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Riferimenti

Bibliografici

1. Lemon, PWR, Proctor DN, Protein intake and athletic Performance, Sports Med., 12(5), 313, 1991;

2. Dohm,GL, Protein nutrition for the athlete, Clin. Sports Med. 3, 595, 1985; 3. Dunford M, editor. Sports Nutrition: A Practice Manual for Professionals. 4th

ed. Chicago (IL): American Dietetic Association; 2006.;

4. Tipton KD, Witard OC. Protein requirements and recommendations for athletes: relevance of ivory tower arguments for practical recommendations. Clin Sports Med.2007;26:17–36;

5. Ivy JL, Res PT, Sprague RC, Widzer MO, Effect of a carbohydrate-Protein supplement on endurance performance during exercise of varying intensity, Int J Sport Nutr Exerc Metab. 2003; 13(3):382-95;

6. Ferguson-Stegall L, McCleave EL, Ding Z, Kammer LM, Wang B, Doemer PG, Liu Y, Ivy L, The effect of a low carbohydrate beverage with added protein on cycling endurance performance in trained athletes, J Strength Cond Res. 2010; 24(10): 2577-86;

7. Romano-Ely BC, Todd MK, Saunders MJ, Laurent TS, Effect of an isocaloric carbohydrate-protein-antioxidant drink on cycling performance; Med Sci Sports Exerc. 2006; 38(9): 1608-16;

8. Breen L, Tipton KD, Jeukendrup AE, No effect of carbohydrate-protein on cycling performance and indices of recovery; Med Sci Sports Exerc. 2010; 42(6): 1140-8;

9. Stearns RL, Emmanuel H, Volek JS, Casa DJ, Effects of ingesting protein in combination with carbohydrate during exercise on endurance performance: a systemic review with meta-analysis; Journal of Strength and Conditioning Research. 2010; 24(8): 2192-2202;

10. Mittleman, K, Ricci M, Bailey S, Branched-chain amino acids prolong exercise during heat stress in men and women. Med Sci Sports Exerc 30: 83-91, 1998; 11. Costantini AM, Cannella C, Tomassi G, - Alimentazione e Nutrizione umana

II ed. 2006 – Il Pensiero Scientifico Autore;

12. Nelson DL, Cox MM, I Principi di Biochimica di Lehninger V ed. 2010 – Zanichelli;

(2)

II

13. FAO (1980) Carbohydrates in hunan nutrition. FAO Food and Nutrition Paper, n. 15;

14. Calloway DH (1971) Dietary components that yield energy. Environ. Biol. Med., 1: 1775-86;

15. Currell K, Jeukendrup AE: Superior endurance performance with ingestion of multiple transportable carbohydrates. Med Sci Sports Exerc 2008, 40(2):275-81; 16. Harger-Domitrovich SG, McClaughry AE, Gaskill SE, Ruby BC:

Exogenous carbohydrate spares muscle glycogen in men and women during 10 h of exercise. Med Sci Sports Exerc 2007, 39(12):2171-9;

17. Dott. Melvin H. Williams, Vantaggi dagli Ergogeni – Estendere i limiti della prestazione sportiva - Sandro Ceccarelli editore; 2000; 8: pag. 164-74;

18. Conley MS, Stone MH, Carbohydrate ingestion / supplementation for resistance exercise an training. Sports Medicine; 1996; 21: 7-17;

19. Coleman E, Update on carbohydrate: Solid versus Liquid. International Journal of Sport Nutrition; 1994; 4: 80-88;

20. Costill DL, Hargreaves M, Carbohydrate nutrition and fatigue. Sports Medicine; 1992; 13(2): 86-92;

21. Campbell C, Prince D, Braun M, Applegate E, Casazza GA; Carbohydrate – supplement form and exercise performance; Int J Sport Nutr Exerc Metab. 2008; 18(2): 179-90;

22. Guezzennec CY; Oxidation rate, complex carbohydrates, and exercise; Sports Medicine; 1995; 19: 365-372;

23. Wee SL, Williams C, Gray S, Horabin J. Influence of high and low glycemic index meals on endurance running capacity. Med Sci Sports Exerc. 1999; 31(3):393-399;

