Skip to main content
Top
Published in: Sports Medicine 7/2019

Open Access 01-07-2019 | Review Article

Caffeine and Exercise: What Next?

Authors: Craig Pickering, Jozo Grgic

Published in: Sports Medicine | Issue 7/2019

Login to get access

Abstract

Caffeine is a widely utilized performance-enhancing supplement used by athletes and non-athletes alike. In recent years, a number of meta-analyses have demonstrated that caffeine’s ergogenic effects on exercise performance are well-established and well-replicated, appearing consistent across a broad range of exercise modalities. As such, it is clear that caffeine is an ergogenic aid—but can we further explore the context of this ergogenic aid in order to better inform practice? We propose that future research should aim to better understand the nuances of caffeine use within sport and exercise. Here, we propose a number of areas for exploration within future caffeine research. These include an understanding of the effects of training status, habitual caffeine use, time of day, age, and sex on caffeine ergogenicity, as well as further insight into the modifying effects of genotype. We also propose that a better understanding of the wider, non-direct effects of caffeine on exercise, such as how it modifies sleep, anxiety, and post-exercise recovery, will ensure athletes can maximize the performance benefits of caffeine supplementation during both training and competition. Whilst not exhaustive, we hope that the questions provided within this manuscript will prompt researchers to explore areas with the potential to have a large impact on caffeine use in the future.
Literature
1.
go back to reference Del Coso J, Muñoz G, Muñoz-Guerra J. Prevalence of caffeine use in elite athletes following its removal from the World Anti-Doping Agency list of banned substances. Appl Physiol Nutr Metab. 2011;36(4):555–61.CrossRefPubMed Del Coso J, Muñoz G, Muñoz-Guerra J. Prevalence of caffeine use in elite athletes following its removal from the World Anti-Doping Agency list of banned substances. Appl Physiol Nutr Metab. 2011;36(4):555–61.CrossRefPubMed
2.
go back to reference Van Thuyne W, Delbeke FT. Distribution of caffeine levels in urine in different sports in relation to doping control before and after the removal of caffeine from the WADA doping list. Int J Sports Med. 2006;27(09):745–50.CrossRefPubMed Van Thuyne W, Delbeke FT. Distribution of caffeine levels in urine in different sports in relation to doping control before and after the removal of caffeine from the WADA doping list. Int J Sports Med. 2006;27(09):745–50.CrossRefPubMed
4.
go back to reference Graham TE. Caffeine and exercise: metabolism, endurance and performance. Sports Med. 2001;31(11):785–807.CrossRefPubMed Graham TE. Caffeine and exercise: metabolism, endurance and performance. Sports Med. 2001;31(11):785–807.CrossRefPubMed
5.
go back to reference Polito MD, Souza DB, Casonatto J, Farinatti P. Acute effect of caffeine consumption on isotonic muscular strength and endurance: a systematic review and meta-analysis. Sci Sports. 2016;31(3):119–28.CrossRef Polito MD, Souza DB, Casonatto J, Farinatti P. Acute effect of caffeine consumption on isotonic muscular strength and endurance: a systematic review and meta-analysis. Sci Sports. 2016;31(3):119–28.CrossRef
6.
go back to reference Grgic J, Trexler ET, Lazinica B, Pedisic Z. Effects of caffeine intake on muscle strength and power: a systematic review and meta-analysis. J Int Soc Sports Nutr. 2018;15(1):11.CrossRefPubMedPubMedCentral Grgic J, Trexler ET, Lazinica B, Pedisic Z. Effects of caffeine intake on muscle strength and power: a systematic review and meta-analysis. J Int Soc Sports Nutr. 2018;15(1):11.CrossRefPubMedPubMedCentral
7.
go back to reference Grgic J, Pickering C. The effects of caffeine ingestion on isokinetic muscular strength: a meta-analysis. J Sci Med Sport. 2019;22(3):353–60.CrossRefPubMed Grgic J, Pickering C. The effects of caffeine ingestion on isokinetic muscular strength: a meta-analysis. J Sci Med Sport. 2019;22(3):353–60.CrossRefPubMed
8.
go back to reference Ribeiro BG, Morales AP, Sampaio-Jorge F, de Souza Tinoco F, de Matos AA, Leite TC. Acute effects of caffeine intake on athletic performance: a systematic review and meta-analysis. Rev Chil Nutr. 2017;44(3):283–91.CrossRef Ribeiro BG, Morales AP, Sampaio-Jorge F, de Souza Tinoco F, de Matos AA, Leite TC. Acute effects of caffeine intake on athletic performance: a systematic review and meta-analysis. Rev Chil Nutr. 2017;44(3):283–91.CrossRef
9.
go back to reference Grgic J. Caffeine ingestion enhances Wingate performance: a meta-analysis. Eur J Sport Sci. 2018;18(2):219–25.CrossRefPubMed Grgic J. Caffeine ingestion enhances Wingate performance: a meta-analysis. Eur J Sport Sci. 2018;18(2):219–25.CrossRefPubMed
10.
go back to reference Southward K, Rutherfurd-Markwick KJ, Ali A. The effect of acute caffeine ingestion on endurance performance: a systematic review and meta–analysis. Sports Med. 2018;48(8):1913–28.CrossRefPubMed Southward K, Rutherfurd-Markwick KJ, Ali A. The effect of acute caffeine ingestion on endurance performance: a systematic review and meta–analysis. Sports Med. 2018;48(8):1913–28.CrossRefPubMed
11.
go back to reference Doherty M, Smith PM. Effects of caffeine ingestion on exercise testing: a meta-analysis. Int J Sport Nutri Exerc Metab. 2004;14(6):626–46.CrossRef Doherty M, Smith PM. Effects of caffeine ingestion on exercise testing: a meta-analysis. Int J Sport Nutri Exerc Metab. 2004;14(6):626–46.CrossRef
12.
go back to reference Doherty M, Smith PM. Effects of caffeine ingestion on rating of perceived exertion during and after exercise: a meta-analysis. Scand J Med Sci Sports. 2005;15(2):69–78.CrossRefPubMed Doherty M, Smith PM. Effects of caffeine ingestion on rating of perceived exertion during and after exercise: a meta-analysis. Scand J Med Sci Sports. 2005;15(2):69–78.CrossRefPubMed
13.
go back to reference Conger SA, Warren GL, Hardy MA, Millard-Stafford ML. Does caffeine added to carbohydrate provide additional ergogenic benefit for endurance? Int J Sport Nutr Exerc Metab. 2011;21(1):71–84.CrossRefPubMed Conger SA, Warren GL, Hardy MA, Millard-Stafford ML. Does caffeine added to carbohydrate provide additional ergogenic benefit for endurance? Int J Sport Nutr Exerc Metab. 2011;21(1):71–84.CrossRefPubMed
14.
go back to reference Christensen PM, Shirai Y, Ritz C, Nordsborg NB. Caffeine and bicarbonate for speed. A meta-analysis of legal supplements potential for improving intense endurance exercise performance. Front Physiol. 2017;8:240. Christensen PM, Shirai Y, Ritz C, Nordsborg NB. Caffeine and bicarbonate for speed. A meta-analysis of legal supplements potential for improving intense endurance exercise performance. Front Physiol. 2017;8:240.
15.
go back to reference Shen JG, Brooks MB, Cincotta J, Manjourides JD. Establishing a relationship between the effect of caffeine and duration of endurance athletic time trial events: a systematic review and meta-analysis. J Sci Med Sport. 2019;22(2):232–8.CrossRefPubMed Shen JG, Brooks MB, Cincotta J, Manjourides JD. Establishing a relationship between the effect of caffeine and duration of endurance athletic time trial events: a systematic review and meta-analysis. J Sci Med Sport. 2019;22(2):232–8.CrossRefPubMed
16.
go back to reference Warren GL, Park ND, Maresca RD, Mckibans KI, Millard-Stafford ML. Effect of caffeine ingestion on muscular strength and endurance: a meta-analysis. Med Sci Sports Exerc. 2010;42(7):1375–87.CrossRefPubMed Warren GL, Park ND, Maresca RD, Mckibans KI, Millard-Stafford ML. Effect of caffeine ingestion on muscular strength and endurance: a meta-analysis. Med Sci Sports Exerc. 2010;42(7):1375–87.CrossRefPubMed
17.
go back to reference Ganio MS, Klau JF, Casa DJ, Armstrong LE, Maresh CM. Effect of caffeine on sport-specific endurance performance: a systematic review. J Strength Cond Res. 2009;23(1):315–24.CrossRefPubMed Ganio MS, Klau JF, Casa DJ, Armstrong LE, Maresh CM. Effect of caffeine on sport-specific endurance performance: a systematic review. J Strength Cond Res. 2009;23(1):315–24.CrossRefPubMed
18.
go back to reference Astorino TA, Roberson DW. Efficacy of acute caffeine ingestion for short-term high-intensity exercise performance: a systematic review. J Strength Cond Res. 2010;24(1):257–65.CrossRefPubMed Astorino TA, Roberson DW. Efficacy of acute caffeine ingestion for short-term high-intensity exercise performance: a systematic review. J Strength Cond Res. 2010;24(1):257–65.CrossRefPubMed
19.
20.
go back to reference Grgic J, Mikulic P, Schoenfeld BJ, Bishop DJ, Pedisic Z. The influence of caffeine supplementation on resistance exercise: a review. Sports Med. 2019;49(1):17–30.CrossRefPubMed Grgic J, Mikulic P, Schoenfeld BJ, Bishop DJ, Pedisic Z. The influence of caffeine supplementation on resistance exercise: a review. Sports Med. 2019;49(1):17–30.CrossRefPubMed
21.
go back to reference Brown SJ, Brown J, Foskett A. The effects of caffeine on repeated sprint performance in team sport athletes–a meta-analysis. Sport Sci Rev. 2013;22(1–2):25–32.CrossRef Brown SJ, Brown J, Foskett A. The effects of caffeine on repeated sprint performance in team sport athletes–a meta-analysis. Sport Sci Rev. 2013;22(1–2):25–32.CrossRef
22.
go back to reference Souza DB, Del Coso J, Casonatto J, Polito MD. Acute effects of caffeine-containing energy drinks on physical performance: a systematic review and meta-analysis. Eur J Nutr. 2017;56(1):13–27.CrossRefPubMed Souza DB, Del Coso J, Casonatto J, Polito MD. Acute effects of caffeine-containing energy drinks on physical performance: a systematic review and meta-analysis. Eur J Nutr. 2017;56(1):13–27.CrossRefPubMed
23.
go back to reference Del Coso J, Portillo J, Muñoz G, Abián-Vicén J, Gonzalez-Millán C, Muñoz-Guerra J. Caffeine-containing energy drink improves sprint performance during an international rugby sevens competition. Amino Acids. 2013;44(6):1511–9.CrossRefPubMed Del Coso J, Portillo J, Muñoz G, Abián-Vicén J, Gonzalez-Millán C, Muñoz-Guerra J. Caffeine-containing energy drink improves sprint performance during an international rugby sevens competition. Amino Acids. 2013;44(6):1511–9.CrossRefPubMed
24.
go back to reference Collomp K, Ahmaidi S, Chatard JC, Audran M, Prefaut C. Benefits of caffeine ingestion on sprint performance in trained and untrained swimmers. Eur J Appl Physiol Occup Physiol. 1992;64(4):377–80.CrossRefPubMed Collomp K, Ahmaidi S, Chatard JC, Audran M, Prefaut C. Benefits of caffeine ingestion on sprint performance in trained and untrained swimmers. Eur J Appl Physiol Occup Physiol. 1992;64(4):377–80.CrossRefPubMed
25.
go back to reference Schneiker KT, Bishop D, Dawson B, Hackett LP. Effects of caffeine on prolonged intermittent-sprint ability in team-sport athletes. Med Sci Sports Exerc. 2006;38(3):578–85.CrossRefPubMed Schneiker KT, Bishop D, Dawson B, Hackett LP. Effects of caffeine on prolonged intermittent-sprint ability in team-sport athletes. Med Sci Sports Exerc. 2006;38(3):578–85.CrossRefPubMed
26.
go back to reference Carr A, Dawson B, Schneiker K, Goodman C, Lay B. Effect of caffeine supplementation on repeated sprint running performance. J Sports Med Phys Fitness. 2008;48(4):472.PubMed Carr A, Dawson B, Schneiker K, Goodman C, Lay B. Effect of caffeine supplementation on repeated sprint running performance. J Sports Med Phys Fitness. 2008;48(4):472.PubMed
27.
