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Bibliografia
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pubblicato nel Gennaio - Febbraio 1996 in Sport&Medicina - fascicolo n.1

Bibliografia

1) di Prampero P.E.: Energetics of muscular exercise . Rev. Physiol. Biochem. Pharmacol. 89: 143-222, 1981.

2) Davies C.T.M., Rennie R.: Human power output . Nature 217:770-771, 1968.

3) Bosco C., Luthanen P., Komi P.V.: A simple method of measurement of mechanical power in jumping . Eur. J. Appl. Physiol. 50: 273-282, 1983.

4) Ikuta K., Ikai M.: Study on the development of maximun anaerobic power in man with bicycle ergometer . Res. J. Phys. Ed. (Japan) 17: 151-157, 1972.

5) Margaria R., Aghemo P., Rovelli E.: Measurement of muscular power (anaerobic) in man . J. Appl. Physiol. 21: 16621664, 1966.

6) di Prampero P.E., Mognoni P., Veicsteinas A.: The effects of hypoxia on maximal anaerobic alactic power in man . In: High Altitude Physiology and Medicine. Eds.: W. Brendel and R.A. Zink., SpringerVerlag, pp. 88-93 1982.

7) Cerretelli P., di Prampero P.E.: Aerobic and anaerobic metabolism during exercise at altitude . Med. Sport Science 19: 1-19, 1985.

8) Ferretti G., Hauser H., di Prampero P.E.: Maximal muscular power before and after exposure to chronic hypoxia . Int. J. Sports Med. 11 (Suppl. 1): S31-S34, 1990.

9) Kayser B., Narici M., Milesi S., Grassi B., Cerretelli P.: Body composition and maximum alactic anaerobic performance during a one month stay at high altitude . Int. J. Sports Med. 14: 244-247, 1993a.

10) Kayser B., Bokenkamp R., Binzoni T.: Alpha-motoneuron excitability at high altitude . Bur. J. Appl. Physiol. 66: 1-4, 1993b.

11) Cerretelli P., Veicsteinas A., Marconi C.: Anaerobic metabolism at high altitude: the lactacid mechanism . In: High Altitude Physiology and Medicine. Eds.: W. Brendel and R.A. Zink., SpringerVerlag, pp. 94-102, 1982.

12) Edwards H.T.: Lactic acid in rest and work at high altitude . Am. J. Physiol. 116: 367-375, 1936.

13) Young A.J., Evans W.J., Cymerman A., Pandolf K.B., Knapik J.J., Maher J.T.: Sparing effect of chronic high-altitude exposure on muscle glycogen utilization . J. Appl. Physiol. 52: 857-862, 1982.

14) West J.B., Boyer S.J., Graber D.J., Hackett P.H., Maret K.H., Milledge J.S., Peters Jr. R.M., Pizzo C.J., Samaja M., Sarnquist F.H., Schoene R.B., Winslow R.M.: Maximal exercise at extreme altitudes on Mount Everest . J. Appl. Physiol. 55: 688-698, 1983.

15) Sutton J.R., Reeves J.T., Wagner P.D., Groves M.B., Cymerman A., Malconian M.K., Rock P.B., Young P.M., Walter S.D., Houston C.S.: Operation Everest II: oxygen transport during exercise at extreme altitude . J. Appl. Physiol. 64: 1309-1321, 1988.

16) Green H.J., Sutton J.R., Young P.M., Cymerman A., Houston C.S.: Operation Everest II: muscle energetics during maximal exhaustive exercise . J. Appl. Physiol. 66: 142-150, 1989a.

17) Grassi B., Ferretti G., Kayser B., Marzorati M., Colombini A., Marconi C., Cerretelli P.: Maximal rate of blood lactate accumulation during exercise at altitude in humans . J. Appl. Physiol. 79: 331-339, 1995a.

18) Grassi B., Marzorati M., Kayser B., Bordini M., Colombini A., Conti M., Marconi C., Cerretelli P.: Peak blood lactate and blood lactate vs. work load during acclimatization to 5,050 m and in the deacclimatization . J. Appl. Physiol. (in corso di stampa).

19) Hochachka P.W., Stanley C., Matheson G.O., McKenzie D.C., Allen P.S., Parkhouse W.A.: Metabolic and work efficiencies during exercise in Andean natives . J. Appl. Physiol. 70: 1720-1730, 1991.

20) Matheson G.O., Allen P.S., Ellinger D.C., Hanstock C.C., Gheorghiu D., McKenzie D.C., Stanley C., Parkhouse W.S., Hochachka P.W.: Skeletal muscle metabolism and work capacity: a 31PNMR study of Andean natives and lowlanders . J. Appl. Physiol. 70: 1963-1986, 1991.

21) West J.B.: Lactate during exercise at extreme altitude . Fed. Proc. 45: 2953-2957, 1986.

22) Sutton J.R., Heigenhauser G.J.F.: Lactate at altitude . In: Hypoxia. The Adaptations. Eds.: J.R. Sutton, G. Coates, and J.E. Remmers., B.C. Decker Inc., Toronto-Philadelphia, pp. 94-97, 1990.

