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Live imaging of rat embryos with Doppler swept-source optical coherence tomography

机译:多普勒扫频光学相干断层扫描对大鼠胚胎进行实时成像

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摘要

The rat has long been considered an excellent system to study mammalian embryonic cardiovascular physiology, but has lacked the extensive genetic tools available in the mouse to be able to create single gene mutations. However, the recent establishment of rat embryonic stem cell lines facilitates the generation of new models in the rat embryo to link changes in physiology with altered gene function to define the underlying mechanisms behind congenital cardiovascular birth defects. Along with the ability to create new rat genotypes there is a strong need for tools to analyze phenotypes with high spatial and temporal resolution. Doppler OCT has been previously used for 3-D structural analysis and blood flow imaging in other model species. We use Doppler swept-source OCT for live imaging of early postimplantation rat embryos. Structural imaging is used for 3-D reconstruction of embryo morphology and dynamic imaging of the beating heart and vessels, while Doppler-mode imaging is used to visualize blood flow. We demonstrate that Doppler swept-source OCT can provide essential information about the dynamics of early rat embryos and serve as a basis for a wide range of studies on functional evaluation of rat embryo physiology.
机译:长期以来,该大鼠一直被认为是研究哺乳动物胚胎心血管生理学的极佳系统,但缺乏小鼠中可用的广泛遗传工具来产生单基因突变。但是,最近建立的大鼠胚胎干细胞系促进了大鼠胚胎中新模型的产生,从而将生理变化与基因功能的改变联系起来,从而确定了先天性心血管先天性缺陷背后的潜在机制。除了具有创建新大鼠基因型的能力外,强烈需要具有高时空分辨率的分析表型的工具。多普勒OCT先前已用于其他模型物种的3-D结构分析和血流成像。我们使用多普勒扫描源OCT进行早期植入后大鼠胚胎的实时成像。结构成像用于胚胎形态的3D重建和跳动的心脏和血管的动态成像,而多普勒模式成像则用于可视化血流。我们证明,多普勒扫频OCT可以提供有关早期大鼠胚胎动力学的基本信息,并可以作为对大鼠胚胎生理功能评估的广泛研究的基础。

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