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Oxidative phosphorylation in brain mitochondria of rats differing in their sensitivity to hypoxia

  • Biochemistry and Biophysics
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Literature Cited

  1. V. A. Berezovskii (ed.), Hypoxia and Individual Differences of Reactivity [in Russian], Kiev (1978), p. 216.

  2. A. M. Dudchenko, “Activity of mitochondrial enzymes and concentrations of energy metabolites in the cerebral cortex of rats differing in sensitivity to hypoxia, “Dissertation for the Degree of Candidate of Medical Sciences, Moscow (1976).

  3. A. Z. Kolchinskaya, Oxygen Insufficiency and Age, Kiev (1964), p. 256.

  4. M. N. Kondrashova, Mitochondria [in Russian], Moscow (1969), pp. 23–29.

  5. M. N. Kondrashova, Molecular Mechanisms and Regulation of Energy Metabolism [in Russian], Pushchino (1987), pp. 140–153.

  6. A. A. Korneev, “Investigation of some oxygen-dependent processes on the isolated contracting heart during hypoxia,” Disseration for the Degree of Candidate of Biological Sciences, Moscow (1985).

  7. A. A. Korneev and L. D. Luk'yanova, Patol. Fiziol., No. 3, 53 (1987).

    Google Scholar 

  8. L. D. Luk'yanova, B. S. Balmukhanov, and A. T. Ugolev, Oxygen-Dependent Processes in the Cell and Its Function [in Russian], Moscow (1982), p. 301.

  9. L. D. Luk'yanova and A. V. Korobkov, Physiological and Clinical Problems of Adaptation to Hypoxia, Hypodynamia, and Hyperthermia [in Russian], Vol. 2, Moscow (1981), pp. 73–76.

    Google Scholar 

  10. E. I. Maevskii and M. N. Kondrashova, Mitochondrial Processes during Organization of Vital Activity [in Russian], Pusychino (1978), pp. 24–32.

  11. V. E. Romanova, “Cell models for screening biologically active compounds on the basis of kinetic parameters of respiration and coupled processes of oxidative metabolism,” Dissertation for the Degree of Candidate of Biological Sciences, Moscow (1984).

  12. G. N. Chernobaeva, “Characteristics of regulation of oxidative metabolism in the brain of animals differing in individual sensitivity to hypoxia,” Dissertation for the Degree of Candidate of Biological Sciences, Moscow (1985).

  13. B. Chance and B. Hagihara, J. Biol. Chem.,237 No. 11, 3540 (1962).

    Google Scholar 

  14. B. Chance and G. Hollunger, J. Biol. Chem.,236, No. 5, 1577 (1961).

    Google Scholar 

  15. B. Chance and G. R. Williams, Adv. Enzymol.,17, 65 (1956).

    Google Scholar 

  16. H. McIlwain and R. Rodnight, Practical Neurochemistry, London (1962), pp. 189–210.

  17. T. Purshottam and N. C. Hosh, Aerospace Med.,43, No. 6, 610 (1972).

    Google Scholar 

  18. T. P. Singer, M. Gutman, and E. B. Kearney, FEBS Lett.,17, No. 1, 11 (1971).

    Google Scholar 

  19. T. P. Singer, E. B. Kearney, and N. S. Kenney, Adv. Enzymol.,37, 189 (1973).

    Google Scholar 

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Institute of Pharmacology, Academy of Medical Sciences of the USSR, Moscow. Translated from Byulleten' Éksperimental'noi Biologii i Meditsiny, Vol. 112, No. 7, pp. 49–51, July. 1991.

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Luk'yanova, L.D., Romanova, V.E. & Chernobaeva, G.N. Oxidative phosphorylation in brain mitochondria of rats differing in their sensitivity to hypoxia. Bull Exp Biol Med 112, 962–965 (1991). https://doi.org/10.1007/BF00841143

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  • DOI: https://doi.org/10.1007/BF00841143

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