go back to reference Glaister M, Howatson G, Abraham CS, Lockey RA, Goodwin JE, Foley P, et al. Caffeine supplementation and multiple sprint running performance. Med Sci Sports Exerc. 2008;40(10):1835–40.CrossRefPubMed Glaister M, Howatson G, Abraham CS, Lockey RA, Goodwin JE, Foley P, et al. Caffeine supplementation and multiple sprint running performance. Med Sci Sports Exerc. 2008;40(10):1835–40.CrossRefPubMed
28.
go back to reference Lieberman HR, Tharion WJ, Shukitt-Hale B, Speckman KL, Tulley R. Effects of caffeine, sleep loss, and stress on cognitive performance and mood during US Navy SEAL training. Psychopharmacology. 2002;164(3):250–61.CrossRefPubMed Lieberman HR, Tharion WJ, Shukitt-Hale B, Speckman KL, Tulley R. Effects of caffeine, sleep loss, and stress on cognitive performance and mood during US Navy SEAL training. Psychopharmacology. 2002;164(3):250–61.CrossRefPubMed
29.
go back to reference McLellan TM, Kamimori GH, Voss DM, Bell DG, Cole KG, Johnson D. Caffeine maintains vigilance and improves run times during night operations for Special Forces. Aviat Space Environ Med. 2005;76(7):647–54.PubMed McLellan TM, Kamimori GH, Voss DM, Bell DG, Cole KG, Johnson D. Caffeine maintains vigilance and improves run times during night operations for Special Forces. Aviat Space Environ Med. 2005;76(7):647–54.PubMed
30.
go back to reference McLellan TM, Kamimori GH, Voss DM, Tate C, Smith SJ. Caffeine effects on physical and cognitive performance during sustained operations. Aviat Space Environ Med. 2007;78(9):871–7.PubMed McLellan TM, Kamimori GH, Voss DM, Tate C, Smith SJ. Caffeine effects on physical and cognitive performance during sustained operations. Aviat Space Environ Med. 2007;78(9):871–7.PubMed
31.
go back to reference Ruxton CH. The impact of caffeine on mood, cognitive function, performance and hydration: a review of benefits and risks. Nutr Bull. 2008;33(1):15–25.CrossRef Ruxton CH. The impact of caffeine on mood, cognitive function, performance and hydration: a review of benefits and risks. Nutr Bull. 2008;33(1):15–25.CrossRef
32.
go back to reference Cook CJ, Crewther BT, Kilduff LP, Drawer S, Gaviglio CM. Skill execution and sleep deprivation: effects of acute caffeine or creatine supplementation-a randomized placebo-controlled trial. J Int Soc Sports Nutr. 2011;8(1):2.CrossRefPubMedPubMedCentral Cook CJ, Crewther BT, Kilduff LP, Drawer S, Gaviglio CM. Skill execution and sleep deprivation: effects of acute caffeine or creatine supplementation-a randomized placebo-controlled trial. J Int Soc Sports Nutr. 2011;8(1):2.CrossRefPubMedPubMedCentral
33.
go back to reference Baker LB, Nuccio RP, Jeukendrup AE. Acute effects of dietary constituents on motor skill and cognitive performance in athletes. Nutr Rev. 2014;72(12):790–802.CrossRefPubMed Baker LB, Nuccio RP, Jeukendrup AE. Acute effects of dietary constituents on motor skill and cognitive performance in athletes. Nutr Rev. 2014;72(12):790–802.CrossRefPubMed
34.
go back to reference Smith MR, Marcora SM, Coutts AJ. Mental fatigue impairs intermittent running performance. Med Sci Sports Exerc. 2015;47(8):1682–90.CrossRefPubMed Smith MR, Marcora SM, Coutts AJ. Mental fatigue impairs intermittent running performance. Med Sci Sports Exerc. 2015;47(8):1682–90.CrossRefPubMed
35.
go back to reference Van Cutsem J, Marcora S, De Pauw K, Bailey S, Meeusen R, Roelands B. The effects of mental fatigue on physical performance: a systematic review. Sports Med. 2017;47(8):1569–88.CrossRefPubMed Van Cutsem J, Marcora S, De Pauw K, Bailey S, Meeusen R, Roelands B. The effects of mental fatigue on physical performance: a systematic review. Sports Med. 2017;47(8):1569–88.CrossRefPubMed
36.
go back to reference Smith MR, Zeuwts L, Lenoir M, Hens N, De Jong LM, Coutts AJ. Mental fatigue impairs soccer-specific decision-making skill. J Sports Sci. 2016;34(14):1297–304.CrossRefPubMed Smith MR, Zeuwts L, Lenoir M, Hens N, De Jong LM, Coutts AJ. Mental fatigue impairs soccer-specific decision-making skill. J Sports Sci. 2016;34(14):1297–304.CrossRefPubMed
37.
go back to reference Smith MR, Coutts AJ, Merlini M, Deprez D, Lenoir M, Marcora SM. Mental fatigue impairs soccer-specific physical and technical performance. Med Sci Sports Exerc. 2016;48(2):267–76.CrossRefPubMed Smith MR, Coutts AJ, Merlini M, Deprez D, Lenoir M, Marcora SM. Mental fatigue impairs soccer-specific physical and technical performance. Med Sci Sports Exerc. 2016;48(2):267–76.CrossRefPubMed
38.
go back to reference Azevedo R, Silva-Cavalcante MD, Gualano B, Lima-Silva AE, Bertuzzi R. Effects of caffeine ingestion on endurance performance in mentally fatigued individuals. Eur J Appl Physiol. 2016;116(11–12):2293–303.CrossRefPubMed Azevedo R, Silva-Cavalcante MD, Gualano B, Lima-Silva AE, Bertuzzi R. Effects of caffeine ingestion on endurance performance in mentally fatigued individuals. Eur J Appl Physiol. 2016;116(11–12):2293–303.CrossRefPubMed
39.
go back to reference Foskett A, Ali A, Gant N. Caffeine enhances cognitive function and skill performance during simulated soccer activity. Int J Sport Nutr Exerc Metab. 2009;19(4):410–23.CrossRefPubMed Foskett A, Ali A, Gant N. Caffeine enhances cognitive function and skill performance during simulated soccer activity. Int J Sport Nutr Exerc Metab. 2009;19(4):410–23.CrossRefPubMed
40.
go back to reference Duncan MJ, Taylor S, Lyons M. The effect of caffeine ingestion on field hockey skill performance following physical fatigue. Res Sports Med. 2012;20(1):25–36.CrossRefPubMed Duncan MJ, Taylor S, Lyons M. The effect of caffeine ingestion on field hockey skill performance following physical fatigue. Res Sports Med. 2012;20(1):25–36.CrossRefPubMed
41.
go back to reference Gant N, Ali A, Foskett A. The influence of caffeine and carbohydrate coingestion on simulated soccer performance. Int J Sport Nutr Exerc Metab. 2010;20(3):191–7.CrossRefPubMed Gant N, Ali A, Foskett A. The influence of caffeine and carbohydrate coingestion on simulated soccer performance. Int J Sport Nutr Exerc Metab. 2010;20(3):191–7.CrossRefPubMed
42.
go back to reference Portillo J, Del Coso J, Abián-Vicén J. Effects of caffeine ingestion on skill performance during an international female rugby sevens competition. J Strength Cond Res. 2017;31(12):3351–7.CrossRefPubMed Portillo J, Del Coso J, Abián-Vicén J. Effects of caffeine ingestion on skill performance during an international female rugby sevens competition. J Strength Cond Res. 2017;31(12):3351–7.CrossRefPubMed
43.
go back to reference Goldstein ER, Ziegenfuss T, Kalman D, Kreider R, Campbell B, Wilborn C, et al. International society of sports nutrition position stand: caffeine and performance. J Int Soc Sports Nutr. 2010;7(1):5.CrossRefPubMedPubMedCentral Goldstein ER, Ziegenfuss T, Kalman D, Kreider R, Campbell B, Wilborn C, et al. International society of sports nutrition position stand: caffeine and performance. J Int Soc Sports Nutr. 2010;7(1):5.CrossRefPubMedPubMedCentral
44.
go back to reference Pickering C, Kiely J. Are the current guidelines on caffeine use in sport optimal for everyone? Inter-individual variation in caffeine ergogenicity, and a move towards personalised sports nutrition. Sports Med. 2018;48(1):7–16.CrossRefPubMed Pickering C, Kiely J. Are the current guidelines on caffeine use in sport optimal for everyone? Inter-individual variation in caffeine ergogenicity, and a move towards personalised sports nutrition. Sports Med. 2018;48(1):7–16.CrossRefPubMed
45.
go back to reference Charney DS, Heninger GR, Jatlow PI. Increased anxiogenic effects of caffeine in panic disorders. Arch Gen Psychiatry. 1985;42(3):233–43.CrossRefPubMed Charney DS, Heninger GR, Jatlow PI. Increased anxiogenic effects of caffeine in panic disorders. Arch Gen Psychiatry. 1985;42(3):233–43.CrossRefPubMed
46.
go back to reference Barry RJ, Rushby JA, Wallace MJ, Clarke AR, Johnstone SJ, Zlojutro I. Caffeine effects on resting-state arousal. Clin Neurophysiol. 2005;116(11):2693–700.CrossRefPubMed Barry RJ, Rushby JA, Wallace MJ, Clarke AR, Johnstone SJ, Zlojutro I. Caffeine effects on resting-state arousal. Clin Neurophysiol. 2005;116(11):2693–700.CrossRefPubMed
47.
go back to reference Drake C, Roehrs T, Shambroom J, Roth T. Caffeine effects on sleep taken 0, 3, or 6 hours before going to bed. J Clin Sleep Med. 2013;9(11):1195–200.PubMedPubMedCentral Drake C, Roehrs T, Shambroom J, Roth T. Caffeine effects on sleep taken 0, 3, or 6 hours before going to bed. J Clin Sleep Med. 2013;9(11):1195–200.PubMedPubMedCentral
48.
go back to reference Dunican IC, Higgins CC, Jones MJ, Clarke MW, Murray K, Dawson B, et al. Caffeine use in a Super Rugby game and its relationship to post-game sleep. Eur J Sport Sci. 2018;18(4):513–23.CrossRefPubMed Dunican IC, Higgins CC, Jones MJ, Clarke MW, Murray K, Dawson B, et al. Caffeine use in a Super Rugby game and its relationship to post-game sleep. Eur J Sport Sci. 2018;18(4):513–23.CrossRefPubMed
49.
go back to reference Loureiro LM, Reis CE, da Costa TH. Effects of coffee components on muscle glycogen recovery: a systematic review. Int J Sport Nutr Exerc Metab. 2018;28(3):284–93.CrossRefPubMed Loureiro LM, Reis CE, da Costa TH. Effects of coffee components on muscle glycogen recovery: a systematic review. Int J Sport Nutr Exerc Metab. 2018;28(3):284–93.CrossRefPubMed
50.
go back to reference Caldwell AR, Tucker MA, Butts CL, McDermott BP, Vingren JL, Kunces LJ, et al. Effect of caffeine on perceived soreness and functionality following an endurance cycling event. J Strength Cond Res. 2017;31(3):638–43.CrossRefPubMed Caldwell AR, Tucker MA, Butts CL, McDermott BP, Vingren JL, Kunces LJ, et al. Effect of caffeine on perceived soreness and functionality following an endurance cycling event. J Strength Cond Res. 2017;31(3):638–43.CrossRefPubMed
51.
go back to reference Bunsawat K, White DW, Kappus RM, Baynard T. Caffeine delays autonomic recovery following acute exercise. Eur J Prev Cardiol. 2015;22(11):1473–9.CrossRefPubMed Bunsawat K, White DW, Kappus RM, Baynard T. Caffeine delays autonomic recovery following acute exercise. Eur J Prev Cardiol. 2015;22(11):1473–9.CrossRefPubMed
52.
go back to reference Gonzaga LA, Vanderlei LC, Gomes RL, Valenti VE. Caffeine affects autonomic control of heart rate and blood pressure recovery after aerobic exercise in young adults: a crossover study. Sci Rep. 2017;7(1):14091.CrossRefPubMedPubMedCentral Gonzaga LA, Vanderlei LC, Gomes RL, Valenti VE. Caffeine affects autonomic control of heart rate and blood pressure recovery after aerobic exercise in young adults: a crossover study. Sci Rep. 2017;7(1):14091.CrossRefPubMedPubMedCentral
53.
