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Journal of Neuroscience Research|January 1, 1980
The interrelation between brain PO2 and NADH oxidation-reduction state in the gerbilA Mayevsky, S Lebourdais, B ChanceBrain Research|November 7, 1975
Metabolic responses of the awake cerebral cortex to anoxia hypoxia spreading depression and epileptiform activityA Mayevsky, B ChanceScience (New York, N.Y.)|August 6, 1982
Intracellular oxidation-reduction state measured in situ by a multichannel fiber-optic surface fluorometerA Mayevsky, B ChanceAdvances in Experimental Medicine and Biology|January 1, 1988
Fiber optic surface fluorometry/reflectometry and 31-p-NMR for monitoring the intracellular energy state in vivoA Mayevsky, S Nioka, B ChanceNeurological Research|January 1, 1980
Flying spot studies of brain flavoproteins in the gerbilB R Silberstein, A Mayevsky, B ChanceJournal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|April 1, 1988
Brain oxidative metabolism of the newborn dog: correlation between 31P NMR spectroscopy and pyridine nucleotide redox stateA Mayevsky, S Nioka, V H Subramanian, et al.Brain Research|March 5, 1986
Three-dimensional metabolic mapping of the freeze-trapped brain: effects of ischemia in the Mongolian gerbilA Mayevsky, H Kaplan, J Haveri, et al.Cardiovascular Research|September 1, 1991
In vivo correlation of myocardial metabolism, perfusion, and mechanical function during increased cardiac workM Osbakken, M D Mitchell, D Zhang, et al.Brain Research|October 3, 1983
Brain metabolic responses to ischemia in the mongolian gerbil: in vivo and freeze trapped redox scanningA Mayevsky, N Zarchin, H Kaplan, et al.Journal of Basic and Clinical Physiology and Pharmacology|October 1, 1992
Multiparametric evaluation of brain functions in the Mongolian gerbil in vivoA Mayevsky, K Frank, M Muck, et al.Pageof 53