Speed Of Onset And Offset And Mechanisms Of Ventilatory Depression From Sevoflurane - An Experimental Study In The Cat

ANESTHESIOLOGY(1999)

引用 14|浏览4
暂无评分
摘要
Background: Inhalational anesthetics depress breathing dose dependently. The authors studied the dynamics of ventilation on changes in end-tidal sevoflurane partial pressure. To learn more about the mechanisms of sevoflurane-induced respiratory depression, the authors also studied its influence on the dynamic ventilatory response to carbon dioxide,Methods: Experiments were performed in cats anesthetized with alpha chloralose-urethane. For protocol 1, step changes in end-tidal sevoflurane partial pressure were applied and inspired ventilation was measured. Breath-to-breath inspired ventilation was related to the sevoflurane concentration in a hypothetical effect compartment based on an inhibitory sigmoid Emax model. For protocol 2, step changes in the end-tidal partial pressure of carbon dioxide were applied at 0, 0.5, and 1% end-tidal sevoflurane. The inspired ventilation-end-tidal partial pressure of carbon dioxide data were analyzed using a two-compartment model of the respiratory controller, which consisted of a fast peripheral and slow central compartment. Values are the mean +/- SD.Results: In protocol 1, the effect-site half-life of respiratory changes caused by alterations in end-tidal sevoflurane partial pressure was 3.6 +/- 1.0 min. In protocol 2, at 0.5% sevoflurane, the central and peripheral carbon dioxide sensitivities decreased to 43 +/- 20% and 36 +/- 18% of control. At 1% sevoflurane, the peripheral carbon dioxide sensitivity decreased fur-ther, to 12 +/- 13% of control, whereas the central carbon dioxide sensitivity showed no further decrease.Conclusions: Steady state inspired ventilation is reached after 18 min (if., 5 half-lives) on stepwise changes in end-tidal sevoflurane. Anesthetic concentrations of sevoflurane have, in addition to an effect on pathways common to the peripheral and central chemoreflex loops, a selective effect on the peripheral chemoreflex loop. Sevoflurane has similar effects on ventilatory control in humans and cats.
更多
查看译文
关键词
central chemoreceptors, control of breathing, Hill equation, modeling, peripheral chemoreceptors, pharmacodynamics, respiration, ventilation
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要