Department of Diagnostic Imaging and Nuclear Medicine, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Human Brain Research Center, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Mov Disord. 2021 Apr;36(4):874-882. doi: 10.1002/mds.28417. Epub 2020 Dec 14.
Neuromelanin-sensitive magnetic resonance imaging techniques have been developed but currently require relatively long scan times. The aim of this study was to assess the ability of black-blood delay alternating with nutation for tailored excitation-prepared T1-weighted variable flip angle turbo spin echo (DANTE T1-SPACE), which provides relatively high resolution with a short scan time, to visualize neuromelanin in the substantia nigra pars compacta (SNpc).
Participants comprised 49 healthy controls and 25 patients with Parkinson's disease (PD). Contrast ratios of SNpc and hyperintense SNpc areas, which show pixels brighter than thresholds, were assessed between DANTE T1-SPACE and T1-SPACE in healthy controls. To evaluate the diagnostic ability of DANTE T1-SPACE, the contrast ratios and hyperintense areas were compared between healthy and PD groups, and receiver operating characteristic analyses were performed. We also compared areas under the curve (AUCs) between DANTE T1-SPACE and the previously reported gradient echo neuromelanin (GRE-NM) imaging. Each analysis was performed using original images in native space and images transformed into Montreal Neurological Institute space. Values of P < 0.05 were considered significant.
DANTE T1-SPACE showed significantly higher contrast ratios and larger hyperintense areas than T1-SPACE. On DANTE T1-SPACE, healthy controls showed significantly higher contrast ratios and larger hyperintense areas than patients with PD. Hyperintense areas in native space analysis achieved the best AUC (0.94). DANTE T1-SPACE showed AUCs as high as those of GRE-NM.
DANTE T1-SPACE successfully visualized neuromelanin of the SNpc and showed potential for evaluating PD. © 2020 The Authors. Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
已经开发出了神经黑色素敏感磁共振成像技术,但目前这些技术需要相对较长的扫描时间。本研究的目的是评估黑血延迟交替反转进动准备 T1 加权可变翻转角 turbo 自旋回波(DANTE T1-SPACE)的能力,该技术具有相对较短的扫描时间和较高的分辨率,可用于可视化黑质致密部(SNpc)中的神经黑色素。
参与者包括 49 名健康对照者和 25 名帕金森病(PD)患者。在健康对照者中,评估了 DANTE T1-SPACE 和 T1-SPACE 之间 SNpc 和高信号 SNpc 区域的对比率,高信号 SNpc 区域显示像素比阈值亮。为了评估 DANTE T1-SPACE 的诊断能力,比较了健康组和 PD 组之间的对比率和高信号区,并进行了受试者工作特征分析。我们还比较了 DANTE T1-SPACE 和先前报道的梯度回波神经黑色素(GRE-NM)成像之间的曲线下面积(AUC)。每项分析均使用原始图像和转换为蒙特利尔神经学研究所空间的图像进行。P 值<0.05 被认为具有统计学意义。
DANTE T1-SPACE 显示的对比率和高信号区明显高于 T1-SPACE。在 DANTE T1-SPACE 上,健康对照者的对比率和高信号区明显高于 PD 患者。原始空间分析中的高信号区获得了最佳 AUC(0.94)。DANTE T1-SPACE 的 AUC 与 GRE-NM 相当。
DANTE T1-SPACE 成功地可视化了 SNpc 的神经黑色素,并显示出评估 PD 的潜力。 © 2020 作者。运动障碍由 Wiley 期刊公司代表国际帕金森病和运动障碍学会出版。