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Optical coherence tomography for high-resolution imaging of mouse development in utero

机译:光学相干断层扫描技术用于子宫内小鼠发育的高分辨率成像

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摘要

Although the mouse is a superior model to study mammalian embryonic development, high-resolution live dynamic visualization of mouse embryos remain a technical challenge. We present optical coherence tomography as a novel methodology for live imaging of mouse embryos through the uterine wall thereby allowing for time lapse analysis of developmental processes and direct phenotypic analysis of developing embryos. We assessed the capability of the proposed methodology to visualize structures of the living embryo from embryonic stages 12.5 to 18.5 days postcoitus. Repetitive in utero embryonic imaging is demonstrated. Our work opens the door for a wide range of live, in utero embryonic studies to screen for mutations and understand the effects of pharmacological and toxicological agents leading to birth defects.
机译:尽管小鼠是研究哺乳动物胚胎发育的上乘模型,但是高分辨率的小鼠胚胎实时动态可视化仍然是一项技术挑战。我们提出光学相干断层扫描作为一种新颖的方法,通过子宫壁对小鼠胚胎进行实时成像,从而可以对发育过程进行时间推移分析,并对发育中的胚胎进行直接表型分析。我们评估了拟议方法可视化从性交后的12.5至18.5天的胚胎阶段的活胚结构的能力。子宫内胚胎成像的重复性已得到证明。我们的工作为子宫内胚胎研究的各种活门打开了大门,以筛选突变并了解导致出生缺陷的药理毒理学作用。

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