Aguilar-Navarro M, Muñoz G, Salinero JJ, Muñoz-Guerra J, Fernández-Álvarez M, Plata MDM et al (2019) Urine caffeine concentration in doping control samples from 2004 to 2015. Nutrients 11(2):286
Article CAS PubMed PubMed Central Google Scholar
Algrain HA, Thomas RM, Carrillo AE, Ryan EJ, Kim C-H, Lettan RB et al (2015) The effects of a polymorphism in the cytochrome P450 CYP1A2 gene on performance enhancement with caffeine in recreational cyclists. J Caffeine Res 6(1):34–39
Astorino TA, Cottrell T, Lozano AT, Aburto-Pratt K, Duhon J (2012) Increases in cycling performance in response to caffeine ingestion are repeatable. Nutr Res 32(2):78–84
Article CAS PubMed Google Scholar
Atkinson G, Nevill AM (1998) Statistical methods for assessing measurement error (reliability) in variables relevant to sports medicine. Sports Med 26(4):217–238
Article CAS PubMed Google Scholar
Barreto G, Esteves GP, Marticorena F, Oliveira TN, Grgic J, Saunders B (2024) Caffeine, CYP1A2 genotype, and exercise performance: a systematic review and meta-analysis. Med Sci Sports Exerc 56(2):328–339
Article CAS PubMed Google Scholar
Bortolotti H, Altimari LR, Vitor-Costa M, Cyrino ES (2014) Performance during a 20-km cycling time-trial after caffeine ingestion. J Int Soc Sports Nutr 11:45
Article PubMed PubMed Central Google Scholar
Brietzke C, Asano RY, Russi De, de Lima F, Pinheiro FA, Franco A, Ugrinowitsch C et al (2017) Caffeine effects on VO(2max) test outcomes investigated by a placebo perceived-as-caffeine design. Nutr Health 23(4):231–238
Article CAS PubMed Google Scholar
Brietzke C, Cesario JCS, Hettinga FJ, Pires FO (2022) The reward for placebos: mechanisms underpinning placebo-induced effects on motor performance. Eur J Appl Physiol 122(11):2321–2329
Britishcycling (2012) Summer Olympics London 2012 [Available from: https://www.britishcycling.org.uk/gbcyclingteam/article/oly20120705-gb-cyclingteam-Cycling-at-London-2012--Track-schedule-0
Carvalho A, Marticorena FM, Grecco BH, Barreto G, Saunders B (2022) Can I have my coffee and drink it? A systematic review and meta-analysis to determine whether habitual caffeine consumption affects the ergogenic effect of caffeine. Sports Med 52:2209–2220
Chen B, Ding L, Qin Q, Lei TH, Girard O, Cao Y (2024) Effect of caffeine ingestion on time trial performance in cyclists: a systematic review and meta-analysis. J Int Soc Sports Nutr 21(1):2363789
Article PubMed PubMed Central Google Scholar
Clarke ND, Richardson DL (2021) Habitual caffeine consumption does not affect the ergogenicity of coffee ingestion during a 5 km cycling time trial. Int J Sport Nutr Exerc Metab 31(1):13–20
Article CAS PubMed Google Scholar
Collomp K, Anselme F, Audran M, Gay JP, Chanal JL, Prefaut C (1991) Effects of moderate exercise on the pharmacokinetics of caffeine. Eur J Clin Pharmacol 40:279–282
Article CAS PubMed Google Scholar
Couto PG, Silva-Cavalcante MD, Mezêncio B, Azevedo RA, Cruz R, Bertuzzi R et al (2022) Effects of caffeine on central and peripheral fatigue following closed- and open-loop cycling exercises. Braz J Med Biol Res 55:e11901
Article CAS PubMed PubMed Central Google Scholar
De Pauw K, Roelands B, Cheung SS, de Geus B, Rietjens G, Meeusen R (2013) Guidelines to classify subject groups in sport-science research. Int J Sports Physiol Perform 8(2):111–122
Del Coso J, Muñoz G, Muñoz-Guerra J (2011) Prevalence of caffeine use in elite athletes following its removal from the World anti-doping agency list of banned substances. Appl Physiol Nutr Metab 36(4):555–561
Del Coso J, Lara B, Ruiz-Moreno C, Salinero JJ (2019) Challenging the myth of non-response to the ergogenic effects of caffeine ingestion on exercise performance. Nutrients 11(4):732
