Zhou X J, Tan S G, Bernstein M A
Applied Science Laboratory, GE Medical Systems, Milwaukee, Wisconsin 53201, USA.
Magn Reson Med. 1998 Oct;40(4):582-91. doi: 10.1002/mrm.1910400411.
It has been observed that fast spin-echo (FSE) images with a large field of view (>40 cm) in certain directions exhibit unusual ghosting artifacts that cannot be eliminated with existing ghost removal methods. These artifacts have been related to a higher-order magnetic field perturbation (known as the concomitant field, or Maxwell field) concomitant to the linear imaging gradient, in accordance with the Maxwell equations V z B = 0 and V x B approximately 0. Several methods have been developed to eliminate or minimize the effects of the concomitant magnetic field by redesigning the FSE pulse sequences. In the slice-selection direction, the gradient waveforms are made symmetrical about the refocusing RF pulses wherever possible. Surrounding the first refocusing pulse, such symmetry cannot be achieved due to the slice-refocusing gradient, which is often combined with the left crusher. In this case, it is shown how crusher gradients can be reshaped to nullify the phase due to the concomitant field. In the phase-encoding direction, the gradient amplitude is reduced and its duration is prolonged. Artifacts due to the readout gradient are eliminated by reshaping the prephasing lobe, while keeping its area fixed. In all the three directions, the gradient waveforms are adjusted so that they have minimal overlap. Selected methods have been implemented on a clinical scanner, and typically reduce the ghost intensities in phantom and human images by a factor of 3.
据观察,在某些方向上具有大视野(>40厘米)的快速自旋回波(FSE)图像会出现异常的重影伪影,现有去重影方法无法消除这些伪影。根据麦克斯韦方程▽·B = 0和▽×B≈0,这些伪影与线性成像梯度伴随的高阶磁场扰动(称为伴随场或麦克斯韦场)有关。已经开发了几种方法,通过重新设计FSE脉冲序列来消除或最小化伴随磁场的影响。在层面选择方向上,尽可能使梯度波形关于重聚焦射频脉冲对称。在第一个重聚焦脉冲周围,由于层面重聚焦梯度(通常与左侧消波器组合),无法实现这种对称性。在这种情况下,展示了如何重塑消波器梯度以消除伴随场引起的相位。在相位编码方向上,减小梯度幅度并延长其持续时间。通过重塑预相位波瓣同时保持其面积不变,消除读出梯度引起的伪影。在所有三个方向上,调整梯度波形,使其重叠最小。已在临床扫描仪上实现了选定的方法,通常可将体模和人体图像中的重影强度降低3倍。