Graaf Robin A, Klomp Dennis W J, Luijten Peter R, Boer Vincent O
Department of Radiology, UMC Utrecht, Utrecht, The Netherlands; Department of Diagnostic Radiology, Magnetic Resonance Research Center, Yale University, New Haven, Connecticut, USA.
Magn Reson Med. 2014 Feb;71(2):451-7. doi: 10.1002/mrm.24701.
Intramolecular zero-quantum-coherences (ZQCs) are intrinsically insensitive toward magnetic field inhomogeneity. This fact is used to quantify and characterize lipid signals in the human breast at 7 T despite the presence of severe magnetic field inhomogeneity caused by water-lipid susceptibility boundaries.
A novel 3D localized 2D ZQC method is presented. The combination of cardiac/respiratory triggering and post-acquisition navigator echo correction provides high-quality 2D NMR spectra in vivo.
The lipid profile of the human breast could be quantified by 2D ZQC NMR in 100% of the subjects despite a wide range of magnetic field homogeneity. With conventional 1D (1)H MRS, the magnetic field homogeneity was only adequate in 60% of the subjects. The results from 2D ZQC NMR and 1D NMR are in good correspondence, both in vitro and in vivo.
It has been demonstrated that high quality and quantitative 2D ZQC NMR spectra can be acquired from human breast tissue at 7 T. While the simplicity and sensitivity of 1D MRS are preferable when the magnetic field homogeneity is adequate, the 2D ZQC method provides a viable alternative in cases where this requirement cannot be met.
分子内零量子相干(ZQC)对磁场不均匀性本质上不敏感。尽管存在由水 - 脂质磁化率边界引起的严重磁场不均匀性,但这一特性被用于在7T场强下对人体乳腺中的脂质信号进行定量和表征。
提出了一种新型的3D定位二维ZQC方法。心脏/呼吸触发与采集后导航回波校正相结合,可在体内提供高质量的二维核磁共振谱。
尽管磁场均匀性范围很广,但二维ZQC核磁共振仍能在100%的受试者中对人体乳腺的脂质分布进行定量。而使用传统的一维(1)H磁共振波谱法时,只有60%的受试者磁场均匀性足够。二维ZQC核磁共振和一维核磁共振的结果在体外和体内均具有良好的一致性。
已证明在7T场强下可从人体乳腺组织获取高质量的定量二维ZQC核磁共振谱。当磁场均匀性足够时,一维磁共振波谱法的简单性和灵敏度更具优势,但在无法满足这一要求的情况下,二维ZQC方法提供了一种可行的替代方案。