Simmons A, Tofts P S, Barker G J, Arridge S R
Nuclear Medicine Department, Kent and Canterbury Hospital, United Kingdom.
Magn Reson Med. 1994 Jul;32(1):121-8. doi: 10.1002/mrm.1910320117.
This manuscript describes a number of sources of nonuniformity for spin echo images at 1.5 T. Both coil tuning and crosstalk can have significant effects on image nonuniformity. For short repetition times, nonuniformity increases with decreasing TR, possibly due to gradient eddy currents. In sections of RF coils with poor RF uniformity, image nonuniformity varies with both echo time and the number of echoes in a multiecho sequence. For the particular imager used, there are small differences between transverse and sagittal/coronal nonuniformity. The temporal stability of image nonuniformity is very good. The use of uniform oil phantoms is shown to be superior to low pass filtered images for correction of image nonuniformity.
本手稿描述了1.5T自旋回波图像不均匀性的多种来源。线圈调谐和串扰都会对图像不均匀性产生显著影响。对于短重复时间,不均匀性随TR减小而增加,这可能是由于梯度涡流所致。在射频均匀性较差的射频线圈部分,图像不均匀性随回波时间和多回波序列中的回波数量而变化。对于所使用的特定成像仪,横向与矢状/冠状面不均匀性之间存在微小差异。图像不均匀性的时间稳定性非常好。结果表明,使用均匀油模体校正图像不均匀性优于低通滤波图像。