Quantitative Multinuclear Musculoskeletal Imaging Group (QMMIG), Center for Biomedical Imaging, Department of Radiology, New York University Langone Medical Center, New York, New York, USA.
Magn Reson Med. 2013 Dec;70(6):1619-25. doi: 10.1002/mrm.24616. Epub 2013 Feb 6.
The development and implementation of a spectrally selective 3D-Turbo Spin Echo sequence for quantitative mapping of phosphocreatine (PCr) concentration in different muscles of the lower leg of healthy volunteers both at 3 T and 7 T.
Nine healthy volunteers were recruited, all of whom where scanned at 3 T and 7 T. Three dimensional PCr concentration maps were obtained after images were corrected for B1 inhomogeneities, T1 relaxation weighting, and partial volume of fatty tissue in the muscles. Two volunteers performed plantar flexions inside the magnet, and the oxidative capacity of their muscles was estimated.
Three dimensional PCr concentration maps were obtained, with full muscle coverage and nominal voxel size of 0.52 mL at both fields. At 7 T a 2.7-fold increase of signal-to-noise ratio was achieved compared to 3 T.
Imaging (31) P metabolites at 7 T allowed for significant increase in signal to noise ratio compared to imaging at 3 T, while quantification of the PCr concentration remained unaffected. The importance of such an increase in signal-to-noise ratio is 2-fold, first higher resolution images with reduced partial volume effects can be acquired, and second multiple measurements such as dynamic imaging of PCr post-exercise, (31) P magnetization transfer, or other (1) H measurements, can be acquired in a single imaging session.
开发并实现一种光谱选择性 3D-Turbo Spin Echo 序列,用于在 3T 和 7T 下对健康志愿者小腿不同肌肉中的磷酸肌酸(PCr)浓度进行定量映射。
招募了 9 名健康志愿者,他们均在 3T 和 7T 下进行了扫描。在对图像进行 B1 不均匀性、T1 弛豫加权和肌肉中脂肪组织的部分容积校正后,获得了三维 PCr 浓度图。两名志愿者在磁体内进行了跖屈运动,估计了他们肌肉的氧化能力。
在两个场强下均获得了三维 PCr 浓度图,具有完整的肌肉覆盖和名义体素大小为 0.52mL。与 3T 相比,7T 的信号噪声比提高了 2.7 倍。
与在 3T 下成像相比,在 7T 下对(31)P 代谢物进行成像可以显著提高信号噪声比,而 PCr 浓度的定量分析不受影响。这种信号噪声比的提高有两方面的重要意义,首先可以获得具有更小部分容积效应的更高分辨率图像,其次可以在单次成像过程中进行多次测量,如运动后 PCr 的动态成像、(31)P 磁化转移或其他(1)H 测量。