Markl M, Leupold J, Bieri O, Scheffler K, Hennig J
Department of Diagnostic Radiology, Medical Physics, University Hospital Freiburg, Germany.
Magn Reson Med. 2005 Oct;54(4):965-74. doi: 10.1002/mrm.20615.
Balanced steady-state free precession (SSFP) imaging is sensitive to off-resonance effects, which can lead to considerable artifacts during a transient phase following magnetization preparation or steady-state interruption. In addition, nonlinear k-space encoding is required if contrast-relevant k-space regions need to be acquired at specific delays following magnetization preparation or for transient artifact reduction in cardiac-gated k-space segmented CINE imaging. Such trajectories are problematic for balanced SSFP imaging due to nonconstant eddy current effects and resulting disruption of the steady state. In this work, a novel acquisition strategy for balanced SSFP imaging is presented that utilizes scan time reduction by parallel imaging for optimized "double average" eddy current compensation and artifact reduction during the transient phase following steady-state storage and magnetization preparation. Double average parallel SSFP imaging was applied to k-space segmented CINE SSFP tagging as well as nongated centrically encoded SSFP imaging. Phantom and human studies exhibit substantial reduction in steady-state storage and eddy current artifacts while maintaining spatial resolution, signal-to-noise ratio, and similar total scan time of a standard SSFP acquisition. The proposed technique can easily be extended to other acquisition schemes that would benefit from nonlinear reordering schemes and/or rely on interruption of the balanced SSFP steady state.
平衡稳态自由进动(SSFP)成像对失谐效应敏感,这可能会在磁化准备或稳态中断后的瞬态阶段导致相当大的伪影。此外,如果需要在磁化准备后的特定延迟下采集与对比度相关的k空间区域,或者为了减少心脏门控k空间分段电影成像中的瞬态伪影,则需要非线性k空间编码。由于涡流效应不恒定以及由此导致的稳态破坏,这样的轨迹对于平衡SSFP成像来说是有问题的。在这项工作中,提出了一种用于平衡SSFP成像的新型采集策略,该策略利用并行成像减少扫描时间,以在稳态存储和磁化准备后的瞬态阶段进行优化的“双重平均”涡流补偿和伪影减少。双重平均并行SSFP成像应用于k空间分段电影SSFP标记以及非门控中心编码SSFP成像。体模和人体研究表明,在保持空间分辨率、信噪比以及与标准SSFP采集相似的总扫描时间的同时,稳态存储和涡流伪影大幅减少。所提出的技术可以很容易地扩展到其他采集方案,这些方案将受益于非线性重排方案和/或依赖于平衡SSFP稳态的中断。