连接性之前,还可以选择要使用哪些预处理步骤。在本文中,我们测试了七个不同的预处理方案,并通过图形理论方法评估了各种策略之间的可靠性和可重复性。在公开可用的数据集上测试了不同的预处理方案,其中包括健康对照的rs-fMRI数据。将大脑分成190个节点,并计算了四种图形理论(GT)度量;全局效率(GEFF),特征路径长度(CPL),平均聚类系数(ACC)和平均局部效率(ALE)。我们的发现表明,根据选择的预处理步骤,结果可能会有显着差异。在大多数预处理策略中,我们还发现运动和GT测量之间存在依赖性。我们得出结论,通过使用基于功能时间序列中的异常值的审查作为处理,结果表明GT测量的可靠性增加,而头部运动的依存性降低了。

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