24. Pate TD, Bruun JC, Hickson JF, Wolinsky I, Fundamentals of carbohydrate metabolism, in nutrition in exercise and sport; Eds, CRC Press, Boca Raton, FL, 1989, 37;

25. Coyle EF, Coggan AR, Hemmert MK, Lowe RC, Walters TJ, Substrate usage during prolonged exercise following a pre-exercise meal; J. Appl. Physiol., 1985; 59, 249;

26. Sherman WM, Brodowicz G, Wright DA, Allen WK, Simonsen J, Effect of 4h pre-exercise carbohydrate feedings on cycling performance, Med. Sci. Sports Exerc. 1989; 21, 598;

(3)

III

27. Wright DA, Sherman WM, Carbohydrate feedings 3h before and during exercise improve cycling performance; Med. Sci. Sports Exerc. 1989; 21, S58; 28. Coyle EF, Fluid and Carbohydrate replacement during exercise: how much and

why? Sport Science Exchange, 1994; 7(3): 1-6;

29. Valeriani A, The need for carbohydrate intake during endurance exercise, Sport Med; 1991; 12(6), 349;

30. Friedman JE, Neufer PD, Dohm GL, Regulation of glycogen resynthesis following exercise. Dietary Considerations, Sports Med. 1991; 11(4),232;

31. Costill DL, Sherman WM, Fink WJ, Maresh C, Witten M, Miller JM, The role of dietary carbohydrate in muscle glycogen resynthesis after strenuous running; Am J. Clin. Nutr., 1981; 34, 1831;

32. Macdouglas JD, Ward GR, Sale DG, Sutton JR, Muscle glycogen repletion after high-intensity intermittent exercise. J. Appl. Physiol., 1977; 42, 129;

33. Ivy JL, Muscle glycogen synthesis before and after exercise; Sports Med, 1991; 11(1): 6-19;

34. Sherman WM, Jacobs KA, Leenders N, In: Overtraining in Sport. R Kreider AF, O'Toole M, editor. Champaign: Human Kinetics; Carbohydrate metabolism during endurance exercise; 1998; pp. 289–293. 300-302;

35. Wong SHS, Siu PM, Lok A, Effect of the glycaemic index of pre-exercise carbohydrate meals on running performance. Eur J Sport Sci. 2008; 8: 23–33; 36. Moore LJ, Midgley AW, Thurlow S, Effect of the glycemic index of a

pre-exercise meal on metabolism and cycling time trial performance. J Sci Med

Sport. 2010; 13: 182–188;

37. Zachwieja JJ, Costill DL, Fink WJ. Carbohydrate ingestion during exercise: effects on muscle glycogen resynthesis after exercise. Int J Sport Nutr. 1993; 3: 418–430;

38. Ivy JL, Katz AL, Cutler CL, Sherman WM, Coyle EF, Muscle glycogen synthesis after exercise: effect of time of carbohydrate ingestion; Am. Physiol. Soc. 1988; 64, 1480;

39. Ivy JL, Lee MC, Brozinick JT jr, Reed MJ, Muscle glycogen storage after different amounts of carbohydrate ingestion. J. Appl. Physiol. 1988; 65(5), 2018; 40. Kiens B, Raber AB, Valeur AK, Ritcher EA, Benefit of dietary simple carbohydrates on the early post-exercise muscle glycogen repletion in male athletes; Med. Sci. Sports Exer. 1990; 22, S88;

(4)

IV

41. Costill DL, Pascoe DD, Fink WJ, Robergs RA, Barr SI, Pearson D, Impaired muscle glycogen resynthesis after eccentric exercise; J Appl Physiol. 1990; 69(1): 46-50;

42. Conlee RK, Lawler RM, Ross PE, Effects of glucose or fructose feeding on glycogen repletion in muscle and liver after exercise or fasting; Ann Nutr Metab. 1987; 31(2): 126-32;

43. Mondazzi L, Arcelli E, Glycemic index in sport nutrition; J Am Coll Nutr. 2009; 28 Suppl.: 455S-463S;

44. Wu CL, William C, A low glycemic index meal before exercise improves endurance running capacity in men; Int. J. Nutr. Exerc. Metab. 2006; 16(5): 510-27;

