Kartäusch Ralf, Driessle Toni, Kampf Thomas, Basse-Lüsebrink Thomas Christian, Hoelscher Uvo Christoph, Jakob Peter Michael, Fidler Florian, Helluy Xavier
Department of Experimental Physics 5, University of Würzburg, Am Hubland, 97074, Würzburg, Germany,
MAGMA. 2014 Oct;27(5):363-71. doi: 10.1007/s10334-013-0417-0. Epub 2013 Nov 20.
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.
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.
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.
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.
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。
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。
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。
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。