首页> 外文期刊>Annals of anatomy =: Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft >Integration of an optical coherence tomography (OCT) system into an examination incubator to facilitate in vivo imaging of cardiovascular development in higher vertebrate embryos under stable physiological conditions.
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Integration of an optical coherence tomography (OCT) system into an examination incubator to facilitate in vivo imaging of cardiovascular development in higher vertebrate embryos under stable physiological conditions.

机译:将光学相干断层扫描(OCT)系统集成到检查培养箱中,以促进在稳定的生理条件下高等脊椎动物胚胎中心血管发育的体内成像。

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摘要

High-resolution in vivo imaging of higher vertebrate embryos over short or long time periods under constant physiological conditions is a technically challenging task for researchers working on cardiovascular development. In chick embryos, for example, various studies have shown that without appropriate maintenance of temperature, as one of the main environmental factors, the embryonic heart rate drops rapidly and often results in an increase in regurgitant flow. Hemodynamic parameters are critical stimuli for cardiovascular development that, for a correct evaluation of their developmental significance, should be documented under physiological conditions. However, previous studies were mostly carried out outside of an incubator or under suboptimal environmental conditions. Here we present, to the best of our knowledge, the first detailed description of an optical coherence tomography (OCT) system integrated into an examination incubator to facilitate real-time in vivo imaging of cardiovascular development under physiological environmental conditions. We demonstrate the suitability of this OCT examination incubator unit for use in cardiovascular development studies by examples of proof of principle experiments. We, furthermore, point out the need for use of examination incubators for physiological OCT examinations by documenting the effects of room climate (22 degrees C) on the performance of the cardiovascular system of chick embryos (HH-stages 16/17). Upon exposure to room climate, chick embryos showed a fast drop in the heart rate and striking changes in the cardiac contraction behaviour and the blood flow through the vitelline circulation. We have documented these changes for the first time by M-mode OCT and Doppler M-mode OCT.
机译:在恒定的生理条件下,短期或长期内对高等脊椎动物胚胎进行高分辨率体内成像对研究心血管疾病的研究人员而言是一项技术难题。例如,在鸡胚中,各种研究表明,如果没有适当地维持温度,作为主要环境因素之一,胚心率就会迅速下降,并经常导致反流增加。血流动力学参数是心血管发育的关键刺激因素,为正确评估其发育意义,应在生理条件下记录。但是,以前的研究大多在孵化器之外或在不太理想的环境条件下进行。在这里,就我们所知,我们对光学相干断层扫描(OCT)系统进行了首次详细描述,该系统已集成到检查培养箱中,以促进在生理环境下对心血管发育进行实时体内成像。我们通过原理实验的实例证明了该OCT检查培养箱单元在心血管发育研究中的适用性。此外,我们通过记录室温(22摄氏度)对雏鸡心血管系统性能的影响(HH阶段16/17),指出需要将检查培养箱用于生理性OCT检查。暴露于室内气候后,鸡胚的心率迅速下降,心脏收缩行为和通过卵黄循环的血流发生显着变化。我们已经通过M模式OCT和多普勒M模式OCT首次记录了这些变化。

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