Waxmann Patrick, Mekle Ralf, Schubert Florian, Brühl Rüdiger, Kuehne Andre, Lindel Tomasz D, Seifert Frank, Speck Oliver, Ittermann Bernd
Physikalisch-Technische Bundesanstalt (PTB), Braunschweig and Berlin, Germany.
Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.
NMR Biomed. 2016 Aug;29(8):1028-37. doi: 10.1002/nbm.3558. Epub 2016 Jun 2.
Spatially selective excitation in two dimensions (2D-SSE) utilizing parallel transmission was applied as a means to acquire signal from voxels adapted to the anatomy of interest for in vivo (1) H MR spectroscopy. A novel method to select spectroscopy voxels with arbitrary shapes in two dimensions was investigated. An on-off scheme with an adiabatic slice selective inversion pulse preceding a 2D-SSE pulse together with a segmented inward spiral excitation k-space trajectory enabled rapid free induction decay acquisitions. Performance of the sequence was evaluated in simulations, phantom experiments, and in vivo measurements at 3 T. High spatial fidelity of the excitation profile was achieved for different target shapes and with little off-resonance deterioration. Metabolite concentrations in human brain determined with the new sequence were quantified with Cramér-Rao lower bounds less than 20%. They were in the physiological range and did not deviate systematically from results acquired with a conventional SPECIAL sequence. In conclusion, a new approach for shaped voxel MRS in the human brain is presented, which complements existing sequences. Simulations show that 2D-SSE pulses yield reduced chemical shift artifact when compared with conventional localization methods. Copyright © 2016 John Wiley & Sons, Ltd.
利用并行传输的二维空间选择性激发(2D-SSE)被用作一种从适合感兴趣解剖结构的体素中获取信号的手段,用于体内¹H磁共振波谱分析。研究了一种在二维中选择任意形状光谱体素的新方法。一种开-关方案,在二维空间选择性激发(2D-SSE)脉冲之前使用绝热切片选择性反转脉冲,并结合分段向内螺旋激发k空间轨迹,实现了快速自由感应衰减采集。在3T下通过模拟、体模实验和体内测量对该序列的性能进行了评估。对于不同的目标形状,激发轮廓实现了高空间保真度,且失谐恶化很小。用新序列测定的人脑代谢物浓度,用克拉美-罗下限进行量化,其值小于20%。它们处于生理范围内,与用传统SPECIAL序列获得的结果没有系统性偏差。总之,本文提出了一种用于人脑成形体素磁共振波谱分析的新方法,它补充了现有序列。模拟表明,与传统定位方法相比,二维空间选择性激发(2D-SSE)脉冲产生的化学位移伪影减少。版权所有©2016约翰威立父子有限公司。