首页> 外文期刊>AJNR. American journal of neuroradiology >Localization of the subthalamic nucleus: optimization with susceptibility-weighted phase MR imaging.
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Localization of the subthalamic nucleus: optimization with susceptibility-weighted phase MR imaging.

机译:丘脑下核的定位:磁化加权相磁共振成像的优化。

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BACKGROUND AND PURPOSE: On clinical MR images, the subthalamic nuclei (STN) are poorly delineated from adjacent structures, impeding safe direct targeting for placement of electrodes in the treatment of Parkinson disease. Susceptibility-weighted MR phase imaging offers improved contrast and spatial resolution at reduced imaging times relative to clinically used T2-weighted spin-echo imaging for STN visualization. Our purpose was to assess STN visibility by using phase imaging, comparing phase and magnitude images obtained concurrently by using susceptibility-weighted imaging (SWI). The goal was to identify an efficient scanning protocol for high-quality phase images of STN. MATERIALS AND METHODS: Seventy-eight SWI scans were acquired at 3T by using different TEs and acceleration factors. STN visibility and delimitation from adjacent structures were scored from 0 (not interpretable) to 5 (excellent). Regression analyses assessed the relationship of STN visibility to scanning parameters RESULTS: STN were identified at all studied TEs on phase images. Visibility and delimitation of STN were consistently superior on phase images compared with magnitude images. Good visualization (score of >or=4) of STN on phase imaging occurred at a mean TE of 20.0 ms and a sensitivity encoding (SENSE) of 1.40. Scores of STN visualization on phase images were dependent on SENSE (P < .002) and TE (P < .031). Good delimitation of the STN on phase imaging occurred at a mean TE of 21.6 ms and a SENSE of 1.36. CONCLUSIONS: Visualization and delimitation of STN was superior on phase images and was achieved at 3T in <2.5 minutes. A TE of 20 ms and an acceleration factor of
机译:背景和目的:在临床MR图像上,丘脑底核(STN)与相邻结构的轮廓很差,从而阻碍了在治疗帕金森氏病时安全地直接靶向放置电极。相对于用于STN可视化的临床上使用的T2加权自旋回波成像,磁化率加权MR相成像可在减少成像时间的情况下提高对比度和空间分辨率。我们的目的是通过使用相位成像来评估STN可见性,比较使用磁化加权成像(SWI)同时获得的相位和幅值图像。目的是为STN的高质量相位图像确定有效的扫描协议。材料与方法:通过使用不同的TE和加速因子,在3T下进行了78次SWI扫描。 STN可见性和与相邻结构的界限的评分为0(无法解释)至5(优秀)。回归分析评估了STN可见性与扫描参数之间的关系。结果:在所有研究过的TE上,在相位图像上都识别出了STN。与幅值图像相比,STN的可见性和定界在相位图像上始终是优越的。 STN在20.0 ms的平均TE和1.40的灵敏度编码(SENSE)上发生了良好的STN可视化(得分≥4)。相图像上STN可视化的分数取决于SENSE(P <.002)和TE(P <.031)。 STN在相位成像上的定界很好,平均TE为21.6 ms,SENSE为1.36。结论:STN的可视化和定界在相位图像上是优越的,并且在3T时不到2.5分钟即可实现。建议使用20 ms的TE和加速度因子<或= 1.5来可视化STN。

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