Lehnert B E, Oberdörster G, Slutsky A S
J Appl Physiol Respir Environ Exerc Physiol. 1982 Aug;53(2):483-9. doi: 10.1152/jappl.1982.53.2.483.
The adequacy of constant airway gas flow sustenance of arterial blood gas tensions was investigated in anesthetized-paralyzed mongrel dogs. Gas delivery was achieved via a main-stem bronchi cannulation system constructed of two polyethylene tubes bifurcating at the carina, which rested on the posterior surface of the trachea outside of an endotracheal tube positioned in the upper third of the trachea. Equal flows (total flow = Vin) of humidified air were delivered through each limb of the cannulation system at constant flow rates with Vin ranging from 8 to 28 l/min. Intratracheal pressures at these flows characteristically ranged from 0.1 to 1 cmH2O. Arterial O2 tension varied directly (PaO2 = 0.72 Vin + 74.6), and arterial CO2 tension varied inversely (PaCO2 = -0.73 Vin + 51.2) with Vin during ambient gas, constant-flow ventilation (CFV). During prolonged CFV (greater than 2 h), no evidence of CO2 accumulation or deterioration of PaO2, was observed. This study demonstrates that in apneic dogs normal blood gases can be achieved and maintained over prolonged periods with constant airway flow at low intratracheal pressures.
在麻醉致瘫的杂种犬中研究了恒定气道气流维持动脉血气张力的充足性。气体输送通过一个由两根聚乙烯管组成的主支气管插管系统实现,这两根聚乙烯管在隆突处分叉,置于气管上段气管内导管外侧的气管后表面。以恒定流速通过插管系统的每个分支输送等量的湿化空气(总流量=Vin),Vin范围为8至28升/分钟。这些流量下的气管内压力通常在0.1至1厘米水柱之间。在环境气体恒定流量通气(CFV)期间,动脉血氧张力与Vin呈直接变化关系(PaO2 = 0.72Vin + 74.6),动脉血二氧化碳张力与Vin呈反比变化关系(PaCO2 = -0.73Vin + 51.2)。在长时间CFV(大于2小时)期间,未观察到二氧化碳蓄积或PaO2恶化的迹象。本研究表明,在呼吸暂停的犬中,通过低气管内压力下的恒定气道气流可在长时间内实现并维持正常血气。