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Cardiovascular Adaptation in Response to Chronic Hypoxia in Awake Rats

机译:令人寒还慢性缺氧的心血管适应

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To examine how cardiovascular adaptation to chronic hypoxia might evolve, the responses to blood pressure (Pt) and hematocrit (Ht) during long-term systemic exposure to hypoxia were observed in awake rats. Furthermore, the total peripheral vascular resistance (TPR) was estimated using direct measurements of systemic blood pressure (Ps) and blood flow (Qs) in carotid artery based on Darcy's law (TPR = Ps/Qs) to evaluate the remodeling procedure in the microcirculation. BP and Ht under normoxic conditions were kept almost constant, while hypoxic exposure immediately increased Ht to 58 % and, thereafter, it remained stable. The TPR values showed no significant differences between hypoxic and normoxic conditions. These results suggest that effects of high viscosity caused by increasing Ht on peripheral vascular resistance can be compensated by inducing microvascular remodeling with the arteriolar dilation and capillary angiogenesis.
机译:为了检查如何对慢性缺氧的心血管适应如何发展,在清醒大鼠中观察到对长期系统性暴露于缺氧期间的对血压(Pt)和血细胞比容(HT)的反应。 此外,使用基于达西法律(TPR = PS / QS)的颈动脉直接测量全身血压(PS)和血流(QS)的直接测量估计总外周血管抗性(TPR),以评估微循环中的重塑过程 。 常氧条件下的BP和HT几乎保持恒定,而缺氧暴露立即增加HT至58%,此后,它保持稳定。 TPR值显示缺氧和常氧条件之间没有显着差异。 这些结果表明,通过诱导与动脉源性扩张和毛细血管血管生成的微血管重塑来补偿通过增加HT的高粘度对外周血管阻力的影响。

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