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MusMorph,一个标准化的小鼠形态学数据数据库,用于形态计量学元分析。

MusMorph, a database of standardized mouse morphology data for morphometric meta-analyses.

机构信息

Alberta Children's Hospital Research Institute, University of Calgary, 28 Oki Dr NW, Calgary, AB, T3B 6A8, Canada.

The McCaig Institute for Bone and Joint Health, University of Calgary, 3280 Hospital Dr NW, Calgary, AB, T2N 4Z6, Canada.

出版信息

Sci Data. 2022 May 25;9(1):230. doi: 10.1038/s41597-022-01338-x.

Abstract

Complex morphological traits are the product of many genes with transient or lasting developmental effects that interact in anatomical context. Mouse models are a key resource for disentangling such effects, because they offer myriad tools for manipulating the genome in a controlled environment. Unfortunately, phenotypic data are often obtained using laboratory-specific protocols, resulting in self-contained datasets that are difficult to relate to one another for larger scale analyses. To enable meta-analyses of morphological variation, particularly in the craniofacial complex and brain, we created MusMorph, a database of standardized mouse morphology data spanning numerous genotypes and developmental stages, including E10.5, E11.5, E14.5, E15.5, E18.5, and adulthood. To standardize data collection, we implemented an atlas-based phenotyping pipeline that combines techniques from image registration, deep learning, and morphometrics. Alongside stage-specific atlases, we provide aligned micro-computed tomography images, dense anatomical landmarks, and segmentations (if available) for each specimen (N = 10,056). Our workflow is open-source to encourage transparency and reproducible data collection. The MusMorph data and scripts are available on FaceBase ( www.facebase.org , https://doi.org/10.25550/3-HXMC ) and GitHub ( https://github.com/jaydevine/MusMorph ).

摘要

复杂的形态特征是许多具有瞬时或持久发育效应的基因相互作用的产物,这些基因在解剖学背景下相互作用。小鼠模型是解开这些效应的关键资源,因为它们提供了无数的工具来在受控环境中操纵基因组。不幸的是,表型数据通常是使用实验室特定的方案获得的,导致数据集自成一体,难以进行更大规模的分析。为了能够对形态变异进行荟萃分析,特别是在颅面复合体和大脑中,我们创建了 MusMorph,这是一个标准化的小鼠形态学数据数据库,涵盖了许多基因型和发育阶段,包括 E10.5、E11.5、E14.5、E15.5、E18.5 和成年期。为了标准化数据收集,我们实施了基于图谱的表型分析管道,该管道结合了图像配准、深度学习和形态计量学技术。除了特定于阶段的图谱外,我们还为每个标本(N=10,056)提供对齐的微计算机断层扫描图像、密集解剖标志和分割(如果可用)。我们的工作流程是开源的,以鼓励透明度和可重复的数据收集。MusMorph 数据和脚本可在 FaceBase(www.facebase.org,https://doi.org/10.25550/3-HXMC)和 GitHub(https://github.com/jaydevine/MusMorph)上获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f3f/9133120/a07f7b9c0493/41597_2022_1338_Fig1_HTML.jpg

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