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Erschienen in: Experimental Brain Research 3/2008

01.04.2008 | Research Article

Evidence for freely chosen pedalling rate during submaximal cycling to be a robust innate voluntary motor rhythm

verfasst von: Ernst Albin Hansen, Ann Elisabeth Ohnstad

Erschienen in: Experimental Brain Research | Ausgabe 3/2008

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Abstract

Freely chosen pedalling rate during cycling represents a voluntary rhythmic movement. It is unclear to what extent this is influenced by internal (e.g. loading on the cardiopulmonary system) and external (e.g. mechanical loading) conditions. It is also unclear just how robust a voluntary motor rhythm, the freely chosen pedalling rate, actually is. The present study investigated (N = 8) whether or not the freely chosen pedalling rate during submaximal cycling was affected by separate increases in loading on the cardiopulmonary system (changed by exposure to acute simulated altitude of 3,000 m above sea level) and mechanical loading (changed by exposure to increased power output and thereby pedal force). We also investigated (N = 7) whether or not the freely chosen pedalling rate and another voluntary motor rhythm, unimanual unloaded index finger tapping rate, shared common characteristics of steadiness and individuality over a 12-week period. Results showed that the freely chosen pedalling rate was unaffected by increased loading on the cardiopulmonary system at constant mechanical loading, and vice versa. Further, the pedalling rate was steady in the longitudinal perspective (as was the tapping rate), and like tapping rate, pedalling rate was highly individual. In total this indicated that freely chosen pedalling rate primarily is a robust innate voluntary motor rhythm, likely under primary influence of central pattern generators that again are minimally affected by internal and external conditions during submaximal cycling.
Literatur
Zurück zum Zitat Argentin S, Hausswirth C, Bernard T, Bieuzen F, Leveque JM, Couturier A, Lepers R (2006) Relation between preferred and optimal cadences during two hours of cycling in triathletes. Br J Sports Med 40:293–298PubMedCrossRef Argentin S, Hausswirth C, Bernard T, Bieuzen F, Leveque JM, Couturier A, Lepers R (2006) Relation between preferred and optimal cadences during two hours of cycling in triathletes. Br J Sports Med 40:293–298PubMedCrossRef
Zurück zum Zitat Balter JE, Zehr EP (2007) Neural coupling between the arms and legs during rhythmic locomotor-like cycling movement. J Neurophysiol 97:1809–1818PubMedCrossRef Balter JE, Zehr EP (2007) Neural coupling between the arms and legs during rhythmic locomotor-like cycling movement. J Neurophysiol 97:1809–1818PubMedCrossRef
Zurück zum Zitat Chen B, Jones NL, Killian KJ (1999) Is there a conflict between minimizing effort and energy expenditure with increasing velocities of muscle contraction in humans? J Physiol 518:933–940PubMedCrossRef Chen B, Jones NL, Killian KJ (1999) Is there a conflict between minimizing effort and energy expenditure with increasing velocities of muscle contraction in humans? J Physiol 518:933–940PubMedCrossRef
Zurück zum Zitat Clark SA, Bourdon PC, Schmidt W, Singh B, Cable G, Onus KJ, Woolford SM, Stanef T, Gore CJ, Aughey RJ (2007) The effect of acute simulated moderate altitude on power, performance and pacing strategies in well-trained cyclists. Eur J Appl Physiol 102:45–55PubMedCrossRef Clark SA, Bourdon PC, Schmidt W, Singh B, Cable G, Onus KJ, Woolford SM, Stanef T, Gore CJ, Aughey RJ (2007) The effect of acute simulated moderate altitude on power, performance and pacing strategies in well-trained cyclists. Eur J Appl Physiol 102:45–55PubMedCrossRef
