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稳健的切片选择宽带重聚焦脉冲。

Robust slice-selective broadband refocusing pulses.

机构信息

Technische Universität München, Department of Chemistry, Munich, Germany.

出版信息

J Magn Reson. 2011 Dec;213(1):126-35. doi: 10.1016/j.jmr.2011.09.025. Epub 2011 Sep 16.

Abstract

Slice-selective broadband refocusing pulses are of great interest in localized MR spectroscopy for improving spatial selectivity, reducing chemical-shift displacement errors, and reducing anomalous J modulation. In practice the bandwidth of RF pulses is limited by the maximum available B1 amplitude. The goal of the present work is to design slice-selective and broadband refocusing pulses which are tolerant against B1 deviations. Pulse design is performed by numerical optimization based on optimal control theory. A comprehensive study of different cost functions and their effect on the optimization is given. The optimized slice-selective broadband refocusing pulses are compared to conventional Shinnar-Le Roux (SLR), broadband SLR, and hyperbolic secant pulses. In simulations and experiments optimized pulses were shown to fulfill broadband slice specifications over a range of ±20% B1 scalings. Experimental validation showed a reduction of chemical-shift displacement error by a factor of 3 compared to conventional SLR pulses.

摘要

在局部磁共振波谱学中,切片选择性宽带重聚焦脉冲非常有趣,因为它们可以提高空间选择性、减小化学位移位移误差和减小异常 J 调制。在实践中,RF 脉冲的带宽受到最大可用 B1 幅度的限制。本工作的目标是设计对 B1 偏差具有容忍性的切片选择性和宽带重聚焦脉冲。基于最优控制理论,通过数值优化进行脉冲设计。给出了不同代价函数及其对优化影响的综合研究。将优化后的切片选择性宽带重聚焦脉冲与传统的 Shinnar-Le Roux(SLR)、宽带 SLR 和双曲正割脉冲进行了比较。在模拟和实验中,优化后的脉冲被证明在±20%的 B1 缩放范围内能够满足宽带切片规格。实验验证表明,与传统的 SLR 脉冲相比,化学位移位移误差减小了 3 倍。

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