Artru A A
Anesthesiology. 1986 Dec;65(6):602-8. doi: 10.1097/00000542-198612000-00007.
Isoflurane (ISF)-induced hypotension causes equal reductions of cerebral blood flow (CBF) and the cerebral metabolic rate for oxygen (CMRO2) so that no disturbance of cerebral energy stores or metabolites occurs. While hypocapnia during ISF-induced hypotension causes a further reduction of CBF, the effects on cerebral energy stores and metabolites produced by combining hypocapnia with ISF-induced hypotension are not known. This study examined the effect of hypocapnia (PaCO2 = 20 mmHg) on CMRO2, the electroencephalogram (EEG), and levels of adenine nucleotides, phosphocreatine, lactate, pyruvate, and glucose in brain tissue in 12 dogs during ISF-induced hypotension. All dogs were examined at: normocapnia with normotension; hypocapnia with normotension; hypocapnia combined with ISF-induced hypotension to cerebral perfusion pressures of 60, 50, and 40 mmHg; and restoration of normocapnia with normotension. In six dogs CMRO2 was determined, and the EEG was evaluated using compressed spectral analysis. In the other six dogs brain tissue metabolites were determined. Hypocapnia combined with ISF-induced hypotension (all levels) caused a decrease of the power of the beta-2 spectra, an increase of the power of the alpha and beta-1 spectra, but no change in total power of the EEG. There was no change in cerebral energy stores or brain tissue metabolites. CMRO2 was reduced by approximately 27%. Thirty minutes after restoration of normocapnia with normotension, cerebral metabolites remained unchanged and CMRO2, and the power of the alpha, beta-1, and beta-2 spectra of the EEG returned to control values. These results suggest no adverse effect on cerebral metabolism or function during hypocapnia combined with ISF-induced hypotension.
异氟烷(ISF)诱发的低血压会使脑血流量(CBF)和脑氧代谢率(CMRO2)等量减少,因此不会出现脑能量储备或代谢物的紊乱。虽然ISF诱发低血压期间的低碳酸血症会导致CBF进一步降低,但低碳酸血症与ISF诱发低血压联合作用对脑能量储备和代谢物的影响尚不清楚。本研究检测了12只犬在ISF诱发低血压期间,低碳酸血症(动脉血二氧化碳分压[PaCO2]=20 mmHg)对CMRO2、脑电图(EEG)以及脑组织中腺嘌呤核苷酸、磷酸肌酸、乳酸、丙酮酸和葡萄糖水平的影响。所有犬均在以下状态下接受检查:正常血压伴正常碳酸血症;正常血压伴低碳酸血症;低碳酸血症合并ISF诱发低血压,使脑灌注压分别达到60、50和40 mmHg;恢复正常血压伴正常碳酸血症。6只犬测定了CMRO2,并采用压缩谱分析评估EEG。另外6只犬测定了脑组织代谢物。低碳酸血症合并ISF诱发低血压(所有水平)导致β-2谱功率降低,α和β-1谱功率增加,但EEG总功率无变化。脑能量储备或脑组织代谢物无变化。CMRO2降低了约27%。恢复正常血压伴正常碳酸血症30分钟后,脑代谢物保持不变,CMRO2以及EEG的α、β-1和β-2谱功率恢复至对照值。这些结果表明,低碳酸血症合并ISF诱发低血压期间对脑代谢或功能无不良影响。