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绵羊脑高分辨率磁共振成像3D立体定向图谱的计算。

Computation of a high-resolution MRI 3D stereotaxic atlas of the sheep brain.

作者信息

Ella Arsène, Delgadillo José A, Chemineau Philippe, Keller Matthieu

机构信息

INRA, UMR 85 Physiologie de la Reproduction et des Comportements, F-37380, Nouzilly, France.

CNRS, UMR 7247, F-37380, Nouzilly, France.

出版信息

J Comp Neurol. 2017 Feb 15;525(3):676-692. doi: 10.1002/cne.24079. Epub 2016 Aug 9.

DOI:10.1002/cne.24079
PMID:27503489
Abstract

The sheep model was first used in the fields of animal reproduction and veterinary sciences and then was utilized in fundamental and preclinical studies. For more than a decade, magnetic resonance (MR) studies performed on this model have been increasingly reported, especially in the field of neuroscience. To contribute to MR translational neuroscience research, a brain template and an atlas are necessary. We have recently generated the first complete T1-weighted (T1W) and T2W MR population average images (or templates) of in vivo sheep brains. In this study, we 1) defined a 3D stereotaxic coordinate system for previously established in vivo population average templates; 2) used deformation fields obtained during optimized nonlinear registrations to compute nonlinear tissues or prior probability maps (nlTPMs) of cerebrospinal fluid (CSF), gray matter (GM), and white matter (WM) tissues; 3) delineated 25 external and 28 internal sheep brain structures by segmenting both templates and nlTPMs; and 4) annotated and labeled these structures using an existing histological atlas. We built a quality high-resolution 3D atlas of average in vivo sheep brains linked to a reference stereotaxic space. The atlas and nlTPMs, associated with previously computed T1W and T2W in vivo sheep brain templates and nlTPMs, provide a complete set of imaging space that are able to be imported into other imaging software programs and could be used as standardized tools for neuroimaging studies or other neuroscience methods, such as image registration, image segmentation, identification of brain structures, implementation of recording devices, or neuronavigation. J. Comp. Neurol. 525:676-692, 2017. © 2016 Wiley Periodicals, Inc.

摘要

绵羊模型最初应用于动物繁殖和兽医学领域,随后被用于基础研究和临床前研究。十多年来,越来越多关于该模型的磁共振(MR)研究被报道,尤其是在神经科学领域。为推动MR转化神经科学研究,脑模板和图谱是必要的。我们最近生成了首个完整的活体绵羊脑T1加权(T1W)和T2加权(T2W)MR群体平均图像(即模板)。在本研究中,我们:1)为先前建立的活体群体平均模板定义了一个三维立体定向坐标系;2)使用优化的非线性配准过程中获得的变形场来计算脑脊液(CSF)、灰质(GM)和白质(WM)组织的非线性组织或先验概率图(nlTPM);3)通过分割模板和nlTPM来描绘25个外部和28个内部绵羊脑结构;4)使用现有的组织学图谱对这些结构进行注释和标记。我们构建了一个与参考立体定向空间相关联的高质量高分辨率活体绵羊脑平均三维图谱。该图谱和nlTPM,与先前计算的活体绵羊脑T1W和T2W模板及nlTPM相关联,提供了一套完整的成像空间,能够导入到其他成像软件程序中,并可作为神经成像研究或其他神经科学方法(如图像配准、图像分割、脑结构识别、记录设备的实施或神经导航)的标准化工具。《比较神经学杂志》525:676 - 692, 2017。© 2016威利期刊公司

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