go back to reference Retey JV, Adam M, Khatami R, Luhmann UF, Jung HH, Berger W, et al. A genetic variation in the adenosine A2A receptor gene (ADORA2A) contributes to individual sensitivity to caffeine effects on sleep. Clin Pharmacol Ther. 2007;81(5):692–8.CrossRefPubMed Retey JV, Adam M, Khatami R, Luhmann UF, Jung HH, Berger W, et al. A genetic variation in the adenosine A2A receptor gene (ADORA2A) contributes to individual sensitivity to caffeine effects on sleep. Clin Pharmacol Ther. 2007;81(5):692–8.CrossRefPubMed
54.
go back to reference Fulton J, Dinas P, Carrillo A, Edsall J, Ryan E, Ryan E. Impact of genetic variability on physiological responses to caffeine in humans: a systematic review. Nutrients. 2018;10(10):1373.CrossRefPubMedCentral Fulton J, Dinas P, Carrillo A, Edsall J, Ryan E, Ryan E. Impact of genetic variability on physiological responses to caffeine in humans: a systematic review. Nutrients. 2018;10(10):1373.CrossRefPubMedCentral
55.
go back to reference Southward K, Rutherfurd-Markwick K, Badenhorst C, Ali A. The role of genetics in moderating the inter-individual differences in the ergogenicity of caffeine. Nutrients. 2018;10(10):1352.CrossRefPubMedCentral Southward K, Rutherfurd-Markwick K, Badenhorst C, Ali A. The role of genetics in moderating the inter-individual differences in the ergogenicity of caffeine. Nutrients. 2018;10(10):1352.CrossRefPubMedCentral
56.
go back to reference Algrain HA, Thomas RM, Carrillo AE, Ryan EJ, Kim CH, Lettan RB, et al. The effects of a polymorphism in the cytochrome P450 CYP1A2 gene on performance enhancement with caffeine in recreational cyclists. J Caffeine Res. 2016;6(1):34–9.CrossRef Algrain HA, Thomas RM, Carrillo AE, Ryan EJ, Kim CH, Lettan RB, et al. The effects of a polymorphism in the cytochrome P450 CYP1A2 gene on performance enhancement with caffeine in recreational cyclists. J Caffeine Res. 2016;6(1):34–9.CrossRef
57.
go back to reference Giersch GE, Boyett JC, Hargens TA, Luden ND, Saunders MJ, Daley H, et al. The effect of the CYP1A2-163 C>A polymorphism on caffeine metabolism and subsequent cycling performance. J Caffeine Adenosine Res. 2018;8(2):65–70. Giersch GE, Boyett JC, Hargens TA, Luden ND, Saunders MJ, Daley H, et al. The effect of the CYP1A2-163 C>A polymorphism on caffeine metabolism and subsequent cycling performance. J Caffeine Adenosine Res. 2018;8(2):65–70.
58.
go back to reference Guest N, Corey P, Vescovi J, El-Sohemy A. Caffeine, CYP1A2 genotype, and endurance performance in athletes. Med Sci Sports Exerc. 2018;50(8):1570–8.CrossRefPubMed Guest N, Corey P, Vescovi J, El-Sohemy A. Caffeine, CYP1A2 genotype, and endurance performance in athletes. Med Sci Sports Exerc. 2018;50(8):1570–8.CrossRefPubMed
59.
go back to reference Klein CS, Clawson A, Martin M, Saunders MJ, Flohr JA, Bechtel MK, et al. The effect of caffeine on performance in collegiate tennis players. J Caffeine Res. 2012;2(3):111–6.CrossRef Klein CS, Clawson A, Martin M, Saunders MJ, Flohr JA, Bechtel MK, et al. The effect of caffeine on performance in collegiate tennis players. J Caffeine Res. 2012;2(3):111–6.CrossRef
60.
go back to reference Pataky MW, Womack CJ, Saunders MJ, Goffe JL, D’lugos AC, El‐Sohemy A, et al. Caffeine and 3‐km cycling performance: effects of mouth rinsing, genotype, and time of day. Scand J Med Sci Sports. 2016;26(6):613–9. Pataky MW, Womack CJ, Saunders MJ, Goffe JL, D’lugos AC, El‐Sohemy A, et al. Caffeine and 3‐km cycling performance: effects of mouth rinsing, genotype, and time of day. Scand J Med Sci Sports. 2016;26(6):613–9.
61.
go back to reference Puente C, Abián-Vicén J, Del Coso J, Lara B, Salinero JJ. The CYP1A2-163C > A polymorphism does not alter the effects of caffeine on basketball performance. PLoS One. 2018;13(4):e0195943.CrossRefPubMedPubMedCentral Puente C, Abián-Vicén J, Del Coso J, Lara B, Salinero JJ. The CYP1A2-163C > A polymorphism does not alter the effects of caffeine on basketball performance. PLoS One. 2018;13(4):e0195943.CrossRefPubMedPubMedCentral
62.
go back to reference Salinero JJ, Lara B, Ruiz-Vicente D, Areces F, Puente-Torres C, Gallo-Salazar C, et al. CYP1A2 genotype variations do not modify the benefits and drawbacks of caffeine during exercise: a pilot study. Nutrients. 2017;9(3):269.CrossRefPubMedCentral Salinero JJ, Lara B, Ruiz-Vicente D, Areces F, Puente-Torres C, Gallo-Salazar C, et al. CYP1A2 genotype variations do not modify the benefits and drawbacks of caffeine during exercise: a pilot study. Nutrients. 2017;9(3):269.CrossRefPubMedCentral
63.
go back to reference Womack CJ, Saunders MJ, Bechtel MK, Bolton DJ, Martin M, Luden ND, et al. The influence of a CYP1A2 polymorphism on the ergogenic effects of caffeine. J Int Soc Sports Nutr. 2012;9(1):7.CrossRefPubMedPubMedCentral Womack CJ, Saunders MJ, Bechtel MK, Bolton DJ, Martin M, Luden ND, et al. The influence of a CYP1A2 polymorphism on the ergogenic effects of caffeine. J Int Soc Sports Nutr. 2012;9(1):7.CrossRefPubMedPubMedCentral
64.
go back to reference Rahimi R. The effect of CYP1A2 genotype on the ergogenic properties of caffeine during resistance exercise: a randomized, double-blind, placebo-controlled, crossover study. Ir J Med Sci. 2019;188(1):337–45.CrossRefPubMed Rahimi R. The effect of CYP1A2 genotype on the ergogenic properties of caffeine during resistance exercise: a randomized, double-blind, placebo-controlled, crossover study. Ir J Med Sci. 2019;188(1):337–45.CrossRefPubMed
65.
go back to reference Gu L, Gonzalez FJ, Kalow W, Tang BK. Biotransformation of caffeine, paraxanthine, theobromine and theophylline by cDNA-expressed human CYP1A2 and CYP2E1. Pharmacogenetics. 1992;2(2):73–7.CrossRefPubMed Gu L, Gonzalez FJ, Kalow W, Tang BK. Biotransformation of caffeine, paraxanthine, theobromine and theophylline by cDNA-expressed human CYP1A2 and CYP2E1. Pharmacogenetics. 1992;2(2):73–7.CrossRefPubMed
66.
go back to reference Sachse C, Brockmöller J, Bauer S, Roots I. Functional significance of a C → A polymorphism in intron 1 of the cytochrome P450 CYP1A2 gene tested with caffeine. Br J Clin Pharmacol. 1999;47(4):445–9.CrossRefPubMedPubMedCentral Sachse C, Brockmöller J, Bauer S, Roots I. Functional significance of a C → A polymorphism in intron 1 of the cytochrome P450 CYP1A2 gene tested with caffeine. Br J Clin Pharmacol. 1999;47(4):445–9.CrossRefPubMedPubMedCentral
67.
go back to reference Pickering C. Caffeine, CYP1A2 genotype, and sports performance: is timing important? Ir J Med Sci. 2019;188(1):349–50.CrossRefPubMed Pickering C. Caffeine, CYP1A2 genotype, and sports performance: is timing important? Ir J Med Sci. 2019;188(1):349–50.CrossRefPubMed
68.
go back to reference Alsene K, Deckert J, Sand P, de Wit H. Association between A 2a receptor gene polymorphisms and caffeine-induced anxiety. Neuropsychopharmacology. 2003;28(9):1694.CrossRefPubMed Alsene K, Deckert J, Sand P, de Wit H. Association between A 2a receptor gene polymorphisms and caffeine-induced anxiety. Neuropsychopharmacology. 2003;28(9):1694.CrossRefPubMed
69.
go back to reference Childs E, Hohoff C, Deckert J, Xu K, Badner J, De Wit H. Association between ADORA2A and DRD2 polymorphisms and caffeine-induced anxiety. Neuropsychopharmacology. 2008;33(12):2791–800.CrossRefPubMed Childs E, Hohoff C, Deckert J, Xu K, Badner J, De Wit H. Association between ADORA2A and DRD2 polymorphisms and caffeine-induced anxiety. Neuropsychopharmacology. 2008;33(12):2791–800.CrossRefPubMed
70.
go back to reference Byrne EM, Johnson J, McRae AF, Nyholt DR, Medland SE, Gehrman PR, et al. A genome-wide association study of caffeine-related sleep disturbance: confirmation of a role for a common variant in the adenosine receptor. Sleep. 2012;35(7):967–75.CrossRefPubMedPubMedCentral Byrne EM, Johnson J, McRae AF, Nyholt DR, Medland SE, Gehrman PR, et al. A genome-wide association study of caffeine-related sleep disturbance: confirmation of a role for a common variant in the adenosine receptor. Sleep. 2012;35(7):967–75.CrossRefPubMedPubMedCentral
71.
go back to reference Cornelis MC, El-Sohemy A, Campos H. Genetic polymorphism of the adenosine A2A receptor is associated with habitual caffeine consumption. Am J Clin Nutr. 2007;86(1):240–4.CrossRefPubMed Cornelis MC, El-Sohemy A, Campos H. Genetic polymorphism of the adenosine A2A receptor is associated with habitual caffeine consumption. Am J Clin Nutr. 2007;86(1):240–4.CrossRefPubMed
72.
go back to reference Brathwaite JM, Da Costa LA, El-Sohemy A. Catechol-O-methyltransferase genotype is associated with self-reported increased heart rate following caffeine consumption. J Caffeine Res. 2011;1(2):123–30.CrossRef Brathwaite JM, Da Costa LA, El-Sohemy A. Catechol-O-methyltransferase genotype is associated with self-reported increased heart rate following caffeine consumption. J Caffeine Res. 2011;1(2):123–30.CrossRef
73.
go back to reference De Caterina R, El-Sohemy A. Moving towards specific nutrigenetic recommendation algorithms: caffeine, genetic variation and cardiovascular risk. J Nutrigenet Nutrigenomics. 2016;9(2–4):106–15.CrossRefPubMed De Caterina R, El-Sohemy A. Moving towards specific nutrigenetic recommendation algorithms: caffeine, genetic variation and cardiovascular risk. J Nutrigenet Nutrigenomics. 2016;9(2–4):106–15.CrossRefPubMed
74.
go back to reference Reilly T, Waterhouse J. Sports performance: is there evidence that the body clock plays a role? Eur J Appl Physiol. 2009;106(3):321–32.CrossRefPubMed Reilly T, Waterhouse J. Sports performance: is there evidence that the body clock plays a role? Eur J Appl Physiol. 2009;106(3):321–32.CrossRefPubMed
75.
go back to reference Racinais S, Perrey S, Denis R, Bishop D. Maximal power, but not fatigability, is greater during repeated sprints performed in the afternoon. Chronobiol Int. 2010;27(4):855–64.CrossRefPubMed Racinais S, Perrey S, Denis R, Bishop D. Maximal power, but not fatigability, is greater during repeated sprints performed in the afternoon. Chronobiol Int. 2010;27(4):855–64.CrossRefPubMed
76.
go back to reference Fernandes AL, Lopes-Silva JP, Bertuzzi R, Casarini DE, Arita DY, Bishop DJ, et al. Effect of time of day on performance, hormonal and metabolic response during a 1000-M cycling time trial. PLoS One. 2014;9(10):e109954.CrossRefPubMedPubMedCentral Fernandes AL, Lopes-Silva JP, Bertuzzi R, Casarini DE, Arita DY, Bishop DJ, et al. Effect of time of day on performance, hormonal and metabolic response during a 1000-M cycling time trial. PLoS One. 2014;9(10):e109954.CrossRefPubMedPubMedCentral
77.
go back to reference Grgic J, Lazinica B, Garofolini A, Schoenfeld BJ, Saner NJ, Mikulic P. The effects of time of day-specific resistance training on adaptations in skeletal muscle hypertrophy and muscle strength: a systematic review and meta-analysis. Chronobiol Int. 2019;36(4):449–60.CrossRefPubMed Grgic J, Lazinica B, Garofolini A, Schoenfeld BJ, Saner NJ, Mikulic P. The effects of time of day-specific resistance training on adaptations in skeletal muscle hypertrophy and muscle strength: a systematic review and meta-analysis. Chronobiol Int. 2019;36(4):449–60.CrossRefPubMed
78.
