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全身及器官的耗氧量随安氟醚、异氟醚和氟烷的变化情况。

Whole-body and organ Vo2 changes with enflurane, isoflurane, and halothane.

作者信息

Theye R A, Michenfelder J D

出版信息

Br J Anaesth. 1975 Aug;47(8):813-7. doi: 10.1093/bja/47.8.813-a.

Abstract

This study was designed to determine the effects of enflurane on canine whole-body and individual organ oxygen consumption (Vo2). Whole-body, myocardial, splanchnic, renal, and skeletal muscle Vo2 were determined at enflurane concentrations equivalent to those used in previous studies with halothane and isoflurane. With increasing enflurane concentrations, whole-body Vo2 decreased progressively. The major component of the decrease was a reduction in myocardial Vo2 resulting from a decrease in myocardial external work as a result of a decrease in cardiac output and arterial pressure. Other organs contributed to a lesser extent to the overall decrease in whole-body Vo2. In each respect the findings with enflurance were not significantly different from those with halothane and isoflurane. These findings did support to the view that anaesthetic agents are not general metabolic depressants and that observed changes in whole-body Vo2 reflect the summated changes in individual organ Vo2 occasioned by an anaesthetic-induced change in organ function and metabolic requirements.

摘要

本研究旨在确定安氟醚对犬全身及单个器官氧耗量(Vo2)的影响。在与先前使用氟烷和异氟醚的研究中所采用浓度相当的安氟醚浓度下,测定全身、心肌、内脏、肾脏及骨骼肌的Vo2。随着安氟醚浓度的增加,全身Vo2逐渐降低。降低的主要成分是心肌Vo2的减少,这是由于心输出量和动脉压降低导致心肌外部功减少所致。其他器官对全身Vo2总体降低的贡献较小。在各方面,安氟醚的研究结果与氟烷和异氟醚的研究结果无显著差异。这些发现确实支持了以下观点:麻醉剂并非一般性的代谢抑制剂,且观察到的全身Vo2变化反映了因麻醉诱导的器官功能和代谢需求变化而引起的单个器官Vo2的综合变化。

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