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Evidence for a significant myocardial contribution to total metabolic burden during hypothermic cardiopulmonary bypass: a study of continuously measured oxygen consumption and arterial lactate levels in pigs.

机译:低温体外循环过程中心肌对总代谢负荷的重要贡献的证据:一项持续测量猪的耗氧量和动脉血乳酸水平的研究。

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OBJECTIVE: We assessed the causes of imbalance of oxygen transport by continuously measuring oxygen consumption (VO2) during hypothermic cardiopulmonary bypass (CPB) in pigs. METHODS: Six pigs (17.2+/-1.6 kg) underwent hypothermic (32 degrees C) CPB for 180 min with 120 min of aortic crossclamping (ACC). An AMIS 2000 mass spectrometer was adapted for the on-line measurement of VO2. Arterial lactate was measured at the beginning of CPB, the end of hypothermia, before and 10 min after ACC release, 20 min later, and at the end of CPB. RESULTS: Arterial lactate increased from 1.8+/-0.7 to 5.1+/-1.8 mmol/L during CPB. Hypothermia reduced VO2 by 0.63+/-0.29 mlmin/kg per degrees C, but lactate increased to 4.2+/-1.5 mmol/L (p <0.05). The most rapid rise of VO2 and lactate occurred during the first 10 min after ACC removal, accounting for 26% and 68%, respectively, of the total rise during rewarming. CONCLUSIONS: Inadequate tissue oxygenation persists throughout hypothermic CPB. The rise in systemic VO2 and lactate immediately after ACC release may reflect inadequate oxygen transport within the myocardium during ischemia and manifest on reperfusion. This simple technique may be used to provide important information regarding the dynamic balance of systemic and myocardial oxygen transport during ischemia-reperfusion.
机译:目的:我们通过连续测量猪低温体外循环(CPB)期间的耗氧量(VO2)来评估氧气输送失衡的原因。方法:六只猪(17.2 +/- 1.6公斤)经过低温(32摄氏度)CPB 180分钟,主动脉交叉钳夹(ACC)120分钟。 AMIS 2000质谱仪适用于VO2的在线测量。在CPB开始,体温过低结束,ACC释放之前和之后10分钟,20分钟之后以及CPB结束时测量动脉乳酸。结果:CPB期间动脉血乳酸从1.8 +/- 0.7增加至5.1 +/- 1.8 mmol / L。亚低温使每摄氏度摄氏VO2降低0.63 +/- 0.29 mlmin / kg,但乳酸盐升高至4.2 +/- 1.5 mmol / L(p <0.05)。 VO2和乳酸的最快上升发生在ACC去除后的前10分钟内,分别占加温期间总上升的26%和68%。结论:整个低温CPB持续存在组织氧合不足。 ACC释放后,全身VO2和乳酸的升高可能反映了局部缺血期间心肌内的氧运输不足,并在再灌注时表现出来。这种简单的技术可用于提供有关缺血再灌注过程中全身和心肌氧运输动态平衡的重要信息。

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