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Articles

The effect of time of day on short-term maximal performance in obese and non-obese young men

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Pages 463-474 | Received 13 May 2015, Accepted 16 Dec 2015, Published online: 02 Feb 2016

References

  • Abedelmalek S, Chtourou H, Souissi N, Tabka Z. 2013. Effect of time-of-day and racial variation on short-term maximal performance. Biol Rhythm Res. 44: 787–796. doi. org/10. 1080/09291016. 2012.756261
  • Abedelmalek S, Boussetta N, Chtourou H, Souissi N, Tabka Z. 2014. Effect of partial sleep deprivation and racial variation on short-term maximal performance. Biol Rhythm Res. 45:699–708.
  • Arslan E, Yiğiner O, Yavaşoğlu I, Özçelik F, Kardeşoğlu E, Nalbant S. 2010. Effect of uncomplicated obesity on QT interval in young men. Pol Arch Med Wewn. 120:209–213.
  • Atkinson G, Coldwells A, Reilly T, Waterhouse JM. 1993. A comparison of circadian rhythms in work performance between physically active and inactive subjects. Ergonomics. 36:273–281.10.1080/00140139308967882
  • Azarbayjani A, Vaezepor F, Rasaee J, Tojaril F, Pournemati P, Jourkesh M, Stannard R. 2011. Daily timing of salivary cortisol responses and aerobic performance in lean and obese active females. Bratislavske lekarske listy. 112:213–217.
  • Bass J, Takahashi J. 2010. Circadian integration of metabolism and energetics. Science. 330:1349–1354. doi:10.1126/science.1195027.
  • Baxter C, Reilly T. 1983. Influence of time of day on all out swimming. British J Sports Med. 17:122–127.10.1136/bjsm.17.2.122
  • Bernard T, Giacomoni M, Gavarry O, Seymat M, Falgairette G. 1998. Time-of-day effects in maximal anaerobic leg exercise. Eur J Appl Physiol. 77:133–138.
  • Bland JM, Altman DG. 1995. Calculating correlation coefficients with repeated observations: Part 2, correlation between subjects. 310:446.
  • Blonc S, Perrot S, Racinais S, Aussepe S, Hue O. 2010. effects of five weeks of training at the same time of day on the diurnal variations of maximal muscle power performance. J Strength Cond Res. 24:23–29.10.1519/JSC.0b013e3181b295d6
  • Brisswalter J, Bieuzen F, Giancomoni M, Tricot V, Falgairette G. 2007. Morningto-evening differences in oxygen uptake kinetics in short-duration cycling exercise. Chronobiol Int. 24:495–506.10.1080/07420520701420691
  • Cabri J, De Wite B, Clary JP, Reilly T, Strass D. 1988. Circadian variation in blood pressure responses to muscular exercise. Ergonomics. 31:1559–1565.10.1080/00140138808966805
  • Chtourou H, Chaouachi A, Driss T, Dogui M, Behm G, Chamari, Souissi N. 2012a. The effect of training at the same time of day and tapering period on the diurnal variation of short exercise performances. J Strength Cond Res. 26:697–708.
  • Coldwells A, Atkinson G, Reilly T. 1994. Sources of variation in back and leg dynamometry. Ergonomics. 37:79–86.10.1080/00140139408963625
  • Deanfield JE, Halcox JP, Rabelink TJ. 2007. Endothelial function and dysfunction: testing and clinical relevance. Circulation. 115:1285–1295.
  • Di Cagno A, Battaglia C, Giombini A, Piazza M, Fiorilli G, Calcagno G, Pigozzi F, Borrione P. 2013. Time of day–effects on motor coordination and reactive strength in elite athletes and untrained adolescents. J Sports Sci Med. 12:182–189.
  • Fernandes AL, Lopes-Silva JP, Bertuzzi R, Casarini DE, Arita DY, Bishop DJ, Lima-Silva AE. 2014. Effect of time of day on performance, hormonal and metabolic response during a 1000-M cycling time trial. PLoS ONE. 9:e109954. doi:10.1371/journal.pone.0109954
  • Froy O. 2010. Metabolism and circadian rhythms–implications for obesity. Endocr Rev. 31:1–24.10.1210/er.2009-0014
  • Gauthier A, Davenne D, Martin A, Cometti G, Van Hoecke J. 1996. Diurnal rhythm of the muscular performance of elbow flexors during isometric contractions. Chronobiol Int. 13:135–146.10.3109/07420529609037077
