School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.
School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.
Magn Reson Imaging. 2020 May;68:173-182. doi: 10.1016/j.mri.2020.02.005. Epub 2020 Feb 13.
To develop and evaluate a novel non-ECG triggered 2D magnetic resonance fingerprinting (MRF) sequence allowing for simultaneous myocardial T and T mapping and cardiac Cine imaging.
Cardiac MRF (cMRF) has been recently proposed to provide joint T/T myocardial mapping by triggering the acquisition to mid-diastole and relying on a subject-dependent dictionary of MR signal evolutions to generate the maps. In this work, we propose a novel "free-running" (non-ECG triggered) cMRF framework for simultaneous myocardial T and T mapping and cardiac Cine imaging in a single scan. Free-running cMRF is based on a transient state bSSFP acquisition with tiny golden angle radial readouts, varying flip angle and multiple adiabatic inversion pulses. The acquired data is retrospectively gated into several cardiac phases, which are reconstructed with an approach that combines parallel imaging, low rank modelling and patch-based high-order tensor regularization. Free-running cMRF was evaluated in a standardized phantom and ten healthy subjects. Comparison with reference spin-echo, MOLLI, SASHA, T-GRASE and Cine was performed.
T and T values obtained with the proposed approach were in good agreement with reference phantom values (ICC(A,1) > 0.99). Reported values for myocardium septum T were 1043 ± 48 ms, 1150 ± 100 ms and 1160 ± 79 ms for MOLLI, SASHA and free-running cMRF respectively and for T of 51.7 ± 4.1 ms and 44.6 ± 4.1 ms for T-GRASE and free-running cMRF respectively. Good agreement was observed between free-running cMRF and conventional Cine 2D ejection fraction (bias = -0.83%).
The proposed free-running cardiac MRF approach allows for simultaneous assessment of myocardial T and T and Cine imaging in a single scan.
开发和评估一种新的非心电图触发二维磁共振指纹成像(MRF)序列,实现心肌 T1 和 T2 映射和心脏 Cine 成像的同步采集。
心脏 MRF(cMRF)最近被提出,通过触发采集到舒张中期,并依赖于基于受试者的磁共振信号演化字典来生成图谱,从而实现 T1/T2 心肌映射的联合采集。在本工作中,我们提出了一种新的“自由运行”(非心电图触发)cMRF 框架,用于在单次扫描中实现心肌 T1 和 T2 映射和心脏 Cine 成像的同步采集。自由运行的 cMRF 基于具有微小金角径向读取、可变翻转角和多个绝热反转脉冲的短暂稳态 bSSFP 采集。采集到的数据被回顾性地门控到几个心脏相位,这些相位使用结合并行成像、低秩建模和基于补丁的高阶张量正则化的方法进行重建。自由运行的 cMRF 在标准化的体模和 10 个健康受试者中进行了评估。与参考自旋回波、MOLLI、SASHA、T-GRASE 和 Cine 进行了比较。
所提出方法获得的 T1 和 T2 值与参考体模值具有很好的一致性(ICC(A,1) > 0.99)。MOLLI、SASHA 和自由运行的 cMRF 分别报告的心肌间隔 T1 值为 1043 ± 48 ms、1150 ± 100 ms 和 1160 ± 79 ms,T-GRASE 和自由运行的 cMRF 分别报告的 T2 值为 51.7 ± 4.1 ms 和 44.6 ± 4.1 ms。自由运行的 cMRF 和传统的二维 Cine 射血分数之间观察到很好的一致性(偏差 = -0.83%)。
所提出的自由运行的心脏 MRF 方法允许在单次扫描中同时评估心肌 T1 和 T2 以及 Cine 成像。