364
Views
3
CrossRef citations to date
0
Altmetric
Articles

The effect of time of day and recovery type after a football game on muscle damage and performance in anaerobic tests on young soccer players

, , , &
Pages 797-814 | Received 18 Feb 2016, Accepted 30 May 2016, Published online: 21 Jun 2016

References

  • Adirim TA, Cheng TL. 2003. Overview of injuries in the young athlete. Sports Med. 33:75–81.10.2165/00007256-200333010-00006
  • Alexiou H, Coutts AJ. 2008. The validity of the session-RPE method for monitoring training load in elite female soccer players. Int J Sports Physiol Perform. 3:320–330.
  • Armon Y, Cooper D, Flores R. 1991. Oxygen uptake dynamics during high-intensity exercise in children and adults. J Appl Physiol. 70:841–848.
  • Ascensão A, Rebelo A, Oliveira E, Marques F, Pereira L, Magalhães J. 2008. Biochemical impact of a soccer match – analysis of oxidative stress and muscle damage markers throughout recovery. Clin Biochem. 41:841–851.10.1016/j.clinbiochem.2008.04.008
  • Bambaeichi E, Rahnama N, Khani A. 2010. Blood lactate recovery at different times of the day and menstrual cycle phases. Br J Sports Med. 44:i21–i21.
  • Bangsbo J, Marcello I, Krustrup P. 2007. Metabolic response and fatigue in soccer. Int J Sports Physiol Perform. 2:111–127.
  • Baraldi E, Cooper D, Zanconato S, Armon Y. 1991. Heart rate recovery from 1 minute of exercise in children and adults. Pediatr Res. 29:575–579.10.1203/00006450-199106010-00011
  • Bar–Or O, Rowland T. 2004. Pediatric exercise medicine: from physiological principles to health care application. Champaign (IL): Human Kinetics.
  • Bogdanis G, Nevill M, Lakomy H, Graham C, Louis G. 1996. Effects of active recovery on power output during repeated maximal sprint cycling. Eur J Appl Physiol Occup Physiol. 74:461–469.10.1007/BF02337727
  • Borg G. 1982. Psychophysical bases of perceived exertion. Med Sci Sports Exerc. 14:377–381.
  • Brito L, Peçanha T, Tinucci T, Silva-Junior N, Costa L, Forjaz C. 2015. Time of day affects heart rate recovery and variability after maximal exercise in pre-hypertensive men. Chronobiol Int. 32:1385–1390.10.3109/07420528.2015.1096277
  • Buchheit M, Duché P, Laursen P, Ratel S. 2010. Postexercise heart rate recovery in children: relationship with power output, blood pH, and lactate. Appl Physiol Nutr Metab. 35:142–150.10.1139/H09-140
  • Castagna C, Abt G, Manzi V, Annino G, Padua E, DʼOttavio S. 2008. Effect of recovery mode on repeated sprint ability in young basketball players. J Strength Cond Res. 22:923–929.10.1519/JSC.0b013e31816a4281
  • Cataldo A, Zangla D, Cerasola D, Vallone V, Russo G, Lo PR, Traina M. 2015. Influences of baseline heart rate variability on repeated sprint performance in young soccer players. J Sports Med Phys Fitness. 56:491–496.
  • Ceci R, Valls MRB, Duranti G, Dimauro I, Quaranta F, Pittaluga M, Sabatini S, Caserotti P, Parisi P, Parisi A, Caporossi D. 2014. Oxidative stress responses to a graded maximal exercise test in older adults following explosive-type resistance training. Redox Biol. 2:65–72.10.1016/j.redox.2013.12.004
  • Chen MJ, Fan X, Moe ST. 2002. Criterion-related validity of the Borg ratings of perceived exertion scale in healthy individuals: a meta-analysis. J Sports Sci. 20:873–899.10.1080/026404102320761787
  • Chen TC, Chen HL, Liu YC, Nosaka K. 2014. Eccentric exercise-induced muscle damage of pre-adolescent and adolescent boys in comparison to young men. Eur J Appl Physiol. 114:1183–1195.10.1007/s00421-014-2848-3
  • Chtourou H, Hammouda O, Souissi H, Chamari K, Chaouachi A, Souissi N. 2012. Diurnal variations in physical performances related to football in young soccer players. Asian J Sports Med. 3:139–144.
