首页> 美国卫生研究院文献>British Journal of Clinical Pharmacology >Transient in oxygen uptake after step-increase of workload under beta-adrenoceptor blockade or vasodilation.
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Transient in oxygen uptake after step-increase of workload under beta-adrenoceptor blockade or vasodilation.

机译:在β-肾上腺素受体阻滞或血管扩张作用下逐步增加工作量后氧气吸收会短暂出现。

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摘要

The effect of vasodilation (with nifedipine) or beta-adrenergic receptor blockade (with propranolol, alprenolol or metoprolol) on the rate of rise of oxygen uptake and heart rate were studied in 14 healthy subjects after a step-wise increase of workload from a light to a moderate exercise intensity. Under beta-adrenergic receptor blockade steady state oxygen uptake at both workload levels was equal to control values; heart rate went up to 111 min-1 (s.d.:15) vs 150 min-1 (s.d.:24) for the control experiments. The half-times of the oxygen uptake transient were unchanged. After vasodilation with nifedipine heart rates were higher (20% for the lower and 12% for the higher exercise level) but steady state oxygen uptake levels and rate of rise were also unchanged. It is concluded that the rate of rise of oxygen supply to working skeletal muscles after a stepwise increase of load is not reduced either by a beta-adrenergic receptor blocking drug nor by a vasodilating agent. Discomfort during exercise appears to be a subjective phenomenon related to reduced skin circulation and sweating under beta-adrenergic receptor blockade, or to headache and congestion after vasodilatory drug administration. These side-effects are not caused by a reduced oxygen supply of muscle, neither under steady state situations nor under rapid changing workload conditions.
机译:在14名健康受试者中,从轻度逐步增加工作量之后,研究了血管舒张(硝苯地平)或β-肾上腺素受体阻滞(普萘洛尔,阿普洛尔或美托洛尔)对摄氧量和心率上升速率的影响。达到中等运动强度。在β-肾上腺素能受体阻滞下,两个工作负荷水平的稳态氧吸收均等于对照值。心率上升至111分钟-1(标准时间:15),而对照组为150分钟-1(标准时间:24)。吸氧瞬变的半时间没有变化。用硝苯地平进行血管舒张后,心率较高(较低的运动水平为20%,较高的运动水平为12%),但稳态摄氧量和上升速率也未改变。结论是,逐步增加负荷后,向工作骨骼肌供氧的速率没有通过β-肾上腺素受体阻断药或血管舒张药而降低。运动期间的不适似乎是一种主观现象,与β-肾上腺素受体阻滞下皮肤循环减少和出汗有关,或与血管舒张药给药后的头痛和充血有关。这些副作用不是由肌肉的氧气供应减少引起的,无论是在稳定状态下还是在快速变化的工作量条件下。

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