Abstract
A reduced specific absorption rate (SAR) version of the T 1ρ-weighted MR pulse sequence was designed and implemented. The reduced SAR method employs a partial k-space acquisition approach in which a full power spin-lock pulse is applied to only the central phase-encode lines of k-space, while the remainder of k-space receives a low-power spin-lock pulse. Acquisition of high- and low-power phase-encode lines are interspersed chronologically to minimize average power deposition. In this way, the majority of signal energy in the central portion of k-space receives full T 1ρ-weighting, while the average SAR of the overall acquisition can be reduced, thereby lowering the minimum safely allowable TR. The pulse sequence was used to create T1ρ maps of a phantom, an in vivo mouse brain, and the brain of a human volunteer. In the images of the human brain, SAR was reduced by 40% while the measurements of T1ρ differed by only 2%. The reduced SAR sequence enables T1ρ- weighted MRI in a clinical setting, even at high field strengths. © 2004 Wiley-Liss, Inc.
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Wheaton, A. J., Borthakur, A., Corbo, M., Charagundla, S. R., & Reddy, R. (2004). Method for reduced SAR T1ρ-weighted MRI. Magnetic Resonance in Medicine, 51(6), 1096–1102. https://doi.org/10.1002/mrm.20141
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