  • Chtourou H, Aloui A, Hammouda O, Chaouachi A, Chamari K, Souissi N. 2013. The effect of time of day and judo match on short-term maximal performances in judokas. Biol Rhythm Res. 44:797–806.10.1080/09291016.2012.756269
  • Coffey V, Leveritt M, Gill N. 2004. Effect of recovery modality on 4-hour repeated treadmill running performance and changes in physiological variables. J Sci Med Sport. 7:1–10.10.1016/S1440-2440(04)80038-0
  • Cook S, Clark B, Ploutz-Snyder L. 2007. Effects of exercise load and blood-flow restriction on skeletal muscle function. Med Sci Sports Exerc. 39:1708–1713.10.1249/mss.0b013e31812383d6
  • De Salles P, Vasconcellos F, de Salles G, Fonseca R, Dantas E. 2012. Validity and reproducibility of the sargent jump test in the assessment of explosive strength in soccer players. J Hum kinet. 33:115–121.
  • Deschenes MR, Sharma JV, Brittingham KT, Casa DJ, Armstrong LE, Maresh CM. 1998. Chronobiological effects on exercise performance and selected physiological responses. Eur J Appl Physiol. 77:249–256.10.1007/s004210050329
  • Dotan R, Falk B, Raz A. 2000. Intensity effect of active recovery from glycolytic exercise on decreasing blood lactate concentration in prepubertal children. Med Sci Sports Exerc. 32:564–570.10.1097/00005768-200003000-00003
  • Dotan R, Ohana S, Bediz C, Falk B. 2003. Blood lactate disappearance dynamics in boys and men following exercise of similar and dissimilar peak-lactate concentrations. J Pediatr Endocrinol Metab. 16:419–429.
  • Draper N, Brent S, Hale B, Coleman I. 2006. The influence of sampling site and assay method on lactate concentration in response to rock climbing. European Journal of Applied Physiology. 98:363–372.
  • Fernandes AL, Lopes-Silva JP, Bertuzzi R, et al. 2014. Effect of time of day on performance, hormonal and metabolic response during a 1000–M cycling time trial. PLoS ONE. 9:e109954.10.1371/journal.pone.0109954
  • Forsyth JJ, Reilly T. 2004. Circadian rhythms in blood lactate concentration during incremental ergometer rowing. Eur J Appl Physiol. 92:69–74.10.1007/s00421-004-1059-8
  • Fullagar HH, Skorski S, Duffield R, Hammes D, Coutts AJ, Meyer T. 2015. Sleep and athletic performance: the effects of sleep loss on exercise performance, and physiological and cognitive responses to exercise. Sports Med. 45:161–186.10.1007/s40279-014-0260-0
  • Gaul C, Docherty D, Cicchini R. 1995. Differences in anaerobic performance between boys and men. Int J Sports Med. 16:451–455.10.1055/s-2007-973036
  • Gorianovas G, Skurvydas A, Streckis V, Brazaitis M, Kamandulis S, McHugh M. 2013. Repeated bout effect was more expressed in young adult males than in elderly males and boys. BioMed Res Int. 218970. doi: 10.1155/2013/218970
  • Gupta S, Goswami A, Sadhukhan A. 1996. Comparative study of lactate removal in short term massage of extremities, active recovery and a passive recovery period after supramaximal exercise sessions. Int J Sports Med. 17:106–110.10.1055/s-2007-972816
  • Halperin I, Copithorne D, Behm DG. 2014. Unilateral isometric muscle fatigue decreases force production and activation of contralateral knee extensors but not elbow flexors. Appl Physiol Nutr Metab. 39:1338–1344.10.1139/apnm-2014-0109
  • Herrero JA, Izquierdo M, Maffiuletti NA, García-López J. 2006. Electromyostimulation and plyometric training effects on jumping and sprint time. Int J Sports Med. 27:533–539.10.1055/s-2005-865845
  • Heyman E, De Geus B, Mertens I, Meeusen R. 2009. Effects of four recovery methods on repeated maximal rock climbing performance. Med Sci Sports Exerc. 41:1303–1310.10.1249/MSS.0b013e318195107d
  • Hill-Haas SV, Dawson B, Impellizzeri FM, Coutts AJ. 2011. Physiology of small-sided games training in football. Sports Med. 41:199–220.10.2165/11539740-000000000-00000
  • Impellizzeri FM, Rampinini E, Coutts AJ, Sassi A, Marcora SM. 2004. Use of RPE–based training load in soccer. Med. Sci. Sports Exerc. 36:1042–1047.
