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平移扩散系数的精确测量:一种考虑非线性梯度的实用方法。

Accurate measurement of translational diffusion coefficients: a practical method to account for nonlinear gradients.

作者信息

Damberg P, Jarvet J, Gräslund A

机构信息

Department of Biophysics, Stockholm University, S-106 91 Stockholm, Sweden.

出版信息

J Magn Reson. 2001 Feb;148(2):343-8. doi: 10.1006/jmre.2000.2260.

Abstract

For NMR probes equipped with pulsed field gradient coils, which are not optimized for gradient linearity, the precision and accuracy of experimentally measured translational diffusion coefficients are limited by the linearity of the gradient pulses over the sample volume. This study shows that the accuracy and precision of measured diffusion coefficients by the Stejskal--Tanner spin-echo pulsed field gradient experiment can be significantly improved by mapping the gradient z-profile and by using the mapped calibration parameters in the data analysis. For practical applications the gradient distribution may be approximated by a truncated linear distribution defined by minimum and maximum values of the gradient. By including the truncated linear gradient distribution function in the Stejskal--Tanner equation, the systematic deviation between the fitted curve and the experimental attenuation curve decreases by an order of magnitude. The gradient distribution may be calibrated using an intense NMR signal from a sample with a known diffusion coefficient. The diffusion coefficient of an unknown sample may then be determined from a two-parameter fit, using the known gradient distribution function.

摘要

对于配备了脉冲场梯度线圈但未针对梯度线性进行优化的核磁共振探头,实验测量的平移扩散系数的精度和准确性受到样品体积上梯度脉冲线性的限制。本研究表明,通过绘制梯度z剖面图并在数据分析中使用映射的校准参数,可以显著提高通过斯泰斯卡尔 - 坦纳自旋回波脉冲场梯度实验测量的扩散系数的准确性和精度。对于实际应用,梯度分布可以通过由梯度的最小值和最大值定义的截断线性分布来近似。通过将截断线性梯度分布函数纳入斯泰斯卡尔 - 坦纳方程,拟合曲线与实验衰减曲线之间的系统偏差降低了一个数量级。可以使用来自具有已知扩散系数的样品的强核磁共振信号来校准梯度分布。然后,可以使用已知的梯度分布函数,通过双参数拟合来确定未知样品的扩散系数。

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