Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females

Detalhes bibliográficos
Autor(a) principal: Doré, Eric
Data de Publicação: 2001
Outros Autores: Bedu, Mário, França, Nanci Maria de, Van Praagh, Emmanuel
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UCB
Texto Completo: http://hdl.handle.net/123456789/209
https://repositorio.ucb.br:9443/jspui/handle/123456789/7451
Resumo: The purpose of this study was to determine whether the relationships between short-term power and body dimensions in young females were similar whatever the age of the individuals. A cohort of 189 prepubescent (mean age 9.5 years), adolescent (mean age 14.4 years) and young adult (mean age 18.2 years) females performed three all-out sprints on a friction-loaded cycle ergometer against three braking forces corresponding to applied loads of 25, 50 and 75 g.kg-1 body mass (BM). For each sprint, peak power including flywheel inertia was calculated. Results showed that a braking load of 75 g.kg-1 BM was too high for prepubescent and adolescent girls. Therefore, when measuring short-term cycling performance in heterogeneous female populations, a braking load of 50 g.kg-1 BM (0.495 N.kg-1 BM) is recommended. During growth, cycling peak power (CPP; defined as the highest peak power obtained during the three sprints) increased, as did total BM, fat-free mass (FFM) and lean leg volume (LLV) (P < 0.001). Analysis of covariance revealed that the slopes of the linear relationships between CPP and biometric characteristics were similar in the three groups (P > 0.7 for the CPP/BM and CPP/FFM relationships, and P > 0.2 for the CPP/LLV relationship). However, the adjusted means were always significantly higher in young women (P < 0.001) compared with both of the other groups. Although differences in performance during anaerobic cycling in growing females are primarily dependent upon body dimensions, other as yet undetermined factors may be involved during late adolescence.
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spelling Doré, EricBedu, MárioFrança, Nanci Maria deVan Praagh, Emmanuel2016-10-10T03:51:32Z2016-10-10T03:51:32Z2001DORÉ, Eric et al. Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females. European Journal of Applied Physiology, v.84, n.5, p.476-481, 2001.http://hdl.handle.net/123456789/209https://repositorio.ucb.br:9443/jspui/handle/123456789/7451The purpose of this study was to determine whether the relationships between short-term power and body dimensions in young females were similar whatever the age of the individuals. A cohort of 189 prepubescent (mean age 9.5 years), adolescent (mean age 14.4 years) and young adult (mean age 18.2 years) females performed three all-out sprints on a friction-loaded cycle ergometer against three braking forces corresponding to applied loads of 25, 50 and 75 g.kg-1 body mass (BM). For each sprint, peak power including flywheel inertia was calculated. Results showed that a braking load of 75 g.kg-1 BM was too high for prepubescent and adolescent girls. Therefore, when measuring short-term cycling performance in heterogeneous female populations, a braking load of 50 g.kg-1 BM (0.495 N.kg-1 BM) is recommended. During growth, cycling peak power (CPP; defined as the highest peak power obtained during the three sprints) increased, as did total BM, fat-free mass (FFM) and lean leg volume (LLV) (P < 0.001). Analysis of covariance revealed that the slopes of the linear relationships between CPP and biometric characteristics were similar in the three groups (P > 0.7 for the CPP/BM and CPP/FFM relationships, and P > 0.2 for the CPP/LLV relationship). However, the adjusted means were always significantly higher in young women (P < 0.001) compared with both of the other groups. Although differences in performance during anaerobic cycling in growing females are primarily dependent upon body dimensions, other as yet undetermined factors may be involved during late adolescence.Made available in DSpace on 2016-10-10T03:51:32Z (GMT). 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dc.title.pt_BR.fl_str_mv Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females
title Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females
spellingShingle Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females
Doré, Eric
Cycling peak power
Young Females
Flywheel inertia
Lean leg volume
title_short Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females
title_full Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females
title_fullStr Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females
title_full_unstemmed Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females
