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多维核磁共振实验中参数估计的可实现精度。

Achievable accuracy of parameter estimation for multidimensional NMR experiments.

作者信息

Ober Raimund J, Lin Zhiping, Ye Hong, Ward E Sally

机构信息

Center for Systems, Communications and Signal Processing EC33, Eric Johnson School of Electrical Engineering and Computer Science, University of Texas at Dallas, Richardson, Texas 75083-0688, USA.

出版信息

J Magn Reson. 2002 Jul;157(1):1-16. doi: 10.1006/jmre.2002.2560.

Abstract

A fundamental issue in NMR spectroscopy is the estimation of parameters such as the Larmor frequencies of nuclei, J coupling constants, and relaxation rates. The Cramer-Rao lower bound provides a method to assess the best achievable accuracy of parameter estimates resulting from an unbiased estimation procedure. We show how the Cramer-Rao lower bound can be calculated for data obtained from multidimensional NMR experiments. The Cramer-Rao lower bound is compared to the variance of parameter estimates for simulated data using a least-squares estimation procedure. It is also shown how our results on the Cramer-Rao lower bound can be used to analyze whether an experimental design can be improved to provide experimental data which can result in parameter estimates with higher accuracy. The concept of nonuniform averaging in the indirect dimension is introduced and studied in connection with nonuniform sampling of the data.

摘要

核磁共振波谱学中的一个基本问题是对诸如原子核的拉莫尔频率、J耦合常数和弛豫率等参数的估计。克拉美-罗下界提供了一种方法,用于评估由无偏估计程序得出的参数估计所能达到的最佳精度。我们展示了如何针对从多维核磁共振实验获得的数据计算克拉美-罗下界。使用最小二乘估计程序,将克拉美-罗下界与模拟数据的参数估计方差进行比较。还展示了我们关于克拉美-罗下界的结果如何用于分析是否可以改进实验设计,以提供能够得出更高精度参数估计的实验数据。引入并结合数据的非均匀采样研究了间接维度中的非均匀平均概念。

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