Ebel Andreas, Maudsley Andrew A
Department of Radiology, University of Miami School of Medicine, Miami, Florida, USA.
Magn Reson Med. 2005 Feb;53(2):465-9. doi: 10.1002/mrm.20367.
Spectral quality in 1H magnetic resonance spectroscopic imaging (MRSI) critically depends on the stability of the main magnetic field. For echo-planar MRSI implemented at 3 T, temperature variation in the passive steel shims of the magnet system can lead to a significant drift in the resonance frequency. A method is presented that incorporates interleaved measurement of the instantaneous resonance frequency of a reference water signal into a volumetric MRSI sequence and allows correction for the drift during postprocessing. Results from normal human brain at 3 T indicate that the correction largely removes lineshape distortions, recovers metabolite signal loss, and improves spectral quality by reducing the width of spectral lines; however, particularly in inferior regions, other sources of distortion may be present that cause broadening of spectral lines.
氢磁共振波谱成像(MRSI)中的频谱质量严重依赖于主磁场的稳定性。对于在3T下实现的回波平面MRSI,磁体系统无源钢垫片的温度变化会导致共振频率出现显著漂移。本文提出了一种方法,该方法将参考水信号的瞬时共振频率的交错测量纳入容积MRSI序列,并允许在后期处理期间对漂移进行校正。3T下正常人类大脑的结果表明,校正很大程度上消除了线形失真,恢复了代谢物信号损失,并通过减小谱线宽度提高了频谱质量;然而,特别是在下部区域,可能存在导致谱线展宽的其他失真源。