Title of article :
B1+/actual flip angle and reception sensitivity mapping methods: simulation and comparison
Author/Authors :
Hartwig، نويسنده , , Valentina and Vanello، نويسنده , , Nicola and Giovannetti، نويسنده , , Giulio and De Marchi، نويسنده , , Daniele and Lombardi، نويسنده , , Massimo and Landini، نويسنده , , Luigi and Santarelli، نويسنده , , Maria Filomena، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Abstract :
Knowledge of the spatial distribution of transmission field B1+ and reception sensitivity maps is important in high-field (≥3 T) human magnetic resonance (MR) imaging for several reasons: these include post-acquisition correction of intensity inhomogeneities, which may affect the quality of images; modeling and design of radiofrequency (RF) coils and pulses; validating theoretical models for electromagnetic field calculations; testing the compatibility with MR environment of biomedical implants. Moreover, inhomogeneities in the RF field are an essential source of error for quantitative MR spectroscopy. Recent studies have also shown that B1+ and reception sensitivity maps can be used for direct calculation of tissue electrical parameters and for estimating the local specific absorption rate (SAR) in vivo.
l B1+ mapping techniques have been introduced in the past few years based on actual flip angle (FA) mapping, but, to date, none has emerged as a standard. For reception sensitivity calculation, the signal intensity equation can be used where the nominal FA distribution must be replaced with the actual FA distribution calculated by one of the B1+ mapping techniques.
tudy introduces a quantitative comparison between two known methods for B1+/actual FA and reception sensitivity mapping: the double-angle method (DAM) and the fitting (FIT) method. Experimental data obtained using DAM and FIT methods are also compared with numerical simulation results.
Keywords :
B1+/actual flip angle , Reception sensitivity , Double-angle method , Fitting method
Journal title :
Magnetic Resonance Imaging
Journal title :
Magnetic Resonance Imaging