45. Donaldson CM, Perry TL, Rose MC, Glycemic index and endurance performance; Int. J. Sport Nutr. Exerc Metab. 2010; 20(2): 154-65;

46. O’Reilly J, Wong SH, Chen Y, Glycaemic load and exercise performance; Sports Med. 2010; 40(1): 27-39;

47. Bosch AN, Noakes TD, Carbohydrate ingestion during exercise and endurance performance; Indian J Med Res. 2005; 121(5): 634-8;

48. Khanna GL, Manna I, Supplementary effect of carbohydrate – electrolyte drink on sports performance, lactate removal, e cardiovascular response of athletes; Indian J Med. Res. 2005; 121(5): 665-9;

49. Hao S, Avraham Y, Bonne O, Berry EM, Separation-induced body weight loss, impairment in alternation behavior, and autonomic tone: effects of tyrosine. 2001; Pharmacol. Biochem. Behav. 68 (2): 273–81;

50. Magill RA, Waters WF, Bray GA, Volaufova J, Smith SR, Lieberman HR, McNevin N, Ryan DH, Effects of tyrosine, phentermine, caffeine D-amphetamine, and placebo on cognitive and motor performance deficits during sleep deprivation. 2003 Nutritional Neuroscience 6 (4): 237–46;

51. Neri DF, Wiegmann D, Stanny RR, Shappell SA, McCardie A, McKay DL, The effects of tyrosine on cognitive performance during extended wakefulness. 1995; Aviation, space, and environmental medicine 66 (4): 313–9; 52. Reinstein DK, Lehnert H, Wurtman RJ, Dietary tyrosine suppresses the rise

in plasma corticosterone following acute stress in rats. 1985; Life Sci. 37 (23): 2157–63;

(5)

V

53. Deijen JB, Wientjes CJ, Vullinghs HF, Cloin PA, Langefeld JJ, Tyrosine improves cognitive performance and reduces blood pressure in cadets after one week of a combat training course. 1999; Brain Res. Bull. 48 (2): 203–9;

54. Mahoney CR, Castellani J, Kramer FM, Young A, Lieberman HR, Tyrosine supplementation mitigates working memory decrements during cold exposure. 2007; Physiology and Behavior IN PRESS: 575;

55. Deijen JB, Orlebeke JF, Effect of tyrosine on cognitive function and blood pressure under stress. 1994; Brain Res. Bull. 33 (3): 319–23;

56. Chinevere TD, Sawyer RD, Creer AR, Conlee RK, Parcell AC,. Effects of L-tyrosine and carbohydrate ingestion on endurance exercise performance. 2002; J. Appl. Physiol. 93 (5): 1590–7;

57. Strüder HK, Hollmann W, Platen P, Donike M, Gotzmann A, Weber K,. Influence of paroxetine, branched-chain amino acids and tyrosine on neuroendocrine system responses and fatigue in humans. 1998; Horm. Metab. Res. 30 (4): 188–94;

58. Thomas JR, Lockwood PA, Singh A, Deuster PA. Tyrosine improves working memory in a multitasking environment. 1999; Pharmacol. Biochem. Behav. 64 (3): 495–500;

59. Marconi C, Sassi G, Carpinelli A, Cerretelli P, Effects of L-carnitine loading on the aerobic and anaerobic performance of endurance athletes; Eur. J. Appl. Physiol; 1985; 54(2): 131-5;

60. Greig C, Finch KM, Jones DA, Cooper M, Sargeant AJ, Forte CA, The effect of oral supplementation with L-carnitine on maximum and

submaximum exercise capacity; Eur J Appl Physiol Occup Physiol. 1987; 56(4): 457-60;

61. Cerretelli P, Marconi C, L-carnitine supplementation in humans The effects on physical performance; Int. J Sports Med. 1990; 11(1):1-14;

62. Vecchiet L, Di Lisa F, Pieralisi G , Ripari P , Menabò R , Giamberardino MA, Siliprandi N, Influence of L-carnitine administration on maximal physical performance. Eur J Appl Physiol Occup Physiol. 1990; 61(5-6): 486-90;

63. Cooper MB, Jones DA, Edwards RH, Corbucci GC, Montanari G, Trevisani C, The effect of marathon running on carnitine metabolism and on some aspects of muscle mitochondrial activities and antioxidant mechanisms; J. Sports Sci. 1986; 4(2): 79-87;

