Measurements of the perivascular PO2 in the vicinity of the pial vessels of the cat (original) (raw)

References

  1. Baez, S.: Recording of microvascular dimensions with an imagesplitter television microscope. J. Appl. Physiol.211, 299–301 (1966)
    Google Scholar
  2. Betz, E., Wünnenberg, W.: Anpassungsvorgänge der Gehirndurchblutung an Sauerstoffmangel. Arch. Physik. Therapie16, 45–55 (1964)
    Google Scholar
  3. Cook, B. H., Granger, H. J., Taylor, A. E.: Metabolism of coronary arteries and arterioles. A histochemical study. Microvasc. Res.14, 145–159 (1977)
    Google Scholar
  4. Davies, P. W., Bronk, D. W.: Oxygen tension in mammalian brain. Fed. Proc.16, 689–692 (1969)
    Google Scholar
  5. Duling, B. R., Berne, R. M.: Longitudinal gradients in periarteriolar oxygen tension. A possible mechanism for the participation of oxygen in local regulation of blood flow. Circ. Res.27, 669–678 (1970)
    Google Scholar
  6. Grote, J., Kreuscher, R., Schubert, R., Russ, H. J.: New studies on the influence of\(P_a {\text{O}}_2\) and\(P_a {\text{CO}}_2\) on regional and total cerebral blood flow. 6th European Conference on the Microcirculation, pp. 294–297. Basel: Karger 1971
    Google Scholar
  7. Guyton, A. C., Ross, J. M., Carrier, O., Walker, J. R.: Evidence for tissue oxygen demand as the major factor causing autoregulation. Circ. Res.14/15 (Suppl. 1) I60-I68 (1964)
    Google Scholar
  8. Herbert, D. A., Mitchell, R. A.: Blood gas tensions and acid-base balance in awake cats. J. Appl. Physiol.30, 434–437 (1971)
    Google Scholar
  9. Howard, R. O., Richardson, D. W., Smith, M. H., Patterson, J. L.: Oxygen consumption of arterioles and venules as studied in the Cartesian diver. Circ. Res.16, 187–196 (1965)
    Google Scholar
  10. Kety, S. S., Schmidt, C. F.: The effects of altered arterial tensions of carbon dioxide and oxygen on cerebral blood flow and oxygen consumption of normal young men. J. Clin. Invest.27, 484–492 (1948)
    Google Scholar
  11. Kontos, H. A., Wet, E. P., Raper, A. J., Rosenblum, W. I., Navari, R. M., Patterson, J. L.: Role of tissue hypoxia in local regulation of cerebral microcirculation. Am. J. Physiol.234, H582-H591 (1978)
    Google Scholar
  12. Kosan, R. L., Burton, A. C.: Oxygen consumption of arterial smooth muscle as a function of active tone and passive stretch. Circ. Res.18, 79–88 (1966)
    Google Scholar
  13. Lassen, N. A.: Control of cerebral circulation in health and disease. Circ. Res.34, 749–760 (1974)
    Google Scholar
  14. Leniger-Follert, E., Lübbers, D. W., Wrabetz, W.: Regulation of local tissue\(P_{O_2 } \) of the brain cortex at different arterial O2 pressures. Pflügers Arch.359, 81–96 (1975)
    Google Scholar
  15. Lübbers, D. W.: The oxygen pressure field in the brain and its significance for the normal and critical oxygen supply of the brain. In: Oxygen transport in blood and tissue (D. W. Lübbers, U. C. Luft, G. Thews, E. Witzleb, eds.), pp. 67–92. Berlin, Heidelberg, New York: Springer 1968
    Google Scholar
  16. Pittman, R. N., Duling, B. R.: Effects of altered carbon dioxide tension on hemoglobin oxygenation in hamster cheek pouch microvessels. Microvasc. Res.13, 211–224 (1977)
    Google Scholar
  17. Severinghaus, J. W., Lassen, N.: Step hypocapnia to separate arterial from tissue\(P_{{\text{CO}}_2 }\) in the regulation of cerebral blood flow. Circ. Res.20, 272–278 (1967)
    Google Scholar
  18. Silver, I. A.: Some observations on the cerebral cortex with an ultramicro, membrane-covered, oxygen electrode. Med. Electron. Biol. Engn.3, 377–387 (1965)
    Google Scholar
  19. Stosseck, K.: Hydrogen exchange through the pial vessel wall and its meaning for the determination of the local cerebral blood flow. Pflügers Arch.320, 111–119 (1970)
    Google Scholar
  20. Whalen, W. J., Canfield, R., Nair, P.: Effects of breathing O2 or O2+CO2 and of the injection of neurohumors on the\(P_{O_2 } \) of cat cerebral cortex. Stroke1, 194–200 (1970)
    Google Scholar
  21. Whalen, W. J., Riley, J., Nair, P.: A microelectrode for measuring intracellular\(P_{O_2 } \). J. Appl. Physiol.23, 798–801 (1967)
    Google Scholar
  22. Wiederhielm, C. A.: Distensibility characteristics of small blood vessels. Fed. Proc.24, 1075–1084 (1965)
    Google Scholar

Download references