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Relation between isoflurane concentration, body temperature and EEG variables during hypothermic cardiopulmonary bypass in juvenile sheep

机译:低温绵羊体外循环过程中异氟烷浓度,体温与脑电变量之间的关系

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摘要

Isolation of lungs from the circulation during cardiopulmonary bypass (CPB) results in the loss of end-tidal anaesthetic measurement as a monitor of anaesthetic depth. The objective of our study was to test whether the isoflurane concentration measured at the oxygenator exhaust (ISOPO-OX) could be used as an alternative. Five juvenile ewes were anaesthetised for experimental aortic valve replacement during hypothermic CPB. One sheep recovered from anaesthesia with signs of CNS excitement and was excluded from electroencephalogram (EEG) data analysis. ISOPO-OX was similar to the end-tidal anaesthetic concentration measured before start of CPB (ISOET(PRE-CPB)) and was positively correlated (P< 0.001; R=0.431) to the bypass temperature (T-CPB). EEG burst suppression ratio was negatively correlated with the oesophageal temperature (T-ESO) (P=0.002; R = 0.433) whilst data analysis revealed only a weak association between EEG variables and ISOPO-OX. Therefore, EEG monitoring may be the only valuable quantitative measure of adequate anaesthetic depth during hypothermic CPB
机译:在体外循环(CPB)期间将肺从循环中隔离开来,导致失去作为监测麻醉剂深度的潮气末麻醉剂的测量值。我们研究的目的是测试在充氧器排气口测量的异氟烷浓度(ISOPO-OX)是否可以替代。在低温CPB期间,麻醉了五只幼年母羊以进行实验性主动脉瓣置换。一只绵羊从麻醉中恢复出来,出现中枢神经系统兴奋的迹象,被排除在脑电图(EEG)数据分析之外。 ISOPO-OX类似于CPB开始之前测量的潮气末麻醉剂浓度(ISOET(PRE-CPB)),并且与旁路温度(T-CPB)正相关(P <0.001; R = 0.431)。脑电图突发抑制率与食管温度(T-ESO)呈负相关(P = 0.002; R = 0.433),而数据分析显示脑电图变量与ISOPO-OX之间仅存在弱关联。因此,EEG监测可能是低温CPB期间麻醉深度足够的唯一有价值的定量方法

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