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Erschienen in: European Journal of Applied Physiology 8/2011

01.08.2011 | Original Article

Consistency of perceptual and metabolic responses to a laboratory-based simulated 4,000-m cycling time trial

verfasst von: Mark R. Stone, Kevin Thomas, Michael Wilkinson, Alan St Clair Gibson, Kevin G. Thompson

Erschienen in: European Journal of Applied Physiology | Ausgabe 8/2011

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Abstract

Although pacing-related research is widely reported, no studies have described the consistency of pacing strategies or their associated energetic contributions. This study aimed to investigate the consistency of pacing and energetic outlay by establishing the typical within and between trial variations during simulated 4,000 m time trials. Fifteen well-trained male cyclists performed three, 4,000 m time trials with 3–7 days separating each trial. Power output, cadence, heart rate, respiratory exchange and iEMG of the vastus lateralis were recorded continuously throughout each trial. To examine within-trial variability, the data were assigned to 10% bins. Rating of perceived exertion and affective response were recorded every 400 m and a capillary blood sample was collected and assayed for blood lactate concentration every 800 m. Mean typical error across trials 1–3 for all variables was low (range 2.1–6.3%) and lower between trials 2–3 for all variables with the exception of cadence. There were no between-trial differences in pacing strategy; however, typical error for each 10% bin was lower between trials 2–3 than trials 1–2. Anaerobic contribution to power was greatest during the first and last 10% of each trial (p > 0.05). In conclusion, well-trained cyclists demonstrated a high degree of consistency in terms of the pacing strategy they adopted which coincided with similar levels of energy distribution and perceived exertion. A laboratory simulated 4-km cycling trial is a reliable test that may be used to monitor performance and pacing strategy.
Literatur
Zurück zum Zitat Abbiss CR, Laursen PB (2008) Describing and understanding pacing strategies during athletic competition. Sports Med 38:239–252PubMedCrossRef Abbiss CR, Laursen PB (2008) Describing and understanding pacing strategies during athletic competition. Sports Med 38:239–252PubMedCrossRef
Zurück zum Zitat Albertus Y, Tucker R, St Clair Gibson A, Lambert EV, Hampson DB, Noakes TD (2005) Effect of distance feedback on pacing strategy and perceived exertion during cycling. Med Sci Sports Exercise 37:461–468CrossRef Albertus Y, Tucker R, St Clair Gibson A, Lambert EV, Hampson DB, Noakes TD (2005) Effect of distance feedback on pacing strategy and perceived exertion during cycling. Med Sci Sports Exercise 37:461–468CrossRef
Zurück zum Zitat Atkinson G, Davison RCR, Jeukendrup A, Passfield L (2003) Science and cycling: current knowledge and future directions for research. J Sports Sci 21:767–787PubMedCrossRef Atkinson G, Davison RCR, Jeukendrup A, Passfield L (2003) Science and cycling: current knowledge and future directions for research. J Sports Sci 21:767–787PubMedCrossRef
Zurück zum Zitat Bini RR, Diefenthaeler F, Mota CB (2010) Fatigue effects on the coordinative pattern during cycling: kinetics and kinematics evaluation. J Electromyogr Kinesiol 20:102–107PubMedCrossRef Bini RR, Diefenthaeler F, Mota CB (2010) Fatigue effects on the coordinative pattern during cycling: kinetics and kinematics evaluation. J Electromyogr Kinesiol 20:102–107PubMedCrossRef
Zurück zum Zitat Bishop D, Bonetti D, Dawson B (2002) The influence of pacing strategy on VO 2 and supramaximal kayak performance. Med Sci Sports Exerc 34:1041–1047PubMedCrossRef Bishop D, Bonetti D, Dawson B (2002) The influence of pacing strategy on VO 2 and supramaximal kayak performance. Med Sci Sports Exerc 34:1041–1047PubMedCrossRef
Zurück zum Zitat Borg GA (1982) Psychophysical bases of perceived exertion. Med Sci Sports Exerc 14:377–381PubMed Borg GA (1982) Psychophysical bases of perceived exertion. Med Sci Sports Exerc 14:377–381PubMed
Zurück zum Zitat Clancy EA, Morin EL, Merletti R (2002) Sampling, noise-reduction and amplitude estimation issues in surface electromyography. J Electromyogr Kinesiol 12:1–16PubMedCrossRef Clancy EA, Morin EL, Merletti R (2002) Sampling, noise-reduction and amplitude estimation issues in surface electromyography. J Electromyogr Kinesiol 12:1–16PubMedCrossRef
