在 1.5T 磁共振成像中使用单向运动探测梯度的弥散加权磁共振神经成像技术评估腰椎神经根。

Journal of the Korean Society of Radiology Pub Date : 2024-05-01 Epub Date: 2024-03-08 DOI:10.3348/jksr.2023.0052
Na Yeon Yoon, Doo Hoe Ha, Sang Min Lee, Hye Jung Choi
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引用次数: 0

摘要

目的:最近的研究证明了弥散加权磁共振神经成像(DW MRN)在评估神经根方面的实用性。本研究旨在评估在 1.5T 磁共振成像中使用单向运动探测梯度(MPG)的 DW MRN 对腰椎神经根的实用性:回顾性分析了 64 张使用前胸单向运动探测梯度(MPG)的 DW MRN 腰椎 MRI 扫描图像。使用 T2 加权成像(T2WI)、对比增强 T1 加权成像(CE T1WI)和 DW MRN 评估了从 L3 到 S1 的 512 条腰椎神经根的任何变化,并进行了一致性和相关性分析:T2WI显示78处神经根受压,CE T1WI显示52处神经根增强。67 个神经根在 DW MRN 上显示肿胀和高密度。共有 42 个神经根在 CE T1WI 和 DW MRN 序列中显示出变化。DW MRN与CE T1WI以及DW MRN与T2WI(κ = 0.59-0.65,ρ = 0.600-0.653)之间观察到中度至高度一致和中度正相关:结论:带有单向前后位MPG的DW MRN有助于评估脊神经根中与神经炎相关的变化,可作为钆CE成像的补充或替代序列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diffusion-Weighted MR Neurography with Unidirectional Motion-Probing Gradient to Evaluate Lumbar Nerve Roots at 1.5T MR.

Purpose: Recent studies have demonstrated the usefulness of diffusion-weighted MR neurography (DW MRN) for assessing nerve roots. This study aimed to evaluate the utility of DW MRN with a unidirectional motion-probing gradient (MPG) for the lumbar nerve roots at 1.5T MR.

Materials and methods: Sixty-four lumbar spine MRI scans with DW MRN using anteroposterior unidirectional MPG were retrospectively analyzed. Any changes in the 512 lumbar spinal nerve roots from L3 to S1 were evaluated using T2-weighted imaging (T2WI), contrast-enhanced T1-weighted imaging (CE T1WI), and DW MRN, with agreement and correlation analysis.

Results: T2WI revealed compression of 78 nerve roots, and CE T1WI revealed 52 instances of nerve root enhancement. Sixty-seven nerve roots showed swelling and hyperintensity on DW MRN. A total of 42 nerve roots showed changes in the CE T1WI and DW MRN sequences. Moderate to substantial agreement and moderate positive correlation were observed between DW MRN and CE T1WI, as well as DW MRN and T2WI (κ = 0.59-0.65, ρ = 0.600-0.653).

Conclusion: DW MRN with unidirectional anteroposterior MPG can help evaluate neuritis-related changes in spinal nerve roots and could serve as a sequence capable of complementing or substituting gadolinium CE imaging.

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