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Characterizing fMRI Activations within Regions of Interest (ROIs) Using 3D Moment Invariants

机译:使用3D时刻不变量在感兴趣区域内的FMRI激活表征FMRI激活

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A novel method is proposed for characterizing spatial distribution changes in functional magnetic resonance imaging (fMRI) activation statistics under different experimental conditions. The proposed technique, based on three dimensional (3D) invariant moment descriptors, was applied to fMRI data recorded from eight healthy subjects performing internally or externally-cued finger tapping sequences. Voxel-based activation statistics were characterized in several regions of interest (ROIs), including the supplementary motor area (SMA), cerebellum, primary motor cortex, prefrontal cortex, and caudate. Examining the activation patterns of these neural regions using 3D moment invariants revealed that the patterns of activation regions were significantly different during externally and internally cued tasks when computed across subjects. In contrast, traditional methods that are based on amplitude of the activation statistics demonstrated reduced discriminability. The results suggest that the spatial distribution of activation is a more sensitive measure of activation changes, and complements conventional fMRI analyses.
机译:提出了一种用于在不同实验条件下表征功能磁共振成像(FMRI)活化统计的空间分布变化的新方法。基于三维(3D)不变时刻描述符的所提出的技术应用于从执行内部或外部被引导的手指攻丝序列的八个健康受试者记录的FMRI数据。基于体素的激活统计数据以若干感兴趣的地区(ROI),包括补充电机面积(SMA),小脑,初级电机皮质,前额叶皮质和尾部。使用3D时刻不变量检查这些神经区域的激活模式,显示在跨对象计算时,在外部和内部提出的任务期间激活区域的模式显着不同。相反,基于激活统计的幅度的传统方法表明了降低的可辨别性。结果表明,活化的空间分布是一种更敏感的激活变化的衡量标准,并且常规FMRI分析的补充。

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