Jung Youngkyoo, Jashnani Yogesh, Kijowski Richard, Block Walter F
Department of Electrical and Computer Engineering, University of Wisconsin-Madison, Madison, USA.
Magn Reson Med. 2007 Jan;57(1):206-12. doi: 10.1002/mrm.21092.
The consistency of off-axis MRI with non-Cartesian sequences across a large number of scanners is highly variable. Improper timing alignment of the gradient fields, data acquisition system, and real-time frequency demodulation reference signal, which are necessary for off-axis imaging, is an important source of this variability. In addition, eddy currents and anisotropic gradient delays cause deviations in k-space trajectories that in turn make the demodulation reference signals inaccurate. A method is presented to quickly measure the timing error in the frequency demodulation reference signal and separate it from anisotropic gradient delays. k-Space deviations, as measured with a previous gradient calibration technique, are shown to be a second source of demodulation phase errors that degrade image quality. Using the timing delay and k-space deviations, a retrospective phase correction is applied to each k-space sample before the data are regridded during reconstruction. The timing delays of four MR scanners were measured to be 4.2-7.5 micros below the manufacturer's suggested delay. Significant degradation in 3D radial (3D projection reconstruction (PR)) knee and breast images are retrospectively corrected while a partial prospective correction is applied for spiral imaging. The method allows for more consistent performance of non-Cartesian sequences across multiple scanners without operator intervention.
在大量扫描仪中,具有非笛卡尔序列的离轴MRI的一致性变化很大。离轴成像所需的梯度场、数据采集系统和实时频率解调参考信号的定时对准不当,是这种变化的一个重要来源。此外,涡流和各向异性梯度延迟会导致k空间轨迹出现偏差,进而使解调参考信号不准确。本文提出了一种快速测量频率解调参考信号定时误差并将其与各向异性梯度延迟分离的方法。用先前的梯度校准技术测量的k空间偏差被证明是降低图像质量的解调相位误差的第二个来源。利用定时延迟和k空间偏差,在重建过程中对数据进行重新网格化之前,对每个k空间样本进行回顾性相位校正。测量了四台MR扫描仪的定时延迟,比制造商建议的延迟低4.2-7.5微秒。对3D径向(3D投影重建(PR))膝关节和乳腺图像的显著退化进行回顾性校正,同时对螺旋成像应用部分前瞻性校正。该方法允许在多个扫描仪上非笛卡尔序列具有更一致的性能,而无需操作员干预。