  • Giacomoni M, Billaut F, Falgairette G. 2006. Effects of the time of day on repeated all-out cycle performance and short-term recovery patterns. Int J Sports Med. 27:468–474.10.1055/s-2005-865822
  • Guette M, Gondin J, Martin A. 2005. Time‐of‐day effect on the torque and neuromuscular properties of dominant and non‐dominant quadriceps femoris. Chronobiol Int. 22:541–558.10.1081/CBI-200062407
  • Hill DW. 1996. Effect of time of day on aerobic power in exhaustive high-intensity exercise. J sports med Phys Fitness. 36:155–160.
  • Hill DW, Borden DO, Darnaby KM, Hendricks DN, Hill CM. 1992. Effect of time of day on aerobic and anaerobic responses to high-intensity exercise. Can J Sport Sci. 17:316–319.
  • Horne JA, Ostberg O. 1976. A self-assessment questionnaire to determine morningness-eveningness in human circadian rhythms. Int J Chronobiol. 4:97–110.
  • Huguet G, Touitou Y, Reinberg A. 1995. Diurnal changes in sport performance of 9- to 11-year-old school children. Chronobiol Int. 14:371–384.
  • James P, Rigby N, Leach R, International Obesity Task Force. 2004. The obesity epidemic, metabolic syndrome and future prevention strategies. Eur J Cardiovasc Prev Rehabil. 11:3–8.
  • Jarraya S, Jarraya M, Souissi N. 2014. Diurnal variation and weekly pattern on physical performance in tunisian children. Science & Sports. 30:41–46.
  • Jung UJ, Choi MS. 2014. Obesity and its metabolic complications: the role of adipokines and the relationship between obesity, inflammation, insulin resistance, dyslipidemia and nonalcoholic fatty liver disease. Int J Mol Sci. 15:6184–6223.10.3390/ijms15046184
  • Kopelman PG. 2000. Obesity as a medical problem. Nature. 404:635–643.
  • Maffeis C, Castellani M. 2007. Physical activity: an effective way to control weight in children? Nutr Metab Cardiovasc Dis. 17:394–408.10.1016/j.numecd.2006.08.006
  • Melhim AF. 1993. Investigation of circadian rhythms in peak power and mean power of female physical education students. Int J Sports Med. 14:303–306.10.1055/s-2007-1021182
  • Mendoza JA, Watson K, Cullen KW. 2010. Change in dietary energy density after implementation of the texas public school nutrition policy. J Am Dietetic Assoc. 110:434–440.10.1016/j.jada.2009.11.021
  • Mettler S, Mitchell N, Tipton KD. 2010. Increased protein intake reduces lean body mass loss during weight loss in athletes. Med Sci Sports Exercise. 42:326–337.10.1249/MSS.0b013e3181b2ef8e
  • Mohebbi H, Azizi M, Tabari E. 2011. Effect of time of day on MFO and Fatmax during exercise in obese and normal weight women. Ser Phys Educ Sport. 9: 69–79.
  • Molnár D, Livingstone B. 2000. Physical activity in relation to overweight and obesity in children and adolescents. Eur J Pediatr. 159:S45–S55.10.1007/PL00014365
  • Moore RY, Silver R. 1998. Suprachiasmatic nucleus organization. Chronobiol Int. 15:475–487.10.3109/07420529808998703
  • Nicolas A, Gauthier A, Bessot N, Moussay S, Davenne D. 2005. Time‐of‐day effects on myoelectric and mechanical properties of muscle during maximal and prolonged isokinetic exercise. Chronobiol Int. 22:997–1011.10.1080/07420520500397892
  • Nielens H. 2004. Place de l’activité physique dans le traitement de l’obésité. Congrès UCL d’endocrinologie-diabétologie, BruxellesBelgique. 124:3–60.
  • Racinais S, Hue O, Blonc S, Le Gallais D. 2004. Effect of sleep deprivation on shuttle run score in middle-aged amateur athletes. Influence of initial score. J Sports Med Phys Fitness. 44:246–248.
  • Ralph MR, Foster RG, Davis FC, Menaker M. 1990. Transplanted suprachiasmatic nucleus determines circadian period. Science. 247:975–978.10.1126/science.2305266
  • Reilly T, Down A. 1992. Investigation of circadian rhythms in anaerobic power and capacity of the legs. J Sports Med Phys Fitness. 32:343–347.
