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Measurement of the Self-Diffusion Coefficient of Water as a Function of Position in Wheat Grain Using Nuclear Magnetic Resonance Imaging

机译:利用核磁共振成像技术测量水的自扩散系数随小麦籽粒位置的变化

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摘要

A pulsed field gradient spin echo sequence has been incorporated in a nuclear magnetic resonance (NMR) imaging experiment to provide an image contrast dependent on local molecular self-diffusion. The consequent image attenuation is shown to exhibit a dependence on applied magnetic field gradient consistent with the Stejskal-Tanner relationship. The method used represents a novel extension of microscopic imaging and demonstrates the possibility of measuring localized motion.Water self-diffusion rates normal to the transverse 1.3-mm section of a wheat grain have been measured in structural features at 150-μm resolution. The results are consistent with averaged measurements in the bulk grain obtained by other methods while local differences in water mobility correlate with differences in physiological function.
机译:脉冲场梯度自旋回波序列已被纳入核磁共振(NMR)成像实验中,以提供依赖于局部分子自扩散的图像对比度。结果表明,图像衰减表现出对所施加磁场梯度的依赖性,该磁场梯度与Stejskal-Tanner关系一致。所使用的方法代表了显微成像的新扩展,并证明了测量局部运动的可能性。已经以150μm的分辨率在结构特征中测量了垂直于小麦籽粒横切面1.3 mm的水的自扩散率。结果与通过其他方法获得的散装谷物的平均测量值一致,而水流动性的局部差异与生理功能的差异相关。

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