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Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 23, 2006 - Issue 5
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Original

The Effect of Pedal Rate and Time of Day on the Time to Exhaustion from High‐Intensity Exercise

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Pages 1009-1024 | Received 02 Feb 2006, Accepted 20 Jun 2006, Published online: 07 Jul 2009

References

  • Aldemir H., Atkinson G., Cable T., Edwards B., Waterhouse J., Reilly T. A comparison of the immediate effects of moderate exercise in the late morning and late afternoon on core temperature and cutaneous thermoregulatory mechanisms. Chronobiol. Int. 2000; 17: 197–207
  • Atkinson G., Reilly T. Circadian variation in sports performance. Sports Med. 1996; 21: 292–312
  • Atkinson G., Todd C., Reilly T., Waterhouse J. Diurnal variation in cycling performance: influence of warm‐up. J. Sports Sci. 2005; 23: 321–329
  • Aschoff J., Gerecke U., Wever R. Desynchronization of human circadian rhythms. Jpn. J. Physiol. 1967; 15: 450–457
  • Barstow T. J., Jones A. M., Nguyen P. H., Casaburi R. Influence of muscle fibber type and pedal frequency on oxygen uptake kinetics of heavy exercise. J. Appl. Physiol. 1996; 81: 1642–1650
  • Baxter C., Reilly T. Influence of time of day on all out swimming. Br. J. Sports Med. 1983; 17: 122–127
  • Bigland‐Ritchie B., Woods J. J. Changes in muscle contractile properties and neural control during human muscular fatigue. Muscle Nerve 1984; 7: 691–699
  • Böning D., Gonen Y., Maassen N. Relationship between work load, pedal frequency, and physical fitness. Int. J. Sports Med. 1984; 5: 92–97
  • Cable T., Reilly T. Influence of circadian rhythms on arm exercise. J. Hum. Mov. Stud. 1987; 13: 13–27
  • Carter H., Jones A. M., Maxwell N. S., Doust J. H. The effect of interdian and diurnal variation on oxygen uptake kinetics during treadmill running. J. Sports Sci. 2002; 20: 901–909
  • Coast J. R., Welch H. G. Linear increase in optimal pedal rate with increased power output in cycle ergometry. Eur. J. Appl. Physiol. Occup. Physiol. 1985; 53: 339–342
  • Demarle A. P., Slawinski J. J., Laffite L. P., Bocquet V. G., Koralsztein J. P., Billat V. L. Decrease of O(2) deficit is a potential factor in increased time to exhaustion after specific endurance training. J. Appl. Physiol. 2001; 90: 947–953
  • Deschenes M. R., Kraemer W. J., Bush J. A., Doughty T. A., Kim D., Mullen K. M., Ramsey K. Biorhythmic influences on functional capacity of human muscle and physiological responses. Med. Sci. Sports Exerc. 1998; 30: 1399–1407
  • Drust B., Waterhouse G., Atkinson G., Edwards B., Reilly T. Circadian rhythms in sports performance—an update. Chronobiol. Int. 2005; 21: 21–44
  • Ericson M. O., Nisell R., Arborelius U. P., Ekholm J. Muscular activity during ergometer cycling. Scand. J. Rehabil. Med. 1985; 17: 53–61
  • Faria I. E., Drummond B. J. Circadian changes in resting heart rate and body temperature, maximal oxygen consumption and perceived exertion. Ergonomics 1982; 25: 381–386
  • Fathallah F. A., Marras W. S., Wright P. L. Diurnal variation in trunk kinematics during a typical work shift. J. Spinal Disord. 1995; 8: 20–25
  • Febbraio M. A., Lambert D. L., Starkie R. L., Proietto J., Hargreaves M. Effect of epinephrine on muscle glycogenolysis during exercise in trained men. J. Appl. Physiol. 1998; 84: 465–470
  • Ferrario V. F., Tredici G., Crespi V. Circadian rhythm in human nerve conduction velocity. Chronobiologia 1980; 7: 205–209
  • Gauthier A., Davenne D., Gentil C., Van Hoecke J. Circadian rhythm in the torque developed by elbow flexors during isometric contraction. Effect of sampling schedules. Chronobiol. Int. 1997; 14: 287–294
  • 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: 541–558
  • Hill D. W. Effect of time of day on aerobic power in exhaustive high‐intensity exercise. J. Sports Med. Phys. Fitness 1996; 36: 155–160
  • Hill D. W., Cureton K. J., Collins M. A., Grisham S. C. Diurnal variations in responses to exercise of “morning types” and “evening types.”. J. Sports Med. Phys. Fitness 1988; 28: 213–219
  • Hill D. W., Cureton K. J., Collins M. A. Effect of time of day on perceived exertion at work rates above and below the ventilatory threshold. Res. Q. Exerc. Sport 1989; 60: 127–133
  • Hill D. W., Borden D. O., Darnaby K. M., Hendricks D. N., Hill C. M. Effect of time of day on aerobic and anaerobic responses to high‐intensity exercise. Can. J. Sports Sci. 1992; 17: 316–319
  • Horne J. A., Östberg O. A self‐assessment questionnaire to determine morningness‐eveningness in human circadian rhythms. Int. J. Chronobiol. 1976; 4: 97–110
  • Karvonen M. J. Endurance sports, longevity, and health. Ann. N.Y. Acad. Sci. 1977; 301: 653–655
  • Martin A., Carpentier A., Guissard N., Van Hoecke J., Duchateau J. Effect of time of day on force variation in a human muscle. Muscle Nerve 1999; 22: 1380–1387
