Hennig Juergen, Weigel Matthias, Scheffler Klaus
Department of Diagnostic Radiology, Section of Medical Physics, University of Freiburg, Germany.
Magn Reson Med. 2003 Mar;49(3):527-35. doi: 10.1002/mrm.10391.
A variation of the rapid acquisition with relaxation enhancement (RARE) sequence (also called turbo spin-echo (TSE) or fast spin-echo (FSE)) is presented. This technique uses variable flip angles along the echo train such that magnetization is initially prepared into the static pseudo steady state (PSS) for a low refocusing flip angle (alpha < 180 degrees ). It is shown that after such a preparation, magnetization will always stay very close to the static PSS even after significant variation of the subsequent refocusing flip angles. This allows the design of TSE sequences in which high refocusing flip angles yielding 100% of the attainable signal are applied only for the important echoes encoding for the center of k-space. It is demonstrated that a reduction of the RF power (RFP) by a factor of 2.5-6 can be achieved without any loss in signal intensity. The contribution of stimulated-echo pathways leads to a reduction of the effective TE by a factor f(t), which for typical implementations is on the order of 0.5-0.8. This allows the use of longer echo readout times, and thus longer echo trains, for acquiring images with a given T(2) contrast.
本文介绍了一种快速采集与弛豫增强(RARE)序列(也称为涡轮自旋回波(TSE)或快速自旋回波(FSE))的变体。该技术在回波链中使用可变翻转角,使得对于低重聚焦翻转角(α<180度),磁化最初被制备到静态伪稳态(PSS)。结果表明,经过这样的制备后,即使后续重聚焦翻转角有显著变化,磁化也将始终非常接近静态PSS。这允许设计TSE序列,其中仅对编码k空间中心的重要回波应用产生100%可获得信号的高重聚焦翻转角。结果表明,可以在不损失信号强度的情况下将射频功率(RFP)降低2.5至6倍。受激回波路径的贡献导致有效TE降低f(t)倍,对于典型实现,f(t)约为0.5至0.8。这允许使用更长的回波读出时间,从而使用更长的回波链来获取具有给定T(2)对比度的图像。