High-Field MR Center, Max Planck Institute for Biological Cybernetics, Tübingen, Germany.
Magn Reson Med. 2013 Jan;69(1):71-81. doi: 10.1002/mrm.24225. Epub 2012 Feb 29.
A promising approach for the simultaneous quantification of relative proton density (M(0)), T(1), and T(2) is the inversion-recovery TrueFISP sequence, consisting of an inversion pulse followed by a series of balanced steady-state free precession acquisitions. Parameters can then be obtained from a mono-exponential fit to the series of images. However, a segmented acquisition is usually necessary, which increases the total acquisition time considerably. The goal of this study is to obtain M(0), T(1), and T(2) maps using a single-shot acquisition, with T(1) and T(2) measurements in brain that are consistent with the published literature, with a 20-fold speed improvement over the segmented approach, and at a clinically relevant spatial resolution. To this end, a single-shot inversion-recovery TrueFISP sequence was combined with a radial view-sharing technique. The parameters M(0), T(1), and T(2) were then obtained on a pixel-wise basis from a three fit parameter to the signal evolution. The accuracy of this method for quantifying these parameters is demonstrated in vivo. In addition, further corrections to the quantification necessary owing to other experimental factors, namely magnetization transfer and imperfect slice profiles, were developed. Including additional scans necessary for these corrections in the measurement protocol, the required scan time is increased from approximately 6 to 18-28 s per slice.
一种同时定量相对质子密度(M(0))、T(1)和 T(2)的有前途的方法是反转恢复 TrueFISP 序列,它由一个反转脉冲和一系列平衡稳态自由进动采集组成。然后可以从对图像系列的单指数拟合中获得参数。然而,通常需要分段采集,这会大大增加总采集时间。本研究的目的是使用单次采集获得 M(0)、T(1)和 T(2)图谱,同时测量大脑中的 T(1)和 T(2)与已发表文献一致,与分段方法相比速度提高 20 倍,并且在临床相关的空间分辨率下进行。为此,将单次反转恢复 TrueFISP 序列与径向视图共享技术相结合。然后,通过对信号演化的三参数拟合,在像素级获得 M(0)、T(1)和 T(2)参数。该方法在体内定量这些参数的准确性得到了证明。此外,还开发了针对由于其他实验因素(即磁化转移和非理想切片轮廓)而对定量进行的进一步校正。如果将这些校正所需的额外扫描包括在测量方案中,则每个切片的所需扫描时间会从大约 6 秒增加到 18-28 秒。