Williams D Keith, Muddiman David C
W. M. Keck FT-ICR Mass Spectrometry Laboratory, Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695, USA.
Anal Chem. 2007 Jul 1;79(13):5058-63. doi: 10.1021/ac0704210. Epub 2007 Jun 1.
Fourier transform ion cyclotron resonance mass spectrometry has the ability to achieve unprecedented mass measurement accuracy (MMA); MMA is one of the most significant attributes of mass spectrometric measurements as it affords extraordinary molecular specificity. However, due to space-charge effects, the achievable MMA significantly depends on the total number of ions trapped in the ion cyclotron resonance (ICR) cell for a particular measurement. Even through the use of automatic gain control (AGC), the total ion population is not constant between spectra. Multiple linear regression calibration in conjunction with AGC is utilized in these experiments to formally account for the differences in total ion population in the ICR cell between the external calibration spectra and experimental spectra. This ability allows for the extension of dynamic range of the instrument and for the mean MMA values to remain less than 1 part-per-million (ppm). In addition, multiple linear regression calibration is used to account for both differences in total ion population in the ICR cell as well as relative ion abundance of a given species, which also affords mean MMA values at the parts-per-billion (ppb) level.
傅里叶变换离子回旋共振质谱法有能力实现前所未有的质量测量精度(MMA);MMA是质谱测量最重要的属性之一,因为它提供了非凡的分子特异性。然而,由于空间电荷效应,可实现的MMA在很大程度上取决于特定测量中捕获在离子回旋共振(ICR)池中离子的总数。即使使用自动增益控制(AGC),不同光谱之间的总离子数也不恒定。在这些实验中,将多元线性回归校准与AGC结合使用,以正式考虑外部校准光谱和实验光谱之间ICR池中总离子数的差异。这种能力使得仪器的动态范围得以扩展,并且平均MMA值保持在百万分之一(ppm)以下。此外,多元线性回归校准用于解释ICR池中总离子数的差异以及给定物种的相对离子丰度,这也能得到十亿分之一(ppb)水平的平均MMA值。