  • Komi P, Viitasalo J. 1997. Changes in motor unit activity and metabolism in human skeletal muscle during and after repeated eccentric and concentric contractions. Acta Physiol Scand. 100:246–246.
  • Krustrup P, Christensen J, Randers M, et al. 2010. Muscle adaptations and performance enhancements of soccer training for untrained men. Eur J Appl Physiol. 108:1247–1258.
  • Kucera KL, Marshall SW, Kirkendall DT, Marchak PM, Garrett WE. 2005. Injury history as a risk factor for incident injury in youth soccer. Br J Sports Med. 39:462–462.10.1136/bjsm.2004.013672
  • Kuno S, Takahashi H, Fujimoto K. 1995. Muscle metabolism during exercise using phosphorus–31 nuclear magnetic resonance spectroscopy in adolescents. Eur J Appl Physiol Occup Physiol. 70:301–304.10.1007/BF00865026
  • Massin M, Maeyns K, Withofs N, Ravet F, Gérard P. 2000. Circadian rhythm of heart rate and heart rate variability. Arch Dis Child. 83:179–182.10.1136/adc.83.2.179
  • Mero A. 1988. Blood lactate production and recovery from anaerobic exercise in trained and untrained boys. Eur J Appl Physiol Occup Physiol. 57:660–666.10.1007/BF01075985
  • Mika A, Mika P, Fernhall B. 2007. Comparison of recovery strategies on muscle performance after fatiguing exercise. Am J Phys Med Rehabil. 86:474–481.10.1097/PHM.0b013e31805b7c79
  • Miller MG, Herniman JJ, Richard MD, Cheatham CC, Michael TJ. 2006. The effects of a 6-week plyometric training program on agility. J Sports Sci Med. 5:459–465.
  • Mohr M, Krustrup P, Nybo L. 2004. Muscle temperature and sprint performance during soccer matches–beneficial effect of re-warm-up at half-time. Scand J Med Sci Sports. 14:156–162.10.1111/sms.2004.14.issue-3
  • Mohr M, Draganidis D, Chatzinikolaou A, Barbero-Álvarez JC, Castagna C, Douroudos I, Avloniti AZ. 2016. Muscle damage, inflammatory, immune and performance responses to three football games in 1 week in competitive male players. Eur J Appl Physiol. 116:179–193.10.1007/s00421-015-3245-2
  • Monedero J, Donne B. 2000. Effect of recovery interventions on lactate removal and subsequent performance. Int J Sports Med. 21:593–597.10.1055/s-2000-8488
  • 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
  • Ohuchi H, Suzuki H, Yasuda K, Arakaki Y, Echigo S, Kamiya T. 2000. Heart rate recovery after exercise and cardiac autonomic nervous activity in children. Pediatr Res. 47:329–335.10.1203/00006450-200003000-00008
  • Ouergui I, Hssin N, Franchini E, Gmada N, Bouhlel E. 2013. Technical and tactical analysis of high level kickboxing matches. Int J Perform Anal Sport. 13:294–309.
  • Pollock ML, Franklin BA, Balady GJ, Chaitman BL, Fleg JL, Fletcher B, Bazzarre T. 2000. Resistance exercise in individuals with and without cardiovascular disease benefits, rationale, safety, and prescription an advisory from the committee on exercise, rehabilitation, and prevention, council on clinical cardiology. Am Heart Assoc Circul. 101:828–833.
