1 Center for Functional MRI, University of California San Diego, La Jolla, California.
2 Departments of Radiology, Psychiatry, and Bioengineering, University of California San Diego, La Jolla, California.
Brain Connect. 2018 Dec;8(10):618-627. doi: 10.1089/brain.2018.0645.
Global signal regression (GSR) is a commonly used although controversial preprocessing approach in the analysis of resting-state blood oxygenation level-dependent (BOLD) functional magnetic resonance imaging (fMRI) data. Although the effects of GSR on resting-state functional connectivity measures have received much attention, there has been relatively little attention devoted to its effects on studies looking at the relationship between resting-state BOLD measures and independent measures of brain activity. In this study, we used simultaneously acquired electroencephalogram (EEG)-fMRI data in humans to examine the effects of GSR on the correlation between resting-state BOLD fluctuations and EEG vigilance measures. We show that GSR leads to a positive shift in the correlation between the BOLD and vigilance measures. This shift leads to a reduction in the spatial extent of negative correlations in widespread brain areas, including the visual cortex, but leads to the appearance of positive correlations in other areas, such as the cingulate gyrus. The results obtained using GSR are consistent with those of a temporal censoring process in which the correlation is computed using a temporal subset of the data. Since the data from these retained time points are unaffected by the censoring process, this finding suggests that the positive correlations in cingulate gyrus are not simply an artifact of GSR.
全局信号回归(GSR)是一种常用于分析静息态血氧水平依赖(BOLD)功能磁共振成像(fMRI)数据的预处理方法,尽管存在争议。尽管 GSR 对静息态功能连接测量的影响已经引起了广泛关注,但对于研究静息态 BOLD 测量值与独立的脑活动测量值之间关系的影响却相对较少。在这项研究中,我们使用同时采集的人类脑电图(EEG)-fMRI 数据,研究了 GSR 对静息态 BOLD 波动与 EEG 警觉性测量之间相关性的影响。我们发现,GSR 导致 BOLD 和警觉性测量之间的相关性呈正偏移。这种偏移导致广泛脑区(包括视觉皮层)中负相关的空间范围减小,但在其他区域(如扣带回)中出现正相关。使用 GSR 获得的结果与使用数据的时间子集计算相关性的时间掩蔽过程的结果一致。由于保留时间点的数据不受掩蔽过程的影响,因此这一发现表明,扣带回中的正相关不仅仅是 GSR 的人为产物。