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用于帕金森病脑深部刺激的丘脑底核及其相邻结构的三维计算图谱。

Computed three-dimensional atlas of subthalamic nucleus and its adjacent structures for deep brain stimulation in Parkinson's disease.

作者信息

Nakano Naoki, Taneda Mamoru, Watanabe Akira, Kato Amami

机构信息

Department of Neurosurgery, Faculty of Medicine, Kinki University, 377-2 Ohno-higashi, Osaka-sayama, Osaka 589-8511, Japan.

出版信息

ISRN Neurol. 2012;2012:592678. doi: 10.5402/2012/592678. Epub 2012 Jan 12.

Abstract

Background. Deep brain stimulation (DBS) of the subthalamic nucleus (STN) is one of the standard surgical treatments for advanced Parkinson's disease. However, it has been difficult to accurately localize the stimulated contact area of the electrode in the subthalamic nucleus and its adjacent structures using a two-dimensional atlas. The goal of this study is to verify the real and detailed localization of stimulated contact of the DBS electrode therapeutically inserted into the STN and its adjacent structures using a novel computed three-dimensional atlas built by a personal computer. Method. A three-dimensional atlas of the STN and its adjacent structures (3D-Subthalamus atlas) was elaborated on the basis of sagittal slices from the Schaltenbrand and Wahren stereotactic atlas on a personal computer utilizing a commercial software. The electrode inserted into the STN and its adjacent structures was superimposed on our 3D-Subthalamus atlas based on intraoperative third ventriculography in 11 cases. Findings. Accurate localization of the DBS electrode was identified using the 3D-Subthalamus atlas, and its clinical efficacy of the electrode stimulation was investigated in all 11 cases. Conclusion. This study demonstrates that the 3D-Subthalamus atlas is a useful tool for understanding the morphology of deep brain structures and for the precise anatomical position findings of the stimulated contact of a DBS electrode. The clinical analysis using the 3D atlas supports the contention that the stimulation of structures adjacent to the STN, particularly the zona incerta or the field of Forel H, is as effective as the stimulation of the STN itself for the treatment of advanced Parkinson's disease.

摘要

背景。丘脑底核(STN)的深部脑刺激(DBS)是晚期帕金森病的标准外科治疗方法之一。然而,使用二维图谱难以准确确定电极在丘脑底核及其相邻结构中的刺激接触区域。本研究的目的是使用个人计算机构建的新型三维图谱来验证治疗性插入丘脑底核及其相邻结构的DBS电极刺激接触的真实和详细定位。方法。利用商业软件,在个人计算机上基于Schaltenbrand和Wahren立体定向图谱的矢状切片制作了丘脑底核及其相邻结构的三维图谱(3D-丘脑底核图谱)。基于术中第三脑室造影,将插入丘脑底核及其相邻结构的电极叠加在我们的3D-丘脑底核图谱上,共11例。结果。使用3D-丘脑底核图谱确定了DBS电极的准确定位,并对所有11例患者的电极刺激临床疗效进行了研究。结论。本研究表明,3D-丘脑底核图谱是理解深部脑结构形态以及确定DBS电极刺激接触精确解剖位置的有用工具。使用三维图谱进行的临床分析支持了这样的观点,即刺激丘脑底核相邻结构,特别是未定带或Forel H区,对晚期帕金森病的治疗效果与刺激丘脑底核本身一样有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1a0/3265216/b9d8f369adb0/NEUROLOGY2012-592678.001.jpg

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