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使用魔角脉冲场梯度比的受激回波核磁共振扩散研究中的背景梯度抑制

Background gradient suppression in stimulated echo NMR diffusion studies using magic pulsed field gradient ratios.

作者信息

Galvosas Petrik, Stallmach Frank, Kärger Jörg

机构信息

Institut für Experimentelle Physik I, Fakultät für Physik und Geowissenschaften, Universität Leipzig Linnestrasse 5, 04105 Leipzig, Germany.

出版信息

J Magn Reson. 2004 Feb;166(2):164-73. doi: 10.1016/j.jmr.2003.09.012.

Abstract

By evaluating the spin echo attenuation for a generalized 13-interval PFG NMR sequence consisting of pulsed field gradients with four different effective intensities (F(p/r) and G(p/r)), magic pulsed field gradient (MPFG) ratios for the prepare (G(p)/F(p)) and the read (G(r)/F(r)) interval are derived, which suppress the cross term between background field gradients and the pulsed field gradients even in the cases where the background field gradients may change during the z-store interval of the pulse sequence. These MPFG ratios depend only on the timing of the pulsed gradients in the pulse sequence and allow a convenient experimental approach to background gradient suppression in NMR diffusion studies with heterogeneous systems, where the local properties of the (internal) background gradients are often unknown. If the pulsed field gradients are centered in the tau-intervals between the pi and pi/2 rf pulses, these two MPFG ratios coincide to eta=G(p/r)/F(p/r)=1-8/[1+(1/3)(delta/tau)(2)]. Since the width of the pulsed field gradients (delta) is bounded by 0< or =delta< or =tau, eta can only be in the range of 5< or =-eta< or =7. The predicted suppression of the unwanted cross terms is demonstrated experimentally using time-dependent external gradients which are controlled in the NMR experiment as well as spatially dependent internal background gradients generated by the magnetic properties of the sample itself. The theoretical and experimental results confirm and extend the approach of Sun et al. (J. Magn. Reson. 161 (2003) 168), who recently introduced a 13-interval type PFG NMR sequence with two asymmetric pulsed magnetic field gradients suitable to suppress unwanted cross terms with spatially dependent background field gradients.

摘要

通过评估由具有四种不同有效强度(F(p/r) 和 G(p/r))的脉冲场梯度组成的广义 13 间隔 PFG NMR 序列的自旋回波衰减,得出了制备间隔(G(p)/F(p))和读取间隔(G(r)/F(r))的魔角脉冲场梯度(MPFG)比率,即使在脉冲序列的 z 存储间隔期间背景场梯度可能发生变化的情况下,这些比率也能抑制背景场梯度和脉冲场梯度之间的交叉项。这些 MPFG 比率仅取决于脉冲序列中脉冲梯度的时间,并为具有异质系统的 NMR 扩散研究中的背景梯度抑制提供了一种便捷的实验方法,在这种研究中,(内部)背景梯度的局部特性通常是未知的。如果脉冲场梯度位于 π 和 π/2 rf 脉冲之间的 τ 间隔中心,则这两个 MPFG 比率与 η = G(p/r)/F(p/r) = 1 - 8/[1 + (1/3)(δ/τ)(2)] 一致。由于脉冲场梯度的宽度(δ)受 0 ≤ δ ≤ τ 限制,η 只能在 5 ≤ η ≤ 7 的范围内。使用在 NMR 实验中受控的随时间变化的外部梯度以及由样品本身的磁性产生的空间相关内部背景梯度,通过实验证明了对不需要的交叉项的预测抑制。理论和实验结果证实并扩展了 Sun 等人(J. Magn. Reson. 161 (2003) 168)的方法,他们最近引入了一种 13 间隔类型的 PFG NMR 序列,该序列具有两个不对称脉冲磁场梯度,适用于抑制与空间相关背景场梯度的不需要的交叉项。

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