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KMID : 0356919960300010001
Korean Journal of Anesthesiology
1996 Volume.30 No. 1 p.1 ~ p.6
Effects of Phenylephrine Induced Hypertension on the Cerebral Hemodynamics in Dogs




Abstract
Background:
@EN induced hypertension has long been considered a potential adjunct to the management of foal cerebra ischemia. Whether induced hypertension causes an increase in cerebral blood flow(CBF), dependent on cerebral perfusion and/or an
intracerebral
redistribution of CBF by a vasoconstrictive effect of vasonconsrictor is controversial. In this study, effect of phenylephrine induced hypertension of the cerebral hemodynamics and mechanism of reduced ischemic area were studied.
@ES Methods: Six mongrel dogs weighing between 13 and 18 kg were anesthetized with halothane 0.5 vol%-N2O 1 L/mon-O2 L/min. Ventilation was controlled to maintain PaCO2 within 35~40 mmHg. Cerebral blood flow was measured and calculated by the
posterior
sagittal sinus outflow method. Cerebral metabolic rate for oxygen(CMRO) was calculated. Intracranial pressure(ICP) was also measured. Phenylephrine was infused to increase mean arterial blood pressure(MAP) to a level 30% above baseline value and
MAP was
had constant for 20 minutes before CBF, ICP, CMRO2 determination. These parameters were measured at 10, 20 minutes after induced hypertension.
@ES Results: induced hypertension resulted in increased MAP and decreased hear rate. There were no differences between baseline, hypertension 10 min, and hypertension 20 min in terms of PaCO2, PaO2, hematocrit and temperature, CBF was not changed
after
induced hypertension(39.1¡¾9.7 vs 40¡¾10vs 40.2¡¾10.1ml . 100g. min(mean¡¾SD) at baseline, hypertension 10 min, hypertension 20 min, respectively). Cerebral metabolic rate was not changed also after induced hypertension. ICP increased after
induced
hypertension significantly(20.5¡¾12.5vs 26¡¾15.3vs 29.8¡¾17mmHg at baseline, hypertension 10 min, 20 min, respectively).
@ES Conclusion:
@EN Phenylephrine is a cerebral vasoconstrictor and that causes redistribution of cerebral blood flow to ischemic brain area.
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