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基于磁共振成像的丘脑底核电极定位

Localization of electrodes in the subthalamic nucleus on magnetic resonance imaging.

作者信息

Pollo Claudio, Vingerhoets François, Pralong Etienne, Ghika Joseph, Maeder Philippe, Meuli Reto, Thiran Jean-Philippe, Villemure Jean-Guy

机构信息

Department of Neurosurgery, Neurosurgical Neurophysiology Institute, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland.

出版信息

J Neurosurg. 2007 Jan;106(1):36-44. doi: 10.3171/jns.2007.106.1.36.

Abstract

OBJECT

The authors describe a new method of localizing electrodes on magnetic resonance (MR) images and focus on the positions of both the most efficient contact and the electrode related to the MR imaging target.

METHODS

Thirty-one patients who had undergone bilateral subthalamic nucleus (STN) deep brain stimulation (DBS) were included in this study. Target coordinates were calculated in the anterior commissure-posterior commissure referential. A study of the correlation between the artifact and the related contact allowed one to deduce the contact position from the identification of the distal artifact on MR imaging. The best stimulation point corresponded with the contact resulting in the best Unified Parkinson's Disease Rating Scale (UPDRS) motor score improvement. It was compared (Student t-test) with the dorsal margin of the STN (DM STN), which was determined electrophysiologically. The distance between the target and the electrode was calculated individually in each axis. The best stimulation point was located at anteroposterior -2.34 +/- 1.63 mm, lateral 12.04 +/- 1.62 mm, and vertical -2.57 +/- 1.68 mm. This point was not significantly different from the DM STN (p < 0.05). The postoperative UPDRS motor score was 28.07 +/- 12.16, as opposed to the preoperative score of 46.27 +/- 13.89. The distance between the expected and actual target in the x- and y-axes was 1.34 +/- 1.02 and 1.03 +/- 0.76 mm, respectively. In the z-axis, 39.7% of the distal contacts were located proximal to the target.

CONCLUSIONS

This approach proposed for the localization of the electrodes on MR imaging shows that DBS is most effective in the dorsal and lateral part of the STN and indicates that the DBS electrode can be located more proximally than originally expected because of the caudal brain shift that may occur during the implantation procedure.

摘要

目的

作者描述了一种在磁共振(MR)图像上定位电极的新方法,并着重关注最有效的触点以及与MR成像靶点相关的电极位置。

方法

本研究纳入了31例接受双侧丘脑底核(STN)深部脑刺激(DBS)的患者。靶点坐标在前连合-后连合参考系中计算得出。通过对伪影与相关触点之间相关性的研究,能够根据MR成像上远端伪影的识别来推断触点位置。最佳刺激点对应于能使帕金森病统一评分量表(UPDRS)运动评分改善最明显的触点。将其与通过电生理确定的STN背侧边缘(DM STN)进行比较(Student t检验)。在每个轴向上分别计算靶点与电极之间的距离。最佳刺激点位于前后径-2.34±1.63mm、外侧12.04±1.62mm以及垂直径-2.57±1.68mm处。该点与DM STN无显著差异(p<0.05)。术后UPDRS运动评分为28.07±12.16,术前评分为46.27±13.89。在x轴和y轴上预期靶点与实际靶点之间的距离分别为1.34±1.02mm和1.03±0.76mm。在z轴上,39.7%的远端触点位于靶点近端。

结论

这种在MR成像上定位电极的方法表明,DBS在STN的背侧和外侧部分最为有效,并且表明由于植入过程中可能发生的脑尾侧移位,DBS电极的位置可能比最初预期的更靠近近端。

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