go back to reference Guette M, Gondin J, Martin A. Time-of-day effect on the torque and neuromuscular properties of dominant and non-dominant quadriceps femoris. Chronobiol Int. 2005;22(3):541–58.CrossRefPubMed Guette M, Gondin J, Martin A. Time-of-day effect on the torque and neuromuscular properties of dominant and non-dominant quadriceps femoris. Chronobiol Int. 2005;22(3):541–58.CrossRefPubMed
79.
go back to reference Lopes-Silva JP, Santos JFDS, Franchini E. Can caffeine supplementation reverse the effect of time of day on repeated-sprint exercise performance? Appl Physiol Nutr Metab. 2019;44(2):187–93.CrossRefPubMed Lopes-Silva JP, Santos JFDS, Franchini E. Can caffeine supplementation reverse the effect of time of day on repeated-sprint exercise performance? Appl Physiol Nutr Metab. 2019;44(2):187–93.CrossRefPubMed
80.
go back to reference Souissi M, Abedelmalek S, Bou Dhiba D, Theodoros Nikolaidis P, Ben Awicha H, Chtourou H, et al. Morning caffeine ingestion increases cognitive function and short-term maximal performance in footballer players after partial sleep deprivation. Biol Rhythm Res. 2015;46(5):617–29.CrossRef Souissi M, Abedelmalek S, Bou Dhiba D, Theodoros Nikolaidis P, Ben Awicha H, Chtourou H, et al. Morning caffeine ingestion increases cognitive function and short-term maximal performance in footballer players after partial sleep deprivation. Biol Rhythm Res. 2015;46(5):617–29.CrossRef
81.
go back to reference Mora-Rodríguez R, Pallarés JG, López-Samanes Á, Ortega JF, Fernández-Elías VE. Caffeine ingestion reverses the circadian rhythm effects on neuromuscular performance in highly resistance-trained men. PLoS One. 2012;7(4):e33807.CrossRefPubMedPubMedCentral Mora-Rodríguez R, Pallarés JG, López-Samanes Á, Ortega JF, Fernández-Elías VE. Caffeine ingestion reverses the circadian rhythm effects on neuromuscular performance in highly resistance-trained men. PLoS One. 2012;7(4):e33807.CrossRefPubMedPubMedCentral
82.
go back to reference Mora-Rodríguez R, Pallarés JG, López-Gullón JM, López-Samanes Á, Fernández-Elías VE, Ortega JF. Improvements on neuromuscular performance with caffeine ingestion depend on the time-of-day. J Sci Med Sport. 2015;18(3):338–42.CrossRefPubMed Mora-Rodríguez R, Pallarés JG, López-Gullón JM, López-Samanes Á, Fernández-Elías VE, Ortega JF. Improvements on neuromuscular performance with caffeine ingestion depend on the time-of-day. J Sci Med Sport. 2015;18(3):338–42.CrossRefPubMed
83.
go back to reference Boyett JC, Giersch GE, Womack CJ, Saunders MJ, Hughey CA, Daley HM, et al. Time of day and training status both impact the efficacy of caffeine for short duration cycling performance. Nutrients. 2016;8(10):639.CrossRefPubMedCentral Boyett JC, Giersch GE, Womack CJ, Saunders MJ, Hughey CA, Daley HM, et al. Time of day and training status both impact the efficacy of caffeine for short duration cycling performance. Nutrients. 2016;8(10):639.CrossRefPubMedCentral
84.
go back to reference Souissi M, Abedelmalek S, Chtourou H, Boussita A, Hakim A, Sahnoun Z. Effects of time-of-day and caffeine ingestion on mood states, simple reaction time, and short-term maximal performance in elite judoists. Biol Rhythm Res. 2013;44(6):897–907.CrossRef Souissi M, Abedelmalek S, Chtourou H, Boussita A, Hakim A, Sahnoun Z. Effects of time-of-day and caffeine ingestion on mood states, simple reaction time, and short-term maximal performance in elite judoists. Biol Rhythm Res. 2013;44(6):897–907.CrossRef
86.
go back to reference Atkinson G, Todd C, Reilly T, Waterhouse J. Diurnal variation in cycling performance: influence of warm-up. J Sports Sci. 2005;23(3):321–9.CrossRefPubMed Atkinson G, Todd C, Reilly T, Waterhouse J. Diurnal variation in cycling performance: influence of warm-up. J Sports Sci. 2005;23(3):321–9.CrossRefPubMed
87.
go back to reference Sainani KL. The problem with “magnitude-based inference”. Med Sci Sports Exerc. 2018;50(10):2166–76.CrossRefPubMed Sainani KL. The problem with “magnitude-based inference”. Med Sci Sports Exerc. 2018;50(10):2166–76.CrossRefPubMed
88.
go back to reference Duncan MJ, Thake CD, Downs PJ. Effect of caffeine ingestion on torque and muscle activity during resistance exercise in men. Muscle Nerve. 2014;50(4):523–7.CrossRefPubMed Duncan MJ, Thake CD, Downs PJ. Effect of caffeine ingestion on torque and muscle activity during resistance exercise in men. Muscle Nerve. 2014;50(4):523–7.CrossRefPubMed
90.
go back to reference Forbes-Robertson S, Dudley E, Vadgama P, Cook C, Drawer S, Kilduff L. Circadian disruption and remedial interventions. Sports Med. 2012;42(3):185–208.CrossRefPubMed Forbes-Robertson S, Dudley E, Vadgama P, Cook C, Drawer S, Kilduff L. Circadian disruption and remedial interventions. Sports Med. 2012;42(3):185–208.CrossRefPubMed
91.
go back to reference Lagarde D, Chappuis B, Billaud PF, Ramont L, Chauffard F, French J. Evaluation of pharmacological aids on physical performance after a transmeridian flight. Med Sci Sports Exerc. 2001;33(4):628–34.CrossRefPubMed Lagarde D, Chappuis B, Billaud PF, Ramont L, Chauffard F, French J. Evaluation of pharmacological aids on physical performance after a transmeridian flight. Med Sci Sports Exerc. 2001;33(4):628–34.CrossRefPubMed
92.
go back to reference Beaumont M, Batejat D, Pierard C, Van Beers P, Denis JB, Coste O, et al. Caffeine or melatonin effects on sleep and sleepiness after rapid eastward transmeridian travel. J Appl Physiol. 2004;96(1):50–8.CrossRefPubMed Beaumont M, Batejat D, Pierard C, Van Beers P, Denis JB, Coste O, et al. Caffeine or melatonin effects on sleep and sleepiness after rapid eastward transmeridian travel. J Appl Physiol. 2004;96(1):50–8.CrossRefPubMed
93.
go back to reference Piérard C, Beaumont M, Enslen M, Chauffard F, Tan DX, Reiter RJ, et al. Resynchronization of hormonal rhythms after an eastbound flight in humans: effects of slow-release caffeine and melatonin. Eur J Appl Physiol. 2001;85(1–2):144–50.PubMed Piérard C, Beaumont M, Enslen M, Chauffard F, Tan DX, Reiter RJ, et al. Resynchronization of hormonal rhythms after an eastbound flight in humans: effects of slow-release caffeine and melatonin. Eur J Appl Physiol. 2001;85(1–2):144–50.PubMed
94.
go back to reference Samuels CH. Jet lag and travel fatigue: a comprehensive management plan for sport medicine physicians and high-performance support teams. Clin J Sport Med. 2012;22(3):268–73.CrossRefPubMed Samuels CH. Jet lag and travel fatigue: a comprehensive management plan for sport medicine physicians and high-performance support teams. Clin J Sport Med. 2012;22(3):268–73.CrossRefPubMed
95.
go back to reference Kolla BP, Auger RR. Jet lag and shift work sleep disorders: how to help reset the internal clock. Cleve Clin J Med. 2011;78(10):675–84.CrossRefPubMed Kolla BP, Auger RR. Jet lag and shift work sleep disorders: how to help reset the internal clock. Cleve Clin J Med. 2011;78(10):675–84.CrossRefPubMed
97.
go back to reference Astorino TA, Cottrell T, Talhami Lozano A, Aburto-Pratt K, Duhon J. Effect of caffeine on RPE and perceptions of pain, arousal, and pleasure/displeasure during a cycling time trial in endurance trained and active men. Physiol Behav. 2012;106(2):211–7.CrossRefPubMed Astorino TA, Cottrell T, Talhami Lozano A, Aburto-Pratt K, Duhon J. Effect of caffeine on RPE and perceptions of pain, arousal, and pleasure/displeasure during a cycling time trial in endurance trained and active men. Physiol Behav. 2012;106(2):211–7.CrossRefPubMed
98.
99.
go back to reference Currell K, Jeukendrup AE. Validity, reliability and sensitivity of measures of sporting performance. Sports Med. 2008;38(4):297–316.CrossRefPubMed Currell K, Jeukendrup AE. Validity, reliability and sensitivity of measures of sporting performance. Sports Med. 2008;38(4):297–316.CrossRefPubMed
100.
go back to reference Póvoas SC, Castagna C, da Costa Soares JM, Silva P, Coelho-E-Silva MJ, Matos F, et al. Reliability and construct validity of Yo-Yo tests in untrained and soccer-trained schoolgirls aged 9-16. Pediatr Exerc Sci. 2016;28(2):321–30.CrossRefPubMed Póvoas SC, Castagna C, da Costa Soares JM, Silva P, Coelho-E-Silva MJ, Matos F, et al. Reliability and construct validity of Yo-Yo tests in untrained and soccer-trained schoolgirls aged 9-16. Pediatr Exerc Sci. 2016;28(2):321–30.CrossRefPubMed
101.
go back to reference Nimmerichter A, Steindl M, Williams CA. Reliability of the single-visit field test of critical speed in trained and untrained adolescents. Sports. 2015;3(4):358–68.CrossRef Nimmerichter A, Steindl M, Williams CA. Reliability of the single-visit field test of critical speed in trained and untrained adolescents. Sports. 2015;3(4):358–68.CrossRef
102.
go back to reference Metikos B, Mikulic P, Sarabon N, Markovic G. Peak power output test on a rowing ergometer: a methodological study. J Strength Cond Res. 2015;29(10):2919–25.CrossRefPubMed Metikos B, Mikulic P, Sarabon N, Markovic G. Peak power output test on a rowing ergometer: a methodological study. J Strength Cond Res. 2015;29(10):2919–25.CrossRefPubMed
103.
go back to reference McCurdy K, Langford GA, Cline AL, Doscher M, Hoff R. The reliability of 1- and 3RM tests of unilateral strength in trained and untrained men and women. J Sports Sci Med. 2004;3(3):190–6.PubMedPubMedCentral McCurdy K, Langford GA, Cline AL, Doscher M, Hoff R. The reliability of 1- and 3RM tests of unilateral strength in trained and untrained men and women. J Sports Sci Med. 2004;3(3):190–6.PubMedPubMedCentral
104.
go back to reference Skinner TL, Jenkins DG, Leveritt MD, McGorm A, Bolam KA, Coombes JS, et al. Factors influencing serum caffeine concentrations following caffeine ingestion. J Sci Med Sport. 2014;17(5):516–20.CrossRefPubMed Skinner TL, Jenkins DG, Leveritt MD, McGorm A, Bolam KA, Coombes JS, et al. Factors influencing serum caffeine concentrations following caffeine ingestion. J Sci Med Sport. 2014;17(5):516–20.CrossRefPubMed
105.
go back to reference McLellan TM, Caldwell JA, Lieberman HR. A review of caffeine’s effects on cognitive, physical and occupational performance. Neurosci Biobehav Rev. 2016;71:294–312.CrossRefPubMed McLellan TM, Caldwell JA, Lieberman HR. A review of caffeine’s effects on cognitive, physical and occupational performance. Neurosci Biobehav Rev. 2016;71:294–312.CrossRefPubMed
106.
go back to reference Mizuno M, Kimura Y, Tokizawa K, Ishii K, Oda K, Sasaki T, et al. Greater adenosine A(2A) receptor densities in cardiac and skeletal muscle in endurance-trained men: a [11C]TMSX PET study. Nucl Med Biol. 2005;32(8):831–6.CrossRefPubMed Mizuno M, Kimura Y, Tokizawa K, Ishii K, Oda K, Sasaki T, et al. Greater adenosine A(2A) receptor densities in cardiac and skeletal muscle in endurance-trained men: a [11C]TMSX PET study. Nucl Med Biol. 2005;32(8):831–6.CrossRefPubMed
107.
go back to reference Porterfield S, Linderman J, Laubach L, Daprano C. Comparison of the effect of caffeine ingestion on time to exhaustion between endurance trained and untrained men. J Exerc Physiol Online. 2013;16(5):90–8. Porterfield S, Linderman J, Laubach L, Daprano C. Comparison of the effect of caffeine ingestion on time to exhaustion between endurance trained and untrained men. J Exerc Physiol Online. 2013;16(5):90–8.
