Sutton Bradley P, Noll Douglas C, Fessler Jeffrey A
Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA.
Magn Reson Med. 2004 Jun;51(6):1194-204. doi: 10.1002/mrm.20079.
The long readout times of single-shot acquisitions and the high field strengths desired for functional MRI (fMRI) using blood oxygenation level-dependent (BOLD) contrast make functional scans sensitive to magnetic field inhomogeneity. If it is not corrected during image reconstruction, field inhomogeneity can cause geometric distortions in the images when Cartesian k-space trajectories are used or blurring with spiral acquisitions. Many traditional methods to correct for field inhomogeneity distortions rely on a static field map measured with the use of images that are themselves distorted. In this work, we employ a regularized least-squares approach to jointly estimate both the undistorted image and field map at each acquisition using a spiral-in/spiral-out pulse sequence. Simulation and phantom studies show that this method is accurate and stable over a time series. Human functional studies show that the jointly estimated field map may be more accurate than standard field map estimates in the presence of respiration-induced phase oscillations, leading to better detection of functional activation. The proposed method measures a dynamic field map that accurately tracks magnetic field drift and respiration-induced phase oscillations during the course of a functional study.
单次采集的长读出时间以及使用血氧水平依赖(BOLD)对比的功能磁共振成像(fMRI)所需的高场强,使得功能扫描对磁场不均匀性敏感。如果在图像重建过程中不进行校正,当使用笛卡尔k空间轨迹时,场不均匀性会导致图像中的几何失真,或者在螺旋采集时导致模糊。许多校正场不均匀性失真的传统方法依赖于使用本身就失真的图像测量的静态场图。在这项工作中,我们采用正则化最小二乘法,使用螺旋进/螺旋出脉冲序列在每次采集时联合估计未失真图像和场图。模拟和体模研究表明,该方法在时间序列上是准确且稳定的。人体功能研究表明,在存在呼吸诱导的相位振荡的情况下,联合估计的场图可能比标准场图估计更准确,从而能够更好地检测功能激活。所提出的方法测量动态场图,该场图在功能研究过程中准确跟踪磁场漂移和呼吸诱导的相位振荡。