(6)

VI

64. Colombani P, Wenk C, Kunz I, Krähenbühl S, Kuhnt M, Arnold M, Frey-Rindova P, Frey W, Langhans W, Effects of L-carnitine supplementation on physical performance and energy metabolism of endurance-trained athletes: a double-blind crossover field study. Eur J Appl Physiol Occup Physiol. 1996; 73(5): 434-9;

65. Dott. Melvin H. Williams, Vantaggi dagli ergogeni – estendere i limiti della prestazione sportiva; 2000; pag 188-192;

66. Bemben MG, Lamont HS, Creatine supplementation and exercise performance: recent findings. Sports Med. 2005; 35(2): 107-25;

67. Kreider RB, Effects of creatine supplementation on performance and training adaptations. Mol Cell Biochem. 2003; 244(1-2): 89-94;

68. Balsom PD, Söderlund K, Ekblom B, Creatine in humans with special reference to creatine supplementation. Sports Med. 1994; 18(4): 268-80;

69. Greenhaff PL, Creatine and its application as an ergogenic aid. Int J Sport Nutr. 1995; 5 Suppl: S100-10;

70. Maughan RJ, Creatine supplementation and exercise peroformance. Int J Sport Nutr. 1995; 5(2):94-101;

71. Mujika I, Chatard JC, Lacoste L, Barale F, Geyssant A, Creatine supplementation does not improve sprint performance in competitive swimmers. Med Sci Sports Exerc. 1996; 28(11): 1435-41;

72. Javierre C, Segura R, Ventura JL, Suarez A, Roses JM, L-tryptophan supplementation can decrease fatigue perception during an aerobic exercise with supramaximal intercalated anaerobic bouts in young healthy men. Int. J. Neurosci. 2010; 120 (5): 319-327;

73. Segura R, Ventura JL, Effect of L-tryptophan supplementation on exercise performance; Int. J. Sports Med. 1988; 9 (5): 301-305;

74. Stensrud J, Ingjer F, Holm H, Stromme S, L-tryptophan supplementation does not improve running performance. Int. J. Sports Med. 1992; 13: 481-485; 75. Kreider RB, Miriel V, Bertun E, Amino acid supplementation and exercise

performance. Analysis of the proposed ergogenic value. Sports Med. 1993; 16(3): 190-209;

76. Dott. Melvin H. Williams, Vantaggi dagli ergogeni – estendere i limiti della prestazione sportiva; 2000; pag 138-140;

(7)

VII

78. Brosnan JT, Glutamate, at the interface between aminoacid and carbohydrate metabolism; J. Nutr. 2000; 130(4S Suppl.): 988S-90S;

79. Newsholme P, Procopio J, Lima MM, Pithon-Curi TC, Curi R, Glutamine and glutamate - their central role in cell metabolism and function; Cell Biochem. Funct. 2003; 21(1): 1-9;

80. Smith RJ, Glutamine metabolism and its physiologic importance; JPEN - J. Parenter. Enteral. Nutr. 1990; 14(4 Suppl): 40S-44S;

81. Demura S, Yamada T, Yamaji S, Komatsu M, Morishita K, The effect of L-ornithine hydrochloride ingestion on performance during incremental exhaustive ergometer bicycle exercise ad ammonia metabolism during and after exercise; Eur. J. Clin. Nutr. 2010; 64(10): 1166-7;

82. Demura S, Morishita K, Yamada T, Yamaji S, Komatsu M, Effect of L-ornithine hydrochloride ingestion on intermittent maximal anaerobic cycle ergometer performance and fatigue recovery after exercise; Eur, J. Appl. Physiol. 2011;

83. Cynober L, Ornithine alpha-ketoglutarate in nutritional support; Nutrition 1991; 7(5): 313-22.

84. De Bandt JP, Cynober LA, Amino acids with anabolic properties; Curr. Opin. Clin. Nutr. Metab. Care; 1998; 1(3): 263-72;