  • Medbo J. I., Tabata I. Anaerobic energy release in working muscle during 30 s to 3 min of exhausting bicycling. J. Appl. Physiol. 1993; 75: 1654–1660
  • Minors D. S., Waterhouse J. M. Circadian Rhythms and the Human. Wright and Sons, BristolU.K. 1981; 332
  • Moussay S., Dosseville F., Gauthier A., Larue J., Sesboüé B., Davenne D. Circadian rhythms during cycling exercise and finger‐tapping task. Chronobiol. Int. 2002a; 19: 1137–1149
  • Moussay S., Gauthier A., Sesboüé B., Davenne D. Effets de l'heure de la journée sur les paramètres physiologiques et biomécaniques de la performance en cyclisme. Sciences Motricité 2002b; 46: 95–117
  • Neptune R. R., Hull M. L. A theoretical analysis of preferred pedalling rate selection in endurance cycling. J. Biomech. 1999; 32: 409–415
  • Neptune R. R., Kautz S. A., Hull M. L. The effect of pedaling rate on coordination in cycling. J. Biomech. 1997; 30: 1051–1058
  • Nicolas A., Gauthier A., Bessot N., Moussay S., Davenne D. Time‐of‐day effects on myoelectric and mechanical properties of muscle during maximal and prolonged isometric exercise. Chronobiol. Int. 2005; 22: 973–987
  • Pringle J. S., Doust J. H., Carter H., Tolfrey K., Jones A. M. Effect of pedal rate on primary and slow‐component oxygen uptake responses during heavy‐cycle exercise. J. Appl. Physiol. 2003; 94: 1501–1507
  • Racinais R., Hue O., Blonc S. Time‐of‐day effect on anaerobic muscular power in a moderately warm environment. Chronobiol. Int. 2004; 21: 485–495
  • Racinais R., Connes P., Bishop D., Blonc S., Hue O. Morning versus evening power output and repeated sprint ability. Chronobiol. Int. 2005; 22: 1029–1039
  • Ranatunga K. W., Sharpe B., Turnbull B. Contractions of a human skeletal muscle at different temperatures. J. Physiol. (London) 1987; 390: 383–395
  • Refinetti R., Menaker M. The circadian rhythm of body temperature. Physiol. Behav. 1992; 51: 613–637
  • Reilly T. Human circadian rhythms and exercise. Crit. Rev. Biomed. Eng. 1990; 18: 165–180
  • Reilly T., Baxter C. Influence of time of day on reactions to cycling at a fixed high intensity. Br. J. Sports. Med. 1983; 17: 128–130
  • Reilly T., Brooks G. A. Investigation of circadian rhythms in metabolic responses to exercise. Ergonomics 1982; 25: 1093–1107
  • Reilly T., Brooks G. A. Selective persistence of circadian rhythms in physiological responses to exercise. Chronobiol. Int. 1990; 7: 59–67
  • Reilly T., Garrett R. Effects of time of day on self‐paced performances of prolonged exercise. J. Sports Med. Phys. Fitness 1995; 35: 99–102
  • Reilly T., Marshall S. Circadian rhythms in power output on a swim bench. J. Swimming. Res. 1991; 7: 11–13
  • Reilly T., Atkinson G., Waterhouse J. Biological Rhythms and Exercise. Oxford Medical Publications, Oxford 1997; 162
  • Sargent A. J., Beelen A. Human muscle fatigue in dynamic exercise. Neuromuscular Fatigue, A. J. Sargent, D. Kernel. Academy series, North-Holland, Amsterdam 1996; 81–92
  • Smolander J., Harma M., Lindqvist A., Kolari P., Laitinen L. A. Circadian variation in peripheral blood flow in relation to core temperature at rest. Eur. J. Appl. Physiol. Occup. Physiol. 1993; 67: 192–196
  • Souissi N., Gauthier A., Sesboüé B., Larue J., Davenne D. Circadian rhythms in two types of anaerobic cycle leg exercise: force‐velocity and 30‐s Wingate tests. Int. J. Sports. Med. 2004; 25: 14–19
  • Stephenson L. A., Wenger C. B., O'Donovan B. H., Nadel E. R. Circadian rhythm in sweating and cutaneous blood flow. Am. J. Physiol. 1984; 246: 321–324
  • Takaishi T., Yasuda Y., Ono T., Moritani T. Optimal pedalling rate estimated from neuromuscular fatigue for cyclists. Med. Sci. Sports Exerc. 1996; 28: 1492–1497
  • Torii J., Shinkaï S., Hino S., Kurokawa Y., Tomita N., Hirose M., Watanabe S., Watanabe T. Effect of time of day on adaptive response to a four‐week aerobic exercise program. J. Sports Med. Phys. Fitness. 1992; 32: 348–352
  • Touitou Y., Portaluppi F., Smolensky M. H., Rensing L. Ethical principles and standards for the conduct of human and animal biological rhythm research. Chronbiol. Int. 2004; 21: 161–170
  • Van Ingen Schenau G. J., Boots P. J.M., De Groot G., Snackers R. J., Woensel W. L.M. The constrained control of force and position in multi‐joint movements. Neuroscience 1992; 46: 197–207
  • Waterhouse J., Drust B., Weinert D., Edwards B., Gregson W., Atkinson G., Kao S., Aizawa S., Reilly T. The circadian rhythm of core temperature: origin and some implications for exercise performance. Chronobiol. Int. 2005; 22: 207–225
  • Williams C. S., Hill D. W. The effect of time of day on VO2 kinetics and VO2 max during high‐intensity exercise. Med. Sci. Sports Exerc. 1995; 27(S)109
  • Winget C. M., DeRoschia C. W., Holley D. C. Circadian rhythms and athletic performance. Med. Sci. Sports Exerc. 1985; 17: 498–516

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