Zurück zum Zitat Duysens J, Van de Crommert HWAA (1998) Neural control of locomotion; Part 1: the central pattern generator from cats to humans. Gait Posture 7:131–141PubMedCrossRef Duysens J, Van de Crommert HWAA (1998) Neural control of locomotion; Part 1: the central pattern generator from cats to humans. Gait Posture 7:131–141PubMedCrossRef
Zurück zum Zitat Ebert TR, Martin DT, Stephens B, Withers RT (2006) Power output during a professional men’s road-cycling tour. IJSPP 1:324–335PubMed Ebert TR, Martin DT, Stephens B, Withers RT (2006) Power output during a professional men’s road-cycling tour. IJSPP 1:324–335PubMed
Zurück zum Zitat Foss Ø, Hallén J (2004) The most economical cadence increases with increasing workload. Eur J Appl Physiol 92:443–451PubMedCrossRef Foss Ø, Hallén J (2004) The most economical cadence increases with increasing workload. Eur J Appl Physiol 92:443–451PubMedCrossRef
Zurück zum Zitat Foss Ø, Hallén J (2005) Cadence and performance in elite cyclists. Eur J Appl Physiol 93:453–462PubMedCrossRef Foss Ø, Hallén J (2005) Cadence and performance in elite cyclists. Eur J Appl Physiol 93:453–462PubMedCrossRef
Zurück zum Zitat Fregly BJ, Zajac FE, Dairaghi CA (1996) Crank inertial load has little effect on steady-state pedaling coordination. J Biomech 29:1559–1567PubMed Fregly BJ, Zajac FE, Dairaghi CA (1996) Crank inertial load has little effect on steady-state pedaling coordination. J Biomech 29:1559–1567PubMed
Zurück zum Zitat Hansen EA, Andersen JL, Nielsen JS, Sjøgaard G (2002a) Muscle fibre type, efficiency, and mechanical optima affect freely chosen pedal rate during cycling. Acta Physiol Scand 176:185–194PubMedCrossRef Hansen EA, Andersen JL, Nielsen JS, Sjøgaard G (2002a) Muscle fibre type, efficiency, and mechanical optima affect freely chosen pedal rate during cycling. Acta Physiol Scand 176:185–194PubMedCrossRef
Zurück zum Zitat Hansen EA, Jørgensen LV, Jensen K, Fregly BJ, Sjøgaard G (2002b) Crank inertial load affects freely chosen pedal rate during cycling. J Biomech 35:277–285. Erratum in J Biomech 35:1521 (2002)PubMedCrossRef Hansen EA, Jørgensen LV, Jensen K, Fregly BJ, Sjøgaard G (2002b) Crank inertial load affects freely chosen pedal rate during cycling. J Biomech 35:277–285. Erratum in J Biomech 35:1521 (2002)PubMedCrossRef
Zurück zum Zitat Hansen EA, Jensen K, Pedersen PK (2006) Performance following prolonged sub-maximal cycling at optimal versus freely chosen pedal rate. Eur J Appl Physiol 98:227–233PubMedCrossRef Hansen EA, Jensen K, Pedersen PK (2006) Performance following prolonged sub-maximal cycling at optimal versus freely chosen pedal rate. Eur J Appl Physiol 98:227–233PubMedCrossRef
Zurück zum Zitat Hansen EA, Raastad T, Hallén J (2007) Strength training reduces freely chosen pedal rate during submaximal cycling. Eur J Appl Physiol 101:419–426PubMedCrossRef Hansen EA, Raastad T, Hallén J (2007) Strength training reduces freely chosen pedal rate during submaximal cycling. Eur J Appl Physiol 101:419–426PubMedCrossRef
Zurück zum Zitat Juvin L, Simmers J, Morin D (2005) Propriospinal circuitry underlying interlimb coordination in mammalian quadrupedal locomotion. J Neurosci 25:6025–6035PubMedCrossRef Juvin L, Simmers J, Morin D (2005) Propriospinal circuitry underlying interlimb coordination in mammalian quadrupedal locomotion. J Neurosci 25:6025–6035PubMedCrossRef
