Cleve Marianne, Krämer Martin, Gussew Alexander, Reichenbach Jürgen R
Medical Physics Group, Institute of Diagnostic and Interventional Radiology, Jena University Hospital - Friedrich Schiller University Jena, Philosophenweg 3 (Gebäude 5, MRT am Steiger), 07743 Jena, Germany.
J Magn Reson. 2017 Jun;279:16-21. doi: 10.1016/j.jmr.2017.04.004. Epub 2017 Apr 7.
Phase and frequency corrections of magnetic resonance spectroscopic data are of major importance to obtain reliable and unambiguous metabolite estimates as validated in recent research for single-shot scans with the same spectral fingerprint. However, when using the J-difference editing technique H MEGA-PRESS, misalignment between mean edited (ON‾) and non-edited (OFF‾) spectra that may remain even after correction of the corresponding individual single-shot scans results in subtraction artefacts compromising reliable GABA quantitation. We present a fully automatic routine that iteratively optimizes simultaneously relative frequencies and phases between the mean ON‾ and OFF‾H MEGA-PRESS spectra while minimizing the sum of the magnitude of the difference spectrum (L norm). The proposed method was applied to simulated spectra at different SNR levels with deliberately preset frequency and phase errors. Difference optimization proved to be more sensitive to small signal fluctuations, as e.g. arising from subtraction artefacts, and outperformed the alternative spectral registration approach, that, in contrast to our proposed linear approach, uses a nonlinear least squares minimization (L norm), at all investigated levels of SNR. Moreover, the proposed method was applied to 47 MEGA-PRESS datasets acquired in vivo at 3T. The results of the alignment between the mean OFF‾ and ON‾ spectra were compared by applying (a) no correction, (b) difference optimization or (c) spectral registration. Since the true frequency and phase errors are not known for in vivo data, manually corrected spectra were used as the gold standard reference (d). Automatically corrected data applying both, method (b) or method (c), showed distinct improvements of spectra quality as revealed by the mean Pearson correlation coefficient between corresponding real part mean DIFF‾ spectra of R=0.997±0.003 (method (b) vs. (d)), compared to R=0.764±0.220 (method (a) vs. (d)) with no alignment between OFF‾ and ON‾. Method (c) revealed a slightly lower correlation coefficient of R=0.972±0.028 compared to R, that can be ascribed to small remaining subtraction artefacts in the final DIFF‾ spectrum. In conclusion, difference optimization performs robustly with no restrictions regarding the input data range or user intervention and represents a complementary tool to optimize the final DIFF‾ spectrum following the mandatory frequency and phase corrections of single ON and OFF scans prior to averaging.
磁共振波谱数据的相位和频率校正对于获得可靠且明确的代谢物估计值至关重要,正如最近针对具有相同光谱指纹的单次扫描研究所验证的那样。然而,当使用J - 差分编辑技术H MEGA - PRESS时,即使在对相应的单个单次扫描进行校正后,平均编辑(ON‾)光谱和未编辑(OFF‾)光谱之间仍可能存在的未对准会导致相减伪影,从而影响可靠的GABA定量。我们提出了一种全自动程序,该程序迭代地同时优化平均ON‾和OFF‾ H MEGA - PRESS光谱之间的相对频率和相位,同时最小化差谱幅度的总和(L范数)。所提出的方法应用于具有故意预设频率和相位误差的不同SNR水平的模拟光谱。差异优化被证明对小信号波动更敏感,例如由相减伪影引起的波动,并且在所有研究的SNR水平上均优于替代的光谱配准方法,该方法与我们提出的线性方法不同,使用非线性最小二乘法最小化(L范数)。此外,所提出的方法应用于在3T下体内采集的47个MEGA - PRESS数据集。通过应用(a)不校正、(b)差异优化或(c)光谱配准来比较平均OFF‾和ON‾光谱之间的对齐结果。由于体内数据的真实频率和相位误差未知,手动校正的光谱用作金标准参考(d)。应用方法(b)或方法(c)自动校正的数据显示光谱质量有明显改善,通过相应实部平均DIFF‾光谱之间的平均皮尔逊相关系数R = 0.997±0.003(方法(b)与(d))可以看出,相比之下,未进行OFF‾和ON‾之间对齐时的R = 0.764±0.220(方法(a)与(d))。方法(c)显示相关系数略低,R = 0.972±0.028,与R相比,这可归因于最终DIFF‾光谱中仍存在的小相减伪影。总之,差异优化性能稳健,对输入数据范围或用户干预没有限制,并且是在平均之前对单个ON和OFF扫描进行强制频率和相位校正后优化最终DIFF‾光谱的补充工具。