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Published in: European Journal of Applied Physiology 1/2018

Open Access 01-01-2018 | Original Article

The effect of mental fatigue on critical power during cycling exercise

Authors: Hawbeer Salam, Samuele M. Marcora, James G. Hopker

Published in: European Journal of Applied Physiology | Issue 1/2018

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Abstract

Purpose

Time to exhaustion (TTE) tests used in the determination of critical power (CP) and curvature constant (W′) of the power–duration relationship are strongly influenced by the perception of effort (PE). This study aimed to investigate whether manipulation of the PE alters the CP and W′.

Methods

Eleven trained cyclists completed a series of TTE tests to establish CP and W′ under two conditions, following a mentally fatiguing (MF), or a control (CON) task. Both cognitive tasks lasted 30 min followed by a TTE test. Ratings of PE and heart rate (HR) were measured during each TTE. Blood lactate was taken pre and post each TTE test. Ratings of perceived mental and physical fatigue were taken pre- and post-cognitive task, and following each TTE test.

Results

Perceived MF significantly increased as a result of the MF task compared to baseline and the CON task (P < 0.05), without a change in perceived physical fatigue (P > 0.05). PE was significantly higher during TTE in the MF condition (P < 0.05). Pre-post blood lactate accumulation was significantly lower after each TTE in MF condition (P < 0.05). HR was not significant different between conditions (P > 0.05). Neither cognitive task induced any change in CP (MF 253 ± 51 vs. CON 247 ± 58W; P > 0.05), although W′ was significantly reduced in the MF condition (MF 22.8 ± 4.5 vs. CON 29.3 ± 6.3 kJ; P < 0.01).