85. Newsholme EA, Blomstrand E, Branched-Chain Amino Acids and central fatigue; J. Nutr. 2006; 136(1 Suppl.): 274S-6S;

86. Hutson SM, Sweatt AJ, Lanoue KF, Branched chain [corrected] aminoacid metabolism: implications for establishing safe intakes; 2005; J. Nutr. 135: 1557S‐1564S;

87. De Palo EF, Gatti R, Cappellin E, Schiraldi C, De Palo CB, Spinella P, Plasma lactate, GH and GH‐binding protein levels in exercise following BCAA supplementation in athletes. Amino Acids. 2001; 20(1): 1-11;

88. Davis JM, Alderson NL, Welsh RS, Serotonin and central nervous system fatigue: nutritional considerations; Am J Clin Nutr. 2000; 72(2 Suppl.): 573S-8S;

89. Newsholme EA, Blomstrand E, The plasma level of some aminoacids and physical and mental fatigue; Experientia; 1996; 52(5): 413-5;

(8)

VIII

90. MacLean DA, Graham TE, Saltin B, Branched chain amino acids augment ammonia metabolism while attenuating protein breakdown during exercise; Am J Physiol. 1994; 267(6 Pt 1): E1010-22;

91. Meeusen R, Watson P, Hasegawa H, Roelands B, Piacentini MF, Central fatigue: the serotonin hypothesis and beyond; Sports Med. 2006; 36(10): 881-909;

92. Ohtani M, Sugita M, Maruyama K, Amino acid mixture improves training efficiency in athletes; J Nutr. 2006; 136(2): 538S-543S;

93. Blomstrand E, Hassmén P, Newsholme EA, Effect of branched-chain amino acid supplementation on mental performance; Acta Physiol. Scand.1991; 143(2): 225-6;

94. Newsholme EA, Blomstrand E, Hassmen P, Ekblom B, Physical and mental fatigue: do changes in plasma amino acids play a role? Biochem Soc Trans. 1991; 19(2): 358-62;

95. Varnier M, Sarto P, Martines D, Lora L, Carmignoto F, Leese GP, Naccarato R, Effect of infusing branched-chain amino acid during incremental exercise with reduced muscle glycogen content; Eur J Appl Physiol Occup Physiol. 1994; 69(1): 26-31;

96. van Hall G, Raaymakers JS, Saris WH, Wagenmakers AJ, Ingestion of branched-chain amino acids and tryptophan during sustained exercise in man: failure to affect performance; J Physiol. 1995; 486 ( Pt 3): 789-94;

97. van Hall G, van der Vusse GJ, Söderlund K, Wagenmakers AJ, Deamination of amino acids as a source for ammonia production in human skeletal muscle during prolonged exercise; J Physiol. 199; 489 ( Pt 1): 251-61; 98. Davis JM, Carbohydrates, branched-chain amino acids, and endurance: the

central fatigue hypothesis; Int. J Sport Nutr. 1995; 5 Suppl.: S29-38

99. Keith R, Vitamins and physical activity. In Wolinsky I, Hickson J ( Eds ), Nutrition in exercise and sport; 1994; ( 170 – 174 ). Boca Raton, FL: CRC Press; 100. Gerster H, Function of vitamin E in physical exercise: a review; Z.

Ernahrungswiss; 1991; 30(2): 89-97;

101. Simon-Schnass I, Pabst H, Influence of vitamin E on physical performance; Int. J. Vitam. Nutr. Res. 1988; 58(1): 49-54;

(9)

IX

102. Viitala PE, Newhouse IJ, LaVoie N, Gottardo C, The effects of antioxidant vitamin supplementation on resistance exercise induced lipid peroxidation in trained and untrained participants; Lipids Health Dis. 2004; 3: 14;

103. Viitala P, Newhouse IJ, Vitamin E supplementation, exercise and lipid peroxidation in human participants; Eur. J. Appl. Physiol. 2004; 93(1-2): 108-15;

104. Williams MH, Vitamin supplementation and athletic performance; Int. J Vitam. Nutr. Res Suppl. 1989; 30: 163-91;

105. Lukaski HC, Vitamin and mineral status: effects on physical performance; Nutrition. 2004; 20(7-8): 632-44;

106. Knippel M, Mauri L, Belluschi R, Bana G, Galli C, Pusterla GL, Spreafico M, Troina E, The action of thiamin on the production of lactic acid in cyclists; Med. Sports; 1986; 39(1): 11;

