Van Hemelrijck J, Fitch W, Mattheussen M, Van Aken H, Plets C, Lauwers T
Department of Anesthesiology, Katholieke Universiteit Leuven, Belgium.
Anesth Analg. 1990 Jul;71(1):49-54. doi: 10.1213/00000539-199007000-00008.
The purpose of this study was to investigate the effect of propofol on cerebral blood flow, cerebral metabolism, and cerebrovascular autoregulatory capability. Seven anesthetized baboons were given propofol at three different infusion rates. An infusion of 3 mg.kg-1.h-1 caused minimal changes, but infusion rates of 6 and 12 mg.kg-1.h-1 decreased cerebral blood flow by 28% and 39%, respectively. The changes in cerebral metabolic rate of oxygen were not statistically significant. However, with the two higher infusion rates, there was a trend toward decrease, by 5% and 22%, respectively, for the cerebral metabolic rate of oxygen, and by 18% and 36% for the cerebral metabolic rate of glucose. A 25-30 mm Hg increase in arterial blood pressure had no influence on cerebral blood flow. Replacement of nitrous oxide by nitrogen had no significant influence on cerebral blood flow or metabolism. It is concluded that propofol causes a dose-dependent decrease in cerebral blood flow. However, the study does not prove that this decrease in cerebral blood flow is accompanied by the same degree of decrease in cerebral metabolism. Further studies are clearly needed to clarify propofol's influence on the coupling between cerebral metabolism and blood flow. The physiologic responsiveness of the cerebral circulation to alterations in arterial pressure is well preserved. Propofol appears to prevent the metabolic stimulation and increased cerebral blood flow that has been associated with the administration of nitrous oxide.
本研究的目的是探讨丙泊酚对脑血流量、脑代谢及脑血管自动调节能力的影响。七只麻醉的狒狒以三种不同的输注速率给予丙泊酚。3mg·kg-1·h-1的输注引起的变化极小,但6mg·kg-1·h-1和12mg·kg-1·h-1的输注速率分别使脑血流量降低了28%和39%。氧的脑代谢率变化无统计学意义。然而,在两种较高的输注速率下,氧的脑代谢率分别有下降5%和22%的趋势,葡萄糖的脑代谢率分别下降18%和36%。动脉血压升高25 - 30mmHg对脑血流量无影响。用氮气替代氧化亚氮对脑血流量或代谢无显著影响。得出的结论是,丙泊酚可引起脑血流量呈剂量依赖性下降。然而,该研究并未证明脑血流量的这种下降伴随着脑代谢同等程度的下降。显然需要进一步研究来阐明丙泊酚对脑代谢与血流耦合的影响。脑循环对动脉压改变的生理反应性保持良好。丙泊酚似乎可防止与氧化亚氮给药相关的代谢刺激和脑血流量增加。