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High-resolution three-dimensional in vivo imaging of mouse oviduct using optical coherence tomography

机译:光学相干断层扫描技术对小鼠输卵管进行高分辨率的三维体内成像

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The understanding of the reproductive events and the molecular mechanisms regulating fertility and infertility in humans relies heavily on the analysis of the corresponding phenotypes in mouse models. While molecular genetic approaches provide significant insight into the molecular regulation of these processes, the lack of live imaging methods that allow for detailed visualization of the mouse reproductive organs limits our investigations of dynamic events taking place during the ovulation, the fertilization and the pre-implantation stages of embryonic development. Here we introduce an in vivo three-dimensional imaging approach for visualizing the mouse oviduct and reproductive events with micro-scale spatial resolution using optical coherence tomography (OCT). This method relies on the natural tissue optical contrast and does not require the application of any contrast agents. For the first time, we present live high-resolution images of the internal structural features of the oviduct, as well as other reproductive organs and the oocytes surrounded by cumulus cells. These results provide the basis for a wide range of live dynamic studies focused on understanding fertility and infertility.
机译:对人类生殖活动和调节生育力和不育性的分子机制的理解在很大程度上取决于对小鼠模型中相应表型的分析。尽管分子遗传学方法对这些过程的分子调控提供了重要的见识,但缺乏能够对小鼠生殖器官进行详细可视化的实时成像方法,这限制了我们对排卵,受精和植入前发生的动态事件的研究。胚胎发育的各个阶段。在这里,我们介绍了一种体内三维成像方法,用于使用光学相干断层扫描(OCT)以微观尺度的空间分辨率可视化鼠标输卵管和生殖事件。该方法依赖于天然组织的光学对比,并且不需要施加任何对比剂。首次,我们展示了输卵管以及其他生殖器官和卵丘细胞包围的卵母细胞内部结构特征的实时高分辨率图像。这些结果为广泛的动态研究提供了基础,这些研究着重于了解生育力和不孕症。

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