Afshari Roya, Santini Francesco, Heule Rahel, Meyer Craig H, Pfeuffer Josef, Bieri Oliver
Division of Radiological Physics, Department of Radiology, University Hospital Basel, Basel, Switzerland; Department of Biomedical Engineering, University of Basel, Basel, Switzerland.
Division of Radiological Physics, Department of Radiology, University Hospital Basel, Basel, Switzerland; BAMM group, Department of Biomedical Engineering, University of Basel, Basel, Switzerland.
Z Med Phys. 2025 Feb;35(1):69-77. doi: 10.1016/j.zemedi.2023.02.005. Epub 2023 Apr 3.
To provide a robust whole-brain quantitative magnetization transfer (MT) imaging method that is not limited by long acquisition times.
Two variants of a spiral 2D interleaved multi-slice spoiled gradient echo (SPGR) sequence are used for rapid quantitative MT imaging of the brain at 3 T. A dual flip angle, steady-state prepared, double-contrast method is used for combined B and-T mapping in combination with a single-contrast MT-prepared acquisition over a range of different saturation flip angles (50 deg to 850 deg) and offset frequencies (1 kHz and 10 kHz). Five sets (containing minimum 6 to maximum 18 scans) with different MT-weightings were acquired. In addition, main magnetic field inhomogeneities (ΔB) were measured from two Cartesian low-resolution 2D SPGR scans with different echo times. Quantitative MT model parameters were derived from all sets using a two-pool continuous-wave model analysis, yielding the pool-size ratio, F, their exchange rate, k, and their transverse relaxation time, T.
Whole-brain quantitative MT imaging was feasible for all sets with total acquisition times ranging from 7:15 min down to 3:15 min. For accurate modeling, B-correction was essential for all investigated sets, whereas ΔB-correction showed limited bias for the observed maximum off-resonances at 3 T.
The combination of rapid B-T mapping and MT-weighted imaging using a 2D multi-slice spiral SPGR research sequence offers excellent prospects for rapid whole-brain quantitative MT imaging in the clinical setting.
提供一种稳健的全脑定量磁化传递(MT)成像方法,该方法不受长采集时间的限制。
使用螺旋二维交错多层扰相梯度回波(SPGR)序列的两种变体在3T下对大脑进行快速定量MT成像。采用双翻转角、稳态准备、双对比方法结合单对比MT准备采集,在一系列不同的饱和翻转角(50°至850°)和偏移频率(1kHz和10kHz)下进行B和T映射。采集了五组不同MT权重的图像(每组包含最少6次至最多18次扫描)。此外,通过两次具有不同回波时间的笛卡尔低分辨率二维SPGR扫描测量主磁场不均匀性(ΔB)。使用双池连续波模型分析从所有组中得出定量MT模型参数,得出池大小比F、它们的交换率k和横向弛豫时间T。
对于所有组,全脑定量MT成像都是可行的,总采集时间从7:15分钟缩短至3:15分钟。为了进行准确建模,B校正对于所有研究组都是必不可少的,而对于在3T下观察到的最大失谐,ΔB校正显示出有限的偏差。
使用二维多层螺旋SPGR研究序列进行快速B和T映射与MT加权成像相结合,为临床环境中的快速全脑定量MT成像提供了良好的前景。