Zurück zum Zitat Klausen K, Rasmussen B, Glensgaard LK, Jensen OV (1985) Work efficiency of children during submaximal bicycle exercise. In: Binkhorst RA, Kemper HCG, Saris WHM (eds) Children and exercise XI. Human Kinetics, Champaign, pp 210–217 Klausen K, Rasmussen B, Glensgaard LK, Jensen OV (1985) Work efficiency of children during submaximal bicycle exercise. In: Binkhorst RA, Kemper HCG, Saris WHM (eds) Children and exercise XI. Human Kinetics, Champaign, pp 210–217
Zurück zum Zitat Kostka CE, Cafarelli E (1982) Effect of pH on sensation and vastus lateralis electromyogram during cycling exercise. J Appl Physiol 52:1181–1185PubMed Kostka CE, Cafarelli E (1982) Effect of pH on sensation and vastus lateralis electromyogram during cycling exercise. J Appl Physiol 52:1181–1185PubMed
Zurück zum Zitat Lepers R, Hausswirth C, Maffiuletti N, Brisswalter J, van Hoecke J (2000) Evidence of neuromuscular fatigue after prolonged cycling exercise. Med Sci Sports Exerc 32:1880–1886PubMedCrossRef Lepers R, Hausswirth C, Maffiuletti N, Brisswalter J, van Hoecke J (2000) Evidence of neuromuscular fatigue after prolonged cycling exercise. Med Sci Sports Exerc 32:1880–1886PubMedCrossRef
Zurück zum Zitat Lucia A, Hoyos J, Chicharro JL (2001) Preferred pedalling cadence in professional cycling. Med Sci Sports Exerc 33:1361–1366PubMedCrossRef Lucia A, Hoyos J, Chicharro JL (2001) Preferred pedalling cadence in professional cycling. Med Sci Sports Exerc 33:1361–1366PubMedCrossRef
Zurück zum Zitat Marsh AP, Martin PE (1997) Effect of cycling experience, aerobic power, and power output on preferred and most economical cycling cadences. Med Sci Sports Exerc 29:1225–1232PubMed Marsh AP, Martin PE (1997) Effect of cycling experience, aerobic power, and power output on preferred and most economical cycling cadences. Med Sci Sports Exerc 29:1225–1232PubMed
Zurück zum Zitat Marsh AP, Martin PE (1998) Perceived exertion and the preferred cycling cadence. Med Sci Sports Exerc 30:942–948PubMedCrossRef Marsh AP, Martin PE (1998) Perceived exertion and the preferred cycling cadence. Med Sci Sports Exerc 30:942–948PubMedCrossRef
Zurück zum Zitat Marsh AP, Martin PE, Sanderson DJ (2000) Is a joint moment-based cost function associated with preferred cycling cadence? J Biomech 33:173–180PubMedCrossRef Marsh AP, Martin PE, Sanderson DJ (2000) Is a joint moment-based cost function associated with preferred cycling cadence? J Biomech 33:173–180PubMedCrossRef
Zurück zum Zitat Mense S (1996) Group III and IV receptors in skeletal muscle: are they specific or polymodal? Prog Brain Res 113:83–100PubMed Mense S (1996) Group III and IV receptors in skeletal muscle: are they specific or polymodal? Prog Brain Res 113:83–100PubMed
Zurück zum Zitat Mollard P, Woorons X, Letournel M, Lamberto C, Favret F, Pichon A, Beaudry M, Richalet J-P (2007) Determinants of maximal oxygen uptake in moderate acute hypoxia in endurance athletes. Eur J Appl Physiol 100:663–673PubMedCrossRef Mollard P, Woorons X, Letournel M, Lamberto C, Favret F, Pichon A, Beaudry M, Richalet J-P (2007) Determinants of maximal oxygen uptake in moderate acute hypoxia in endurance athletes. Eur J Appl Physiol 100:663–673PubMedCrossRef
Zurück zum Zitat Moussay S, Dosseville F, Gauthier A, Larue J, Sesboüe B, Davenne D (2002) Circadian rhythms during cycling exercise and finger-tapping task. Chronobiol Int 19:1137–1149PubMedCrossRef Moussay S, Dosseville F, Gauthier A, Larue J, Sesboüe B, Davenne D (2002) Circadian rhythms during cycling exercise and finger-tapping task. Chronobiol Int 19:1137–1149PubMedCrossRef
