Division of Neurology, Department of Medicine, University of British Columbia, Vancouver, BC, Canada.
Department of Physics and Astronomy, University of British Columbia, Vancouver, BC, Canada.
Magn Reson Med. 2017 Oct;78(4):1482-1487. doi: 10.1002/mrm.26551. Epub 2016 Nov 9.
PURPOSE: Myelin water imaging (MWI) using multi-echo T relaxation is a quantitative MRI technique that can be used as an in vivo biomarker for myelin in the central nervous system. MWI using a multi-echo spin echo sequence currently takes more than 20 min to acquire eight axial slices (5 mm thickness) in the cervical spinal cord, making spinal cord MWI impractical for implementation in clinical studies. METHODS: In this study, an accelerated gradient and spin echo sequence (GRASE), previously validated for brain MWI, was adapted for spinal cord MWI. Ten healthy volunteers were scanned with the GRASE sequence (acquisition time 8.5 min) and compared with the multi-echo spin echo sequence (acquisition time 23.5 min). RESULTS: Using region of interest analysis, myelin estimates obtained from the two sequences were found to be in good agreement (mean difference = -0.0092, 95% confidence interval = - 0.0092 ± 0.061; regression slope = 1.01, ρ = 0.9). MWI using GRASE was shown to be highly reproducible with an average coefficient of variation of 6.1%. CONCLUSION: The results from this study show that MWI can be performed in the cervical spinal cord in less than 10 min, allowing for practical implementation in multimodal clinical studies. Magn Reson Med 78:1482-1487, 2017. © 2016 International Society for Magnetic Resonance in Medicine.
目的:多回波 T 弛豫的髓鞘水成像(MWI)是一种定量 MRI 技术,可作为中枢神经系统髓鞘的体内生物标志物。目前,使用多回波自旋回波序列的 MWI 需要超过 20 分钟才能采集 8 个颈椎轴位切片(5mm 厚度),使得脊髓 MWI 在临床研究中不切实际。
方法:在这项研究中,先前经过验证的大脑 MWI 的加速梯度和自旋回波序列(GRASE)被改编用于脊髓 MWI。10 名健康志愿者接受了 GRASE 序列(采集时间 8.5 分钟)和多回波自旋回波序列(采集时间 23.5 分钟)的扫描。
结果:使用感兴趣区域分析,发现两种序列获得的髓鞘估计值非常吻合(平均差异= - 0.0092,95%置信区间= - 0.0092 ± 0.061;回归斜率= 1.01,ρ= 0.9)。GRASE 上的 MWI 显示出高度的可重复性,平均变异系数为 6.1%。
结论:这项研究的结果表明,MWI 可以在不到 10 分钟的时间内在颈椎脊髓内进行,从而可以在多模态临床研究中实际应用。磁共振医学杂志 78:1482-1487,2017。© 2016 国际磁共振学会。
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