Melhem E R, Benson M L, Beauchamp N J, Lee R R
Department of Radiology, Boston (Mass) University Medical Center 02167, USA.
AJNR Am J Neuroradiol. 1996 Apr;17(4):705-11.
To compare a three-dimensional Fourier transform (3DFT) gradient-echo pulse sequence with magnetization transfer at a short echo time against standard 3DFT gradient-echo technique in the evaluation of cervical spondylosis, specifically addressing the effects of motion and susceptibility artifacts on the dimensions of the neural foramina and contrast at the cerebrospinal fluid (CSF)-spinal cord interface.
Ten patients with clinically suspected cervical spondylosis were examined with axial MR imaging using both our standard 3DFT gradient-echo sequence and a 3DFT gradient-echo sequence with a short echo time plus magnetization transfer. Two neuroradiologists measured the transverse dimensions of 22 diseased neural foramina and graded the contrast at the CSF-spinal cord interface.
Sixteen of 22 affected neural foramina were larger in the transverse dimension when the magnetization transfer technique was used than when the standard 3DFT gradient-echo sequence was used. In 9 of 10 patients superior contrast was seen at the CSF-spinal cord interface on images obtained with the magnetization transfer technique.
In the cervical spine, 3DFT gradient-echo imaging with magnetization transfer improves contrast and sharpness of the CSF-spinal cord interface at short echo times. This results in less exaggeration of the neural foraminal stenosis as compared with that seen with standard 3DFT gradient-echo techniques owing to the diminished effects of motion and susceptibility artifacts.
比较短回波时间下具有磁化传递的三维傅里叶变换(3DFT)梯度回波脉冲序列与标准3DFT梯度回波技术在评估颈椎病中的效果,具体探讨运动和磁化率伪影对神经孔尺寸以及脑脊液(CSF)-脊髓界面对比度的影响。
对10例临床疑似颈椎病的患者进行轴向磁共振成像检查,使用我们的标准3DFT梯度回波序列以及短回波时间加磁化传递的3DFT梯度回波序列。两名神经放射科医生测量了22个患病神经孔的横向尺寸,并对CSF-脊髓界面的对比度进行分级。
在使用磁化传递技术时,22个受影响的神经孔中有16个的横向尺寸比使用标准3DFT梯度回波序列时更大。在10例患者中的9例中,使用磁化传递技术获得的图像在CSF-脊髓界面处显示出更好的对比度。
在颈椎中,具有磁化传递的3DFT梯度回波成像在短回波时间下可改善CSF-脊髓界面的对比度和清晰度。由于运动和磁化率伪影的影响减小,与标准3DFT梯度回波技术相比,神经孔狭窄的夸大程度较小。