Witjes H, Melssen W J, in 't Zandt H J, van der Graaf M, Heerschap A, Buydens L M
Laboratory for Analytical Chemistry, University of Nijmegen, The Netherlands.
J Magn Reson. 2000 May;144(1):35-44. doi: 10.1006/jmre.2000.2021.
A new model-free method is presented that automatically corrects for phase shifts, frequency shifts, and additional lineshape distortions of one single resonance peak across a series of in vivo NMR spectra. All separate phase and frequency variations are quickly and directly derived from the common lineshape in the data set using principal component analysis and linear regression. First, the new approach is evaluated on simulated data in order to quantitatively assess the phase and frequency shifts which can be removed by the proposed correction procedure. Subsequently, the value of the method is demonstrated on in vivo (31)P NMR spectra from skeletal muscle of the hind leg of the mouse focusing on the phosphocreatine resonance which is distorted by the experimental procedure. Phase shifts, frequency shifts, and lineshape distortions with respect to the common lineshape in the spectral data set could successfully be removed.
提出了一种新的无模型方法,该方法可自动校正一系列体内核磁共振谱中单个共振峰的相移、频移和其他线形畸变。利用主成分分析和线性回归,从数据集中的公共线形快速直接地导出所有单独的相位和频率变化。首先,在模拟数据上评估新方法,以便定量评估所提出的校正程序可以消除的相移和频移。随后,在小鼠后腿骨骼肌的体内(31)P核磁共振谱上证明了该方法的价值,重点是受实验过程影响而畸变的磷酸肌酸共振。相对于光谱数据集中的公共线形,相移、频移和线形畸变都能成功消除。