Division of Humanities and Social Sciences, California Institute of Technology, Pasadena, CA 91125, USA.
Computation and Neural Systems Program, California Institute of Technology, Pasadena, CA 91125, USA.
Sci Data. 2018 Apr 17;5:180063. doi: 10.1038/sdata.2018.63.
Recent advances in magnetic resonance imaging methods, including data acquisition, pre-processing and analysis, have benefited research on the contributions of subcortical brain nuclei to human cognition and behavior. At the same time, these developments have led to an increasing need for a high-resolution probabilistic in vivo anatomical atlas of subcortical nuclei. In order to address this need, we constructed high spatial resolution, three-dimensional templates, using high-accuracy diffeomorphic registration of T- and T- weighted structural images from 168 typical adults between 22 and 35 years old. In these templates, many tissue boundaries are clearly visible, which would otherwise be impossible to delineate in data from individual studies. The resulting delineations of subcortical nuclei complement current histology-based atlases. We further created a companion library of software tools for atlas development, to offer an open and evolving resource for the creation of a crowd-sourced in vivo probabilistic anatomical atlas of the human brain.
近年来,磁共振成像方法的进步,包括数据采集、预处理和分析,都有益于研究皮质下脑核对于人类认知和行为的贡献。与此同时,这些发展也导致了对高分辨率概率活体皮质下核解剖图谱的需求不断增加。为了满足这一需求,我们使用高精度的变形配准技术,对来自 168 名 22 至 35 岁的典型成年人的 T 加权和 T 加权结构图像进行了高空间分辨率的三维模板构建。在这些模板中,许多组织边界清晰可见,而在个别研究的数据中,这些边界是无法描绘的。由此产生的皮质下核的描绘补充了当前基于组织学的图谱。我们进一步创建了一个图谱开发软件工具库,为创建基于人群的活体人类大脑概率解剖图谱提供一个开放和不断发展的资源。