Vanderbilt University Institute of Imaging Science, Vanderbilt University, Nashville, TN, USA.
Department of Biomedical Engineering, Vanderbilt University, Nashville, TN, USA.
Neuroinformatics. 2017 Oct;15(4):321-331. doi: 10.1007/s12021-017-9334-0.
We describe the development of the first digital atlas of the normal squirrel monkey brain and present the resulting product, VALiDATe29. The VALiDATe29 atlas is based on multiple types of magnetic resonance imaging (MRI) contrast acquired on 29 squirrel monkeys, and is created using unbiased, nonlinear registration techniques, resulting in a population-averaged stereotaxic coordinate system. The atlas consists of multiple anatomical templates (proton density, T1, and T2* weighted), diffusion MRI templates (fractional anisotropy and mean diffusivity), and ex vivo templates (fractional anisotropy and a structural MRI). In addition, the templates are combined with histologically defined cortical labels, and diffusion tractography defined white matter labels. The combination of intensity templates and image segmentations make this atlas suitable for the fundamental atlas applications of spatial normalization and label propagation. Together, this atlas facilitates 3D anatomical localization and region of interest delineation, and enables comparisons of experimental data across different subjects or across different experimental conditions. This article describes the atlas creation and its contents, and demonstrates the use of the VALiDATe29 atlas in typical applications. The atlas is freely available to the scientific community.
我们描述了第一个正常松鼠猴大脑数字图谱的开发,并展示了由此产生的产物 VALiDATe29。VALiDATe29 图谱基于 29 只松鼠猴获取的多种类型的磁共振成像(MRI)对比,使用无偏非线性配准技术创建,产生了群体平均的立体定向坐标系统。图谱由多个解剖模板(质子密度、T1 和 T2*加权)、扩散 MRI 模板(各向异性分数和平均扩散率)和离体模板(各向异性分数和结构 MRI)组成。此外,这些模板与组织学定义的皮质标签和扩散轨迹定义的白质标签相结合。强度模板和图像分割的结合使这个图谱适合于空间归一化和标签传播等基本图谱应用。总的来说,这个图谱有助于进行 3D 解剖定位和感兴趣区域描绘,并能够在不同的实验对象或不同的实验条件之间进行实验数据的比较。本文描述了图谱的创建及其内容,并展示了 VALiDATe29 图谱在典型应用中的使用。这个图谱可供科学界免费使用。