RF coils: A practical guide for nonphysicists

Publication date

2018-09

Authors

Gruber, Bernhard
Froeling, MartijnORCID 0000-0003-3841-0497
Leiner, TimORCID 0000-0003-1885-5499ISNI 0000000390698205
Klomp, Dennis W.J.ORCID 0000-0002-5884-5386ISNI 0000000396514008

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Abstract

Radiofrequency (RF) coils are an essential MRI hardware component. They directly impact the spatial and temporal resolution, sensitivity, and uniformity in MRI. Advances in RF hardware have resulted in a variety of designs optimized for specific clinical applications. RF coils are the “antennas” of the MRI system and have two functions: first, to excite the magnetization by broadcasting the RF power (Tx-Coil) and second to receive the signal from the excited spins (Rx-Coil). Transmit RF Coils emit magnetic field pulses (B + 1) to rotate the net magnetization away from its alignment with the main magnetic field (B 0), resulting in a transverse precessing magnetization. Due to the precession around the static main magnetic field, the magnetic flux in the receive RF Coil (B - 1) changes, which generates a current I. This signal is “picked-up” by an antenna and preamplified, usually mixed down to a lower frequency, digitized, and processed by a computer to finally reconstruct an image or a spectrum. Transmit and receive functionality can be combined in one RF Coil (Tx/Rx Coils). This review looks at the fundamental principles of an MRI RF coil from the perspective of clinicians and MR technicians and summarizes the current advances and developments in technology. Level of Evidence: 1. Technical Efficacy: Stage 6 J. Magn. Reson. Imaging 2018;48:590–604.

Keywords

RF coil, arrays, clinical application, coil array design, novel RF coils, signal-to-noise ratio, Radiology Nuclear Medicine and imaging

Citation

Gruber, B, Froeling, M, Leiner, T & Klomp, D W J 2018, 'RF coils : A practical guide for nonphysicists', Journal of Magnetic Resonance Imaging, vol. 48, no. 3, pp. 590-604. https://doi.org/10.1002/jmri.26187