108.
go back to reference O’Rourke MP, O’Brien BJ, Knez WL, Paton CD. Caffeine has a small effect on 5-km running performance of well-trained and recreational runners. J Sci Med Sport. 2008;11(2):231–3.CrossRefPubMed O’Rourke MP, O’Brien BJ, Knez WL, Paton CD. Caffeine has a small effect on 5-km running performance of well-trained and recreational runners. J Sci Med Sport. 2008;11(2):231–3.CrossRefPubMed
109.
go back to reference Brooks JH, Wyld K, Chrismas BCR. Acute effects of caffeine on strength performance in trained and untrained individuals. J Athl Enhancement. 2015;4:6.CrossRef Brooks JH, Wyld K, Chrismas BCR. Acute effects of caffeine on strength performance in trained and untrained individuals. J Athl Enhancement. 2015;4:6.CrossRef
110.
go back to reference Tallis J, Duncan MJ, James RS. What can isolated skeletal muscle experiments tell us about the effects of caffeine on exercise performance? Br J Pharmacol. 2015;172(15):3703–13.CrossRefPubMedPubMedCentral Tallis J, Duncan MJ, James RS. What can isolated skeletal muscle experiments tell us about the effects of caffeine on exercise performance? Br J Pharmacol. 2015;172(15):3703–13.CrossRefPubMedPubMedCentral
111.
go back to reference Tallis J, Higgins MF, Cox VM, Duncan MJ, James RS. An exercise-induced improvement in isolated skeletal muscle contractility does not affect the performance-enhancing benefit of 70 µmol l−1 caffeine treatment. J Exp Biol. 2018;221(21):jeb190132. Tallis J, Higgins MF, Cox VM, Duncan MJ, James RS. An exercise-induced improvement in isolated skeletal muscle contractility does not affect the performance-enhancing benefit of 70 µmol l−1 caffeine treatment. J Exp Biol. 2018;221(21):jeb190132.
112.
go back to reference Berthelot G, Sedeaud A, Marck A, Antero-Jacquemin J, Schipman J, Saulière G, et al. Has athletic performance reached its peak? Sports Med. 2015;45(9):1263–71.CrossRefPubMedPubMedCentral Berthelot G, Sedeaud A, Marck A, Antero-Jacquemin J, Schipman J, Saulière G, et al. Has athletic performance reached its peak? Sports Med. 2015;45(9):1263–71.CrossRefPubMedPubMedCentral
113.
go back to reference Haugen T, Paulsen G, Seiler S, Sandbakk Ø. New records in human power. Int J Sports Physiol Perform. 2018;13(6):678–86.CrossRefPubMed Haugen T, Paulsen G, Seiler S, Sandbakk Ø. New records in human power. Int J Sports Physiol Perform. 2018;13(6):678–86.CrossRefPubMed
114.
go back to reference Halperin I. Case studies in exercise and sport sciences: a powerful tool to bridge the science-practice gap. Int J Sports Physiol Perform. 2018;13(6):824–5.CrossRefPubMed Halperin I. Case studies in exercise and sport sciences: a powerful tool to bridge the science-practice gap. Int J Sports Physiol Perform. 2018;13(6):824–5.CrossRefPubMed
115.
go back to reference Rietveld EC, Broekman MM, Houben JJ, Eskes TK, Van Rossum JM. Rapid onset of an increase in caffeine residence time in young women due to oral contraceptive steroids. Eur J Clin Pharmacol. 1984;26(3):371–3.CrossRefPubMed Rietveld EC, Broekman MM, Houben JJ, Eskes TK, Van Rossum JM. Rapid onset of an increase in caffeine residence time in young women due to oral contraceptive steroids. Eur J Clin Pharmacol. 1984;26(3):371–3.CrossRefPubMed
116.
go back to reference Lane JD, Steege JF, Rupp SL, Kuhn CM. Menstrual cycle effects on caffeine elimination in the human female. Eur J Clin Pharmacol. 1992;43(5):543–6.CrossRefPubMed Lane JD, Steege JF, Rupp SL, Kuhn CM. Menstrual cycle effects on caffeine elimination in the human female. Eur J Clin Pharmacol. 1992;43(5):543–6.CrossRefPubMed
117.
go back to reference Goldstein E, Jacobs PL, Whitehurst M, Penhollow T, Antonio J. Caffeine enhances upper body strength in resistance-trained women. J Int Soc Sports Nutr. 2010;7(1):18.CrossRefPubMedPubMedCentral Goldstein E, Jacobs PL, Whitehurst M, Penhollow T, Antonio J. Caffeine enhances upper body strength in resistance-trained women. J Int Soc Sports Nutr. 2010;7(1):18.CrossRefPubMedPubMedCentral
118.
go back to reference Beck TW, Housh TJ, Schmidt RJ, Johnson GO, Housh DJ, Coburn JW, et al. The acute effects of a caffeine-containing supplement on strength, muscular endurance, and anaerobic capabilities. J Strength Cond Res. 2006;20(3):506–10.PubMed Beck TW, Housh TJ, Schmidt RJ, Johnson GO, Housh DJ, Coburn JW, et al. The acute effects of a caffeine-containing supplement on strength, muscular endurance, and anaerobic capabilities. J Strength Cond Res. 2006;20(3):506–10.PubMed
119.
go back to reference Anderson ME, Bruce CR, Fraser SF, Stepto NK, Klein R, Hopkins WG, et al. Improved 2000-meter rowing performance in competitive oarswomen after caffeine ingestion. Int J Sport Nutr Exerc Metab. 2000;10(4):464–75.CrossRefPubMed Anderson ME, Bruce CR, Fraser SF, Stepto NK, Klein R, Hopkins WG, et al. Improved 2000-meter rowing performance in competitive oarswomen after caffeine ingestion. Int J Sport Nutr Exerc Metab. 2000;10(4):464–75.CrossRefPubMed
121.
go back to reference Butts NK, Crowell D. Effect of caffeine ingestion on cardiorespiratory endurance in men and women. Res Q Exerc Sport. 1985;56(4):301–5.CrossRef Butts NK, Crowell D. Effect of caffeine ingestion on cardiorespiratory endurance in men and women. Res Q Exerc Sport. 1985;56(4):301–5.CrossRef
122.
go back to reference Sabblah S, Dixon D, Bottoms L. Sex differences on the acute effects of caffeine on maximal strength and muscular endurance. Comp Exerc Physiol. 2015;11(2):89–94.CrossRef Sabblah S, Dixon D, Bottoms L. Sex differences on the acute effects of caffeine on maximal strength and muscular endurance. Comp Exerc Physiol. 2015;11(2):89–94.CrossRef
123.
go back to reference Suvi S, Timpmann S, Tamm M, Aedma M, Kreegipuu K, Ööpik V. Effects of caffeine on endurance capacity and psychological state in young females and males exercising in the heat. Appl Physiol Nutr Metab. 2017;42(1):68–76.CrossRefPubMed Suvi S, Timpmann S, Tamm M, Aedma M, Kreegipuu K, Ööpik V. Effects of caffeine on endurance capacity and psychological state in young females and males exercising in the heat. Appl Physiol Nutr Metab. 2017;42(1):68–76.CrossRefPubMed
124.
go back to reference Norager CB, Jensen MB, Madsen MR, Laurberg S. Caffeine improves endurance in 75-yr-old citizens: a randomized, double-blind, placebo-controlled, crossover study. J Appl Physiol. 2005;99(6):2302–6.CrossRefPubMed Norager CB, Jensen MB, Madsen MR, Laurberg S. Caffeine improves endurance in 75-yr-old citizens: a randomized, double-blind, placebo-controlled, crossover study. J Appl Physiol. 2005;99(6):2302–6.CrossRefPubMed
125.
go back to reference Sökmen B, Armstrong LE, Kraemer WJ, Casa DJ, Dias JC, Judelson DA, et al. Caffeine use in sports: considerations for the athlete. J Strength Cond Res. 2008;22(3):978–86.CrossRefPubMed Sökmen B, Armstrong LE, Kraemer WJ, Casa DJ, Dias JC, Judelson DA, et al. Caffeine use in sports: considerations for the athlete. J Strength Cond Res. 2008;22(3):978–86.CrossRefPubMed
127.
go back to reference Dodd SL, Brooks E, Powers SK, Tulley R. The effects of caffeine on graded exercise performance in caffeine naive versus habituated subjects. Eur J Appl Physiol Occup Physiol. 1991;62(6):424–9.CrossRefPubMed Dodd SL, Brooks E, Powers SK, Tulley R. The effects of caffeine on graded exercise performance in caffeine naive versus habituated subjects. Eur J Appl Physiol Occup Physiol. 1991;62(6):424–9.CrossRefPubMed
128.
go back to reference Bell DG, McLellan TM. Exercise endurance 1, 3, and 6 h after caffeine ingestion in caffeine users and nonusers. J Appl Physiol. 2002;93(4):1227–34.CrossRefPubMed Bell DG, McLellan TM. Exercise endurance 1, 3, and 6 h after caffeine ingestion in caffeine users and nonusers. J Appl Physiol. 2002;93(4):1227–34.CrossRefPubMed
129.
go back to reference Beaumont R, Cordery P, Funnell M, Mears S, James L, Watson P. Chronic ingestion of a low dose of caffeine induces tolerance to the performance benefits of caffeine. J Sports Sci. 2017;35(19):1920–7.CrossRefPubMed Beaumont R, Cordery P, Funnell M, Mears S, James L, Watson P. Chronic ingestion of a low dose of caffeine induces tolerance to the performance benefits of caffeine. J Sports Sci. 2017;35(19):1920–7.CrossRefPubMed
130.
go back to reference Gonçalves LD, Painelli VD, Yamaguchi G, Oliveira LF, Saunders B, da Silva RP, et al. Dispelling the myth that habitual caffeine consumption influences the performance response to acute caffeine supplementation. J Appl Physiol. 2017;123(1):213–20.CrossRefPubMed Gonçalves LD, Painelli VD, Yamaguchi G, Oliveira LF, Saunders B, da Silva RP, et al. Dispelling the myth that habitual caffeine consumption influences the performance response to acute caffeine supplementation. J Appl Physiol. 2017;123(1):213–20.CrossRefPubMed
131.
133.
go back to reference Fisher SM, McMurray RG, Berry M, Mar MH, Forsythe WA. Influence of caffeine on exercise performance in habitual caffeine users. Int J Sports Med. 1986;7(05):276–80.CrossRefPubMed Fisher SM, McMurray RG, Berry M, Mar MH, Forsythe WA. Influence of caffeine on exercise performance in habitual caffeine users. Int J Sports Med. 1986;7(05):276–80.CrossRefPubMed
134.
go back to reference Van Soeren MH, Graham TE. Effect of caffeine on metabolism, exercise endurance, and catecholamine responses after withdrawal. J Appl Physiol. 1998;85(4):1493–501.CrossRefPubMed Van Soeren MH, Graham TE. Effect of caffeine on metabolism, exercise endurance, and catecholamine responses after withdrawal. J Appl Physiol. 1998;85(4):1493–501.CrossRefPubMed
135.
go back to reference Irwin C, Desbrow B, Ellis A, O’Keeffe B, Grant G, Leveritt M. Caffeine withdrawal and high-intensity endurance cycling performance. J Sports Sci. 2011;29(5):509–15.CrossRefPubMed Irwin C, Desbrow B, Ellis A, O’Keeffe B, Grant G, Leveritt M. Caffeine withdrawal and high-intensity endurance cycling performance. J Sports Sci. 2011;29(5):509–15.CrossRefPubMed
136.
go back to reference Mitchell DC, Knight CA, Hockenberry J, Teplansky R, Hartman TJ. Beverage caffeine intakes in the U.S. Food Chem Toxicol. 2014;63:136–42. Mitchell DC, Knight CA, Hockenberry J, Teplansky R, Hartman TJ. Beverage caffeine intakes in the U.S. Food Chem Toxicol. 2014;63:136–42.
