Improvements in parallel imaging accelerated functional MRI using multiecho echo-planar imaging

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Abstract

Multiecho echo-planar imaging (EPI) was implemented for blood-oxygenation-level-dependent functional MRI at 1.5 T and compared to single-echo EPI with and without parallel imaging acceleration. A time-normalized breath-hold task using a block design functional MRI protocol was carried out in combination with up to four echo trains per excitation and parallel imaging acceleration factors R 5 1-3. Experiments were conducted in five human subjects, each scanned in three sessions. Across all reduction factors, both signal-to-fluctuation-noise ratio and the total number of activated voxels were significantly lower using a single-echo EPI pulse sequence compared with the multiecho approach. Signal-to-fluctuationnoise ratio and total number of activated voxels were also considerably reduced for nonaccelerated conventional singleecho EPI when compared to three-echo measurements with R = 2. Parallel imaging accelerated multiecho EPI reduced geometric distortions and signal dropout, while it increased bloodoxygenation-level-dependent signal sensitivity all over the brain, particularly in regions with short underlying T*2. Thus, the presented method showed multiple advantages over conventional single-echo EPI for standard blood-oxygenation-leveldependent functional MRI experiments. © 2010 Wiley-Liss, Inc.

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Schmiedeskamp, H., Newbould, R. D., Pisani, L. J., Skare, S., Glover, G. H., Pruessmann, K. P., & Bammer, R. (2010). Improvements in parallel imaging accelerated functional MRI using multiecho echo-planar imaging. Magnetic Resonance in Medicine, 63(4), 959–969. https://doi.org/10.1002/mrm.22222

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