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首页> 外文期刊>PLoS Genetics >Virtual Histology of Transgenic Mouse Embryos for High-Throughput Phenotyping
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Virtual Histology of Transgenic Mouse Embryos for High-Throughput Phenotyping

机译:高通量表型的转基因小鼠胚胎的虚拟组织学

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A bold new effort to disrupt every gene in the mouse genome necessitates systematic, interdisciplinary approaches to analyzing patterning defects in the mouse embryo. We present a novel, rapid, and inexpensive method for obtaining high-resolution virtual histology for phenotypic assessment of mouse embryos. Using osmium tetroxide to differentially stain tissues followed by volumetric X-ray computed tomography to image whole embryos, isometric resolutions of 27 μm or 8 μm were achieved with scan times of 2 h or 12 h, respectively, using mid-gestation E9.5–E12.5 embryos. The datasets generated by this method are immediately amenable to state-of-the-art computational methods of organ patterning analysis. This technique to assess embryo anatomy represents a significant improvement in resolution, time, and expense for the quantitative, three-dimensional analysis of developmental patterning defects attributed to genetically engineered mutations and chemically induced embryotoxicity.
机译:破坏小鼠基因组中每个基因的大胆新尝试需要系统的,跨学科的方法来分析小鼠胚胎中的模式缺陷。我们提出了一种新颖,快速,廉价的方法来获取高分辨率虚拟组织学的小鼠胚胎表型评估。使用四氧化对组织进行差异染色,然后通过体积X射线计算机断层扫描对整个胚胎进行成像,使用妊娠中期E9.5,扫描时间分别为2 h或12 h时,等轴测分辨率达到27μm或8μm。 E12.5胚胎。通过这种方法生成的数据集可立即适用于器官模式分析的最新计算方法。这项用于评估胚胎解剖结构的技术代表了对由于基因工程突变和化学诱导的胚胎毒性而导致的发育模式缺陷进行定量,三维分析的分辨率,时间和费用的显着改善。

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