107. Dam BV, Vitamins and sport; Br J Sports Med. 1978; 12(2): 74-9;

108. van der Beek EJ, Vitamin supplementation and physical exercise performance; J Sports Sci. 1991; 9 Spec No: 77-90;

109. Vaz M, Pauline M, Unni US, Parikh P, Thomas T, Bharathi AV, Avadhany S, Muthayya S, Mehra R, Kurpad AV, Micronutrient Supplementation Improves Physical Performance Measures in Asian Indian School-Age Children; J Nutr. 2011; [Epub ahead of print];

110. Haralambie G, Vitamin B2 status in athletes and the influence of riboflavin administration on neuromuscular irritability; Nutr Metab. 1976; 20(1): 1-8; 111. Murray R, Bartoli WP, Eddy DE, Horn MK, Physiological and performance

responses to nicotinic-acid ingestion during exercise; Med. Sci Sports Exerc. 1995; 27(7): 1057-62;

112. Carlson LA, Havel RJ, Ekelund LG, Holmgren A, Effect of nicotinic acid on the turnover rate and oxidation of the free fatty acids of plasma during exercise; Metabolism. 1963; 12: 837-45;

113. Jenkins D, Effects on nicotinic acid on carbohydrate and fat metabolism during exercise; Lancet, 1965; 1: 1307;

114. Norris B, Schade DS, Eaton RP, Effects of altered free fatty acid mobilization on the metabolic response to exercise; J. Clin. Endocrinol. Metab; 1978; 46(2): 254-9;

(10)

X

115. Bergström J, Hultman E, Jorfeldt L, Pernow B, Wahren J, Effect of nicotinic acid on physical working capacity and on metabolism of muscle glycogen in man; J Appl Physiol. 1969; 26(2): 170-6;

116. Pernow B, Saltin B, Availability of substrates and capacity for prolonged heavy exercise in man; J Appl. Physiol. 197; 31(3): 416-22;

117. Manore MM, Vitamin B6 and exercise, Int. J Sport Nutr. 1994; 4(2): 89-103; 118. Moretti C, Fabbri A, Gnessi L, Bonifacio V, Fraioli F, Isidori A, Pyridoxine

(B6) suppresses the rise in prolactin and increases the rise in growth hormone induced by exercise; N Engl J Med. 1982; 307(7): 444-5;

119. deVos AM, Leklem JE, Campbell DE, Carbohydrate loading, vitamin B6 supplementation, and fuel metabolism during exercise in man; Med. Sci. Sports Exer. 1982; 14: 132;

120. Manore MM,, Leklem JE, Effect of carbohydrate and vitamin B6 on fuel substrates during exercise in women; Med Sci. Sports Exerc. 1988; 20(3): 233-41;

121. Herbert V, Dos KC, Folic acid and Vitamin B12. In Shils M, Olson J, Shilke M (Eds.), Modern Nutrition in Health and Disease (402 – 425 ), Philadelphia: Lea & Febiger;

122. Woolf K, Manore MM, B-vitamins and exercise: does exercise alter requirements? Int. J Sport Nutr. Exerc. Metab. 2006; 16(5): 453-84;

123. Litoff D, Scherzer H, Harrison J, Effects of pantothenic acid supplementation on human exercise; Med. Sci. Sports Exer.; 1985; 17: 287;

124. Gerster H, The role of vitamin C in athletic performance; J Am. Coll. Nutr. 1989; 8(6): 636-43;

125. Hemilä H, Vitamin C and common cold incidence: a review of studies with subjects under heavy physical stress; Int. J Sports Med. 1996; 17(5): 379-83; 126. Jourkesh M, Ostojic SM, Azarbayjani MA, The effects of vitamin E and

vitamin C supplementation on bioenergetics index; Res Sports Med. 2007; 15(4): 249-56;

127. Finaud J, Lac G, Filaire E, Oxidative stress: relationship with exercise and training; Sports Med. 2006; 36(4): 327-58;

128. Clarkson PM, Haymes EM, Exercise and mineral status of athletes: calcium, magnesium, phosphorus, and iron; Med Sci. Sports Exerc. 1995; 27(6):831-43;

(11)

