Magnetic Resonance in Medicine · 2008 · 91 citations · 53 references
Although BOLD functional MRI (fMRI) provides a useful tool for probing neuronal activities, large intersubject variations in signal amplitude are commonly observed. Understanding the physiologic basis for these variations will have a significant impact on many fMRI studies. First, the physiologic modulator can be used as a regressor to reduce variations across subjects, thereby improving statistical power for detecting group differences. Second, if a pathologic condition or a drug treatment is shown to change fMRI responses, monitoring this modulatory parameter is useful in correctly interpreting the fMRI changes to neuronal deficits/recruitments. Here we present evidence that the task-evoked fMRI signals are modulated by baseline blood oxygenation. To measure global blood oxygenation, we used a recently developed technique, T(2) relaxation under spin-tagging (TRUST) MRI, which yielded baseline oxygenation of 63.7% +/- 7.2% in the sagittal sinus with an estimation error of 1.3%. It was found that individuals with higher baseline oxygenation tend to have a smaller fMRI signal, and vice versa. For every 10% difference in baseline oxygenation across subjects, BOLD and cerebral blood flow (CBF) signals differ by -0.4% and -30.0%, respectively, when using visual stimulation. TRUST MRI is a useful measurement for fMRI studies to control for the modulatory effects of baseline oxygenation that are unique to each subject.
53
Satoshi Ogawa, David W. Tank, Ravi S. Menon et al. · Proceedings of the National Academy of Sciences · 1992 · 3.7K citations · Full text
Time course EPI of human brain function during task activation
Peter A. Bandettini, Eric C. Wong, R. Scott Hinks et al. · Magnetic Resonance in Medicine · 1992 · 1.9K citations
Nonoxidative Glucose Consumption During Focal Physiologic Neural Activity
Peter T. Fox, Marcus E. Raichle, Mark A. Mintun et al. · Science · 1988 · 1.8K citations
Oxygen Metabolism, Glucose Uptake, Cerebral Vascular Regulation +18