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Radiofrequency shielding of surface coils at 4.0 t
Author(s) -
Ong Kenneth C.,
Wen Han,
Chesnick A. Scott,
Duewell Stefan,
Jaffer Farouc A.,
Balaban Robert S.
Publication year - 1995
Publication title -
journal of magnetic resonance imaging
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.563
H-Index - 160
eISSN - 1522-2586
pISSN - 1053-1807
DOI - 10.1002/jmri.1880050626
Subject(s) - shield , electromagnetic coil , electromagnetic shielding , materials science , radiation , radiofrequency coil , nuclear magnetic resonance , dielectric loss , acoustics , optics , dielectric , physics , optoelectronics , composite material , petrology , quantum mechanics , geology
Because radiation loss associated with a radiofrequency (RF) coil increases as roughly the fourth power of the frequency, this loss mechanism may become important in high‐field studies above 2.0 T. In this study, the contribution of radiation losses at 4.0 T were determined in a rectangular surface coil using an RF shield to modify the radiation losses. The effect of this shield was determined on coil Q, B 1 distribution, and signal to noise as a function of distance between the coil and the shield. Phantoms and human tissue were evaluated to characterize the loss mechanisms. The results demonstrate a large radiation loss in the unshielded surface coil. However, the radiation losses in vivo were not dominant owing to a large inductive loss occurring from dielectric currents in the body at 170 MHz.

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