XI

129. Clarkson PM, Minerals: exercise performance and supplementation in athletes; J Sports Sci. 1991; 9 Spec No: 91-116;

130. Kreider RB, Phosphate loading and exercise performance; J. Appl. Nutr.; 1992; 44: 29-49;

131. Kreider RB, Miller GW, Williams MH, Somma CT, Nasser TA, Effects of phosphate loading on oxygen uptake, ventilatory anaerobic threshold, and run performance; Med Sci. Sports Exerc. 1990; 22(2): 250-6;

132. Kreider RB, Miller GW, Schenck D, Cortes CW, Miriel V, Somma CT, Rowland P, Turner C, Hill D, Effects of phosphate loading on metabolic and myocardial responses to maximal and endurance exercise; Int. J Sport Nutr. 1992; 2(1): 20-47;

133. Cade R, Conte M, Zauner C, Mars D, Peterson J, Lunne D, Hommen N, Packer D, Effects of phosphate loading on 2,3-diphosphoglycerate and maximal oxygen uptake; Med Sci Sports Exerc. 1984; 16(3):263-8;

134. Bremner K, Bubb WA, Kemp GJ, Trenell MI, Thompson CH, The effect of phosphate loading on erythrocyte 2,3-bisphosphoglycerate levels; Clin Chim Acta. 2002; 323(1-2):111-4;

135. McDonald R, Keen CL, Iron, zinc and magnesium nutrition and athletic performance; Sports Med. 1988; 5(3): 171-84;

136. Lukaski HC, Siders WA, Hoverson BS, Gallagher SK, Iron, copper, magnesium and zinc status as predictors of swimming performance; Int J Sports Med. 1996; 17(7): 535-40;

137. Lukaski HC, Micronutrients (magnesium, zinc, and copper): are mineral supplements needed for athletes? Int J Sport Nutr. 1995 ; 5 Suppl: S74-83; 138. Weaver CM, Rajaram S, Exercise and iron status; J Nutr. 1992; 122(3 Suppl):

782-7;

139. Samuel Abt. «U.S. CYCLIST WINS». www.nytimes.com, 1985;

140. Lefavi RG, Anderson RA, Keith RE, Wilson GD, McMillan JL, Stone MH, Efficacy of chromium supplementation in athletes: emphasis on anabolism; Int J Sport Nutr. 1992; 2(2): 111-22;

141. Tessier F, Margaritis I, Richard MJ, Moynot C, Marconnet P, Selenium and training effects on the glutathione system and aerobic performance; Med Sci Sports Exerc. 1995; 27(3): 390-6;

(12)

XII

142. Malm C, Svensson M, Sjöberg B, Ekblom B, Sjödin B, Supplementation with ubiquinone-10 causes cellular damage during intense exercise; Acta Physiol Scand. 1996; 157(4): 511-2;

143. Davies KJ, Quintanilha AT, Brooks GA, Packer L, Free radicals and tissue damage produced by exercise; Biochem Biophys Res Commun. 1982; 107(4): 1198-205;

144. Sjödin B, Hellsten Westing Y, Apple FS, Biochemical mechanisms for oxygen free radical formation during exercise; Sports Med. 1990; 10(4): 236-54;

145. Jeukendrup AE, Carbohydrate intake during exercise and performance; Nutrition. 2004; 20(7-8): 669-77;

146. Leiper JB, Intestinal water absorption--implications for the formulation of rehydration solutions; Int J Sports Med. 1998; 19 Suppl 2: S129-32;

147. Luden N, Saunders M, Pratt C, Bixkford A, Todd M, Flohr J, effects of six-day carbohydrate/protein intervention on muscle demage, soreness and performance in runners; Med. Sci. Sports Exerc. 2006; 38: S341;

148. Faria EW, Parker DL, Faria IE, The science of cycling: physiology and training - part 1; Sports Med. 2005; 35(4): 285-312;

149. Colliander EB, Dudley GA, Tesch PA, Skeletal muscle fiber type composition and performance during repeated bouts of maximal, concentric contractions; Eur J Appl Physiol Occup Physiol. 1988; 58(1-2): 81-6;

150. Bigland-Ritchie B, Jones DA, Woods JJ, Excitation frequency and muscle fatigue: electrical responses during human voluntary and stimulated contractions; Exp Neurol. 1979; 64(2): 414-27;

