Head-and-neck multichannel B1 mapping and RF shimming of the carotid arteries using a 7T parallel-transmit head coil.

Magn Reson Med

FMRIB Division, Nuffield Department of Clinical Neurosciences, Wellcome Centre for Integrative Neuroimaging, University of Oxford, Oxford, UK.

Published: January 2024


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Article Abstract

Purpose: Neurovascular MRI suffers from a rapid drop in B into the neck when using transmit head coils at 7 T. One solution to improving B magnitude in the major feeding arteries in the neck is to use custom RF shims on parallel-transmit head coils. However, calculating such shims requires robust multichannel B maps in both the head and the neck, which is challenging due to low RF penetration into the neck, limited dynamic range of multichannel B mapping techniques, and B sensitivity. We therefore sought a robust, large-dynamic-range, parallel-transmit field mapping protocol and tested whether RF shimming can improve carotid artery B magnitude in practice.

Methods: A pipeline is presented that combines B mapping data acquired using circularly polarized (CP) and CP2-mode RF shims at multiple voltages. The pipeline was evaluated by comparing the predicted and measured B for multiple random transmit shims, and by assessing the ability of RF shimming to increase B in the carotid arteries.

Results: The proposed method achieved good agreement between predicted and measured B in both the head and the neck. The B magnitude in the carotid arteries can be increased by 43% using tailored RF shims or by 37% using universal RF shims, while also improving the RF homogeneity compared with CP mode.

Conclusion: B in the neck can be increased using RF shims calculated from multichannel B maps in both the head and the neck. This can be achieved using universal phase-only RF shims, facilitating easy implementation in existing sequences.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10962593PMC
http://dx.doi.org/10.1002/mrm.29845DOI Listing

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