137.
go back to reference Desbrow B, Hughes R, Leveritt M, Scheelings P. An examination of consumer exposure to caffeine from retail coffee outlets. Food Chem Toxicol. 2007;45(9):1588–92.CrossRefPubMed Desbrow B, Hughes R, Leveritt M, Scheelings P. An examination of consumer exposure to caffeine from retail coffee outlets. Food Chem Toxicol. 2007;45(9):1588–92.CrossRefPubMed
138.
go back to reference Desbrow B, Henry M, Scheelings P. An examination of consumer exposure to caffeine from commercial coffee and coffee-flavoured milk. J Food Compost Anal. 2012;28(2):114–8.CrossRef Desbrow B, Henry M, Scheelings P. An examination of consumer exposure to caffeine from commercial coffee and coffee-flavoured milk. J Food Compost Anal. 2012;28(2):114–8.CrossRef
139.
go back to reference Areta JL, Irwin C, Desbrow B, et al. Inaccuracies in caffeine intake quantification and other important limitations in recent publication by Gonçalves et al. J Appl Physiol. 2017;123(5):1414.CrossRefPubMed Areta JL, Irwin C, Desbrow B, et al. Inaccuracies in caffeine intake quantification and other important limitations in recent publication by Gonçalves et al. J Appl Physiol. 2017;123(5):1414.CrossRefPubMed
140.
go back to reference Lelo A, Miners JO, Robson R, Birkett DJ. Assessment of caffeine exposure: caffeine content of beverages, caffeine intake, and plasma concentrations of methylxanthines. Clin Pharmacol Ther. 1986;39(1):54–9.CrossRefPubMed Lelo A, Miners JO, Robson R, Birkett DJ. Assessment of caffeine exposure: caffeine content of beverages, caffeine intake, and plasma concentrations of methylxanthines. Clin Pharmacol Ther. 1986;39(1):54–9.CrossRefPubMed
141.
go back to reference Carrillo JA, Christensen M, Ramos SI, Alm C, Dahl ML, Benítez J, et al. Evaluation of caffeine as an in vivo probe for CYP1A2 using measurements in plasma, saliva, and urine. Ther Drug Monit. 2000;22(4):409–17.CrossRefPubMed Carrillo JA, Christensen M, Ramos SI, Alm C, Dahl ML, Benítez J, et al. Evaluation of caffeine as an in vivo probe for CYP1A2 using measurements in plasma, saliva, and urine. Ther Drug Monit. 2000;22(4):409–17.CrossRefPubMed
142.
go back to reference Burke LM. Practical issues in evidence-based use of performance supplements: supplement interactions, repeated use and individual responses. Sports Med. 2017;47(1):79–100.CrossRefPubMedPubMedCentral Burke LM. Practical issues in evidence-based use of performance supplements: supplement interactions, repeated use and individual responses. Sports Med. 2017;47(1):79–100.CrossRefPubMedPubMedCentral
143.
go back to reference Cole KJ, Costill DL, Starling RD, Goodpaster BH, Trappe SW, Fink WJ. Effect of caffeine ingestion on perception of effort and subsequent work production. Int J Sport Nutr. 1996;6(1):14–23.CrossRefPubMed Cole KJ, Costill DL, Starling RD, Goodpaster BH, Trappe SW, Fink WJ. Effect of caffeine ingestion on perception of effort and subsequent work production. Int J Sport Nutr. 1996;6(1):14–23.CrossRefPubMed
144.
go back to reference Stadheim HK, Spencer M, Olsen R, Jensen J. Caffeine and performance over consecutive days of simulated competition. Med Sci Sports Exerc. 2014;46(9):1787–96.CrossRefPubMed Stadheim HK, Spencer M, Olsen R, Jensen J. Caffeine and performance over consecutive days of simulated competition. Med Sci Sports Exerc. 2014;46(9):1787–96.CrossRefPubMed
145.
go back to reference Bell DG, McLellan TM. Effect of repeated caffeine ingestion on repeated exhaustive exercise endurance. Med Sci Sports Exerc. 2003;35(8):1348–54.CrossRefPubMed Bell DG, McLellan TM. Effect of repeated caffeine ingestion on repeated exhaustive exercise endurance. Med Sci Sports Exerc. 2003;35(8):1348–54.CrossRefPubMed
147.
go back to reference Astorino TA, Cottrell T, Lozano AT, Aburto-Pratt K, Duhon J. Increases in cycling performance in response to caffeine ingestion are repeatable. Nutr Res. 2012;32(2):78–84.CrossRefPubMed Astorino TA, Cottrell T, Lozano AT, Aburto-Pratt K, Duhon J. Increases in cycling performance in response to caffeine ingestion are repeatable. Nutr Res. 2012;32(2):78–84.CrossRefPubMed
148.
go back to reference Malek MH, Housh TJ, Coburn JW, Beck TW, Schmidt RJ, Housh DJ, et al. Effects of eight weeks of caffeine supplementation and endurance training on aerobic fitness and body composition. J Strength Cond Res. 2006;20(4):751–5.PubMed Malek MH, Housh TJ, Coburn JW, Beck TW, Schmidt RJ, Housh DJ, et al. Effects of eight weeks of caffeine supplementation and endurance training on aerobic fitness and body composition. J Strength Cond Res. 2006;20(4):751–5.PubMed
149.
go back to reference Schoenfeld BJ, Ogborn D, Krieger JW. Dose-response relationship between weekly resistance training volume and increases in muscle mass: a systematic review and meta-analysis. J Sports Sci. 2017;35(11):1073–82.CrossRefPubMed Schoenfeld BJ, Ogborn D, Krieger JW. Dose-response relationship between weekly resistance training volume and increases in muscle mass: a systematic review and meta-analysis. J Sports Sci. 2017;35(11):1073–82.CrossRefPubMed
150.
151.
go back to reference Hodgson AB, Randell RK, Jeukendrup AE. The metabolic and performance effects of caffeine compared to coffee during endurance exercise. PLoS ONE. 2013;8(4):e59561.CrossRefPubMedPubMedCentral Hodgson AB, Randell RK, Jeukendrup AE. The metabolic and performance effects of caffeine compared to coffee during endurance exercise. PLoS ONE. 2013;8(4):e59561.CrossRefPubMedPubMedCentral
152.
go back to reference Cooper R, Naclerio F, Allgrove J, Larumbe-Zabala E. Effects of a carbohydrate and caffeine gel on intermittent sprint performance in recreationally trained males. Eur J Sport Sci. 2014;14(4):353–61.CrossRefPubMed Cooper R, Naclerio F, Allgrove J, Larumbe-Zabala E. Effects of a carbohydrate and caffeine gel on intermittent sprint performance in recreationally trained males. Eur J Sport Sci. 2014;14(4):353–61.CrossRefPubMed
153.
go back to reference De Pauw K, Roelands B, Van Cutsem J, Marusic U, Torbeyns T, Meeusen R. Electro-physiological changes in the brain induced by caffeine or glucose nasal spray. Psychopharmacology. 2017;234(1):53–62.CrossRefPubMed De Pauw K, Roelands B, Van Cutsem J, Marusic U, Torbeyns T, Meeusen R. Electro-physiological changes in the brain induced by caffeine or glucose nasal spray. Psychopharmacology. 2017;234(1):53–62.CrossRefPubMed
154.
go back to reference Lane SC, Hawley JA, Desbrow B, Jones AM, Blackwell JR, Ross ML, et al. Single and combined effects of beetroot juice and caffeine supplementation on cycling time trial performance. Appl Physiol Nutr Metab. 2013;39(9):1050–7.CrossRefPubMed Lane SC, Hawley JA, Desbrow B, Jones AM, Blackwell JR, Ross ML, et al. Single and combined effects of beetroot juice and caffeine supplementation on cycling time trial performance. Appl Physiol Nutr Metab. 2013;39(9):1050–7.CrossRefPubMed
155.
go back to reference Beaven CM, Maulder P, Pooley A, Kilduff L, Cook C. Effects of caffeine and carbohydrate mouth rinses on repeated sprint performance. Appl Physiol Nutr Metab. 2013;38(6):633–7.CrossRefPubMed Beaven CM, Maulder P, Pooley A, Kilduff L, Cook C. Effects of caffeine and carbohydrate mouth rinses on repeated sprint performance. Appl Physiol Nutr Metab. 2013;38(6):633–7.CrossRefPubMed
156.
go back to reference Clarke ND, Kornilios E, Richardson DL. Carbohydrate and caffeine mouth rinses do not affect maximum strength and muscular endurance performance. J Strength Cond Res. 2015;29(10):2926–31.CrossRefPubMed Clarke ND, Kornilios E, Richardson DL. Carbohydrate and caffeine mouth rinses do not affect maximum strength and muscular endurance performance. J Strength Cond Res. 2015;29(10):2926–31.CrossRefPubMed
158.
go back to reference Kamimori GH, Karyekar CS, Otterstetter R, Cox DS, Balkin TJ, Belenky GL, et al. The rate of absorption and relative bioavailability of caffeine administered in chewing gum versus capsules to normal healthy volunteers. Int J Pharm. 2002;234(1–2):159–67.CrossRefPubMed Kamimori GH, Karyekar CS, Otterstetter R, Cox DS, Balkin TJ, Belenky GL, et al. The rate of absorption and relative bioavailability of caffeine administered in chewing gum versus capsules to normal healthy volunteers. Int J Pharm. 2002;234(1–2):159–67.CrossRefPubMed
159.
go back to reference Yeo SE, Jentjens RL, Wallis GA, Jeukendrup AE. Caffeine increases exogenous carbohydrate oxidation during exercise. J Appl Physiol. 2005;99(3):844–50.CrossRefPubMed Yeo SE, Jentjens RL, Wallis GA, Jeukendrup AE. Caffeine increases exogenous carbohydrate oxidation during exercise. J Appl Physiol. 2005;99(3):844–50.CrossRefPubMed
160.
go back to reference Boekema PJ, Samsom M, van Berge Henegouwen GP, Smout AJ. Coffee and gastrointestinal function: facts and fiction: a review. Scand J Gastroenterol Suppl. 1999;230:35–9.PubMed Boekema PJ, Samsom M, van Berge Henegouwen GP, Smout AJ. Coffee and gastrointestinal function: facts and fiction: a review. Scand J Gastroenterol Suppl. 1999;230:35–9.PubMed
161.
go back to reference Heckman MA, Weil J, De Mejia EG. Caffeine (1, 3, 7-trimethylxanthine) in foods: a comprehensive review on consumption, functionality, safety, and regulatory matters. J Food Sci. 2010;75(3):77–87.CrossRef Heckman MA, Weil J, De Mejia EG. Caffeine (1, 3, 7-trimethylxanthine) in foods: a comprehensive review on consumption, functionality, safety, and regulatory matters. J Food Sci. 2010;75(3):77–87.CrossRef
162.
go back to reference Higgins S, Straight CR, Lewis RD. The effects of preexercise caffeinated coffee ingestion on endurance performance: an evidence-based review. Int J Sport Nutr Exerc Metab. 2016;26(3):221–39.CrossRefPubMed Higgins S, Straight CR, Lewis RD. The effects of preexercise caffeinated coffee ingestion on endurance performance: an evidence-based review. Int J Sport Nutr Exerc Metab. 2016;26(3):221–39.CrossRefPubMed
163.
go back to reference Marques AC, Jesus AA, Giglio BM, Marini AC, Lobo PC, Mota JF, et al. Acute caffeinated coffee consumption does not improve time trial performance in an 800-m run: a randomized, double-blind, crossover, placebo-controlled study. Nutrients. 2018;10(6):657.CrossRefPubMedCentral Marques AC, Jesus AA, Giglio BM, Marini AC, Lobo PC, Mota JF, et al. Acute caffeinated coffee consumption does not improve time trial performance in an 800-m run: a randomized, double-blind, crossover, placebo-controlled study. Nutrients. 2018;10(6):657.CrossRefPubMedCentral
164.
go back to reference Richardson DL, Clarke ND. Effect of coffee and caffeine ingestion on resistance exercise performance. J Strength Cond Res. 2016;30(10):2892–900.CrossRefPubMed Richardson DL, Clarke ND. Effect of coffee and caffeine ingestion on resistance exercise performance. J Strength Cond Res. 2016;30(10):2892–900.CrossRefPubMed
165.
go back to reference Trexler ET, Smith-Ryan AE, Roelofs EJ, Hirsch KR, Mock MG. Effects of coffee and caffeine anhydrous on strength and sprint performance. Eur J Sport Sci. 2016;16(6):702–10.CrossRefPubMed Trexler ET, Smith-Ryan AE, Roelofs EJ, Hirsch KR, Mock MG. Effects of coffee and caffeine anhydrous on strength and sprint performance. Eur J Sport Sci. 2016;16(6):702–10.CrossRefPubMed
168.