151. Bigland-Ritchie B, Lippold OC, Changes in muscle activation during prolonged maximal voluntary contractions; J Physiol. 1979; 292: 14P-15P; 152. Enoka RM, Stuart DG, Neurobiology of muscle fatigue; J Appl Physiol. 1992;

72(5): 1631-48;

153. Sidossis LS, Horowitz JF, Coyle EF, Load and velocity of contraction influence gross and delta mechanical efficiency; Int J Sports Med. 1992; 13(5): 407-11;

154. Coyle EF, Sidossis LS, Horowitz JF, Beltz JD, Cycling efficiency is related to the percentage of type I muscle fibers; Med Sci Sports Exerc. 1992; 24(7):782-8; 155. Chernoff R, Thirst and fluid requirements; Nutr Rev. 1994; 52(8 Pt 2): S3-5;

(13)

XIII

156. González-Alonso J, Calbet JA, Nielsen B, Muscle blood flow is reduced with dehydration during prolonged exercise in humans; J Physiol. 1998; 513 (Pt 3): 895-905;

157. Hargreaves M, Febbraio M, Limits to exercise performance in the heat; Int J Sports Med. 1998; 19 Suppl. 2: S115-6;

158. Sawka MN, Physiological consequences of hypohydration: exercise performance and thermoregulation; Med Sci Sports Exerc. 1992; 24(6):657-70; 159. Sawka MN, Latzka WA, Matott RP, Montain SJ, Hydration effects on

temperature regulation; Int J Sports Med. 1998; 19 Suppl. 2: S108-10;

160. National Research Council (1989) Recommended Dietary Allowances. 10a ed. National Academy Press, Washington D.C.: 169-73;

161. Butterfield G, Ergogenic aids: evaluating sport nutrition products; Int J Sport Nutr. 1996; 6(2): 191-7;

162. Maughan RJ, Legal ergogenic aids? Curr Sports Med Rep. 2009; 8(4):165-6; 163. Smith DA, Perry PJ, The efficacy of ergogenic agents in athletic competition.

Part II: Other performance-enhancing agents; Ann Pharmacother. 1992; 26(5): 653-659;

164. Pipe AL, J. B. Wolffe Memorial Lecture. Sport, science, and society: ethics in sports medicine; Med Sci Sports Exerc. 1993; 25(8): 888-900;

165. Williams MH, The use of nutritional ergogenic aids in sports: is it an ethical issue? Int J Sport Nutr. 1994; 4(2): 120-31;

166. Tipton KD, Rasmussen BB, Miller SL, Wolf SE, Owens-Stovall SK, Petrini BE, Wolfe RR, Timing of amino acid-carbohydrate ingestion alters anabolic response of muscle to resistance exercise. Am J Physiol Endocrinol Metab. 2001; 281: E197-E206;

167. Koopman R, Wagenmakers AJ, Manders RJ, Zorenc AH, Senden JM, Gorselink M, Keizer HA, van Loon LJ, Combined ingestion of protein and free leucine with carbohydrate increases post-exercise muscle protein synthesis in vivo in male subjects. Am J Physiol Endocrinol Metab. 2008 288(4): E645-653;

168. Krustrup P, Mohr M, Steensberg A, Bencke J, Kjaer M, Bangsbo J, Muscle and blood metabolites during a soccer game: implications for sprint performance. Med. Sci. Sports Exerc., 2006; 38(6): 1165-1174;

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XIV

169. Costill DL, Bowers R, Branam G, Sparks K, Muscle glycogen utilization during prolonged exercise on successive days. J. Appl Physiol. 1971; 31: 834-838;

170. Febbraio MA, Keenan J, Angus DJ, Campbell SE, Garnham AP, Pre-exercise carbohydrate ingestion, glucose kinetics, and muscle glycogen use: effect of the glycaemic index. J. Appl. Physiol. 2000; 89:1845-1851;

171. Coyle EF, Coggan AR, Hemmert MK, Ivy JL, Muscle glycogen utilization during prolonged strenuous exercise when fed carbohydrate; J. Appl. Physiol. 1986; 61: 165-172;

Riferimenti

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