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恒河猴皮层下图谱(SARM)用于神经影像学。

The Subcortical Atlas of the Rhesus Macaque (SARM) for neuroimaging.

机构信息

Centre for Integrative Neurosciences, University of Tübingen, Tübingen, Germany; Max Planck Institute for Biological Cybernetics, Tübingen, Germany; Department of Psychiatry and Psychotherapy, Central Institute of Mental Health, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.

Scientific and Statistical Computing Core, National Institute of Mental Health, Bethesda, USA.

出版信息

Neuroimage. 2021 Jul 15;235:117996. doi: 10.1016/j.neuroimage.2021.117996. Epub 2021 Mar 29.

Abstract

Digitized neuroanatomical atlases that can be overlaid onto functional data are crucial for localizing brain structures and analyzing functional networks identified by neuroimaging techniques. To aid in functional and structural data analysis, we have created a comprehensive parcellation of the rhesus macaque subcortex using a high-resolution ex vivo structural imaging scan. This anatomical scan and its parcellation were warped to the updated NIMH Macaque Template (NMT v2), an in vivo population template, where the parcellation was refined to produce the Subcortical Atlas of the Rhesus Macaque (SARM) with 210 primary regions-of-interest (ROIs). The subcortical parcellation and nomenclature reflect those of the 4 edition of the Rhesus Monkey Brain in Stereotaxic Coordinates (Paxinos et al., in preparation), rather than proposing yet another novel atlas. The primary ROIs are organized across six spatial hierarchical scales from small, fine-grained ROIs to broader composites of multiple ROIs, making the SARM suitable for analysis at different resolutions and allowing broader labeling of functional signals when more accurate localization is not possible. As an example application of this atlas, we have included a functional localizer for the dorsal lateral geniculate (DLG) nucleus in three macaques using a visual flickering checkerboard stimulus, identifying and quantifying significant fMRI activation in this atlas region. The SARM has been made openly available to the neuroimaging community and can easily be used with common MRI data processing software, such as AFNI, where the atlas has been embedded into the software alongside cortical macaque atlases.

摘要

可以叠加到功能数据上的数字化神经解剖图谱对于定位大脑结构和分析神经影像学技术识别的功能网络至关重要。为了辅助功能和结构数据分析,我们使用高分辨率的离体结构成像扫描创建了恒河猴皮层下结构的全面分区。这个解剖图谱及其分区被扭曲到更新的 NIMH 猕猴模板(NMT v2),一个活体群体模板,在那里分区被细化,生成了 210 个主要的兴趣区(ROIs)的皮层下图谱(SARM)。皮层下分区和命名法反映了立体定向坐标中恒河猴脑的第四版(Paxinos 等人,正在准备中),而不是提出另一个新的图谱。主要 ROI 按照六个空间层次尺度组织,从小的、细粒度的 ROI 到多个 ROI 的更广泛组合,使得 SARM 适合在不同分辨率下进行分析,并允许在更准确定位不可能的情况下更广泛地标记功能信号。作为这个图谱的一个应用示例,我们使用视觉闪烁棋盘刺激在三只猕猴中包括了背外侧膝状体(DLG)核的功能定位器,确定并量化了这个图谱区域的显著 fMRI 激活。SARM 已向神经影像学社区公开提供,并且可以轻松地与常见的 MRI 数据处理软件(如 AFNI)一起使用,其中该图谱与皮层猕猴图谱一起嵌入到软件中。

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