Three-frequency RF coil designed for optimized imaging of hyperpolarized, 13C-labeled compounds

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Abstract

Imaging exams involving hyperpolarized, 13C-labeled compounds require novel RF coils for efficient signal utilization. While 13C coils are required for mapping the spatial distribution of the hyperpolarized compounds, imaging/pulsing at different frequencies is also needed for scan setup steps prior to the image acquisition. Imaging/pulsing at the 1H frequency is typically used for anatomical localization and shimming. Flip angle (FA) calibration, which is difficult or impossible to achieve at the 13C frequency, can be accurately performed at the 23Na frequency using the natural abundance signal that exists in any living tissue. We demonstrate here a single RF resonant structure that is capable of operating linearly at the 1H and 23Na frequencies for scan setup steps, and in quadrature at the 13C frequency for imaging. Images at the three resonant frequencies of this coil are presented from an exam involving hyperpolarized 13C compounds in vivo. © 2008 Wiley-Liss, Inc.

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Hancu, I., Wood, S. J., Piel, J., Whitt, D. B., Fish, K. M., Rutt, B. K., … Dixon, W. T. (2008). Three-frequency RF coil designed for optimized imaging of hyperpolarized, 13C-labeled compounds. Magnetic Resonance in Medicine, 60(4), 928–933. https://doi.org/10.1002/mrm.21698

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