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Quantitative interpretation of magnetization transfer

Magnetic Resonance in Medicine · 1993 · Vol. 29(6) · pp. 759–766
R. Mark HenkelmanXuemei HuangQing‐San XiangGreg J. StaniszScott D. SwansonMichael Bronskill

Abstract

Magnetization transfer contrast (MTC) experiments using off-resonance irradiation have been performed with an agar gel model by systematically varying offset frequency, amplitude of the RF irradiation and gel concentration. The experimental results are shown to be quantitatively modelled by a two-pool system consisting of a liquid pool with a Lorentzian line shape and a small semisolid pool with a Gaussian lineshape. The fitted model yields physically realistic fundamental parameters with a T2 of the semisolid pool of 13 microseconds. Further analysis shows that the off-resonance irradiation MTC experiment had significant limitations in its ability to saturate the semisolid pool without directly affecting the liquid component.

Advanced NMR Techniques and ApplicationsAdvanced MRI Techniques and ApplicationsLanthanide and Transition Metal ComplexesMagnetization transferAmplitudeMagnetizationIrradiationNuclear magnetic resonanceOffset (computer science)GaussianResonance (particle physics)Line (geometry)Materials science

MeSH terms

AgarGelsHumansMagnetic Resonance ImagingMagneticsModels, StructuralModels, Theoretical
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