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Weighing the evidence for using vascular conductance, not resistance, in comparative cardiovascular physiology

机译:权衡使用血管传导,不抵抗的证据,在比较心血管生理学中

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摘要

Vascular resistance and conductance are reciprocal indices of vascular tone that are often assumed to be interchangeable. However, in most animals in vivo, blood flow (i.e. cardiac output) typically varies much more than arterial blood pressure. When blood flow changes at a constant pressure, the relationship between conductance and blood flow is linear, whereas the relationship between resistance and blood flow is non-linear. Thus, for a given change in blood flow, the change in resistance depends on the starting point, whereas the attendant change in conductance is proportional to the change in blood flow regardless of the starting conditions. By comparing the effects of physical activity at different temperatures or between species - concepts at the heart of comparative cardiovascular physiology - we demonstrate that the difference between choosing resistance or conductance can be marked. We also explain here how the ratio of conductance in the pulmonary and systemic circulations provides a more intuitive description of cardiac shunt patterns in the reptilian cardiovascular system than the more commonly used ratio of resistance. Finally, we posit that, although the decision to use conductance or resistance should be made on a case-by-case basis, in most circumstances, conductance is a more faithful portrayal of cardiovascular regulation in vertebrates.
机译:血管抗性和电导是血管间调的互易索引,其通常被认为是可互换的。然而,在体内大多数动物中,血流(即心脏输出)通常比动脉血压得多。当血流在恒定压力下变化时,电导和血流之间的关系是线性的,而抗性和血流之间的关系是非线性的。因此,对于给定的血流变化,电阻的变化取决于起点,而导电的服务器变化与血流的变化比例,而不管开始条件如何。通过比较不同温度或物种之间的身体活动的影响 - 比较心血管生理学的概念 - 我们证明可以标记选择性或电导之间的差异。我们还在这里解释了肺部和系统循环中的电导比率如何在爬行动物心血管系统中的心脏分流图案中的比率比更常用的抗性比例更直观地描述。最后,我们认为,尽管在大多数情况下,应在案例基础上进行导电或阻力的决定,但在大多数情况下,执行是一种更忠实的脊椎动物心血管调节的写照。

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