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Sensitivity and Uniformity in Detecting Motion Artifacts

机译:检测运动伪影时的灵敏度和均匀性

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Removing artifacts due to head motion is a preprocessing procedure necessary for any fMRI analysis. In fMRI tool boxes, there have been standard algorithms for correcting motion artifacts. However, those tool boxes fail to indicate the extent to which the correction has been successfully done. Without knowing motion contamination especially after correction, the subsequent analysis using averaged fMRI data across subjects could be misleading. In this study, we proposed seven summary indices for measuring motion artifacts. The indices can be applied after motion correction by the image registration algorithms. In the simulation studies, we analyzed a real fMRI data set using a statistical method and estimated the brain activation maps. The real image data were then randomly shifted or rotated to simulate different degrees of head motion. The data contaminated by random motion were then corrected using the SPM image coregistration algorithms. The indices of motion contamination were computed using the corrected images. The corrected images were then analyzed again using the same statistical method. The consistency between the brain activation maps based on real data and those based on simulated data was used as a standard to evaluate the usefulness of the proposed seven indices. The results show that some indices are informative with regards to the degree of motion contamination in preproc-essed fMRI data.
机译:去除因头部运动而造成的伪影是任何fMRI分析所必需的预处理程序。在fMRI工具箱中,已经有用于校正运动伪影的标准算法。但是,这些工具箱无法指示成功完成校正的程度。在不知道运动污染的情况下,尤其是在校正之后,使用后续受试者平均fMRI数据进行的分析可能会产生误导。在这项研究中,我们提出了七个用于测量运动伪影的摘要指标。索引可以在运动校正后通过图像配准算法应用。在模拟研究中,我们使用统计方法分析了真实的功能磁共振成像数据集,并估算了大脑激活图。然后将真实图像数据随机移动或旋转以模拟不同程度的头部运动。然后使用SPM图像配准算法对随机运动污染的数据进行校正。使用校正后的图像计算运动污染指数。然后使用相同的统计方法再次分析校正后的图像。基于真实数据的脑部激活图与基于模拟数据的脑部激活图之间的一致性被用作评估所提出的七个指标的有用性的标准。结果表明,某些指标对于预先处理的功能磁共振成像数据中的运动污染程度具有参考价值。

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