Zurück zum Zitat Rotto DM, Kaufman MP (1988) Effect of metabolic products of muscular contraction on discharge of group III and IV afferents. J Appl Physiol 64:2306–2313PubMed Rotto DM, Kaufman MP (1988) Effect of metabolic products of muscular contraction on discharge of group III and IV afferents. J Appl Physiol 64:2306–2313PubMed
Zurück zum Zitat Sakamoto M, Tazoe T, Nakajima T, Endoh T, Shiozawa S, Komiyama T (2007) Voluntary changes in leg cadence modulate arm cadence during simultaneous arm and leg cycling. Exp Brain Res 176:188–192PubMedCrossRef Sakamoto M, Tazoe T, Nakajima T, Endoh T, Shiozawa S, Komiyama T (2007) Voluntary changes in leg cadence modulate arm cadence during simultaneous arm and leg cycling. Exp Brain Res 176:188–192PubMedCrossRef
Zurück zum Zitat Sarre G, Lepers R, Maffiuletti N, Millet G, Martin A (2003) Influence of cycling cadence on neuromuscular activity of the knee extensors in humans. Eur J Appl Physiol 88:476–479PubMedCrossRef Sarre G, Lepers R, Maffiuletti N, Millet G, Martin A (2003) Influence of cycling cadence on neuromuscular activity of the knee extensors in humans. Eur J Appl Physiol 88:476–479PubMedCrossRef
Zurück zum Zitat Takaishi T, Yamamoto T, Ono T, Ito T, Moritani T (1998) Neuromuscular, metabolic, and kinetic adaptations for skilled pedaling performance in cyclists. Med Sci Sports Exerc 30:442–449PubMed Takaishi T, Yamamoto T, Ono T, Ito T, Moritani T (1998) Neuromuscular, metabolic, and kinetic adaptations for skilled pedaling performance in cyclists. Med Sci Sports Exerc 30:442–449PubMed
Zurück zum Zitat Van de Crommert HWAA, Mulder T, Duysens J (1998) Neural control of locomotion: sensory control of the central pattern generator and its relation to treadmill training. Gait Posture 7:251–263PubMedCrossRef Van de Crommert HWAA, Mulder T, Duysens J (1998) Neural control of locomotion: sensory control of the central pattern generator and its relation to treadmill training. Gait Posture 7:251–263PubMedCrossRef
Zurück zum Zitat Wehrlin JP, Hallén J (2006) Linear decrease in VO2max and performance with increasing altitude in endurance athletes. Eur J Appl Physiol 96:404–412PubMedCrossRef Wehrlin JP, Hallén J (2006) Linear decrease in VO2max and performance with increasing altitude in endurance athletes. Eur J Appl Physiol 96:404–412PubMedCrossRef
Zurück zum Zitat Zehr EP (2005) Neural control of rhythmic human movement: the common core hypothesis. Exerc Sport Sci Rev 33:54–60PubMed Zehr EP (2005) Neural control of rhythmic human movement: the common core hypothesis. Exerc Sport Sci Rev 33:54–60PubMed
Zurück zum Zitat Zehr EP, Haridas C (2003) Modulation of cutaneous reflexes in arm muscles during walking: further evidence of similar control mechanisms for rhythmic human arm and leg movements. Exp Brain Res 149:260–266PubMed Zehr EP, Haridas C (2003) Modulation of cutaneous reflexes in arm muscles during walking: further evidence of similar control mechanisms for rhythmic human arm and leg movements. Exp Brain Res 149:260–266PubMed
Zurück zum Zitat Zehr EP, Duysens J (2004) Regulation of arm and leg movement during human locomotion. Neuroscientist 10:347–361PubMedCrossRef Zehr EP, Duysens J (2004) Regulation of arm and leg movement during human locomotion. Neuroscientist 10:347–361PubMedCrossRef
Metadaten
Titel
Evidence for freely chosen pedalling rate during submaximal cycling to be a robust innate voluntary motor rhythm
verfasst von
Ernst Albin Hansen
Ann Elisabeth Ohnstad
Publikationsdatum
01.04.2008
Verlag
Springer-Verlag
Erschienen in
Experimental Brain Research / Ausgabe 3/2008
Print ISSN: 0014-4819
Elektronische ISSN: 1432-1106
DOI
https://doi.org/10.1007/s00221-007-1240-5

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