Article PubMed PubMed Central Google Scholar
Doherty M, Smith PM (2004) Effects of caffeine ingestion on exercise testing: a meta-analysis. Int J Sport Nutr Exerc Metab 14(6):626–646
Article CAS PubMed Google Scholar
Felippe LC, Ferreira GA, Learsi SK, Boari D, Bertuzzi R, Lima-Silva AE (2018) Caffeine increases both total work performed above critical power and peripheral fatigue during a 4-km cycling time trial. J Appl Physiol (1985) 124(6):1491–1501
Article CAS PubMed Google Scholar
Ferreira Viana B, Trajano GS, Ugrinowitsch C, Oliveira PF (2020) Caffeine increases motor output entropy and performance in 4 km cycling time trial. PLoS ONE 15(8):e0236592
Article CAS PubMed PubMed Central Google Scholar
Giersch G, Boyett J, Hargens T, Luden N, Saunders M, Daley H et al (2018) The effect of the CYP1A2 −163 C > a polymorphism on caffeine metabolism and subsequent cycling performance. J Caffeine Adenosine Res 8(2):65–70
Goldstein ER, Ziegenfuss T, Kalman D, Kreider R, Campbell B, Wilborn C et al (2010) International society of sports nutrition position stand: caffeine and performance. J Int Soc Sports Nutr 7(1):5
Article PubMed PubMed Central Google Scholar
Gonçalves LS, Painelli VS, Yamaguchi G, Oliveira LF, Saunders B, da Silva RP et al (2017) Dispelling the myth that habitual caffeine consumption influences the performance response to acute caffeine supplementation. J Appl Physiol (1985) 123(1):213–220
Graham TE, Spriet LL (1995) Metabolic, catecholamine, and exercise performance responses to various doses of caffeine. J Appl Physiol 78(3):867–874
Article CAS PubMed Google Scholar
Grgic J, Grgic I, Pickering C, Schoenfeld BJ, Bishop DJ, Pedisic Z (2019) Wake up and smell the coffee: caffeine supplementation and exercise performance-an umbrella review of 21 published meta-analyses. Br J Sports Med 54(11):681–688
Guardian T (2016) Summer Olympics Rio2016 [Available from: https://www.theguardian.com/sport/ng-interactive/2016/aug/05/rio-olympics-2016-full-events-schedule
Guest NS, VanDusseldorp TA, Nelson MT, Grgic J, Schoenfeld BJ, Jenkins NDM et al (2021) International society of sports nutrition position stand: caffeine and exercise performance. J Int Soc Sports Nutr. https://doi.org/10.1186/s12970-020-00383-4
Article PubMed PubMed Central Google Scholar
Hopkins WG, Marshall SW, Batterham AM, Hanin J (2009) Progressive statistics for studies in sports medicine and exercise science. Med Sci Sports Exerc 41(1):3–13
Klein K, Winter S, Turpeinen M, Schwab M, Zanger UM (2010) Pathway-targeted pharmacogenomics of CYP1A2 in human liver. Front Pharmacol. https://doi.org/10.3389/fphar.2010.00129
Article PubMed PubMed Central Google Scholar
Koo TK, Li MY (2016) A guideline of selecting and reporting intraclass correlation coefficients for reliability research. J Chiropr Med 15(2):155–163
Article PubMed PubMed Central Google Scholar
Marticorena FM, Carvalho A, Oliveira LF, Dolan E, Gualano B, Swinton P et al (2021) Nonplacebo controls to determine the magnitude of ergogenic interventions: a systematic review and meta-analysis. Med Sci Sports Exerc 53(8):1766–1777
Mauger AR, Jones AM, Williams CA (2009) Influence of feedback and prior experience on pacing during a 4-km cycle time trial. Med Sci Sports Exerc 41(2):451–458
Painelli VdS (2021) Habitual caffeine consumption does not interfere with the acute caffeine supplementation effects on strength endurance and jumping performance in trained individuals. Int J Sport Nutr Exerc Metabol 31(4):321–328
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