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使用低新鲜气体流量对气体稳态和马吉尔回路的实验研究。

An experimental study of gaseous homeostasis and the Magill circuit using low fresh gas flows.

作者信息

Conway C M, Davis F M, Knight H J, Leigh J M, Preston T D, Tennant R

出版信息

Br J Anaesth. 1976 May;48(5):447-55. doi: 10.1093/bja/48.5.447.

Abstract

Gas concentrations and ventilation levels have been measured within a conventional Magill circuit when conscious volunteers breathed a non-narcotic gas mixture at varying fresh gas flows. When evidence of rebreathing of alveolar gas was detected, the fresh gas flow was kept constant until a steady state developed. All subjects showed evidence of rebreathing when the fresh gas flow approached the predicted alveolar ventilation levels. A variety of subject-circuit interactions was seen and shown to be precipitated by naturally occurring breath-to-breath variations in ventilation. A single large breath could perturb the system. This could have a temporary effect, when the fresh gas flow was sufficient to wash the increased aliquot of expired carbon dioxide from the circuit. At other times a progressive response occurred as ventilatory stimulation as a result of the increased inspired carbon dioxide concentrations caused alveolar gas to reach the reservoir bag and converted the system behaviour from that of a simple added deadspace to that of a total mixing device. Whilst marked changes occurred commonly in both ventilation and inspired gas concentrations, only slight changes in end-tidal gas concentrations occurred.

摘要

当清醒的志愿者以不同的新鲜气体流量呼吸非麻醉性气体混合物时,已在传统的马吉尔回路中测量了气体浓度和通气水平。当检测到肺泡气重复吸入的证据时,保持新鲜气体流量恒定,直到达到稳定状态。当新鲜气体流量接近预测的肺泡通气水平时,所有受试者均显示出重复吸入的证据。观察到各种受试者与回路之间的相互作用,并表明这些相互作用是由通气过程中自然发生的逐次呼吸变化所引发的。一次深呼吸可能会扰乱系统。当新鲜气体流量足以从回路中冲洗掉增加的呼出二氧化碳量时,这可能会产生暂时的影响。在其他时候,由于吸入二氧化碳浓度增加导致通气刺激,会出现渐进性反应,使肺泡气到达贮气囊,并使系统行为从简单的附加死腔转变为全混合装置。虽然通气和吸入气体浓度通常都会发生显著变化,但呼气末气体浓度仅发生轻微变化。

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