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Improved Convection Compensating Pulsed Field Gradient Spin-Echo and Stimulated-Echo Methods

机译:改进的对流补偿脉冲场梯度自旋回波和受激回波方法

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摘要

The need for convection compensating methods in NMR has been manifested through an increasing number of publications related to the subject over the past few years (J. Magn. Reson. 125, 372 (1997); 132, 13 (1998); 131, 126 (1998); 118, 50 (1996); 133, 379 (1998)). When performing measurements at elevated temperature, small convection currents may give rise to erroneous values of the diffusion coefficient. In work with high resolution NMR spectroscopy, the application of magnetic field gradients also introduces an eddy-current magnetic field which may result in errors in phase and baseline in the FFT-spectra. The eddy current field has been greatly suppressed by the application of bipolar magnetic field gradients. However, when introducing bipolar magnetic field gradients, the pulse sequence is lengthened significantly. This has recently been pointed out as a major drawback because of the loss of coherence and of NMR-signal due to transverse relaxation processes. Here we present modified convection compensating pulsed field gradient double spin echo and double stimulated echo sequences which suppress the eddy-current magnetic field without increasing the duration of the pulse sequences.
机译:在过去的几年中,与该主题相关的出版物数量不断增加,从而表明了对NMR对流补偿方法的需求(J. Magn。Reson。125,372(1997); 132,13(1998); 131,126)。 (1998); 118,50(1996); 133,379(1998))。在高温下进行测量时,小的对流电流可能会导致扩散系数的错误值。在高分辨率NMR光谱中,磁场梯度的应用还引入了涡流磁场,这可能会导致FFT谱的相位和基线出现误差。通过施加双极性磁场梯度,涡流场已被大大抑制。但是,当引入双极磁场梯度时,脉冲序列会大大延长。由于横向弛豫过程,由于相干性和NMR信号的损失,最近已指出这是主要缺点。在这里,我们提出了改进的对流补偿脉冲场梯度双自旋回波和双受激回波序列,它们在不增加脉冲序列持续时间的情况下抑制了涡流磁场。

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