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麻醉与低温对大脑的影响。

Cerebral effects of anaesthesia and hypothermia.

作者信息

Stephan H, Sonntag H, Lange H, Rieke H

机构信息

Department of Anaesthetics, University of Göttingen, Germany.

出版信息

Anaesthesia. 1989 Apr;44(4):310-6. doi: 10.1111/j.1365-2044.1989.tb11284.x.

Abstract

Cerebral blood flow, cerebral oxygen and glucose consumption, and cerebral lactate and pyruvate release were measured; spectral analysis of the EEG was recorded in 10 male patients who had coronary artery bypass surgery. The measurements were taken to evaluate the effects of fentanyl-midazolam anaesthesia during normothermia and during hypothermic nonpulsatile cardiopulmonary bypass at 26 degrees C venous blood temperature, when a temperature-corrected PaCO2-value of 5.3 kPa was maintained. Anaesthesia with fentanyl 7 micrograms/kg and midazolam 200 micrograms/kg as induction doses, followed by infusions of fentanyl 0.15 micrograms/kg/minute and midazolam 3 micrograms/kg/minute, was characterised by a decrease in fast-wave activity and an increase in high-amplitude, slow-wave activity in the EEG. There was also a decrease in cerebral blood flow (38%), oxygen consumption (22%) and glucose consumption (25%), while lactate and pyruvate production remained unchanged. Hypothermia of 26 degrees C venous blood temperature suppressed EEG almost completely and decreased oxygen and glucose consumption by a further 61% and 54%, respectively, with no changes in lactate and pyruvate production while cerebral blood flow increased by 145%. These results show that the effects of fentanyl-midazolam anaesthesia on cerebral metabolism are enhanced during hypothermic cardiopulmonary bypass while the influence of anaesthesia on cerebral blood flow is overshadowed by the practice of a temperature-corrected acid-base management.

摘要

对10例接受冠状动脉搭桥手术的男性患者测量了脑血流量、脑氧和葡萄糖消耗量以及脑乳酸和丙酮酸释放量;记录了脑电图的频谱分析。这些测量旨在评估在常温下以及在26℃静脉血温度的低温非搏动性体外循环期间,当维持温度校正后的动脉血二氧化碳分压值为5.3 kPa时,芬太尼-咪达唑仑麻醉的效果。以7微克/千克芬太尼和200微克/千克咪达唑仑作为诱导剂量进行麻醉,随后以0.15微克/千克/分钟的速度输注芬太尼和以3微克/千克/分钟的速度输注咪达唑仑,其特点是脑电图中的快波活动减少,高振幅慢波活动增加。脑血流量(38%)、氧消耗量(22%)和葡萄糖消耗量(25%)也有所下降,而乳酸和丙酮酸的产生保持不变。静脉血温度为26℃的低温几乎完全抑制了脑电图,并使氧和葡萄糖消耗量分别进一步降低61%和54%,乳酸和丙酮酸的产生没有变化,而脑血流量增加了145%。这些结果表明,在低温体外循环期间,芬太尼-咪达唑仑麻醉对脑代谢的影响增强,而麻醉对脑血流量的影响因温度校正酸碱管理的实施而被掩盖。

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