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Published in: European Journal of Applied Physiology 5/2006

01-11-2006 | Original Article

Influence of climbing style on physiological responses during indoor rock climbing on routes with the same difficulty

Authors: Bas de Geus, Seán Villanueva O’Driscoll, Romain Meeusen

Published in: European Journal of Applied Physiology | Issue 5/2006

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Abstract

The objectives of this study were to (1) continuously assess oxygen uptake and heart rate; (2) quantify the extent to which maximal whole-body cardiorespiratory capacity is utilized during climbing on four routes with the same difficulty but different steepness and/or displacement. Fifteen expert climbers underwent a maximal graded exercise test (MT), on a treadmill, in order to assess their maximal physiological capacity. After MT, four sport routes, equal in difficulty rating but different in steepness and/or displacement, were climbed. Oxygen uptake and heart rate were continuously measured. Respiratory exchange ratio (RER) was calculated. Blood lactate concentration and rating of perceived exertion (RPE) were taken before and directly after climbing. Data were expressed as peak values (HRpeak, VO2peak and RERpeak) and as averages over the entire climb (HRavg, VO2avg and RERavg). During climbing, higher HRpeak and HRavg were found in routes with a vertical upward displacement in comparison to traversing routes with a horizontal displacement. The average absolute and relative oxygen uptake was significantly lower in the traversing route in comparison with the three other routes. The traverse is done at a lower percent of the running maximum. Comparing four routes with the same difficulty but different steepness and/or displacement shows that (1) routes with an upward displacement causes the highest peak and average heart rate; (2) routes with a vertical displacement on overhanging wall is physiologically the most demanding; (3) the traverse is physiologically the less demanding.
Literature
go back to reference Åstrand I, Gurahay A, Wahren J (1968) Circulatory responses to arm exercise with different arm positions. J Appl Physiol 25:528–532PubMed Åstrand I, Gurahay A, Wahren J (1968) Circulatory responses to arm exercise with different arm positions. J Appl Physiol 25:528–532PubMed
go back to reference Billat V, Palleja P, Charlaix T, Rizzardo P, Janel N (1995) Energy specificity of rock climbing and aerobic capacity in competitive sport rock climbers. J Sports Med Phys Fit 35(1):20–24 Billat V, Palleja P, Charlaix T, Rizzardo P, Janel N (1995) Energy specificity of rock climbing and aerobic capacity in competitive sport rock climbers. J Sports Med Phys Fit 35(1):20–24
go back to reference Borg G (1962) Reliability and validity of a physical work test. Acta Physiol Scand 55:33–36 Borg G (1962) Reliability and validity of a physical work test. Acta Physiol Scand 55:33–36
go back to reference Hauber C, Sharp RL, Franke WD (1997) Heart rate response to submaximal and maximal workloads during running and swimming. Int J Sports Med 18(5):347–353PubMed Hauber C, Sharp RL, Franke WD (1997) Heart rate response to submaximal and maximal workloads during running and swimming. Int J Sports Med 18(5):347–353PubMed
go back to reference Mermier CM, Robergs RA, McMinn SM, Heyward VH (1997) Energy expenditure and physiological responses during indoor rock climbing. Br J Sports Med 31(3):224–228PubMedCrossRef Mermier CM, Robergs RA, McMinn SM, Heyward VH (1997) Energy expenditure and physiological responses during indoor rock climbing. Br J Sports Med 31(3):224–228PubMedCrossRef
go back to reference Morgan D (1998) Up the wall: the impact of the development of climbing walls on British rock climbing. In: Collins MF, Cooper IS (eds) Leisure management issues and applications. CAB International, Wallingford, pp 225–265 Morgan D (1998) Up the wall: the impact of the development of climbing walls on British rock climbing. In: Collins MF, Cooper IS (eds) Leisure management issues and applications. CAB International, Wallingford, pp 225–265
go back to reference Noé F, Quaine F, Martin L (2001) Influence of steep gradient supporting wall in rock climbing: biomechanical analysis. Gait Posture 13:86–94PubMedCrossRef Noé F, Quaine F, Martin L (2001) Influence of steep gradient supporting wall in rock climbing: biomechanical analysis. Gait Posture 13:86–94PubMedCrossRef
go back to reference Robergs RA, Burnett AF (2003) Methods used to process data from indirect calorimetry and their application to VO2max. JEPonline 6(2):44–57 Robergs RA, Burnett AF (2003) Methods used to process data from indirect calorimetry and their application to VO2max. JEPonline 6(2):44–57
go back to reference Sheel AW, Seddon N, Knight A, McKenzie DC, Warburton DER (2003) Physiological responses to indoor rock-climbing and their relationship to maximal cycle ergometry. Med Sci Sports Exerc 35(7):1225–1231PubMedCrossRef Sheel AW, Seddon N, Knight A, McKenzie DC, Warburton DER (2003) Physiological responses to indoor rock-climbing and their relationship to maximal cycle ergometry. Med Sci Sports Exerc 35(7):1225–1231PubMedCrossRef
go back to reference Spelman CC, Pate RR, Macera CA, Ward DS (1993) Self-selected exercise intensity of habitual walkers. Med Sci Sports Exerc 25(10):1174–1179PubMed Spelman CC, Pate RR, Macera CA, Ward DS (1993) Self-selected exercise intensity of habitual walkers. Med Sci Sports Exerc 25(10):1174–1179PubMed
go back to reference Wasserman K, Hansen JE, Sue DY, Casaburi R, Whipp BJ (1999) Measurements during integrative cardiopulmonary exercise testing. In: Weinberg R (ed) Principles of exercise testing and interpretation, 3rd edn. Lippincott Williams & Wilkins, Philadelphia Wasserman K, Hansen JE, Sue DY, Casaburi R, Whipp BJ (1999) Measurements during integrative cardiopulmonary exercise testing. In: Weinberg R (ed) Principles of exercise testing and interpretation, 3rd edn. Lippincott Williams & Wilkins, Philadelphia
go back to reference Watts PB, Drobish KM (1998) Physiological responses to simulated rock climbing at different angles. Med Sci Sports Exerc 30(7):1118–1122PubMedCrossRef Watts PB, Drobish KM (1998) Physiological responses to simulated rock climbing at different angles. Med Sci Sports Exerc 30(7):1118–1122PubMedCrossRef
go back to reference Watts PB, Daggett M, Gallagher P, Wilkins B (2000) Metabolic response during sport rock climbing and the effects of active versus passive recovery. Int J Sports Med 21:185–190PubMedCrossRef Watts PB, Daggett M, Gallagher P, Wilkins B (2000) Metabolic response during sport rock climbing and the effects of active versus passive recovery. Int J Sports Med 21:185–190PubMedCrossRef
go back to reference Wilkins BW, Watts PB, Wilcox A (1996) Metabolic responses in expert sport rock climbers. Med Sci Sports Exerc 28:S159 Wilkins BW, Watts PB, Wilcox A (1996) Metabolic responses in expert sport rock climbers. Med Sci Sports Exerc 28:S159
Metadata
Title
Influence of climbing style on physiological responses during indoor rock climbing on routes with the same difficulty
Authors
Bas de Geus
Seán Villanueva O’Driscoll
Romain Meeusen
Publication date
01-11-2006
Publisher
Springer-Verlag
Published in
European Journal of Applied Physiology / Issue 5/2006
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-006-0287-5

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