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通过使用补偿梯度抑制运动诱导伪影来改进脑部磁共振成像。

Improved MR imaging of the brain by using compensating gradients to suppress motion-induced artifacts.

作者信息

Quencer R M, Hinks R S, Pattany P H, Horen M, Post M J

机构信息

Department of Radiology, University of Miami School of Medicine Magnetic Resonance Imaging Center, FL 33101.

出版信息

AJR Am J Roentgenol. 1988 Jul;151(1):163-70. doi: 10.2214/ajr.151.1.163.

Abstract

Sixty patients were examined with and without extra gradient pulses, which compensate for motion-induced phase errors, in order to determine the effect those gradients had in suppressing the motion artifacts frequently present in the brainstem, temporal lobes, and basal ganglionic regions on routine T2-weighted brain MR imaging. Two comparative studies were performed: (1) in 50 patients the motion-artifact suppression technique (MAST) was compared with a single-echo MR examination, and (2) in 10 patients the MAST technique was compared with the second echo of a symmetric dual-echo sequence. In the first study 39 patients were examined at 1.5 T and 11 patients were examined at 0.5 T with the same pulse sequences. We found that MAST resulted in a significant improvement of image quality in 24 of 39 patients on the high-field-strength system and in two of 11 patients on the mid-field-strength system. In the second study, we found that in four of the 10 patients, MAST resulted in a suppression of artifacts greater than that achieved by even-echo rephasing alone. With MAST, artifacts were eliminated that not only obscured normal structures but that could have left doubt about the presence of a true signal abnormality. There was, however, marked suppression of the CSF flow-void phenomenon and increased signal from flowing blood, particularly in the cortical veins and dural sinuses. Because of this, the use of additional pulse sequences in which these motion-compensating gradients were not used was necessary under certain clinical circumstances. We conclude that, with these motion-compensating gradients, artifacts are reduced or eliminated, and a marked improvement in image quality can be obtained without the need for cardiac gating.

摘要

为了确定额外的梯度脉冲对抑制常规T2加权脑磁共振成像中脑干、颞叶和基底节区域常见的运动伪影的效果,对60名患者分别在施加和不施加用于补偿运动诱导相位误差的额外梯度脉冲的情况下进行了检查。进行了两项对比研究:(1)在50名患者中,将运动伪影抑制技术(MAST)与单次回波磁共振检查进行比较;(2)在10名患者中,将MAST技术与对称双回波序列的第二个回波进行比较。在第一项研究中,39名患者在1.5T场强下接受检查,11名患者在0.5T场强下使用相同的脉冲序列进行检查。我们发现,在高场强系统的39名患者中,有24名患者的图像质量因MAST而得到显著改善,在中场强系统的11名患者中,有2名患者的图像质量得到显著改善。在第二项研究中,我们发现,在10名患者中的4名患者中,MAST导致的伪影抑制效果甚至比单纯的偶数回波重聚还要好。使用MAST后,不仅掩盖正常结构的伪影被消除了,而且原本可能让人对真正信号异常的存在产生怀疑的伪影也被消除了。然而,脑脊液流空现象受到明显抑制,血流信号增强,尤其是在皮质静脉和硬脑膜窦中。因此,在某些临床情况下,有必要使用不包含这些运动补偿梯度的额外脉冲序列。我们得出结论,通过这些运动补偿梯度,可以减少或消除伪影,无需心脏门控即可显著提高图像质量。

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