Soellradl Martin, Strasser Johannes, Lesch Andreas, Stollberger Rudolf, Ropele Stefan, Langkammer Christian
Department of Neurology, Medical University of Graz, Graz, Austria.
Institute of Medical Engineering, Graz University of Technology, Graz, Austria.
Magn Reson Med. 2021 Feb;85(2):818-830. doi: 10.1002/mrm.28468. Epub 2020 Sep 10.
To reduce the misbalance between compensation gradients and macroscopic field gradients, we introduce an adaptive slice-specific z-shimming approach for 2D spoiled multi-echo gradient-echoe sequences in combination with modeling of the signal decay.
Macroscopic field gradients were estimated for each slice from a fast prescan (15 seconds) and then used to calculate slice-specific compensation moments along the echo train. The coverage of the compensated field gradients was increased by applying three positive and three negative moments. With a forward model, which considered the effect of the slice profile, the z-shim moment, and the field gradient, maps were estimated. The method was evaluated in phantom and in vivo measurements at 3 T and compared with a spoiled multi-echo gradient-echo and a global z-shimming approach without slice-specific compensation.
The proposed method yielded higher SNR in maps due to a broader range of compensated macroscopic field gradients compared with global z-shimming. In global white matter, the mean interquartile range, proxy for SNR, could be decreased to 3.06 s with the proposed approach, compared with 3.37 s for global z-shimming and 3.52 s for uncompensated multi-echo gradient-echo.
Adaptive slice-specific compensation gradients between echoes substantially improved the SNR of maps, and the signal could also be rephased in anatomical areas, where it has already been completely dephased.
为减少补偿梯度与宏观场梯度之间的失衡,我们引入了一种针对二维扰相多回波梯度回波序列的自适应切片特定z轴匀场方法,并结合信号衰减建模。
通过快速预扫描(15秒)为每个切片估计宏观场梯度,然后用于计算沿回波链的切片特定补偿矩。通过施加三个正矩和三个负矩来增加补偿场梯度的覆盖范围。利用一个考虑了切片轮廓、z轴匀场矩和场梯度影响的正向模型来估计图谱。该方法在3T的体模和活体测量中进行了评估,并与扰相多回波梯度回波和无切片特定补偿的全局z轴匀场方法进行了比较。
与全局z轴匀场相比,由于补偿宏观场梯度的范围更广,所提出的方法在图谱中产生了更高的信噪比。在全局白质中,所提出的方法可将作为信噪比代理的平均四分位数间距降低至3.06秒,而全局z轴匀场为3.37秒,未补偿的多回波梯度回波为3.52秒。
回波之间的自适应切片特定补偿梯度显著提高了图谱的信噪比,并且在已经完全去相的解剖区域信号也可以重新相位化。