Influence of tissue acidosis upon restitution of brain energy metabolism following total ischemia.
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Summary
The results lend no support to the view that even a marked lactic acidosis adversely affects the ability of brain cells to survive total ischemia of limited duration.
- Type
- article
- Published
- 1974-09-06
- Cited by
- 221
- References
- 30
- OpenAlex
- https://openalex.org/W2013370666
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38905877
Keywords
Phosphocreatine, Ischemia, Internal medicine, Acidosis, Endocrinology
References
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- Cerebral ischemia. II. The no-reflow phenomenon.
- EFFECT OF ISCHEMIA ON KNOWN SUBSTRATES AND COFACTORS OF THE GLYCOLYTIC PATHWAY IN BRAIN.
- REGIONAL ENERGY RESERVES IN MOUSE BRAIN AND CHANGES WITH ISCHAEMIA AND ANAESTHESIA *
- Changes in energy state and acid-base parameters of the rat brain during complete compression ischemia.
- Anoxia of canine brain without damage.
- TEMPORARY ARREST OF THE CIRCULATION TO THE CENTRAL NERVOUS SYSTEM: II. PATHOLOGIC EFFECTS
- Acidosis and some metabolic properties of isolated cerebral tissues.
- CHANGES IN CARBOHYDRATE SUBSTRATES, AMINO ACIDS AND AMMONIA IN THE BRAIN DURING INSULIN‐INDUCED HYPOGLYCEMIA
- The energy charge of the adenylate pool as a regulatory parameter. Interaction with feedback modifiers.
- Effectiveness of THAM in Preventing Cellular Damage Resulting From Oxygen Lack.∗
- Cerebral metabolic state following complete compression ischemia.
- OPTIMAL FREEZING CONDITIONS FOR CEREBRAL METABOLITES IN RATS
- CEREBRAL ENERGY STATE IN INSULIN‐INDUCED HYPOGLYCEMIA, RELATED TO BLOOD GLUCOSE AND TO EEG
- Acute intracranial hypertension--an experimental investigation.
- MEASUREMENT OF MAXIMAL PERMISSIBLE CEREBRAL ISCHEMIA AND A STUDY OF ITS PHARMACOLOGIC PROLONGATION.
- Metabolism of oxygen, glucose, lactate and pyruvate in the rat brain in situ
- THE EFFECT OF MODERATE AND MARKED HYPERCAPNIA UPON THE ENERGY STATE AND UPON THE CYTOPLASMIC NADH/NAD+ RATIO OF THE RAT BRAIN
- Studies on Mechanisms of Impairment of Cerebral Circulation Following Ischemia: Effect of Hemodilution and Perfusion Pressure
- THE EFFECT OF HYPERCAPNIA UPON INTRACELLULAR pH IN THE BRAIN, EVALUATED BY THE BICARBONATE‐ CARBONIC ACID METHOD AND FROM THE CREATINE PHOSPHOKINASE EQUILIBRIUM
Cited by
- Prevention of Postischemic Canine Neurological Injury Through Potentiation of Brain Energy Metabolism by Acetyl‐L‐Carnitine
- Densitometric analysis of cytochrome oxidase in ischemic rat brain.
- Calcium channel blockers correct acidosis in ischemic rat brain without altering cerebral blood flow.
- Energy metabolism, stress hormones and neural recovery from cerebral ischemia/hypoxia.
- Basic Science Review: Nitric Oxide—Releasing Prosthetic Materials
- Cerebral injuries and intracranial hemorrhages as a result of trauma.
- Brain cellular injury and recovery--horizons for improving medical therapies in stroke and trauma.
- Modulation of acid-sensing ion channels: molecular mechanisms and therapeutic potential.
- Hyperglycemia in Experimental Cerebral Ischemia
- Oxygen Transfer from Atmosphere to Tissues
- Cerebral Ischemia and Dementia
- Advances in Neurochemistry
- Drugs and Aging
- Effects of oxygen deprivation on brain metabolites in various gestational age sheep fetuses
- Cardiopulmonary-cerebral resuscitation: a rat model
- Heterogeneous distribution of hydrogen and bicarbonate ions during complete brain ischemia.
- Acid-base homeostasis in the brain: physiology, chemistry, and neurochemical pathology.
- Metabolic trafficking between cells in nervous tissue.
- Controlled Hypotension in Neuroanaesthesia
- Fine morphological alterations during brain injury and recovery analyzed with intravital microscopy
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