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Mouse embryonic phenotyping by morphometric analysis of MR images

机译:MR图像的形态计量学分析小鼠胚胎表型

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摘要

A new method is described for automatic detection of subtle morphological phenotypes in mouse embryos. Based on high-resolution magnetic resonance imaging scanning and nonlinear image alignment, this method is demonstrated by comparing the morphology of two inbred strains, C57BL/6J and 129Sv/S1ImJ, at 15.5 days postconception. Mouse embryo morphology was found to be highly amenable to this kind of analysis with very low levels (on average 110 μm) of residual anatomical variation within strains after linear differences in pose and scale are removed. Mapping of local size differences showed that C57BL/6J embryos were larger than 129Sv/S1ImJ embryos, although these differences were not uniformly distributed across the anatomy. Expressed in terms of organ volumes, heart and lung were larger in C57BL/6J embryos, while brain and liver were comparable in volume between strains. The positive relationship between organ size and embryo size was consistent for the two strains but differed by organ, with the brain and liver being the least variable. Together these findings suggest the power of this technique for detecting subtle phenotypic differences arising from mutated genes.
机译:描述了一种自动检测小鼠胚胎中细微形态表型的新方法。基于高分辨率磁共振成像扫描和非线性图像对齐,通过在受孕后15.5天比较两个自交系C57BL / 6J和129Sv / S1ImJ的形态,证明了该方法。发现小鼠胚胎的形态非常适合这种分析,在消除姿势和比例的线性差异后,菌株中的残留解剖变异非常低(平均110μm)。局部大小差异的图谱显示,C57BL / 6J胚胎大于129Sv / S1ImJ胚胎,尽管这些差异在整个解剖结构中不是均匀分布的。以器官体积表示,C57BL / 6J胚胎的心脏和肺部较大,而菌株之间的脑部和肝脏的体积相当。两种菌株的器官大小与胚胎大小之间的正相关关系是一致的,但因器官而异,大脑和肝脏的变化最小。这些发现共同表明,该技术可检测由突变基因引起的细微表型差异。

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