go back to reference Mündel T, King J, Collacott E, Jones DA. Drink temperature influences fluid intake and endurance capacity in men during exercise in a hot, dry environment. Exp Physiol. 2006;91(5):925–33.CrossRefPubMed Mündel T, King J, Collacott E, Jones DA. Drink temperature influences fluid intake and endurance capacity in men during exercise in a hot, dry environment. Exp Physiol. 2006;91(5):925–33.CrossRefPubMed
169.
go back to reference Pasman WJ, van Baak MA, Jeukendrup AE, de Haan A. The effect of different dosages of caffeine on endurance performance time. Int J Sports Med. 1995;16(4):225–30.CrossRefPubMed Pasman WJ, van Baak MA, Jeukendrup AE, de Haan A. The effect of different dosages of caffeine on endurance performance time. Int J Sports Med. 1995;16(4):225–30.CrossRefPubMed
170.
go back to reference Graham TE, Spriet LL. Metabolic, catecholamine, and exercise performance responses to various doses of caffeine. J Appl Physiol. 1995;78(3):867–74.CrossRefPubMed Graham TE, Spriet LL. Metabolic, catecholamine, and exercise performance responses to various doses of caffeine. J Appl Physiol. 1995;78(3):867–74.CrossRefPubMed
171.
go back to reference Desbrow B, Biddulph C, Devlin B, Grant GD, Anoopkumar-Dukie S, Leveritt MD. The effects of different doses of caffeine on endurance cycling time trial performance. J Sports Sci. 2012;30(2):115–20.CrossRefPubMed Desbrow B, Biddulph C, Devlin B, Grant GD, Anoopkumar-Dukie S, Leveritt MD. The effects of different doses of caffeine on endurance cycling time trial performance. J Sports Sci. 2012;30(2):115–20.CrossRefPubMed
172.
go back to reference Astorino TA, Terzi MN, Roberson DW, Burnett TR. Effect of two doses of caffeine on muscular function during isokinetic exercise. Med Sci Sports Exerc. 2010;42(12):2205–10.CrossRefPubMed Astorino TA, Terzi MN, Roberson DW, Burnett TR. Effect of two doses of caffeine on muscular function during isokinetic exercise. Med Sci Sports Exerc. 2010;42(12):2205–10.CrossRefPubMed
173.
go back to reference Pallarés JG, Fernández-Elías VE, Ortega JF, Muñoz G, Muñoz-Guerra J, Mora-Rodríguez R. Neuromuscular responses to incremental caffeine doses: performance and side effects. Med Sci Sports Exerc. 2013;45(11):2184–92.CrossRefPubMed Pallarés JG, Fernández-Elías VE, Ortega JF, Muñoz G, Muñoz-Guerra J, Mora-Rodríguez R. Neuromuscular responses to incremental caffeine doses: performance and side effects. Med Sci Sports Exerc. 2013;45(11):2184–92.CrossRefPubMed
174.
go back to reference Tallis J, Yavuz HC. The effects of low and moderate doses of caffeine supplementation on upper and lower body maximal voluntary concentric and eccentric muscle force. Appl Physiol Nutr Metab. 2017;43(3):274–81.CrossRefPubMed Tallis J, Yavuz HC. The effects of low and moderate doses of caffeine supplementation on upper and lower body maximal voluntary concentric and eccentric muscle force. Appl Physiol Nutr Metab. 2017;43(3):274–81.CrossRefPubMed
175.
go back to reference Langfort J, Dudohoski L, Dubaniewicz A, Challiss RA, Newsholme EA. Exercise-induced improvement in the sensitivity of the rat soleus muscle toinsulin is reversed by chloroadenosine − the adenosine receptor agonist. Biochem Med Metab Biol. 1993;50(1):18–23.CrossRefPubMed Langfort J, Dudohoski L, Dubaniewicz A, Challiss RA, Newsholme EA. Exercise-induced improvement in the sensitivity of the rat soleus muscle toinsulin is reversed by chloroadenosine − the adenosine receptor agonist. Biochem Med Metab Biol. 1993;50(1):18–23.CrossRefPubMed
176.
go back to reference Cox GR, Desbrow B, Montgomery PG, Anderson ME, Bruce CR, Macrides TA, et al. Effect of different protocols of caffeine intake on metabolism and endurance performance. J Appl Physiol. 2002;93(3):990–9.CrossRefPubMed Cox GR, Desbrow B, Montgomery PG, Anderson ME, Bruce CR, Macrides TA, et al. Effect of different protocols of caffeine intake on metabolism and endurance performance. J Appl Physiol. 2002;93(3):990–9.CrossRefPubMed
177.
go back to reference Black CD, Waddell DE, Gonglach AR. Caffeine’s ergogenic effects on cycling: neuromuscular and perceptual factors. Med Sci Sports Exerc. 2015;47(6):1145–58.CrossRefPubMed Black CD, Waddell DE, Gonglach AR. Caffeine’s ergogenic effects on cycling: neuromuscular and perceptual factors. Med Sci Sports Exerc. 2015;47(6):1145–58.CrossRefPubMed
178.
go back to reference Jenkins NT, Trilk JL, Singhal A, O’Connor PJ, Cureton KJ. Ergogenic effects of low doses of caffeine on cycling performance. Int J Sport Nutr Exerc Metab. 2008;18(3):328–42.CrossRefPubMed Jenkins NT, Trilk JL, Singhal A, O’Connor PJ, Cureton KJ. Ergogenic effects of low doses of caffeine on cycling performance. Int J Sport Nutr Exerc Metab. 2008;18(3):328–42.CrossRefPubMed
179.
go back to reference Glaister M, Patterson SD, Foley P, Pedlar CR, Pattison JR, McInnes G. Caffeine and sprinting performance: dose responses and efficacy. J Strength Cond Res. 2012;26(4):1001–5.CrossRefPubMed Glaister M, Patterson SD, Foley P, Pedlar CR, Pattison JR, McInnes G. Caffeine and sprinting performance: dose responses and efficacy. J Strength Cond Res. 2012;26(4):1001–5.CrossRefPubMed
180.
go back to reference Trevino MA, Coburn JW, Brown LE, Judelson DA, Malek MH. Acute effects of caffeine on strength and muscle activation of the elbow flexors. J Strength Cond Res. 2015;29(2):513–20.CrossRefPubMed Trevino MA, Coburn JW, Brown LE, Judelson DA, Malek MH. Acute effects of caffeine on strength and muscle activation of the elbow flexors. J Strength Cond Res. 2015;29(2):513–20.CrossRefPubMed
181.
go back to reference Scott AT, O’Leary T, Walker S, Owen R. Improvement of 2000-m rowing performance with caffeinated carbohydrate-gel ingestion. Int J Sports Physiol Perform. 2015;10(4):464–8.CrossRefPubMed Scott AT, O’Leary T, Walker S, Owen R. Improvement of 2000-m rowing performance with caffeinated carbohydrate-gel ingestion. Int J Sports Physiol Perform. 2015;10(4):464–8.CrossRefPubMed
182.
go back to reference Duncan MJ, Clarke ND, Tallis J, Guimaraes-Ferreira L, Wright SL. The effect of caffeine ingestion on functional performance in older adults. J Nutr Health Aging. 2014;18(10):883–7.CrossRefPubMed Duncan MJ, Clarke ND, Tallis J, Guimaraes-Ferreira L, Wright SL. The effect of caffeine ingestion on functional performance in older adults. J Nutr Health Aging. 2014;18(10):883–7.CrossRefPubMed
183.
go back to reference Swift CG, Tiplady B. The effects of age on the response to caffeine. Psychopharmacology. 1988;94(1):29–31.CrossRefPubMed Swift CG, Tiplady B. The effects of age on the response to caffeine. Psychopharmacology. 1988;94(1):29–31.CrossRefPubMed
184.
go back to reference Tallis J, James RS, Cox VM, Duncan MJ. Is the ergogenicity of caffeine affected by increasing age? The direct effect of a physiological concentration of caffeine on the power output of maximally stimulated EDL and diaphragm muscle isolated from the mouse. J Nutr Health Aging. 2017;21(4):440–8.CrossRefPubMed Tallis J, James RS, Cox VM, Duncan MJ. Is the ergogenicity of caffeine affected by increasing age? The direct effect of a physiological concentration of caffeine on the power output of maximally stimulated EDL and diaphragm muscle isolated from the mouse. J Nutr Health Aging. 2017;21(4):440–8.CrossRefPubMed
185.
go back to reference Ilich JZ, Brownbill RA, Tamborini L, Crncevic-Orlic Z. To drink or not to drink: how are alcohol, caffeine and past smoking related to bone mineral density in elderly women? J Am Coll Nutr. 2002;21(6):536–44.CrossRefPubMed Ilich JZ, Brownbill RA, Tamborini L, Crncevic-Orlic Z. To drink or not to drink: how are alcohol, caffeine and past smoking related to bone mineral density in elderly women? J Am Coll Nutr. 2002;21(6):536–44.CrossRefPubMed
186.
go back to reference Hallström H, Melhus H, Glynn A, Lind L, Syvänen AC, Michaëlsson K. Coffee consumption and CYP1A2 genotype in relation to bone mineral density of the proximal femur in elderly men and women: a cohort study. Nutr Metab. 2010;7(1):12.CrossRef Hallström H, Melhus H, Glynn A, Lind L, Syvänen AC, Michaëlsson K. Coffee consumption and CYP1A2 genotype in relation to bone mineral density of the proximal femur in elderly men and women: a cohort study. Nutr Metab. 2010;7(1):12.CrossRef
187.
go back to reference Nurminen ML, Niittynen L, Korpela R, Vapaatalo H. Coffee, caffeine and blood pressure: a critical review. Eur J Clin Nutr. 1999;53(11):831.CrossRefPubMed Nurminen ML, Niittynen L, Korpela R, Vapaatalo H. Coffee, caffeine and blood pressure: a critical review. Eur J Clin Nutr. 1999;53(11):831.CrossRefPubMed
188.
189.
go back to reference Johnson-Kozlow M, Kritz-Silverstein D, Barrett-Connor E, Morton D. Coffee consumption and cognitive function among older adults. Am J Epidemiol. 2002;156(9):842–50.CrossRefPubMed Johnson-Kozlow M, Kritz-Silverstein D, Barrett-Connor E, Morton D. Coffee consumption and cognitive function among older adults. Am J Epidemiol. 2002;156(9):842–50.CrossRefPubMed
190.
go back to reference O’Keefe JH, Bhatti SK, Patil HR, DiNicolantonio JJ, Lucan SC, Lavie CJ. Effects of habitual coffee consumption on cardiometabolic disease, cardiovascular health, and all-cause mortality. J Am Coll Cardiol. 2013;62(12):1043–51.CrossRefPubMed O’Keefe JH, Bhatti SK, Patil HR, DiNicolantonio JJ, Lucan SC, Lavie CJ. Effects of habitual coffee consumption on cardiometabolic disease, cardiovascular health, and all-cause mortality. J Am Coll Cardiol. 2013;62(12):1043–51.CrossRefPubMed
192.
go back to reference Baker LB, Rollo I, Stein KW, Jeukendrup AE. Acute effects of carbohydrate supplementation on intermittent sports performance. Nutrients. 2015;7(7):5733–63.CrossRefPubMedPubMedCentral Baker LB, Rollo I, Stein KW, Jeukendrup AE. Acute effects of carbohydrate supplementation on intermittent sports performance. Nutrients. 2015;7(7):5733–63.CrossRefPubMedPubMedCentral
193.
go back to reference Waldron M, Patterson SD, Tallent J, Jeffries O. The effects of an oral taurine dose and supplementation period on endurance exercise performance in humans: a meta-analysis. Sports Med. 2018;48(5):1247–53.CrossRefPubMed Waldron M, Patterson SD, Tallent J, Jeffries O. The effects of an oral taurine dose and supplementation period on endurance exercise performance in humans: a meta-analysis. Sports Med. 2018;48(5):1247–53.CrossRefPubMed
194.
go back to reference Shabir A, Hooton A, Tallis J, F Higgins M. The influence of caffeine expectancies on sport, exercise, and cognitive performance. Nutrients. 2018;10(10):1528. Shabir A, Hooton A, Tallis J, F Higgins M. The influence of caffeine expectancies on sport, exercise, and cognitive performance. Nutrients. 2018;10(10):1528.
