Bliss D W, Chambers S, Fazzalari F, Hirschl R, Bartlett R H
Department of General Surgery, University of Michigan Medical Center, Ann Arbor, USA.
ASAIO J. 1995 Oct-Dec;41(4):838-41.
The ability to monitor the match between systemic oxygen delivery and consumption using mixed venous oxygen saturation is an important component of management of critically ill patients. Mixed venous oxygen saturation is a particularly useful parameter in circumstances where systemic oxygen delivery is significantly compromised, such as the acute respiratory distress syndrome. With the advent of venovenous extracorporeal life support (ECLS) in the treatment of this condition, however, accurate measurement of true mixed venous oxygen saturation has not been available, because of this artificial elevation of venous oxygen content. Using an algebraic solution, the authors developed an equation to calculate true patient mixed venous oxgen saturation during ECLS. This is accomplished using readily obtainable data such as cardiac output, ECLS flow, ECLS circuit pre and post oxygenator blood oxygen content, pulmonary arterial oxygen saturation, and patient hemoglobin. The formula has been used in an in vitro model, simulating venovenous ECLS and native venous saturation ranging from 20-72%, with a resulting correlation coefficient between calculated and measured saturation of 0.983 and a gamma intercept of 0.7. Using this new mathematical model, previously unobtainable information about the match of oxygen delivery and consumption in venovenous ECLS is now available. This information will facilitate optimal management of oxygen kinetics in patients during venovenous extracorporeal support.
利用混合静脉血氧饱和度监测全身氧输送与消耗之间的匹配情况,是危重症患者管理的重要组成部分。在全身氧输送严重受损的情况下,如急性呼吸窘迫综合征,混合静脉血氧饱和度是一个特别有用的参数。然而,随着静脉-静脉体外膜肺氧合(ECLS)用于治疗这种疾病,由于静脉氧含量的人为升高,无法准确测量真正的混合静脉血氧饱和度。作者通过代数求解法,推导出一个方程来计算ECLS期间患者真正的混合静脉血氧饱和度。这可通过易于获取的数据来实现,如心输出量、ECLS血流量、ECLS回路氧合器前后的血氧含量、肺动脉血氧饱和度和患者血红蛋白。该公式已在体外模型中使用,模拟静脉-静脉ECLS和20%-72%的天然静脉饱和度,计算得到的饱和度与测量得到的饱和度之间的相关系数为0.983,γ截距为0.7。使用这个新的数学模型,现在可以获得关于静脉-静脉ECLS中氧输送与消耗匹配情况的以前无法获得的信息。这些信息将有助于在静脉-静脉体外支持期间对患者的氧动力学进行优化管理。