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Updated: Jun 25, 2026

Cardiac Magnetic Resonance Imaging at 7 Tesla
Published on: January 6, 2019
Counteracting radio frequency inhomogeneity in the human brain at 7 Tesla using strongly modulating pulses
N Boulant1, J-F Mangin, A Amadon
1CEA, DSV, I2BM, NeuroSpin, LRMN, Gif sur Yvette, France. nicolas.boulant@cea.fr
Abstract:
We report flip angle and spoiled gradient echo measurements at 7 Tesla on human brains in three-dimensional imaging, using strongly modulating pulses to counteract the transmitted radiofrequency inhomogeneity problem. Compared with the standard square pulse results, three points of improvement are demonstrated, namely: (i) the removal of the bright center (typical at high fields when using a quadrature head coil), (ii) the substantial gain of signal in the regions of low B(1) intensity, and (iii) an increased 35% signal uniformity over the whole brain at the flip angle where maximum contrast between white and gray matter occurs. We also find by means of simulations that standard BIR-4 adiabatic pulses need several times more energy to reach a similar performance at the same field strength.
