Wan X, Gullberg G T, Parker D L, Zeng G L
Department of Radiology, University of Utah, Salt Lake City, USA.
Magn Reson Med. 1997 Jun;37(6):932-42. doi: 10.1002/mrm.1910370619.
Echo-planar imaging (EPI) is very sensitive to patient-induced field inhomogeneity caused by susceptibility changes between different anatomical regions. This results in geometric and intensity distortions in the image, especially near tissue/air and tissue/bone interfaces. A new approach is presented to reduce geometric and intensity distortions in EPI. A phase-encoded multireference scan is used to estimate the amplitude and phase errors in the measured signals due to the field inhomogeneity. The EPI data is corrected using both the amplitude and phase of the measured errors. This technique has been evaluated using EPI pulse sequences implemented with conventional gradients and implemented with imaging systems that have special resonating gradients and fast analog to digital converters. The results in both phantom and human studies show that in the absence of object motion the new correction technique can effectively reduce the geometric and intensity distortions.
回波平面成像(EPI)对由不同解剖区域之间的磁化率变化引起的患者诱导场不均匀性非常敏感。这会导致图像中的几何和强度失真,尤其是在组织/空气和组织/骨界面附近。本文提出了一种新方法来减少EPI中的几何和强度失真。使用相位编码多参考扫描来估计由于场不均匀性导致的测量信号中的幅度和相位误差。使用测量误差的幅度和相位对EPI数据进行校正。该技术已使用传统梯度实现的EPI脉冲序列以及具有特殊共振梯度和快速模数转换器的成像系统进行了评估。体模和人体研究结果均表明,在没有物体运动的情况下,新的校正技术可以有效减少几何和强度失真。