Cook L B
Department of Anaesthesia, Royal Oldham Hospital, Lancs.
Anaesthesia. 1996 Apr;51(4):371-85. doi: 10.1111/j.1365-2044.1996.tb07752.x.
A theoretical analysis is presented of the Mapleson A, C and D breathing systems when used in spontaneous respiration. The influence of the respiratory pattern is explained diagrammatically. Simple equations are derived, predicting the fresh gas flow required to prevent rebreathing with different respiratory patterns. Further equations allow the degree of rebreathing caused by inadequate fresh gas flow to be quantified. These are used to examine the effects of different respiratory patterns on the efficiency of the three systems. It is demonstrated that the single most important determinant of efficiency is the duration of the expiratory pause. The nature of the inspiratory and expiratory waveforms is less important and the I:E ratio far less important. The analysis suggests that the Mapleson A system will always be the most efficient of the three systems. The Mapleson C system will be efficient if inspiration is long and the expiratory pause is minimal. The Mapleson D system will be efficient if the expiratory pause is sufficiently long.
本文对用于自主呼吸时的Mapleson A、C和D呼吸回路进行了理论分析。以图表形式解释了呼吸模式的影响。推导了简单的方程式,预测了不同呼吸模式下防止重复呼吸所需的新鲜气体流量。进一步的方程式可以量化因新鲜气体流量不足导致的重复呼吸程度。这些方程式用于研究不同呼吸模式对这三种系统效率的影响。结果表明,效率的单一最重要决定因素是呼气暂停的持续时间。吸气和呼气波形的性质不太重要,吸气与呼气时间比(I:E比)更不重要。分析表明,Mapleson A系统在这三种系统中总是最有效的。如果吸气时间长且呼气暂停时间最短,Mapleson C系统将是有效的。如果呼气暂停时间足够长,Mapleson D系统将是有效的。