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Correction of frequency and phase variations induced by eddy currents in localized spectroscopy with multiple echo times.
Authors:Yan Zhang  Stefano Marenco  Jun Shen
Affiliation:National Institute of Mental Health, Bethesda, Maryland 20892-1527, USA.
Abstract:As a consequence of the time-varying magnetic field induced by eddy currents, frequency drifting occurs when the sampling window of localized spectroscopy continuously shifts. The frequency drifting and the concomitant phase variations can severely affect spectroscopy results when data are acquired with multiple echo times (TEs), such as in the measurement of glutamate (Glu) concentration using the TE-averaged method. Specifically, the averaged spectra are further broadened and distorted in the presence of residual eddy currents, and editing of the coupled spins of Glu C4 protons is affected, resulting in errors in the measured relative intensity ratio. Postacquisition correction using unsuppressed water as reference can effectively minimize this detrimental effect, as manifested by the significantly enhanced signal intensity. Also, it is demonstrated that the methyl signals of creatine (Cr) at 3.0 ppm and choline (Cho) at 3.2 ppm can be used as internal references in finding frequency and phase disparities between different TEs.
Keywords:in vivo spectroscopy  eddy currents  frequency and phase correction  water reference  measurement of glutamate
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