Ward Heidi A, Riederer Stephen J, Jack Clifford R
Department of Radiology, Mayo Clinic, Rochester, Minnesota 55905, USA.
Magn Reson Med. 2002 Nov;48(5):771-80. doi: 10.1002/mrm.10259.
Head motion within an applied magnetic field alters the effective shim within the brain, causing geometric distortions in echo planar imaging (EPI). Even if subtle, change in shim can lead to artifactual signal changes in timecourse EPI acquisitions, which are typically performed for functional MRI (fMRI) or diffusion tensor imaging. Magnetic field maps acquired before and after head motions of clinically realistic magnitude indicate that motion-induced changes in magnetic field may cause translations exceeding 3 mm in the phase-encoding direction of the EPI images. The field maps also demonstrate a trend toward linear variations in shim changes as a function of position within the head, suggesting that a real-time, first-order correction may compensate for motion-induced changes in magnetic field. This article presents a navigator pulse sequence and processing method, termed a "shim NAV," for real-time detection of linear shim changes, and a shim-compensated EPI pulse sequence for dynamic correction of linear shim changes. In vivo and phantom experiments demonstrate the detection accuracy of shim NAVs in the presence of applied gradient shims. Phantom experiments demonstrate reduction of geometric distortion and image artifact using shim-compensated EPI in the presence of applied gradient shims. In vivo experiments with intentional interimage subject motion demonstrate improved alignment of timecourse EPI images when using the shim NAV-detected values to update the shim-compensated EPI acquisition in real time.
在施加的磁场中头部运动改变了脑内的有效匀场,在回波平面成像(EPI)中导致几何畸变。即使很细微,匀场的变化也会在时间进程EPI采集中导致伪影信号变化,而时间进程EPI采集通常用于功能磁共振成像(fMRI)或扩散张量成像。在具有临床现实量级的头部运动前后采集的磁场图表明,磁场中运动引起的变化可能在EPI图像的相位编码方向上导致超过3mm的位移。这些磁场图还显示出匀场变化随头部内位置呈线性变化的趋势,这表明实时的一阶校正可能补偿磁场中运动引起的变化。本文提出了一种导航脉冲序列和处理方法,称为“匀场导航器(shim NAV)”,用于实时检测线性匀场变化,以及一种用于动态校正线性匀场变化的匀场补偿EPI脉冲序列。体内和体模实验证明了在存在施加的梯度匀场情况下匀场导航器的检测准确性。体模实验证明了在存在施加的梯度匀场情况下使用匀场补偿EPI可减少几何畸变和图像伪影。在存在有意的图像间受试者运动的体内实验表明,当使用匀场导航器检测的值实时更新匀场补偿EPI采集时,时间进程EPI图像的对齐得到改善。