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创建基于计算机的人类基底节和丘脑的 3D MRI 融合图谱。

Creation of Computerized 3D MRI-Integrated Atlases of the Human Basal Ganglia and Thalamus.

机构信息

Cone Laboratory for Research in Neurosurgery, Montreal Neurological Institute, McGill University Montreal, QC, Canada.

出版信息

Front Syst Neurosci. 2011 Sep 6;5:71. doi: 10.3389/fnsys.2011.00071. eCollection 2011.

Abstract

Functional brain imaging and neurosurgery in subcortical areas often requires visualization of brain nuclei beyond the resolution of current magnetic resonance imaging (MRI) methods. We present techniques used to create: (1) a lower resolution 3D atlas, based on the Schaltenbrand and Wahren print atlas, which was integrated into a stereotactic neurosurgery planning and visualization platform (VIPER); and (2) a higher resolution 3D atlas derived from a single set of manually segmented histological slices containing nuclei of the basal ganglia, thalamus, basal forebrain, and medial temporal lobe. Both atlases were integrated to a canonical MRI (Colin27) from a young male participant by manually identifying homologous landmarks. The lower resolution atlas was then warped to fit the MRI based on the identified landmarks. A pseudo-MRI representation of the high-resolution atlas was created, and a non-linear transformation was calculated in order to match the atlas to the template MRI. The atlas can then be warped to match the anatomy of Parkinson's disease surgical candidates by using 3D automated non-linear deformation methods. By way of functional validation of the atlas, the location of the sensory thalamus was correlated with stereotactic intraoperative physiological data. The position of subthalamic electrode positions in patients with Parkinson's disease was also evaluated in the atlas-integrated MRI space. Finally, probabilistic maps of subthalamic stimulation electrodes were developed, in order to allow group analysis of the location of contacts associated with the best motor outcomes. We have therefore developed, and are continuing to validate, a high-resolution computerized MRI-integrated 3D histological atlas, which is useful in functional neurosurgery, and for functional and anatomical studies of the human basal ganglia, thalamus, and basal forebrain.

摘要

皮质下脑区的功能脑成像和神经外科通常需要可视化当前磁共振成像 (MRI) 方法无法分辨的脑核。我们介绍了用于创建以下内容的技术:(1)基于 Schaltenbrand 和 Wahren 印刷图谱的低分辨率 3D 图谱,该图谱已集成到立体定向神经外科规划和可视化平台 (VIPER) 中;(2)源自一组手动分割的包含基底节、丘脑、基底前脑和内侧颞叶核的组织切片的高分辨率 3D 图谱。这两个图谱都通过手动识别同源标志与来自年轻男性参与者的标准 MRI (Colin27) 进行了整合。然后,根据识别出的标志将低分辨率图谱变形以适应 MRI。创建了高分辨率图谱的伪 MRI 表示形式,并计算了非线性变换以将图谱与模板 MRI 匹配。然后可以使用 3D 自动非线性变形方法通过该图谱来匹配帕金森病手术候选者的解剖结构。作为对图谱的功能验证,感觉丘脑的位置与立体定向术中生理数据相关联。还在图谱集成 MRI 空间中评估了帕金森病患者的丘脑下电极位置。最后,开发了丘脑下刺激电极的概率图,以便能够对与最佳运动结果相关联的接触点的位置进行组分析。因此,我们已经开发并正在继续验证一种高分辨率计算机化的 MRI 集成 3D 组织学图谱,该图谱在功能神经外科以及人类基底节、丘脑和基底前脑的功能和解剖研究中非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f502/3167101/bbfb67df55a0/fnsys-05-00071-g001.jpg

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