4.5 Article

Neuroanatomical phenotyping of the mouse brain with three-dimensional autofluorescence imaging

期刊

PHYSIOLOGICAL GENOMICS
卷 44, 期 15, 页码 778-785

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/physiolgenomics.00055.2012

关键词

optical projection tomography; phenotype; whisker barrel; sexual dimorphism

资金

  1. Ontario Institute for Cancer Research
  2. Government of Ontario

向作者/读者索取更多资源

Gleave JA, Wong MD, Dazai J, Altaf M, Henkelman RM, Lerch JP, Nieman BJ. Neuroanatomical phenotyping of the mouse brain with three-dimensional autofluorescence imaging. Physiol Genomics 44: 778-785, 2012. First published June 19, 2012; doi:10.1152/physiolgenomics.00055.2012.-The structural organization of the brain is important for normal brain function and is critical to understand in order to evaluate changes that occur during disease processes. Three-dimensional (3D) imaging of the mouse brain is necessary to appreciate the spatial context of structures within the brain. In addition, the small scale of many brain structures necessitates resolution at the similar to 10 mu m scale. 3D optical imaging techniques, such as optical projection tomography (OPT), have the ability to image intact large specimens (1 cm(3)) with similar to 5 mu m resolution. In this work we assessed the potential of autofluorescence optical imaging methods, and specifically OPT, for phenotyping the mouse brain. We found that both specimen size and fixation methods affected the quality of the OPT image. Based on these findings we developed a specimen preparation method to improve the images. Using this method we assessed the potential of optical imaging for phenotyping. Phenotypic differences between wild-type male and female mice were quantified using computer-automated methods. We found that optical imaging of the endogenous autofluorescence in the mouse brain allows for 3D characterization of neuroanatomy and detailed analysis of brain phenotypes. This will be a powerful tool for understanding mouse models of disease and development and is a technology that fits easily within the workflow of biology and neuroscience labs.

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