Conclusion

MF has no effect of CP, but reduces the W′ in trained cyclists. Lower lactate accumulation during TTE tests following MF suggests that cyclists were not able to fully expend W′ even though they exercised to volitional exhaustion.
Literature
go back to reference Andreacci JL, LeMura LM, Cohen SL, Urbansky EA, Chelland SA, Von Duvillard SP (2002) The effects of frequency of encouragement on performance during maximal exercise testing. J Sports Sci 20:345–352CrossRef Andreacci JL, LeMura LM, Cohen SL, Urbansky EA, Chelland SA, Von Duvillard SP (2002) The effects of frequency of encouragement on performance during maximal exercise testing. J Sports Sci 20:345–352CrossRef
go back to reference Borg GA (1998) Borg’s perceived exertion and pain scales. Human kinetics, Champaign, p 104 Borg GA (1998) Borg’s perceived exertion and pain scales. Human kinetics, Champaign, p 104
go back to reference Bray SR, Martin Ginis KA, Hicks AL, Woodgate J (2008) Effects of self-regulatory strength depletion on muscular performance and EMG activation. Psychophysiology 45:337–343CrossRef Bray SR, Martin Ginis KA, Hicks AL, Woodgate J (2008) Effects of self-regulatory strength depletion on muscular performance and EMG activation. Psychophysiology 45:337–343CrossRef
go back to reference Brehm JW, Self EA (1989) The intensity of motivation. Annu Rev Psychol 40:109–31CrossRef Brehm JW, Self EA (1989) The intensity of motivation. Annu Rev Psychol 40:109–31CrossRef
go back to reference Brownsberger J, Edwards A, Crowther R, Cottrell F (2013) Impact of mental fatigue on self-paced exercise. Int J Sports Med 34:1029–1036CrossRef Brownsberger J, Edwards A, Crowther R, Cottrell F (2013) Impact of mental fatigue on self-paced exercise. Int J Sports Med 34:1029–1036CrossRef
go back to reference Fitts RH (1994) Cellular mechanisms of muscle fatigue. Physiol Rev 74:49–94CrossRef Fitts RH (1994) Cellular mechanisms of muscle fatigue. Physiol Rev 74:49–94CrossRef
go back to reference Gaesser GA, Wilson LA (1988) Effects of continuous and interval training on the parameters of the power-endurance time relationship for high-intensity exercise. Int J Sports Med 9:417–421CrossRef Gaesser GA, Wilson LA (1988) Effects of continuous and interval training on the parameters of the power-endurance time relationship for high-intensity exercise. Int J Sports Med 9:417–421CrossRef
go back to reference Hill DW (1993) The critical power concept: a review. Sports Med 16:237–254CrossRef Hill DW (1993) The critical power concept: a review. Sports Med 16:237–254CrossRef
go back to reference Marcora S (2009a) Counterpoint: afferent feedback from fatigued locomotor muscles is not an important determinant of endurance exercise performance. J Appl Physiol 106:2060–2062CrossRef Marcora S (2009a) Counterpoint: afferent feedback from fatigued locomotor muscles is not an important determinant of endurance exercise performance. J Appl Physiol 106:2060–2062CrossRef
go back to reference Marcora SM, Bosio A, de Morree HM (2008) Locomotor muscle fatigue increases cardiorespiratory responses and reduces performance during intense cycling exercise. Am J Physiol Regul Integr Comp Physiol 294:R874–83CrossRef Marcora SM, Bosio A, de Morree HM (2008) Locomotor muscle fatigue increases cardiorespiratory responses and reduces performance during intense cycling exercise. Am J Physiol Regul Integr Comp Physiol 294:R874–83CrossRef
go back to reference Marcora SM, Staiano W, Manning V (2009b) Mental fatigue impairs physical performance in humans. J Appl Physiol 106:857–64CrossRef Marcora SM, Staiano W, Manning V (2009b) Mental fatigue impairs physical performance in humans. J Appl Physiol 106:857–64CrossRef
go back to reference Monod H, Scherrer J (1965) The work capacity of a synergic muscle group. Ergonomics 8:329–338CrossRef Monod H, Scherrer J (1965) The work capacity of a synergic muscle group. Ergonomics 8:329–338CrossRef
go back to reference Moritani T, Nagata A, deVries HA, Muro M (1981) Critical power as a measure of physical work capacity and anaerobic threshold. Ergonomics 24:339–350CrossRef Moritani T, Nagata A, deVries HA, Muro M (1981) Critical power as a measure of physical work capacity and anaerobic threshold. Ergonomics 24:339–350CrossRef
go back to reference Nakamura FY, Brunetto AF, Hirai DM, Roseguini BT, Kokubun E (2005) The perceived exertion threshold (PET) corresponds to the critical power and to an indicator of maximal oxygen uptake steady state. Rev Bras Med Esporte 11:189e–94e Nakamura FY, Brunetto AF, Hirai DM, Roseguini BT, Kokubun E (2005) The perceived exertion threshold (PET) corresponds to the critical power and to an indicator of maximal oxygen uptake steady state. Rev Bras Med Esporte 11:189e–94e
go back to reference Pageaux B, Marcora SM, Lepers R (2013) Prolonged mental exertion does not alter neuromuscular function of the knee extensors. Med Sci Sports Exerc 5:2254–2264CrossRef Pageaux B, Marcora SM, Lepers R (2013) Prolonged mental exertion does not alter neuromuscular function of the knee extensors. Med Sci Sports Exerc 5:2254–2264CrossRef
go back to reference Pageaux B, Lepers R, Dietz KC, Marcora SM (2014) Response inhibition impairs subsequent self-paced endurance performance. Eur J Appl Physiol 114:1095–1105CrossRef Pageaux B, Lepers R, Dietz KC, Marcora SM (2014) Response inhibition impairs subsequent self-paced endurance performance. Eur J Appl Physiol 114:1095–1105CrossRef
go back to reference Pageaux B, Marcora SM, Rozand V, Lepers R (2015) Mental fatigue induced by prolonged self-regulation does not exacerbate central fatigue during subsequent whole-body endurance exercise. Front Hum Neurosci 9:67CrossRef Pageaux B, Marcora SM, Rozand V, Lepers R (2015) Mental fatigue induced by prolonged self-regulation does not exacerbate central fatigue during subsequent whole-body endurance exercise. Front Hum Neurosci 9:67CrossRef
go back to reference Poole DC, Ward SA, Gardner GW, Whipp BJ (1988) Metabolic and respiratory profile of the upper limit for prolonged exercise in man. Ergonomics 31:1265–1279CrossRef Poole DC, Ward SA, Gardner GW, Whipp BJ (1988) Metabolic and respiratory profile of the upper limit for prolonged exercise in man. Ergonomics 31:1265–1279CrossRef
go back to reference Smith MR, Marcora SM, Coutts AJ (2015) Mental fatigue impairs intermittent running performance. Med Sci Sports Exerc 47(8):1682–1690CrossRef Smith MR, Marcora SM, Coutts AJ (2015) Mental fatigue impairs intermittent running performance. Med Sci Sports Exerc 47(8):1682–1690CrossRef
go back to reference Wright RA (2008) Refining the prediction of effort: Brehm’s distinction between potential motivation and motivation intensity. Soc Pers Psychol Compass 2:682–701CrossRef Wright RA (2008) Refining the prediction of effort: Brehm’s distinction between potential motivation and motivation intensity. Soc Pers Psychol Compass 2:682–701CrossRef
Metadata
Title
The effect of mental fatigue on critical power during cycling exercise
Authors
Hawbeer Salam
Samuele M. Marcora
James G. Hopker
Publication date
01-01-2018
Publisher
Springer Berlin Heidelberg
Published in
European Journal of Applied Physiology / Issue 1/2018
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-017-3747-1

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