Tan Zhengguo, Roeloffs Volkert, Voit Dirk, Joseph Arun A, Untenberger Markus, Merboldt K Dietmar, Frahm Jens
Biomedizinische NMR Forschungs GmbH am Max-Planck-Institut für biophysikalische Chemie, Göttingen, Germany.
DZHK, German Center for Cardiovascular Research, partner site Göttingen, Germany.
Magn Reson Med. 2017 Mar;77(3):1082-1093. doi: 10.1002/mrm.26192. Epub 2016 Mar 7.
To develop a model-based reconstruction technique for real-time phase-contrast flow MRI with improved spatiotemporal accuracy in comparison to methods using phase differences of two separately reconstructed images with differential flow encodings.
The proposed method jointly computes a common image, a phase-contrast map, and a set of coil sensitivities from every pair of flow-compensated and flow-encoded datasets obtained by highly undersampled radial FLASH. Real-time acquisitions with five and seven radial spokes per image resulted in 25.6 and 35.7 ms measuring time per phase-contrast map, respectively. The signal model for phase-contrast flow MRI requires the solution of a nonlinear inverse problem, which is accomplished by an iteratively regularized Gauss-Newton method. Aspects of regularization and scaling are discussed. The model-based reconstruction was validated for a numerical and experimental flow phantom and applied to real-time phase-contrast MRI of the human aorta for 10 healthy subjects and 2 patients.
Under all conditions, and compared with a previously developed real-time flow MRI method, the proposed method yields quantitatively accurate phase-contrast maps (i.e., flow velocities) with improved spatial acuity, reduced phase noise and reduced streaking artifacts.
This novel model-based reconstruction technique may become a new tool for clinical flow MRI in real time. Magn Reson Med 77:1082-1093, 2017. © 2016 International Society for Magnetic Resonance in Medicine.
开发一种基于模型的实时相位对比血流磁共振成像(MRI)重建技术,与使用具有不同血流编码的两个单独重建图像的相位差的方法相比,提高时空精度。
所提出的方法从通过高度欠采样的径向快速低角度激发(FLASH)获得的每对血流补偿和血流编码数据集中联合计算一个公共图像、一个相位对比图和一组线圈灵敏度。每个图像有五条和七条径向辐条的实时采集分别导致每个相位对比图的测量时间为25.6毫秒和35.7毫秒。相位对比血流MRI的信号模型需要求解一个非线性逆问题,这通过迭代正则化高斯 - 牛顿法来完成。讨论了正则化和缩放方面的问题。基于模型的重建在数值和实验血流模型上得到验证,并应用于10名健康受试者和2名患者的人体主动脉实时相位对比MRI。
在所有条件下,与先前开发的实时血流MRI方法相比,所提出的方法产生定量准确的相位对比图(即血流速度),具有提高的空间分辨率、降低的相位噪声和减少的条纹伪影。
这种新颖的基于模型的重建技术可能成为临床实时血流MRI的一种新工具。《磁共振医学》7:1082 - 1093, 2017。©2016国际磁共振医学学会。