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利用布洛赫-西格特位移效应的空间相位编码。

Spatial phase encoding exploiting the Bloch-Siegert shift effect.

作者信息

Kartäusch Ralf, Driessle Toni, Kampf Thomas, Basse-Lüsebrink Thomas Christian, Hoelscher Uvo Christoph, Jakob Peter Michael, Fidler Florian, Helluy Xavier

机构信息

Department of Experimental Physics 5, University of Würzburg, Am Hubland, 97074, Würzburg, Germany,

出版信息

MAGMA. 2014 Oct;27(5):363-71. doi: 10.1007/s10334-013-0417-0. Epub 2013 Nov 20.

Abstract

OBJECTIVE

The present work introduces an alternative to the conventional B0-gradient spatial phase encoding technique. By applying far off-resonant radiofrequency (RF) pulses, a spatially dependent phase shift is introduced to the on-resonant transverse magnetization. This so-called Bloch-Siegert (BS) phase shift has been recently used for B1(+)-mapping. The current work presents the theoretical background for the BS spatial encoding technique (BS-SET) using RF-gradients.

MATERIALS AND METHODS

Since the BS-gradient leads to nonlinear encoding, an adapted reconstruction method was developed to obtain undistorted images. To replace conventional phase encoding gradients, BS-SET was implemented in a two-dimensional (2D) spin echo sequence on a 0.5 T portable MR scanner.

RESULTS

A 2D spin echo (SE) measurement imaged along a single dimension using the BS-SET was compared to a conventional SE 2D measurement. The proposed reconstruction method yielded undistorted images.

CONCLUSIONS

BS-gradients were demonstrated as a feasible option for spatial phase encoding. Furthermore, undistorted BS-SET images could be obtained using the proposed reconstruction method.

摘要

目的

本研究介绍了一种传统B0梯度空间相位编码技术的替代方法。通过施加远失谐射频(RF)脉冲,在共振横向磁化上引入空间相关的相移。这种所谓的布洛赫-西格特(BS)相移最近已用于B1(+)映射。当前工作介绍了使用RF梯度的BS空间编码技术(BS-SET)的理论背景。

材料与方法

由于BS梯度会导致非线性编码,因此开发了一种适应性重建方法以获得无失真图像。为了取代传统的相位编码梯度,在0.5T便携式MR扫描仪上的二维(2D)自旋回波序列中实施了BS-SET。

结果

将使用BS-SET沿单一维度成像的二维自旋回波(SE)测量结果与传统的SE二维测量结果进行了比较。所提出的重建方法产生了无失真图像。

结论

BS梯度被证明是空间相位编码的一种可行选择。此外,使用所提出的重建方法可以获得无失真的BS-SET图像。

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