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使用单侧核磁共振装置的非均匀场梯度测量扩散-弛豫相关图。

Measuring diffusion-relaxation correlation maps using non-uniform field gradients of single-sided NMR devices.

作者信息

Nogueira d'Eurydice Marcel, Galvosas Petrik

机构信息

MacDiarmid Institute for Advanced Materials and Nanotechnology, School of Chemical and Physical Sciences, Victoria University of Wellington, PO Box 600, Wellington, New Zealand.

MacDiarmid Institute for Advanced Materials and Nanotechnology, School of Chemical and Physical Sciences, Victoria University of Wellington, PO Box 600, Wellington, New Zealand.

出版信息

J Magn Reson. 2014 Nov;248:137-45. doi: 10.1016/j.jmr.2014.07.012. Epub 2014 Aug 13.

Abstract

Single-sided NMR systems are becoming a relevant tool in industry and laboratory environments due to their low cost, low maintenance and capacity to evaluate quantity and quality of hydrogen based materials. The performance of such devices has improved significantly over the last decade, providing increased field homogeneity, field strength and even controlled static field gradients. For a class of these devices, the configuration of the permanent magnets provides a linear variation of the magnetic field and can be used in diffusion measurements. However, magnet design depends directly on its application and, according to the purpose, the field homogeneity may significantly be compromised. This may prevent the determination of diffusion properties of fluids based on the natural inhomogeneity of the field using known techniques. This work introduces a new approach that extends the applicability of diffusion-editing CPMG experiments to NMR devices with highly inhomogeneous magnetic fields, which do not vary linearly in space. Herein, we propose a method to determine a custom diffusion kernel based on the gradient distribution, which can be seen as a signature of each NMR device. This new diffusion kernel is then utilised in the 2D inverse Laplace transform (2D ILT) in order to determine diffusion-relaxation correlation maps of homogeneous multi-phasic fluids. The experiments were performed using NMR MObile Lateral Explore (MOLE), which is a single-sided NMR device designed to maximise the volume at the sweet spot with enhanced depth penetration.

摘要

由于成本低、维护要求低以及能够评估氢基材料的数量和质量,单侧核磁共振(NMR)系统正成为工业和实验室环境中的一种重要工具。在过去十年中,这类设备的性能有了显著提升,磁场均匀性、场强甚至可控的静态场梯度都有所提高。对于这类设备中的一类,永磁体的配置提供了磁场的线性变化,可用于扩散测量。然而,磁体设计直接取决于其应用,根据用途的不同,磁场均匀性可能会受到显著影响。这可能会阻碍使用已知技术基于磁场的自然不均匀性来确定流体的扩散特性。这项工作引入了一种新方法,将扩散编辑的CPMG实验的适用性扩展到磁场高度不均匀且在空间中非线性变化的NMR设备。在此,我们提出一种基于梯度分布确定定制扩散核的方法,该梯度分布可被视为每个NMR设备的特征。然后,这个新的扩散核被用于二维逆拉普拉斯变换(2D ILT),以确定均匀多相流体的扩散 - 弛豫相关图。实验使用的是核磁共振移动横向探测仪(MOLE),它是一种单侧NMR设备,旨在通过增强深度穿透来最大化最佳区域的体积。

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