横向弛豫与翻转角映射:使用多个自旋回波对同步和独立方法的评估。
Transverse relaxation and flip angle mapping: Evaluation of simultaneous and independent methods using multiple spin echoes.
作者信息
McPhee Kelly C, Wilman Alan H
机构信息
Department of Physics, University of Alberta, Edmonton Alberta, Canada.
Department of Biomedical Engineering, University of Alberta, Edmonton Alberta, Canada.
出版信息
Magn Reson Med. 2017 May;77(5):2057-2065. doi: 10.1002/mrm.26285. Epub 2016 Jul 1.
PURPOSE
To evaluate transverse relaxation (T2) and flip angle maps derived from signal pathway modeling of multiple spin echoes using simultaneous or independent T2 and flip angle fitting.
METHODS
We examined different approaches to indirect and stimulated echo compensated T2 relaxometry from multiple spin echoes to evaluate both T2 and flip angle accuracy in simulation, phantom, and human brain. Signal pathways were modeled with or without independent flip angle maps using either Bloch simulations, or Extended Phase Graph (EPG) with Fourier or Shinnar-Le Roux approximation of slice profiles.
RESULTS
Slice-selective decay curves differ substantially between models. Inaccurate flip angles are obtained with EPG methods, although T2 values are relatively accurate. Providing measured flip angles to EPG methods yields erroneous T2. Bloch methods improve both T2 and flip angle results. Simultaneous fitting can suffer from flip angle redundancy yielding multiple T2 solutions, particularly in low signal-to-noise ratio cases.
CONCLUSION
EPG fitting provides reasonably accurate T2, but is limited by poor accuracy in resulting flip angles, and T2 errors increase when flip angles are provided. Bloch simultaneous fitting of T2 and flip angle provides excellent results, but can be limited by multiple solutions which can be overcome by including a flip angle map. Magn Reson Med 77:2057-2065, 2017. © 2016 International Society for MagneticResonance in Medicine.
目的
使用同时或独立的T2和翻转角拟合,评估从多个自旋回波的信号路径模型得出的横向弛豫(T2)和翻转角图。
方法
我们研究了多种自旋回波间接和受激回波补偿T2弛豫测量的不同方法,以评估模拟、体模和人脑T2及翻转角的准确性。使用Bloch模拟或具有切片轮廓的傅里叶或Shinnar-Le Roux近似的扩展相位图(EPG),对有无独立翻转角图的信号路径进行建模。
结果
各模型间切片选择性衰减曲线差异显著。EPG方法得到的翻转角不准确,尽管T2值相对准确。将测量的翻转角提供给EPG方法会产生错误的T2。Bloch方法改善了T2和翻转角结果。同时拟合可能会因翻转角冗余而产生多个T2解,尤其是在低信噪比情况下。
结论
EPG拟合提供了合理准确的T2,但受所得翻转角准确性差的限制,并且提供翻转角时T2误差会增加。T 和翻转角的Bloch同时拟合提供了出色的结果,但可能会受到多个解的限制,通过包含翻转角图可以克服这一问题。《磁共振医学》77:2057 - 2065, 2017。© 2016国际磁共振医学学会。