  • Racinais S, Perrey S, Denis R, et al. 2010. Maximal power, but not fatigability, is greater during repeated sprints performed in the afternoon. Chronobiol Int. 27:855–864.10.3109/07420521003668412
  • Randers MB, Nybo L, Petersen J, Nielsen JJ, Christiansen L, Bendiksen M, Brito J, Bangsbo J, Krustrup P. 2010. Activity profile and physiological response to football training for untrained males and females, elderly and youngsters: influence of the number of players. Scand J Med Sci Sports. 20:14–23.10.1111/sms.2010.20.issue-s1
  • Ratel S, Bedu M, Hennegrave A, Doré E.. 2002. Effects of age and recovery duration on peak power output during repeated cycling sprints. Int J Sports Med. 23:397–402.10.1055/s-2002-33737
  • Ratel S, Lazaar N, Williams CA, Bedu M, Duche P. 2003. Age differences in human skeletal muscle fatigue during high-intensity intermittent exercise. Acta Paediatrica. 92:1248–1254.
  • Ratel S, Duché P, Williams C. 2006a. Muscle fatigue during high-intensity exercise in children. Sports Med. 36:1031–1065.10.2165/00007256-200636120-00004
  • Ratel S, Williams C, Oliver J, et al. 2006b. Effects of age and recovery duration on performance during multiple treadmill sprints. Int J Sports Med. 27:1–8.10.1055/s-2005-837501
  • Rodriguez-Marroyo JA, Antoñan C. 2015. Validity of the session rating of perceived exertion for monitoring exercise demands in youth soccer players. IJSPP. 10. doi:10.1123/ijspp.2014-0058
  • Sahlin K. 1992. Metabolic factors in fatigue. Sport Med. 13:99–107.
  • Şekir U, Özyener F, Gür H. 2002. Effect of time of day on the relationship between lactate and ventilatory thresholds: a brief report. J Sports Sci Med. 1:136–140.
  • Souissi N, Driss T, Chamari K, Vandewalle H, Davenne D, Gam A, Fillard JR, Jousselin E. 2010. Diurnal variation in wingate test performances: influence of active warm-up. Chronobiol Int. 27:640–652.10.3109/07420528.2010.483157
  • 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-to 11-year-old boys. Pediatr Exerc Sci. 24:84–99.
  • Stolen T, Chamari K, Castagna C, Wisloff U. 2005. Physiology of soccer. Sports Med. 35:501–536.10.2165/00007256-200535060-00004
  • Taylor D, Kemp G, Thompson C, Radda G. 1997. Aging: effects on oxidative function of skeletal muscle in vivo. Mol Cell Biochem. 174:321–324.10.1023/A:1006802602497
  • Thorpe R, Sunderland C. 2012. Muscle damage, endocrine, and immune marker response to a soccer match. J Strength Cond Res. 26:2783–2790.
  • Thun E, Bjorvatn B, Flo E, Harris A, Pallesen S. 2015. Sleep, circadian rhythms, and athletic performance. Sleep Med Rev. 23:1–9.10.1016/j.smrv.2014.11.003
  • Toubekis A, Douda H, Tokmakidis S. 2005. Influence of different rest intervals during active or passive recovery on repeated sprint swimming performance. Eur J Appl Physiol. 93:694–700.
  • Váczi M, Tollár J, Meszler B, Juhász I, Karsai I. 2013. Short-term high intensity plyometric training program improves strength, power and agility in male soccer players. J Hum Kinet. 36:17–26.
  • Verschuren O, Takken T, Ketelaar M, Gorter JW, Helders PJ. 2007. Reliability for running tests for measuring agility and anaerobic muscle power in children and adolescents with cerebal palsy. Pediatr Phys Ther. 19:108–115.10.1097/pep.0b013e318036bfce
  • Wang R, Fukuda DH, Stout JR, Robinson EH, Miramonti AA, Fragala MS, Hoffman JR. 2015. Evaluation of electromyographic frequency domain changes during a three-minute maximal effort cycling test. J Sports Sci Med. 14:452–458.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.