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Speckle variance optical coherence tomography of blood flow in the beating mouse embryonic heart

机译:散斑差异光学相干性断层扫描在跳动小鼠胚胎心脏中的血流

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Efficient separation of blood and cardiac wall in the beating embryonic heart is essential and critical for experiment-based computational modelling and analysis of early-stage cardiac biomechanics. Although speckle variance optical coherence tomography (SV-OCT) relying on calculation of intensity variance over consecutively acquired frames is a powerful approach for segmentation of fluid flow from static tissue, application of this method in the beating embryonic heart remains challenging because moving structures generate SV signal indistinguishable from the blood. Here, we demonstrate a modified four-dimensional SV-OCT approach that effectively separates the blood flow from the dynamic heart wall in the beating mouse embryonic heart. The method takes advantage of the periodic motion of the cardiac wall and is based on calculation of the SV signal over the frames corresponding to the same phase of the heartbeat cycle. Through comparison with Doppler OCT imaging, we validate this speckle-based approach and show advantages in its insensitiveness to the flow direction and velocity as well as reduced influence from the heart wall movement. This approach has a potential in variety of applications relying on visualization and segmentation of blood flow in periodically moving structures, such as mechanical simulation studies and finite element modelling.
机译:在搅拌胚胎心脏中的血液和心脏壁的有效分离对于实验基础的计算建模和早期心脏生物力学分析至关重要的和关键。尽管依赖于连续获取的帧的强度方差计算的散斑变异光学相干性断层扫描(SV-OCT)是一种强大的方法,用于从静态组织分割流体流动,这种方法在搅拌胚胎心脏中的应用仍然具有挑战性,因为移动结构产生SV信号与血液无法区分。在这里,我们展示了一种改进的四维SV-OCT方法,其有效地将来自动态心脏壁中的血流与跳动小鼠胚胎心脏分开。该方法利用心脏壁的周期性运动,并且基于对应于心跳周期的相同相位的帧上的SV信号的计算。通过与多普勒OCT成像进行比较,我们验证了基于斑点的方法,并显示出对流动方向和速度的不敏感性的优势,以及从心脏壁运动的影响降低。该方法具有各种应用的潜力,依赖于在周期性移动结构中的可视化和血流分割的应用,例如机械仿真研究和有限元建模。

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