Zurück zum Zitat Corbett J (2009) An analysis of the pacing strategies adopted by elite athletes during track cycling. Int J Sports Physiol Perform 4:195–205PubMed Corbett J (2009) An analysis of the pacing strategies adopted by elite athletes during track cycling. Int J Sports Physiol Perform 4:195–205PubMed
Zurück zum Zitat Corbett J, Barwood MJ, Parkhouse K (2008) Effect of task familiarisation on distribution of energy during a 2000 m cycling time trial. Br J Sports Med 43:770–774CrossRef Corbett J, Barwood MJ, Parkhouse K (2008) Effect of task familiarisation on distribution of energy during a 2000 m cycling time trial. Br J Sports Med 43:770–774CrossRef
Zurück zum Zitat de Koning JJ, Maarten F, Bobbert M, Foster C (1999) Determination of optimal pacing strategy in track cycling with an energy flow model. J Sci Med Sport 2:266–277PubMedCrossRef de Koning JJ, Maarten F, Bobbert M, Foster C (1999) Determination of optimal pacing strategy in track cycling with an energy flow model. J Sci Med Sport 2:266–277PubMedCrossRef
Zurück zum Zitat Foster C, De Koning JJ, Hettinga F, Lampen J, La Clair KL, Dodge C, Bobbert M, Porcari JP (2003) Pattern of energy expenditure during simulated competition. Med Sci Sports Exerc 35:826–831PubMedCrossRef Foster C, De Koning JJ, Hettinga F, Lampen J, La Clair KL, Dodge C, Bobbert M, Porcari JP (2003) Pattern of energy expenditure during simulated competition. Med Sci Sports Exerc 35:826–831PubMedCrossRef
Zurück zum Zitat Foster C, de Koning JJ, Hettinga F, Lampen J (2004) Effect of competitive distance on energy expenditure during simulated competition. Int J Sports Med 25:198–204PubMedCrossRef Foster C, de Koning JJ, Hettinga F, Lampen J (2004) Effect of competitive distance on energy expenditure during simulated competition. Int J Sports Med 25:198–204PubMedCrossRef
Zurück zum Zitat Hettinga F, De Koning JJ, Broersen FT, Van Geffen P, Foster C (2006) Pacing strategy and the occurrence of fatigue in 4000-m cycling time trials. Med Sci Sports Exerc 38:1484–1491PubMedCrossRef Hettinga F, De Koning JJ, Broersen FT, Van Geffen P, Foster C (2006) Pacing strategy and the occurrence of fatigue in 4000-m cycling time trials. Med Sci Sports Exerc 38:1484–1491PubMedCrossRef
Zurück zum Zitat Hopkins WG (2000) Measures of reliability in sports medicine and science. Sports Med 30:1–15PubMedCrossRef Hopkins WG (2000) Measures of reliability in sports medicine and science. Sports Med 30:1–15PubMedCrossRef
Zurück zum Zitat Jones AM, Wilkerson DP, Vanhatalo A, Burnley M (2008) Influence of pacing strategy on O2 uptake and exercise tolerance. Scand J Med Sci Sports 18:615–626PubMedCrossRef Jones AM, Wilkerson DP, Vanhatalo A, Burnley M (2008) Influence of pacing strategy on O2 uptake and exercise tolerance. Scand J Med Sci Sports 18:615–626PubMedCrossRef
Zurück zum Zitat Lambert EV, St Clair Gibson A, Noakes TD (2005) Complex systems model of fatigue: integrative homeostatic control of peripheral physiological systems during exercise in humans. Br J Sports Med 39:52–62PubMedCrossRef Lambert EV, St Clair Gibson A, Noakes TD (2005) Complex systems model of fatigue: integrative homeostatic control of peripheral physiological systems during exercise in humans. Br J Sports Med 39:52–62PubMedCrossRef
Zurück zum Zitat Laursen PB, Shing CM, Jenkins DG (2003) Reproducibility of laboratory-based 40-km cycle time-trial on a stationary wind trainer in highly trained cyclists. Int J Sports Med 24:481–485PubMedCrossRef Laursen PB, Shing CM, Jenkins DG (2003) Reproducibility of laboratory-based 40-km cycle time-trial on a stationary wind trainer in highly trained cyclists. Int J Sports Med 24:481–485PubMedCrossRef
Zurück zum Zitat Martin JC, Gardner AS, Barass M, Martin DT (2006) Modelling sprint cycling using field-derived parameters and forward integration. Med Sci Sports Exerc 38:592–597PubMedCrossRef Martin JC, Gardner AS, Barass M, Martin DT (2006) Modelling sprint cycling using field-derived parameters and forward integration. Med Sci Sports Exerc 38:592–597PubMedCrossRef
Zurück zum Zitat McDaniel J, Subudhi A, Martin JC (2005) Torso stabilization reduces the metabolic cost of producing cycling power. Can J Appl Physiol 30:433–441PubMedCrossRef McDaniel J, Subudhi A, Martin JC (2005) Torso stabilization reduces the metabolic cost of producing cycling power. Can J Appl Physiol 30:433–441PubMedCrossRef