title_sort Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females
author Doré, Eric
author_facet Doré, Eric
Bedu, Mário
França, Nanci Maria de
Van Praagh, Emmanuel
author_role author
author2 Bedu, Mário
França, Nanci Maria de
Van Praagh, Emmanuel
author2_role author
author
author
dc.contributor.author.fl_str_mv Doré, Eric
Bedu, Mário
França, Nanci Maria de
Van Praagh, Emmanuel
dc.subject.por.fl_str_mv Cycling peak power
Young Females
Flywheel inertia
Lean leg volume
topic Cycling peak power
Young Females
Flywheel inertia
Lean leg volume
dc.description.abstract.por.fl_txt_mv The purpose of this study was to determine whether the relationships between short-term power and body dimensions in young females were similar whatever the age of the individuals. A cohort of 189 prepubescent (mean age 9.5 years), adolescent (mean age 14.4 years) and young adult (mean age 18.2 years) females performed three all-out sprints on a friction-loaded cycle ergometer against three braking forces corresponding to applied loads of 25, 50 and 75 g.kg-1 body mass (BM). For each sprint, peak power including flywheel inertia was calculated. Results showed that a braking load of 75 g.kg-1 BM was too high for prepubescent and adolescent girls. Therefore, when measuring short-term cycling performance in heterogeneous female populations, a braking load of 50 g.kg-1 BM (0.495 N.kg-1 BM) is recommended. During growth, cycling peak power (CPP; defined as the highest peak power obtained during the three sprints) increased, as did total BM, fat-free mass (FFM) and lean leg volume (LLV) (P < 0.001). Analysis of covariance revealed that the slopes of the linear relationships between CPP and biometric characteristics were similar in the three groups (P > 0.7 for the CPP/BM and CPP/FFM relationships, and P > 0.2 for the CPP/LLV relationship). However, the adjusted means were always significantly higher in young women (P < 0.001) compared with both of the other groups. Although differences in performance during anaerobic cycling in growing females are primarily dependent upon body dimensions, other as yet undetermined factors may be involved during late adolescence.
dc.description.version.pt_BR.fl_txt_mv Sim
dc.description.status.pt_BR.fl_txt_mv Publicado
description The purpose of this study was to determine whether the relationships between short-term power and body dimensions in young females were similar whatever the age of the individuals. A cohort of 189 prepubescent (mean age 9.5 years), adolescent (mean age 14.4 years) and young adult (mean age 18.2 years) females performed three all-out sprints on a friction-loaded cycle ergometer against three braking forces corresponding to applied loads of 25, 50 and 75 g.kg-1 body mass (BM). For each sprint, peak power including flywheel inertia was calculated. Results showed that a braking load of 75 g.kg-1 BM was too high for prepubescent and adolescent girls. Therefore, when measuring short-term cycling performance in heterogeneous female populations, a braking load of 50 g.kg-1 BM (0.495 N.kg-1 BM) is recommended. During growth, cycling peak power (CPP; defined as the highest peak power obtained during the three sprints) increased, as did total BM, fat-free mass (FFM) and lean leg volume (LLV) (P < 0.001). Analysis of covariance revealed that the slopes of the linear relationships between CPP and biometric characteristics were similar in the three groups (P > 0.7 for the CPP/BM and CPP/FFM relationships, and P > 0.2 for the CPP/LLV relationship). However, the adjusted means were always significantly higher in young women (P < 0.001) compared with both of the other groups. Although differences in performance during anaerobic cycling in growing females are primarily dependent upon body dimensions, other as yet undetermined factors may be involved during late adolescence.
publishDate 2001
dc.date.issued.fl_str_mv 2001
dc.date.accessioned.fl_str_mv 2016-10-10T03:51:32Z
dc.date.available.fl_str_mv 2016-10-10T03:51:32Z
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dc.identifier.citation.fl_str_mv DORÉ, Eric et al. Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females. European Journal of Applied Physiology, v.84, n.5, p.476-481, 2001.
dc.identifier.uri.fl_str_mv http://hdl.handle.net/123456789/209
https://repositorio.ucb.br:9443/jspui/handle/123456789/7451
identifier_str_mv DORÉ, Eric et al. Anaerobic cycling performance characteristics in prepubescent, adolescent and young adult females. European Journal of Applied Physiology, v.84, n.5, p.476-481, 2001.
url http://hdl.handle.net/123456789/209
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