Armon Y., Cooper D.M., Zanconato S. (1991) Maturation of ventilatory responses to 1 minute exercise. Pediatric Research 29, 362-368. |
Beedle B.B., Mann C.L. (2007) A comparison of two warm-ups joint range of m-otion. Journal of Strength and Conditioning Research 221, 776-779. |
Berg A., Kim S., Keul J. (1986) Skeletal muscle enzyme activities in healthy young subjects. International Journal of Sports Medicine 7, 236-239. |
Billat V., Sirvent P., Py G., Koralsztein J., Mercier J. (2003) The concept of maximal lactate steady state: a bridge between biochemistry, physiology and sport science. Sports Medicine 33, 407-426. |
Bishop D., Edge J., Davis C., Goodman C. (2004) Induced metabolic alkalosis affects muscle metabolism and repeated-sprint ability. Medicine and Science in Sports and Exercise 36, 807-813. |
Cairns S.P. (2006) Lactic acid and exercise performance. Sports Medicine 36, 279-289. |
Cooper D.M., Kaplan M.R., Baungarten L., Weiler-Ravell D., Whipp B.J., Wasserman K. (1987) Coupling of ventilation and CO2 production during exercise in children. Pediatric Research 21, 568-572. |
Costill D., Verstappen F., Kuipers H., Janssen E., Fink W. (1984) Acid-base balance during repeated bouts of exercise: Influence of HCO3-. International Journal of Sports Medicine 5, 228-231. |
Denadai B.S., Greco C., Teixeira M. (2000) Blood lactate response and critical speed in swimmers aged 10-12 years of different standards. Journal of Sports Sciences 18, 779-784. |
Faff J. (1993) Can the work capacity be improved by inducing pre-exercise alkalosis?. Biology of Sport 110, 127-141. |
Gao J., Costill D., Horswill C., Park S.H. (1988) Sodium bicarbonate ingestion improves performance in interval swimming. European Journal of Applied Physiology and Occupational Physiology 58, 171-174. |
Gaul C.A., Docherty D., Cicchini R. (1995) Differences in anaerobic performance between boys and men. International Journal of Sports Medicine 167, 451-455. |
Goldfinch J., McNaughton L., Davies P. (1988) Induced metabolic alkalosis and its effects on 400m racing time. European Journal Applied Physiology and Occupational Physiology 57, 45-48. |
Harrison A., Thompson K. (2005) Ergogenic aids: sodium bicarbonate. Peak Performance 219, 9-10. |
Hebestreit H., Meyer F., Htay H., Heigenhauser G., Bar-Or O. (1996) Plasma metabolites, volume and electrolytes following 30s high intensity exercise in boys and men. European Journal Applied Physiology and Occupational Physiology 72, 563-569. |
Hollidge-Horvat M., Parolin M., Wong D., Jones N.L. (2000) Effect of induced metabolic alkalosis on human skeletal muscle metabolism during exercise. American Journal of Physiology Endocrinology and Metabolism 278, 316-329. |
Horswill C.A., Costill D., Fink W., Flynn M., Kirwan J., Mitchell J., Houmard J. (2004) Influence of sodium bicarbonate on sprint performance. Medicine and Science in Sports and Exercise 36, 1239-1243. |
Inbar O., Bar-Or O. (1986) Anaerobic characteristics in male children and adolescents. Medicine and Science in Sports and Exercise 18, 264-269. |
Lindh A.M., Peyrebrune M.C., Ingham S.A., Bailey D.M., Folland J.P. (2008) Sodium bicarbonate improves swimming performance. International Journal of Sports Medicine 29, 519-523. |
McNaughton L.R. (1990) Sodium citrate and anaerobic performance: Implications of dosage. European Journal Applied Physiology and Occupational Physiology 61, 292-297. |
McNaughton L.R. (1992) Sodium bicarbonate ingestion and its effects on anaerobic exercise of various durations. Journal of Sports Sciences 10, 425-435. |
McNaughton L.R. (1999) Bicarbonate ingestion: effects of dosage on 60s cycle ergometry. European Journal Applied Physiology and Occupational Physiology 80, 333-336. |
McNaughton L.R., Cedaro R. (1991) The effect of sodium bicarbonate on rowing ergometer performance in elite rowers. Australian Journal of Science and Medicine in Sport 23, 66-69. |
McNaughton L.R., Dalton B., Palmer G. (1999) Sodium bicarbonate can be used as an ergogenic aid in high intensity, competitive cycle ergometry of 1h duration. European Journal Applied Physiology and Occupational Physiology 80, 64-69. |
Nagano Y., Baba R., Kuraishi K., Yasuda T., Ikoma M., Nishibata K., Yokota M., Nagashima M. (1998) Ventilatory control during exercise in normal children. Pediatric Research 43, 704-707. |
Parry-Billings M., MacLaren D. (1986) The effects of sodium bicarbonate and sodium citrate ingestion on anaerobic power during intermittent exercise. European Journal Applied Physiology and Occupational Physiology 55, 524-529. |
Pilegaard H., Domino K., Noland T., Juel C., Hellsten Y., Halestrap A.P., Bangsbo J. (1999) Effect of high intensity training on lactate/H+ transport capacity in human skeletal muscle. The American Journal of Physiology 276, 255-261. |
Poprzecki S., Zajac A., Wower B., Cholewa J. (2007) The affects of warm-up and the recovery interval priori to exercise on anaerobic power and amid-base balance In man. Journal of Human Kinetics 118, 15-28. |
Ratel S., Duche P., Hennegrave E., Van Praagh E., Bedu M. (2002) Acid-base balance during repeated cycling sprints in boys and men. Journal of Applied Physiology 92, 479-485. |
Rowland T.W., Maresh C.M., Charkoudian P.M., Vanderburgh P.M., Castellani J.W., Armstrong L.E. (1996) Plasma norepinephrine responses to cycle exercise in boys and men. International Journal of Sports Medicine 17, 22-26. |
Thomas C., Perrey S., Lambert K., Hugon G., Mornet D., Mercier J. (2005) Monocarboxylate transporters, blood lactate removal after supramaximal exercise, and fatigue indexes in humans. Journal of Applied Physiology 98, 804-809. |
Van Montfoort M., Van Dieren L., Hopkins W., Shearman J.P. (2004) Effects of ingestion of bicarbonate, citrate, lactate and chloride on sprint running. Medicine Science in Sports and Exercise 36, 1239-1243. |
Verbitsky O., Mizrahi J., Levin M., Isakov E. (1997) Journal of Applied Physiology. |
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