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Dynamic Imaging of Preimplantation Embryos in the Murine Oviduct

机译:小鼠输卵管植入前胚胎的动态成像

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Studying the dynamic events involved in early preimplantation embryo development during their transport from the ovary to the uterus is of great significance to improve the understanding of infertility, and eventually to help reduce the infertility rate. The mouse is a widely used mammalian model in reproductive biology, however, dynamic imaging studies of mouse preimplantation embryos have been very limited due to the lack of proper imaging tools for such analysis. Here, we introduce an innovative approach, which can potentially be used for three-dimensional imaging and tracking of murine oocytes with optical coherence tomography (OCT) as they exit the ovary and migrate through the oviduct to the uterus. The imaging is performed with spectral-domain OCT system operating at 70 kHz A-scan rate. The preimplantation embryos and surrounding cumulus cells can be clearly visualized. Results from our experiments indicate that OCT has great potential for dynamic imaging of the oviduct and oocyte tracking, which provides the foundation for future investigations aimed at understanding dynamic events during preimplantation stages in normal development as well as in mouse models of infertility.
机译:研究植入前早期胚胎从卵巢转移到子宫过程中涉及的动态事件,对于增进对不孕症的了解,最终有助于降低不孕率具有重要意义。小鼠是生殖生物学中广泛使用的哺乳动物模型,但是,由于缺乏用于这种分析的合适的成像工具,因此对小鼠植入前胚胎的动态成像研究非常有限。在这里,我们介绍一种创新的方法,当它们离开卵巢并通过输卵管迁移到子宫时,可以利用光学相干断层扫描(OCT)对鼠卵母细胞进行三维成像和跟踪。成像是通过以70 kHz A扫描速率运行的光谱域OCT系统执行的。植入前的胚胎和周围的卵丘细胞可以清楚地看到。我们的实验结果表明,OCT在输卵管的动态成像和卵母细胞跟踪方面具有巨大的潜力,这为将来的研究奠定了基础,旨在了解正常发育以及不育症小鼠模型在植入前阶段的动态事件。

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