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通过同时使用多个沙尔滕布兰德 - 瓦伦脑图谱微系列进行功能神经外科手术中的解剖定位。

Anatomical targeting in functional neurosurgery by the simultaneous use of multiple Schaltenbrand-Wahren brain atlas microseries.

作者信息

Nowinski W L

机构信息

Kent Ridge Digital Labs (KRDL), Singapore.

出版信息

Stereotact Funct Neurosurg. 1998;71(3):103-16. doi: 10.1159/000029654.

Abstract

This paper presents a novel approach for the use of the Atlas for Stereotaxy of the Human Brain by Schaltenbrand and Wahren [Stuttgart, Thieme, 1977] for anatomical targeting in functional neurosurgery. We propose to use simultaneously all three electronic axial, coronal and sagittal mutually coregistered Schaltenbrand-Wahren brain atlas microseries. The printed atlas microseries are digitized, extended to cover both hemispheres, contoured, labeled, organized into atlas volumes, and mutually coregistered. The electronic atlas is interactively registered with the data by using the three-dimensional Talairach proportional grid system transformation, followed up by local warping in the region of interest based on any clearly visible landmarks. The detailed targeting steps for pallidotomy, thalamotomy and subthalamotomy are formulated. The potential of this approach is to increase the accuracy of target definition, to decrease the time of the procedure by reducing the number of microelectrode tracts, and to give an extra degree of confidence to the neurosurgeon. The advantages of the approach and the limitations of the Schaltenbrand-Wahren atlas are discussed.

摘要

本文提出了一种新颖的方法,用于在功能神经外科手术中利用Schaltenbrand和Wahren所著的《人类脑图谱用于立体定向》([斯图加特,蒂姆出版社,1977年])进行解剖定位。我们建议同时使用三个相互配准的电子轴向、冠状和矢状Schaltenbrand-Wahren脑图谱微系列。将印刷版的图谱微系列进行数字化处理,扩展以覆盖两个半球,进行轮廓勾勒、标注、整理成图谱卷册,并相互配准。通过使用三维Talairach比例网格系统变换,将电子图谱与数据进行交互式配准,随后基于任何清晰可见的地标在感兴趣区域进行局部变形。制定了苍白球切开术、丘脑切开术和丘脑底核切开术的详细定位步骤。这种方法的潜力在于提高靶点定义准确性,通过减少微电极束数量来缩短手术时间,并为神经外科医生提供额外的信心。讨论了该方法的优点以及Schaltenbrand-Wahren图谱的局限性。

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