  • Reilly T, Fairhurst E, Edwards B, Waterhouse J. 2004a. Time of day and performance tests in male football players. In: Reilly T, Cabri J, Araujo D., editors. Science and Football V. London: Routledge; p. 275–279.
  • Reilly T, Farrelly K, Edwards B, Waterhouse J. 2004b. Effects of time of day on the performance of soccer-specific motor skills. In: Reilly T, Cabri J, Araujo D, editors. Science and Football V. London: Routledge; p. 272–274.
  • Reilly T, Atkinson G, Edwards B, Waterhouse J, Farrelly K, Fairhurst E. 2007. Diurnal variation in temperature, mental and physical performance, and tasks specifically related to football (soccer). Chronobiol Int. 24:507–519.10.1080/07420520701420709
  • Sartorio A, Narici MV, Fumagalli E, Faglia G, Lafortuna CL. 2001. Aerobic and anaerobic performance before and after a short-term body mass reduction program in obese subjects. Diabetes Nutr Metab. 14:51–57.
  • Sayers SP, Harackieicz DV, Harman EA, Frykman PN, Rosenstein NT. 1999. Cross validation of three jump power equations. Med Sci Sports Exercise. 31:572–577.10.1097/00005768-199904000-00013
  • Scott KM, Bruffaerts R, Simon GE, Alonso J, Angermeyer M, de Girolamo G, Von Korff M. 2008. Obesity and mental disorders in the general population: results from the world mental health surveys. Int J Obesity. 32:192–200.
  • Sedliak M, Finni T, Peltonen J, Häkkinen K. 2008a. Effect of time-of-day-specific strength training on maximum strength and EMG activity of the leg extensors in men. J Sports Sci, 26:1005–1014.
  • So WY, Choi DH. 2010. Differences in physical fitness and cardiovascular function depend on BMI in Korean men. J sports sci med. 9:239–244.
  • Souissi N, Bessot N, Chamari K, Gauthier A, Sesboüé B, Davenne D. 2007. Effect of time of day on aerobic contribution to the 30s Wingate test performance. Chronobiol Int. 24:739–748.10.1080/07420520701535811
  • Souissi N, Driss T, Chamari K, Vandewalle H, Davenne D, Gam A, Fillard JR, Jousselin E. 2010a. Diurnal variation in wingate test performances: influence of active warm-up. Chronobiol Int. 27:640–652.10.3109/07420528.2010.483157
  • Souissi H, Chaouachi A, Chamari K, Dogui M, Amri M, Souissi N. 2010b. Time-of-day effects on short-term exercise per-formances in 10–11-years-old Boys. Pediatr Exerc Sci. 22:613–623.
  • Souissi H, Chtourou H, Chaouachi A, Dogui M, Chamari K, Souissi N, Amri M. 2012. The effect of training at a specific time-of-day on the diurnal variations of short-term exercise performances in 10–11-years-old Boys. Pediatr Exerc Sci. 24:84–99.
  • Souissi N, Gauthier A, Sesboüé B, Larue J, and Davenne D. 2004. Circadian rhythms in two types of anaerobic cycle leg exercise: forcevelocity and 30-s Wingate tests. International Journal of Sports Medicine. 25:14–19.
  • Sudo A, Miki K. 1995. Circadian rhythm of catecholamine excretion in rats after phase shift of light–dark cycle. Ind Health. 33:57–66.10.2486/indhealth.33.57
  • Takahashi Y, Kipnis DM, Daughaday WH. 1968. Growth hormone secretion during sleep. J Clin Invest. 47:2079–2090.10.1172/JCI105893
  • Watts K, Beye P, Siafarikas A, Davis EA, Jones TW, O’Driscoll G, Green DJ. 2004. Exercise training normalizes vascular dysfunction and improves central adiposity in obese adolescents. J Am Coll Cardiol. 43:1823–1827.10.1016/j.jacc.2004.01.032
  • Winget CM, DeRoshia CW, Holley C. 1985. Circadian rhythms and athletic performance. Med Sci Sports Exercise. 17:498–516.
  • Wright KP, Hull JT, Czeisler CA. 2002. Relationship between alertness, performance, and body temperature in humans. Am J Physiol Regul Integr Comp Physiol. 283:R1370–R1377.10.1152/ajpregu.00205.2002
  • Zarrouk N, Chtourou H, Rebai H, Hammouda O, Souissi N, Dogui M, Hug F. 2012. Time of day effects on repeated sprint ability. Int J Sports Med. 33:975–980.

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