Department of Radiology, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Neuroimage. 2011 Jan 1;54(1):80-9. doi: 10.1016/j.neuroimage.2010.07.043. Epub 2010 Jul 23.
The advent of mammalian gene engineering and genetically modified mouse models has led to renewed interest in developing resources for referencing and quantitative analysis of mouse brain anatomy. In this study, we used diffusion tensor imaging (DTI) for quantitative characterization of anatomical phenotypes in the developing mouse brain. As an anatomical reference for neuroscience research using mouse models, this paper presents DTI based atlases of ex vivo C57BL/6 mouse brains at several developmental stages. The atlas complements existing histology and MRI-based atlases by providing users access to three-dimensional, high-resolution images of the developing mouse brain, with distinct tissue contrasts and segmentations of major gray matter and white matter structures. The usefulness of the atlas and database was demonstrated by quantitative measurements of the development of major gray matter and white matter structures. Population average images of the mouse brain at several postnatal stages were created using large deformation diffeomorphic metric mapping and their anatomical variations were quantitatively characterized. The atlas and database enhance our ability to examine the neuroanatomy in normal or genetically engineered mouse strains and mouse models of neurological diseases.
哺乳动物基因工程和基因修饰小鼠模型的出现,使得人们重新产生了开发用于参考和定量分析小鼠大脑解剖结构的资源的兴趣。在这项研究中,我们使用弥散张量成像(DTI)对发育中的小鼠大脑的解剖表型进行定量描述。作为使用小鼠模型进行神经科学研究的解剖参考,本文介绍了基于 DTI 的几个发育阶段的 C57BL/6 小鼠大脑的离体图谱。该图谱通过提供对发育中小鼠大脑的三维、高分辨率图像的访问,补充了现有的组织学和基于 MRI 的图谱,这些图像具有不同的组织对比度和主要灰质和白质结构的分割。通过对主要灰质和白质结构发育的定量测量,展示了图谱和数据库的有用性。使用大变形差异度量映射创建了几个出生后阶段的小鼠大脑的群体平均图像,并对其解剖变异进行了定量描述。该图谱和数据库增强了我们检查正常或基因工程小鼠品系以及神经疾病小鼠模型中的神经解剖结构的能力。