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Real-Time Imaging of Circulating Individual Blood Cells in Mammalian Embryos with Doppler SSOCT

机译:用多普勒SSOCT哺乳动物胚胎循环个体血细胞的实时成像

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Congenital cardiovascular (CV) defects are present in approximately 1% of live births. Moreover, among deaths due to birth defects, cardiovascular failures are the most likely. Therefore, characterization of mammalian embryonic cardio dynamics and understanding of the hemodynamic changes that occur during embryonic development is crucial for improving diagnostics, prevention, and treatment of cardiovascular defects and diseases. In this work, we combined Swept Source Optical Coherence Tomography (SSOCT) with live mouse embryo culture protocols to generate structural 2-D and 3-D imaging and hemodynamic measurements in live 8.5 day embryos. Our data show that individual circulating blood cells can be visualized with structural SSOCT and the velocity of single moving blood cells were measured during different phases of heartbeat cycle with Doppler SSOCT. These results demonstrate that this imaging modality could be an extremely useful tool for structural and hemodynamic analysis at the earliest stages of mammalian blood circulation.
机译:先天性心血管(CV)缺陷在约1%的活产物中存在。此外,在出生缺陷导致的死亡中,心血管失败是最有可能的。因此,哺乳动物胚胎动力学和对胚胎发育期间发生的血流动力学变化的表征对于改善心血管缺陷和疾病的诊断,预防和治疗至关重要。在这项工作中,我们将扫描源光学相干断层扫描(SSOCT)与实时鼠标胚胎培养方案组合,以在活8.5天胚胎中产生结构2-D和3-D成像和血液动力学测量。我们的数据表明,各种循环血细胞可以用结构SSOCT可视化,并且在用多普勒SSOCT的心跳循环的不同阶段测量单个移动血液细胞的速度。这些结果表明,这种成像模型可以是哺乳动物血液循环最早阶段的结构和血液动力学分析的极其有用的工具。

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