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Arterial hemodynamics and mechanical properties after circulatory intervention in the chick embryo

机译:鸡胚循环干预后的动脉血流动力学和力学性能

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摘要

Altered blood pressure and flow impact cardiac function during morphogenesis. How the arterial system supports cardiac morphogenesis after circulatory disruptions is not well characterized. We manipulated arterial flow via left atrial ligation (LAL) or arterial load via right vitelline artery ligation (VAL) in Hamburger-Hamilton (HH) stage 21 chick embryos. Embryos were reincubated for 1 h (HH21), 14 h (HH24) or 30 h (HH27). At each stage we measured simultaneous dorsal aortic blood pressure and flow, and calculated arterial compliance, impedance and hydraulic power. LAL acutely reduced stroke volume (Vs), cardiac output (Q) and hydraulic power. Arterial pressure was preserved by a compensatory increase in characteristic impedance and decrease in compliance. Impedance parameters and compliance normalized by HH24 and all parameters normalized by HH27. VAL acutely increased arterial resistance. Embryos maintained arterial pressure by decreasing Vs and Q. These parameters remained altered through HH27. In summary, despite the intervention, compensatory alterations in Vs and arterial resistance maintained arterial pressure and fraction of oscillatory power within a narrow range. These results suggest that the maintenance of arterial pressure and circulatory energy efficiency, but not arterial flow, is critical to embryogenesis.
机译:血压和血流量的变化会影响形态发生过程中的心脏功能。循环中断后动脉系统如何支持心脏形态发生的特征尚不清楚。我们通过左心房结扎(LAL)或右卵黄素动脉结扎(VAL)在Hamburger-Hamilton(HH)21期雏鸡胚胎中操纵动脉血流。将胚胎再孵育1小时(HH21),14小时(HH24)或30小时(HH27)。在每个阶段,我们测量同时的背主动脉血压和流量,并计算动脉顺应性,阻抗和液压动力。 LAL大大降低了中风量(Vs),心输出量(Q)和液压动力。通过特征阻抗的补偿性增加和顺应性的降低来保持动脉压。通过HH24标准化的阻抗参数和顺应性,以及通过HH27标准化的所有参数。 VAL急性增加了动脉阻力。胚胎通过降低Vs和Q来维持动脉压。这些参数在HH27中保持不变。总之,尽管进行了干预,但Vs和动脉阻力的代偿性变化将动脉压和振荡功率的比例保持在狭窄的范围内。这些结果表明,维持动脉压和循环能效,而不是动脉血流,对于胚胎发生至关重要。

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