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4D shear stress maps of the developing heart using Doppler optical coherence tomography

机译:使用多普勒光学相干断层扫描的发育中心脏的4D切应力图

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摘要

Accurate imaging and measurement of hemodynamic forces is vital for investigating how physical forces acting on the embryonic heart are transduced and influence developmental pathways. Of particular importance is blood flow-induced shear stress, which influences gene expression by endothelial cells and potentially leads to congenital heart defects through abnormal heart looping, septation, and valvulogenesis. However no imaging tool has been available to measure shear stress on the endocardium volumetrically and dynamically. Using 4D structural and Doppler OCT imaging, we are able to accurately measure the blood flow in the heart tube in vivo and to map endocardial shear stress throughout the heart cycle under physiological conditions for the first time. These measurements of the shear stress patterns will enable precise titration of experimental perturbations and accurate correlation of shear with the expression of molecules critical to heart development.
机译:准确的成像和血流动力学力的测量对于研究如何传导作用于胚胎心脏的物理力并影响其发育途径至关重要。尤为重要的是血流引起的切应力,它会影响内皮细胞的基因表达,并可能通过异常的心脏循环,分隔和瓣膜形成而导致先天性心脏缺陷。然而,尚无成像工具可用于以体积和动态方式测量心内膜上的切应力。使用4D结构和多普勒OCT成像,我们能够在生理条件下首次准确测量体内心脏中的血流并绘制整个心动周期内的心内膜切应力。剪切应力模式的这些测量将能够精确滴定实验扰动,并使剪切与对心脏发育至关重要的分子表达精确相关。

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