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Effect of Outflow Tract Banding on Embryonic Cardiac Hemodynamics

机译:流出道束带对胚胎心脏血流动力学的影响

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We analyzed heart wall motion and blood flow dynamics in chicken embryos using in vivo optical coherence tomography (OCT) imaging and computational fluid dynamics (CFD) embryo-specific modeling. We focused on the heart outflow tract (OFT) region of day 3 embryos, and compared normal (control) conditions to conditions after performing an OFT banding intervention, which alters hemodynamics in the embryonic heart and vasculature. We found that hemodynamics and cardiac wall motion in the OFT are affected by banding in ways that might not be intuitive a priori . In addition to the expected increase in ventricular blood pressure, and increase blood flow velocity and, thus, wall shear stress (WSS) at the band site, the characteristic peristaltic-like motion of the OFT was altered, further affecting flow and WSS. Myocardial contractility, however, was affected only close to the band site due to the physical restriction on wall motion imposed by the band. WSS were heterogeneously distributed in both normal and banded OFTs. Our results show how banding affects cardiac mechanics and can lead, in the future, to a better understanding of mechanisms by which altered blood flow conditions affect cardiac development leading to congenital heart disease.
机译:我们使用体内光学相干断层扫描(OCT)成像和计算流体动力学(CFD)胚胎特异性模型分析了鸡胚中的心脏壁运动和血流动力学。我们重点研究了第3天胚胎的心脏流出道(OFT)区域,并将正常(对照)条件与进行OFT束带干预后的条件进行了比较,这会改变胚胎心脏和脉管系统的血液动力学。我们发现OFT中的血流动力学和心脏壁运动受束缚的影响可能是先验的直观方式。除了预期的心室血压升高,血流速度增加以及由此带区的壁切应力(WSS)升高外,OFT的特征性蠕动样运动也发生了改变,进一步影响了血流和WSS。然而,由于束带对壁运动的物理限制,心肌收缩力仅在束带部位附近受到影响。 WSS异质分布在正常和带状的OFT中。我们的结果表明,条带化如何影响心脏力学,并在未来可以导致人们更好地理解改变血流状况影响心脏发育从而导致先天性心脏病的机制。

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