EEG Suppression and Anoxic Depolarization: Influences on Cerebral Oxygenation during Ischemia
Open Access
- 1 May 1991
- journal article
- Published by SAGE Publications in Journal of Cerebral Blood Flow & Metabolism
- Vol. 11 (3), 407-415
- https://doi.org/10.1038/jcbfm.1991.81
Abstract
Cerebral ischemia provokes sequential changes that include EEG suppression, anoxic depolarization (AD) with maximal increases in extracellular potassium ion activity (K+o), and anoxia with maximal decreases in tissue oxygen tension (tPO2) and increases in the reduction/oxidation (redox) ratios of the mitochondrial electron transport carriers. Studies were directed toward relationships among these events during cerebral ischemia (“four-vessel occlusion model”) in pentobarbital anesthetized rats. Results demonstrate that EEG suppression and anoxic depolarization do not occur as a simple function of progressive oxygen decline during cerebral ischemia. Rates of K+ elevation, tPO2 decline, and cytochrome a,a3 reduction were decreased in the immediate period following EEG suppression. Latency to EEG suppression was inversely correlated with latency to maximal cytochrome reduction. In contrast, AD was associated with increased rates of tPO2 decline and cytochrome a,a3 reduction. Latency to AD was related to latency of subsequent maximal cytochrome a,a3 reduction. These data suggest that EEG suppression spares oxygen while AD accelerates the progression to energy failure by accelerating the decline in oxygen stores in brain following global ischemia.Keywords
This publication has 32 references indexed in Scilit:
- Depth profile of local oxygen tension and blood flow in rat cerebral cortex, white matter and hippocampusBrain Research, 1988
- Effects of hypoxia on rat hippocampal neurones in vitro.The Journal of Physiology, 1987
- Energy-requiring cell functions in the ischemic brainJournal of Neurosurgery, 1982
- The increase in extracellular potassium concentration in the ischemic brain in relation to the preischemic functional activity and cerebral metabolic rateBrain Research, 1980
- Effects of reduced cerebral blood flow upon EEG pattern, cerebral extracellular potassium, and energy metabolism in the rat cortex during bicuculline-induced seizuresBrain Research, 1979
- The extracellular potassium concentration in brain cortex following ischemia in hypo‐ and hyperglycemic ratsActa Physiologica Scandinavica, 1978
- Extracellular potassium activity, evoked potential and tissue blood flowJournal of the Neurological Sciences, 1977
- Cortical evoked potential and extracellular K+ and H+ at critical levels of brain ischemia.Stroke, 1977
- IMPAIRED SYNTHESIS OF ACETYLCHOLINE IN BRAIN ACCOMPANYING MILD HYPOXIA AND HYPOGLYCEMIAJournal of Neurochemistry, 1976
- Effect of hypoxia on tyrosine and tryptophan hydroxylation in unanaesthetized rat brainJournal of Neurochemistry, 1973