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Embryonic Mouse Cardiodynamic OCT Imaging

机译:胚胎小鼠心动力学OCT成像

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摘要

The embryonic heart is an active and developing organ. Genetic studies in mouse models have generated great insight into normal heart development and congenital heart defects, and suggest mechanical forces such as heart contraction and blood flow to be implicated in cardiogenesis and disease. To explore this relationship and investigate the interplay between biomechanical forces and cardiac development, live dynamic cardiac imaging is essential. Cardiodynamic imaging with optical coherence tomography (OCT) is proving to be a unique approach to functional analysis of the embryonic mouse heart. Its compatibility with live culture systems, reagent-free contrast, cellular level resolution, and millimeter scale imaging depth make it capable of imaging the heart volumetrically and providing spatially resolved information on heart wall dynamics and blood flow. Here, we review the progress made in mouse embryonic cardiodynamic imaging with OCT, highlighting leaps in technology to overcome limitations in resolution and acquisition speed. We describe state-of-the-art functional OCT methods such as Doppler OCT and OCT angiography for blood flow imaging and quantification in the beating heart. As OCT is a continuously developing technology, we provide insight into the future developments of this area, toward the investigation of normal cardiogenesis and congenital heart defects.
机译:胚胎心脏是活性和显影器官。小鼠模型中的遗传研究产生了良好的洞察力,对正常心脏发育和先天性心脏缺陷,并提出了诸如心脏收缩和血流的机械力,以涉及血管生成和疾病。为了探讨这种关系并调查生物力学力和心脏发育的相互作用,活动态心脏成像至关重要。具有光学相干断层扫描(OCT)的心动力学成像被证明是胚胎小鼠心脏功能分析的独特方法。它与现场培养系统的兼容性,无试剂对比度,蜂窝水平分辨率和毫米刻度成像深度使得能够在体内对心脏成像并在心脏壁动力学和血液流动中提供空间解决的信息。在这里,我们审查了OCT的小鼠胚胎心动力学成像中的进展,突出了技术的跨利赛,以克服分辨率和获取速度的限制。我们描述了最先进的功能OCT方法,如多普勒OCT和OCT血管造影,用于血流成像和搏动心脏的定量。随着OCT是一种不断发展的技术,我们提供了对该地区未来发展的洞察力,朝着正常心肌发生和先天性心脏缺陷的调查。

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