扩散有序光谱学中的信噪比:好到什么程度才足够?

Q3 Physics and Astronomy
Jamie Guest, P. Kiraly, M. Nilsson, G. Morris
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引用次数: 4

摘要

摘要扩散有序NMR光谱(DOSY)构建了多维光谱,显示信号强度是拉莫尔频率和扩散系数的函数,这些信号强度来自使用脉冲场梯度自旋或受激回波的实验测量。扩散域中的峰值位置由通过将实验数据拟合到Stejskal-Tanner方程的某个变体而估计的扩散系数确定,峰值宽度由拟合过程中估计的标准误差确定。因此,DOSY光谱中扩散域的准确性和可靠性由实验数据中的不确定性决定,因此部分由测量的实验光谱的信噪比决定。本文利用Cramér-Rao下界、蒙特卡罗方法和实验数据,研究了二维DOSY实验中信噪比、实验参数和扩散域精度之间的关系。实验结果证实,除了噪声之外的误差源对通过时间平均可获得的扩散域精度的提高设置了上限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Signal-to-noise ratio in diffusion-ordered spectroscopy: how good is good enough?
Abstract. Diffusion-ordered NMR spectroscopy (DOSY) constructs multidimensional spectra displaying signal strength as a function of Larmor frequency and of diffusion coefficient from experimental measurements using pulsed field gradient spin or stimulated echoes. Peak positions in the diffusion domain are determined by diffusion coefficients estimated by fitting experimental data to some variant of the Stejskal-Tanner equation, with the peak widths determined by the standard error estimated in the fitting process. The accuracy and reliability of the diffusion domain in DOSY spectra are therefore determined by the uncertainties in the experimental data, and thus in part by the signal-to-noise ratio of the experimental spectra measured. Here the Cramér-Rao lower bound, Monte Carlo methods and experimental data are used to investigate the relationship between signal-to-noise ratio, experimental parameters, and diffusion domain accuracy in 2D DOSY experiments. Experimental results confirm that sources of error other than noise put an upper limit on the improvement in diffusion domain accuracy obtainable by time averaging.
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CiteScore
4.50
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审稿时长
14 weeks
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