Zurück zum Zitat Meyer T, Becker C, Kindermann W (2005) Ambulatory gas exchange measurements—current status and future options. Int J Sports Med 26:S19–S27PubMedCrossRef Meyer T, Becker C, Kindermann W (2005) Ambulatory gas exchange measurements—current status and future options. Int J Sports Med 26:S19–S27PubMedCrossRef
Zurück zum Zitat Noakes TD, St Clair Gibson A, Lambert EV (2005) From catastrophe to complexity: a novel model of integrative central neural regulation of effort and fatigue in humans: summary and conclusions. Br J Sports Med 39:120–124PubMedCrossRef Noakes TD, St Clair Gibson A, Lambert EV (2005) From catastrophe to complexity: a novel model of integrative central neural regulation of effort and fatigue in humans: summary and conclusions. Br J Sports Med 39:120–124PubMedCrossRef
Zurück zum Zitat Paton CD, Hopkins WG (2006) Variability in performance of elite cyclists from race to race. Eur J Sport Sci 6:25–31CrossRef Paton CD, Hopkins WG (2006) Variability in performance of elite cyclists from race to race. Eur J Sport Sci 6:25–31CrossRef
Zurück zum Zitat Pyne D (2003) Interpreting the results of fitness testing. International science and football symposium Pyne D (2003) Interpreting the results of fitness testing. International science and football symposium
Zurück zum Zitat Rejeski WJ (1985) Perceived exertion: an active or passive process? Int J Sport Psychol 7:371–378 Rejeski WJ (1985) Perceived exertion: an active or passive process? Int J Sport Psychol 7:371–378
Zurück zum Zitat Smith MF, Davison RCR, Balmer J, Bird SR (2001) Reliability of 40 km cycle time trial performance. Int J Sports Med 22:270–274PubMedCrossRef Smith MF, Davison RCR, Balmer J, Bird SR (2001) Reliability of 40 km cycle time trial performance. Int J Sports Med 22:270–274PubMedCrossRef
Zurück zum Zitat Sporer BC, McKenzie DC (2007) Reproducibility of a laboratory based 20-km time trial evaluation in competitive cyclists using the velotron pro ergometer. Int J Sports Med 28:940–944PubMedCrossRef Sporer BC, McKenzie DC (2007) Reproducibility of a laboratory based 20-km time trial evaluation in competitive cyclists using the velotron pro ergometer. Int J Sports Med 28:940–944PubMedCrossRef
Zurück zum Zitat St Clair Gibson A, Lambert EV, Rauch LH, Tucker R, Baden DA, Foster C, Noakes TD (2006) The role of information processing between the brain and peripheral physiological systems in pacing and perception of effort. Sports Med 36:705–722PubMedCrossRef St Clair Gibson A, Lambert EV, Rauch LH, Tucker R, Baden DA, Foster C, Noakes TD (2006) The role of information processing between the brain and peripheral physiological systems in pacing and perception of effort. Sports Med 36:705–722PubMedCrossRef
Zurück zum Zitat Tucker R (2009) The anticipatory regulation of performance: the physiological basis for pacing strategies and the development of a perception based model for exercise performance. Br J Sports Med 43:392–400PubMedCrossRef Tucker R (2009) The anticipatory regulation of performance: the physiological basis for pacing strategies and the development of a perception based model for exercise performance. Br J Sports Med 43:392–400PubMedCrossRef
Zurück zum Zitat Tucker R, Roach RC, Harley YXR (2004) Impaired exercise performance in the heat is associated with an anticipatory reduction in skeletal muscle recruitment. Pflugers Arch 448:422–430PubMedCrossRef Tucker R, Roach RC, Harley YXR (2004) Impaired exercise performance in the heat is associated with an anticipatory reduction in skeletal muscle recruitment. Pflugers Arch 448:422–430PubMedCrossRef
Zurück zum Zitat Zavorsky GS, Murias JM, Gow J, Kim DJ, Poulin-Harnois C, Kubow S, Lands LC (2007) Laboratory 20-km cycle time trial reproducibility. Int J Sports Med 28:743–748PubMedCrossRef Zavorsky GS, Murias JM, Gow J, Kim DJ, Poulin-Harnois C, Kubow S, Lands LC (2007) Laboratory 20-km cycle time trial reproducibility. Int J Sports Med 28:743–748PubMedCrossRef
Metadaten
Titel
Consistency of perceptual and metabolic responses to a laboratory-based simulated 4,000-m cycling time trial
verfasst von
Mark R. Stone
Kevin Thomas
Michael Wilkinson
Alan St Clair Gibson
Kevin G. Thompson
Publikationsdatum
01.08.2011
Verlag
Springer-Verlag
Erschienen in
European Journal of Applied Physiology / Ausgabe 8/2011
Print ISSN: 1439-6319
Elektronische ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-010-1818-7

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