Tustison Nicholas James, Chen Min, Kronman Fae N, Duda Jeffrey T, Gamlin Clare, Tustison Mia G, Kunst Michael, Dalley Rachel, Sorensen Staci A, Wang Quanxin, Ng Lydia, Kim Yongsoo, Gee James C
bioRxiv. 2024 May 1:2024.05.01.592056. doi: 10.1101/2024.05.01.592056.
Precision mapping techniques coupled with high resolution image acquisition of the mouse brain permit the study of the spatial organization of gene expression and their mutual interaction for a comprehensive view of salient structural/functional relationships. Such research is facilitated by standardized anatomical coordinate systems, such as the well-known Allen Common Coordinate Framework (AllenCCFv3), and the ability to spatially map to such standardized spaces. The Advanced Normalization Tools Ecosystem is a comprehensive open-source software toolkit for generalized quantitative imaging with applicability to multiple organ systems, modalities, and animal species. Herein, we illustrate the utility of ANTsX for generating precision spatial mappings of the mouse brain and potential subsequent quantitation. We describe ANTsX-based workflows for mapping domain-specific image data to AllenCCFv3 accounting for common artefacts and other confounds. Novel contributions include ANTsX functionality for velocity flow-based mapping spanning the spatiotemporal domain of a longitudinal trajectory which we apply to the Developmental Common Coordinate Framework. Additionally, we present an automated structural morphological pipeline for determining volumetric and cortical thickness measurements analogous to the well-utilized ANTsX pipeline for human neuroanatomical structural morphology which illustrates a general open-source framework for tailored brain parcellations.
精确映射技术与小鼠大脑的高分辨率图像采集相结合,有助于研究基因表达的空间组织及其相互作用,从而全面了解显著的结构/功能关系。标准化的解剖坐标系统,如著名的艾伦通用坐标框架(AllenCCFv3),以及将空间映射到此类标准化空间的能力,推动了此类研究。高级归一化工具生态系统是一个全面的开源软件工具包,用于广义定量成像,适用于多个器官系统、成像模态和动物物种。在此,我们展示了ANTsX在生成小鼠大脑精确空间映射以及后续潜在定量分析方面的效用。我们描述了基于ANTsX的工作流程,用于将特定领域的图像数据映射到AllenCCFv3,并考虑常见伪影和其他混杂因素。新的贡献包括ANTsX基于速度流的映射功能,该功能跨越纵向轨迹的时空域,我们将其应用于发育通用坐标框架。此外,我们提出了一种自动结构形态学管道,用于确定体积和皮质厚度测量值,类似于用于人类神经解剖结构形态学的广泛使用的ANTsX管道,该管道展示了一个用于定制脑部分割的通用开源框架。