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采用魔角旋转(STRAFI-MAS)技术的旋转样品的二维和三维多核杂散场成像:从生物到无机材料。

Two- and three-dimensional multinuclear stray-field imaging of rotating samples with magic-angle spinning (STRAFI-MAS): from bio to inorganic materials.

机构信息

UMR 3299 CEA Saclay, DSM/IRAMIS/CNRS-SIS2M/LSDRM, F-91191, Gif-sur-Yvette Cedex, France.

出版信息

J Magn Reson Imaging. 2010 Aug;32(2):418-23. doi: 10.1002/jmri.22242.

Abstract

PURPOSE

To revisit and illustrate the potential of a simple and effective multidimensional stray-field imaging technique with magic-angle spinning, known as STRAFI-MAS.

MATERIALS AND METHODS

STRAFI-MAS images are acquired with a standard NMR magnet and a traditional magic-angle sample spinning (MAS) probe. The stray-field gradients are achieved by placing the MAS probe, along the z-direction, at a distance from the center of the magnet. No pulsed-field gradients are applied. The multidimensional spatial encoding is carried out by synchronizing the radiofrequency pulses with the sample MAS rotation.

RESULTS

Two-dimensional (2D) and 3D multinuclear images of various phantoms, including a tibia bone and silicon carbide, are recorded. Images of inorganic solids containing quadrupolar nuclei, (23)Na and (27)Al, are also explored for the first time by STRAFI-MAS.

CONCLUSION

We have demonstrated that STRAFI-MAS is a simple and user-friendly technique for multidimensional imaging without the need of imaging equipment. With the current advancements in NMR and MRI methodologies, STRAFI-MAS is expected to be further developed and improved. We anticipate that STRAFI-MAS can spark a wide spectrum of interest, from material to bio science, where can benefit from high-resolution images.

摘要

目的

重新审视并展示一种简单有效的多维 stray-field 成像技术的潜力,该技术称为 STRAFI-MAS。

材料与方法

STRAFI-MAS 图像是在标准 NMR 磁体和传统的魔角旋转(MAS)探头中采集的。通过将 MAS 探头沿着 z 方向放置在距磁体中心一定距离处,实现 stray-field 梯度。不施加脉冲场梯度。通过将射频脉冲与样品 MAS 旋转同步进行多维空间编码。

结果

记录了各种幻像的二维(2D)和三维多核图像,包括胫骨骨和碳化硅。首次通过 STRAFI-MAS 探索了含有四极核(23)Na 和(27)Al 的无机固体的图像。

结论

我们已经证明,STRAFI-MAS 是一种简单易用的多维成像技术,无需成像设备。随着 NMR 和 MRI 方法的当前进展,预计 STRAFI-MAS 将得到进一步开发和改进。我们预计,STRAFI-MAS 将引起广泛的兴趣,从材料科学到生物科学,都将受益于高分辨率的图像。

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