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Magnetic Resonance in Medicine|June 1, 1992
Contribution of cytoplasmic polypeptides to the 1H NMR spectrum of developing rat cerebral cortexR A Kauppinen, J PalvimoNeuroreport|December 13, 1993
Extracellular pH and buffering power determine intracellular pH in cortical brain slices during and following hypoxiaT R Pirttilä, R A KauppinenTrends in Biochemical Sciences|August 1, 2000
1H NMR visible lipids in the life and death of cellsJ M Hakumäki, R A KauppinenJournal of Neurochemistry|December 1, 1986
Failure to maintain glycolysis in anoxic nerve terminalsR A Kauppinen, D G NichollsThe American Journal of Physiology|October 1, 1984
Monitoring of mitochondrial membrane potential in isolated perfused rat heartR A Kauppinen, I E HassinenJournal of Neuroscience Research|July 1, 1990
Cerebral energy metabolism and intracellular pH during severe hypoxia and recovery: a study using 1H, 31P, and 1H [13C] nuclear magnetic resonance spectroscopy in the guinea pig cerebral cortex in vitroR A Kauppinen, S R WilliamsNeurochemistry International|November 1, 1993
Calcium-mediated damage following hypoxia in cerebral cortex ex vivo studied by NMR spectroscopy. Evidence for direct involvement of voltage-gated Ca(2+)-channelsK J Brooks, R A KauppinenEuropean Journal of Biochemistry|July 1, 1986
Synaptosomal bioenergetics. The role of glycolysis, pyruvate oxidation and responses to hypoglycaemiaR A Kauppinen, D G NichollsNeuroscience|January 1, 1992
Recovery of intracellular pH in cortical brain slices following anoxia studied by nuclear magnetic resonance spectroscopy: role of lactate removal, extracellular sodium and sodium/hydrogen exchangeT R Pirttilä, R A KauppinenProgress in Neurobiology|December 1, 1995
Transgenic animals as models in the study of the neurobiological role of polyaminesR A Kauppinen, L I AlhonenPageof 8