23) Cerretelli P., Grassi B., Kayser B.: Anaerobic metabolism at altitude: recent developments . In: Hipoxia: Investigaciones bàsicas y Clinicas. Eds.: F. LeònVelarde, A. Arregui. IFEA-UPCH, Lima, pp. 167-179, 1993.

24) Brooks G.A., Butterfield G.E., Wolfe R.R., Groves B.M., Mazzeo R.S., Sutton J.R., Wolfel E.E., Reeves J.T.: Decreased reliance on lactate during exercise after acclimatization to 4,300 m . J. Appl. Physiol. 71: 333-341, 1991.

25) Brooks G.A., Wolfel E.E., Groves B.M., Bender P.R., Butterfield G.E., Cymerman A., Mazzeo R.S., Sutton J.R., Wolfe R.R., Reeves J.T.: Muscle accounts for glucose disposal but not blood lactate appearance after acclimatization to 4,300 m . J. Appl. Physiol. 72: 2435-2445, 1992.

26) Mazzeo R.S., Bender P.R., Brooks G.A., Butterfield G.E., Groves B.M., Sutton J.R., Wolfel E.E., Reeves J.T.: Arterial chathecholamine response during exercise during acute and chronic high altitude exposure . Am. J. Physiol. 261: E419-424, 1991.

27) Reeves J.T., Wolfel E.E., Green H.J., Mazzeo R.S., Young A.J., Sutton J.R., Brooks G.A.: Oxygen transport during exercise at altitude and the lactate paradox: lessons from Operation Everest II and Pikes Peak . In: Exercise and Sport Sciences Reviews, vol. 20. Ed. J.O. Holloszy. Williams & Wilkins, Baltimore, pp. 275-296, 1992.

28) Mazzeo R.S., Brooks G.A., Butterfield G.E., Cymerman A., Roberts A.C., Selland M., Wolfel E.E., Reeves J.T.: Beta-adrenergic blockade does not prevent the lactate response to exercise after acclimatization at high altitude . J. Appl. Physiol. 76: 610-615, 1994.

29) Green H.J., Sutton J.R., Wolfel E.E., Reeves J.T., Butterfield G.E., Brooks G.A.: Altitude acclimatization and energy metabolic adaptations in skeletal muscle during exercise. J. Appl. Physiol. 73: 2701-2708, 1992.

30) Green H.J., Sutton J.R., Cymerman A., Young P.M., Houston C.S.: Operation Everest II: adaptations in human skeletal muscle . J. Appl. Physiol. 66: 2454-2461, 1989b.

31) Young A.J., Evans W.J., Fisher E.C., Sharp R.L., Costill D.L., Maher J.T.: Skeletal muscle metabolism of sea-level natives following short-term high-altitude residence . Eur. J. Appl. Physiol. 52: 463-466, 1984.

32) Howald H., Pette D., Simoneau J.A., Uber A., Hoppeler H., Cerretelli P.: Effects of chronic hypoxia on muscle enzyme activities . Int. J. Sports Med. 11 (Suppl. 1): S10-S14, 1990.

33) Margaria R., Cerretelli P., Mangili F.: Balance and kinetics of anaerobic energy release during strenous exercise in man. J . Appl. Physiol. 19: 623-628, 1964.

34) Kacimi R., Richalet J.P., Corsin A., Abousahl I., Crozatier B.: Hypoxiainduced downregulation of ß-adrenergic receptors in rat heart . J. Appl. Physiol. 73: 1377-1382, 1992.

35) Kayser B., Ferretti G., Grassi B., Binzoni T., Cerretelli P.: Maximal lactic capacity at altitude: effects of bicarbonate loading . J. Appl. Physiol. 75: 1070-1074, 1993c.

36) Bigland-Ritchie B., Vollestad N.K.: Hypoxia and fatigue: how are they related? . In: Hypoxia. The Tolerable Limits. Eds.: J.R. Sutton, C.S. Houston, G. Coates, Benchmark Press, Indianapolis, pp. 315-326, 1988.

37) Dill D.B., Talbot J.H., Consolazio W.V.: Blood as a physiochemical system. XII. Man at high altitudes . J. Biol. Chem. 118: 649-666, 1937.

38) Kayser B., Narici M., Binzoni T., Grassi B., Cerretelli P.: Fatigue and exhaustion in chronic hypobaric hypoxia: influence of exercising muscle mass . J. Appl. Physiol. 76: 634-640, 1994.

39) Cibella F., Cuttita G., Kayser B., Narici M., Saibene F.: Respiratory muscle fatigue at high altitude . Physiologist 35: 228, 1992.

40) Grassi B., Mognoni P., Marzorati M., Colombini A., Mattiotti S., Caspani E., Marconi C., Cerretelli P.: Effect of chronic hypoxia on peak capillary lactate after exhaustive exercises of various duration . FASEB Journal 9: A648, 1995b.