195.
go back to reference Saunders B, de Oliveira LF, da Silva RP, de Salles Painelli V, Gonçalves LS, Yamaguchi G, et al. Placebo in sports nutrition: a proof‐of‐principle study involving caffeine supplementation. Scand J Med Sci Sports. 201727(11):1240–7. Saunders B, de Oliveira LF, da Silva RP, de Salles Painelli V, Gonçalves LS, Yamaguchi G, et al. Placebo in sports nutrition: a proof‐of‐principle study involving caffeine supplementation. Scand J Med Sci Sports. 201727(11):1240–7.
196.
go back to reference Del Coso J, Pérez-López A, Abian-Vicen J, Salinero JJ, Lara B, Valadés D. Enhancing physical performance in male volleyball players with a caffeine-containing energy drink. Int J Sports Physiol Perform. 2014;9(6):1013–8.CrossRefPubMed Del Coso J, Pérez-López A, Abian-Vicen J, Salinero JJ, Lara B, Valadés D. Enhancing physical performance in male volleyball players with a caffeine-containing energy drink. Int J Sports Physiol Perform. 2014;9(6):1013–8.CrossRefPubMed
197.
go back to reference Del Coso J, Ramírez JA, Muñoz G, Portillo J, Gonzalez-Millán C, Muñoz V, et al. Caffeine-containing energy drink improves physical performance of elite rugby players during a simulated match. Appl Physiol Nutr Metab. 2012;38(4):368–74.CrossRefPubMed Del Coso J, Ramírez JA, Muñoz G, Portillo J, Gonzalez-Millán C, Muñoz V, et al. Caffeine-containing energy drink improves physical performance of elite rugby players during a simulated match. Appl Physiol Nutr Metab. 2012;38(4):368–74.CrossRefPubMed
198.
go back to reference Del Coso J, Muñoz-Fernández VE, Muñoz G, Fernández-Elías VE, Ortega JF, Hamouti N, et al. Effects of a caffeine-containing energy drink on simulated soccer performance. PLoS One. 2012;7(2):e31380.CrossRefPubMedPubMedCentral Del Coso J, Muñoz-Fernández VE, Muñoz G, Fernández-Elías VE, Ortega JF, Hamouti N, et al. Effects of a caffeine-containing energy drink on simulated soccer performance. PLoS One. 2012;7(2):e31380.CrossRefPubMedPubMedCentral
199.
go back to reference Lara B, Gonzalez-Millán C, Salinero JJ, Abian-Vicen J, Areces F, Barbero-Alvarez JC, et al. Caffeine-containing energy drink improves physical performance in female soccer players. Amino Acids. 2014;46(5):1385–92.CrossRefPubMed Lara B, Gonzalez-Millán C, Salinero JJ, Abian-Vicen J, Areces F, Barbero-Alvarez JC, et al. Caffeine-containing energy drink improves physical performance in female soccer players. Amino Acids. 2014;46(5):1385–92.CrossRefPubMed
200.
go back to reference Abian-Vicen J, Puente C, Salinero JJ, González-Millán C, Areces F, Muñoz G, et al. A caffeinated energy drink improves jump performance in adolescent basketball players. Amino Acids. 2014;46(5):1333–41.CrossRefPubMed Abian-Vicen J, Puente C, Salinero JJ, González-Millán C, Areces F, Muñoz G, et al. A caffeinated energy drink improves jump performance in adolescent basketball players. Amino Acids. 2014;46(5):1333–41.CrossRefPubMed
201.
go back to reference Lara B, Ruiz-Vicente D, Areces F, Abián-Vicén J, Salinero JJ, Gonzalez-Millán C, et al. Acute consumption of a caffeinated energy drink enhances aspects of performance in sprint swimmers. Br J Nutr. 2015;114(6):908–14.CrossRefPubMed Lara B, Ruiz-Vicente D, Areces F, Abián-Vicén J, Salinero JJ, Gonzalez-Millán C, et al. Acute consumption of a caffeinated energy drink enhances aspects of performance in sprint swimmers. Br J Nutr. 2015;114(6):908–14.CrossRefPubMed
202.
go back to reference Miller LS, Lombardo TW, Fowler SC. Caffeine and time of day effects on a force discrimination task in humans. Physiol Behav. 1995;57(6):1117–25.CrossRefPubMed Miller LS, Lombardo TW, Fowler SC. Caffeine and time of day effects on a force discrimination task in humans. Physiol Behav. 1995;57(6):1117–25.CrossRefPubMed
203.
go back to reference Evans M, Tierney P, Gray N, Hawe G, Macken M, Egan B. Acute ingestion of caffeinated chewing gum improves repeated sprint performance of team sport athletes with low habitual caffeine consumption. Int J Sport Nutr Exerc Metab. 2018;28(3):221–7.CrossRefPubMed Evans M, Tierney P, Gray N, Hawe G, Macken M, Egan B. Acute ingestion of caffeinated chewing gum improves repeated sprint performance of team sport athletes with low habitual caffeine consumption. Int J Sport Nutr Exerc Metab. 2018;28(3):221–7.CrossRefPubMed
204.
go back to reference Jordan BJ, Farley RS, Caputo JL. Caffeine and sprint performance in habitual and caffeine naïve participants. Int J Exerc Sci. 2012;5(1):50–9. Jordan BJ, Farley RS, Caputo JL. Caffeine and sprint performance in habitual and caffeine naïve participants. Int J Exerc Sci. 2012;5(1):50–9.
205.
go back to reference Tarnopolsky M, Cupido C. Caffeine potentiates low frequency skeletal muscle force in habitual and nonhabitual caffeine consumers. J Appl Physiol. 2000;89(5):1719–24.CrossRefPubMed Tarnopolsky M, Cupido C. Caffeine potentiates low frequency skeletal muscle force in habitual and nonhabitual caffeine consumers. J Appl Physiol. 2000;89(5):1719–24.CrossRefPubMed
206.
go back to reference Wiles JD, Bird SR, Hopkins J, et al. Effect of caffeinated coffee on running speed, respiratory factors, blood lactate and perceived exertion during 1500-m treadmill running. Br J Sports Med. 1992;26(2):116–20.CrossRefPubMedPubMedCentral Wiles JD, Bird SR, Hopkins J, et al. Effect of caffeinated coffee on running speed, respiratory factors, blood lactate and perceived exertion during 1500-m treadmill running. Br J Sports Med. 1992;26(2):116–20.CrossRefPubMedPubMedCentral
207.
go back to reference Arazi H, Hoseinihaji M, Eghbali E. The effects of different doses of caffeine on performance, rating of perceived exertion and pain perception in teenagers female karate athletes. Braz J Pharm Sci. 2016;52(4):685–92.CrossRef Arazi H, Hoseinihaji M, Eghbali E. The effects of different doses of caffeine on performance, rating of perceived exertion and pain perception in teenagers female karate athletes. Braz J Pharm Sci. 2016;52(4):685–92.CrossRef
208.
go back to reference Bruce CR, Anderson ME, Fraser SF, Stepto NK, Klein R, Hopkins WG, et al. Enhancement of 2000-m rowing performance after caffeine ingestion. Med Sci Sports Exerc. 2000;32(11):1958–63.CrossRefPubMed Bruce CR, Anderson ME, Fraser SF, Stepto NK, Klein R, Hopkins WG, et al. Enhancement of 2000-m rowing performance after caffeine ingestion. Med Sci Sports Exerc. 2000;32(11):1958–63.CrossRefPubMed
209.
go back to reference Bugyi GJ. The effects of moderate doses of caffeine on fatigue parameters of the forearm flexor muscles. Am Correct Ther J. 1980;34(2):49–53.PubMed Bugyi GJ. The effects of moderate doses of caffeine on fatigue parameters of the forearm flexor muscles. Am Correct Ther J. 1980;34(2):49–53.PubMed
210.
go back to reference Cohen BS, Nelson AG, Prevost MC, Thompson GD, Marx BD, Morris GS. Effects of caffeine ingestion on endurance racing in heat and humidity. Eur J Appl Physiol Occup Physiol. 1996;73(3–4):358–63.CrossRefPubMed Cohen BS, Nelson AG, Prevost MC, Thompson GD, Marx BD, Morris GS. Effects of caffeine ingestion on endurance racing in heat and humidity. Eur J Appl Physiol Occup Physiol. 1996;73(3–4):358–63.CrossRefPubMed
211.
go back to reference Del Coso J, Salinero JJ, González-Millán C, Abián-Vicén J, Pérez-González B. Dose response effects of a caffeine-containing energy drink on muscle performance: a repeated measures design. J Int Soc Sports Nutr. 2012;9(1):21.CrossRefPubMedPubMedCentral Del Coso J, Salinero JJ, González-Millán C, Abián-Vicén J, Pérez-González B. Dose response effects of a caffeine-containing energy drink on muscle performance: a repeated measures design. J Int Soc Sports Nutr. 2012;9(1):21.CrossRefPubMedPubMedCentral
212.
go back to reference Desbrow B, Barrett CM, Minahan CL, Grant GD, Leveritt MD. Caffeine, cycling performance, and exogenous CHO oxidation: a dose-response study. Med Sci Sports Exerc. 2009;41(9):1744–51.CrossRefPubMed Desbrow B, Barrett CM, Minahan CL, Grant GD, Leveritt MD. Caffeine, cycling performance, and exogenous CHO oxidation: a dose-response study. Med Sci Sports Exerc. 2009;41(9):1744–51.CrossRefPubMed
214.
go back to reference Jacobson BH, Edwards SW. Influence of two levels of caffeine on maximal torque at selected angular velocities. J Sports Med Phys Fitness. 1991;31(2):147–53.PubMed Jacobson BH, Edwards SW. Influence of two levels of caffeine on maximal torque at selected angular velocities. J Sports Med Phys Fitness. 1991;31(2):147–53.PubMed
215.
go back to reference Kovacs EM, Stegen JHCH, Brouns F. Effect of caffeinated drinks on substrate metabolism, caffeine excretion, and performance. J Appl Physiol (1985). 1998;85(2):709–15. Kovacs EM, Stegen JHCH, Brouns F. Effect of caffeinated drinks on substrate metabolism, caffeine excretion, and performance. J Appl Physiol (1985). 1998;85(2):709–15.
216.
go back to reference McLellan TM, Bell DG. The impact of prior coffee consumption on the subsequent ergogenic effect of anhydrous caffeine. Int J Sport Nutr Exerc Metab. 2004;14(6):698–708.CrossRefPubMed McLellan TM, Bell DG. The impact of prior coffee consumption on the subsequent ergogenic effect of anhydrous caffeine. Int J Sport Nutr Exerc Metab. 2004;14(6):698–708.CrossRefPubMed
218.
go back to reference Perkins R, Williams MH. Effect of caffeine upon maximal muscular endurance of females. Med Sci Sports. 1975;7(3):221–4.PubMed Perkins R, Williams MH. Effect of caffeine upon maximal muscular endurance of females. Med Sci Sports. 1975;7(3):221–4.PubMed
219.
go back to reference Skinner TL, Jenkins DG, Coombes JS, Taaffe DR, Leveritt MD. Dose response of caffeine on 2000-m rowing performance. Med Sci Sports Exerc. 2010;42(3):571–6.CrossRefPubMed Skinner TL, Jenkins DG, Coombes JS, Taaffe DR, Leveritt MD. Dose response of caffeine on 2000-m rowing performance. Med Sci Sports Exerc. 2010;42(3):571–6.CrossRefPubMed
220.
go back to reference Stadheim HK, Kvamme B, Olsen R, Drevon CA, Ivy JL, Jensen J. Caffeine increases performance in cross-country double-poling time trial exercise. Med Sci Sports Exerc. 2013;45(11):2175–83.CrossRefPubMed Stadheim HK, Kvamme B, Olsen R, Drevon CA, Ivy JL, Jensen J. Caffeine increases performance in cross-country double-poling time trial exercise. Med Sci Sports Exerc. 2013;45(11):2175–83.CrossRefPubMed
221.
go back to reference Turley K, Eusse PA, Thomas MM, Townsend JR, Morton AB. Effects of different doses of caffeine on anaerobic exercise in boys. Pediatr Exerc Sci. 2015;27(1):50–6.CrossRefPubMed Turley K, Eusse PA, Thomas MM, Townsend JR, Morton AB. Effects of different doses of caffeine on anaerobic exercise in boys. Pediatr Exerc Sci. 2015;27(1):50–6.CrossRefPubMed
Metadata
Title
Caffeine and Exercise: What Next?
Authors
Craig Pickering
Jozo Grgic
Publication date
01-07-2019
Publisher
Springer International Publishing
Published in
Sports Medicine / Issue 7/2019
Print ISSN: 0112-1642
Electronic ISSN: 1179-2035
DOI
https://doi.org/10.1007/s40279-019-01101-0

Other articles of this Issue 7/2019

Sports Medicine 7/2019 Go to the issue