Ebel Andreas, Govindaraju Varanavasi, Maudsley Andrew A
Northern California Institute for Research and Education, San Francisco, California, USA.
Magn Reson Med. 2003 May;49(5):903-8. doi: 10.1002/mrm.10444.
To reduce contamination from subcutaneous lipid regions in MR spectroscopic imaging (MRSI) of whole brain, lipid signals are often suppressed using T(1) nulling methods. If a range of lipid T(1) values is present, the suppression efficiency will be improved using multiple inversion recovery (MIR) preparation. This study compared single IR (SIR) and double IR (DIR) applied with a volumetric MRSI sequence at 1.5 T based on experimental measurement of lipid T(1) and T(2) relaxation rates. At short and medium echo times (TEs), an approximately 28-47% improvement in lipid suppression was achieved with DIR compared to SIR. However, it also led to a loss of 37-43% in signal-to-noise ratio (SNR) for metabolites. Thus, SIR appears to be the better choice for suppressing lipid signals and maintaining metabolite sensitivity.
为减少全脑磁共振波谱成像(MRSI)中皮下脂质区域的污染,脂质信号通常采用T(1) 归零方法进行抑制。如果存在一系列脂质T(1) 值,使用多重反转恢复(MIR)准备会提高抑制效率。本研究基于脂质T(1) 和T(2) 弛豫率的实验测量,比较了在1.5 T下应用容积MRSI序列的单次反转恢复(SIR)和双重反转恢复(DIR)。在短和中等回波时间(TE)时,与SIR相比,DIR使脂质抑制提高了约28 - 47%。然而,这也导致代谢物的信噪比(SNR)损失了37 - 43%。因此,SIR似乎是抑制脂质信号并保持代谢物敏感性的更好选择。