首页> 外文期刊>Journal of Strength and Conditioning Research >ANTHROPOMETRIC AND METABOLIC DETERMINANTS OF 6,000-M ROWING ERGOMETER PERFORMANCE IN INTERNATIONALLY COMPETITIVE ROWERS
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ANTHROPOMETRIC AND METABOLIC DETERMINANTS OF 6,000-M ROWING ERGOMETER PERFORMANCE IN INTERNATIONALLY COMPETITIVE ROWERS

机译:具有国际竞争力的行中6,000-M行生计性能的抗菌肽和代谢物决定因素

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摘要

The aim of this study was to examine the anthropometric and metabolic determinants of performance during 6,000-m of rowing on an ergometer. The sample comprised 25 internationally successful male heavyweight rowers (mean ± SD: age 22.2 ± 4.8 years, rowing experience 8.8 ± 4.6 years, stature 1.91 ± 0.05 m, body mass 91.7 ± 5.9 kg, maximal oxygen uptake 5.53 ± 0.30 L.min^sup -1^). The rowers completed an incremental maximal exercise test on a rowing ergometer and, within 2 weeks of this test, also completed a 6,000-m rowing ergometer time trial (mean ± SD: 1195.4 ± 36.1 seconds). The strongest correlates (r > 0.5, p < 0.05) with performance were lean body mass (r = -0.767), power output at ventilatory threshold (r = -0.743), power output at maximal oxygen uptake (r = -0.732), body mass (r = -0.693), chest girth (r = -0.598), relaxed arm girth (r = -0.574), forced vital capacity (r = -0.519), and arm span (r = -0.505). Stepwise multiple linear regression procedures indicated that the model comprising a combination of anthropometric and metabolic variables is the best predictor of performance (adjusted R^sup 2^ = 0.722), followed by models comprising anthropometric (adjusted R^sup 2^ = 0.575) and metabolic (adjusted R^sup 2^ = 0.530) variables alone. The results suggest that 6,000-m ergometer performance is determined mainly by power output at ventilatory threshold (58.7% of explained variance). Based on the obtained correlations and regression models, it can be concluded that rowers competing over a 6,000 m distance on a rowing ergometer should devote their training time to the improvement of lean body mass and to the improvement of power output corresponding to ventilatory threshold. [PUBLICATION ABSTRACT]
机译:这项研究的目的是检查在测力计上划船6,000米期间的人体测量学和代谢决定因素。该样本包括25位国际上成功的男性重量级划船者(平均±SD:年龄22.2±4.8岁,划船经验8.8±4.6年,身高1.91±0.05 m,体重91.7±5.9 kg,最大摄氧量5.53±0.30 L.min ^ sup -1 ^)。赛艇运动员在划船测力计上完成了增量式最大运动测试,并且在该测试的两周内还完成了6,000米划船测力计的计时试验(平均±SD:1195.4±36.1秒)。与性能最强的相关性(r> 0.5,p <0.05)是瘦体重(r = -0.767),通气阈值时的功率输出(r = -0.743),最大摄氧量时的功率输出(r = -0.732),体重(r = -0.693),胸围(r = -0.598),手臂松弛(r = -0.574),强制肺活量(r = -0.519)和臂展(r = -0.505)。逐步多元线性回归程序表明,包含人体测量和代谢变量组合的模型是性能的最佳预测指标(调整后的R ^ sup 2 ^ = 0.722),其次是包含人体测量的模型(调整后的R ^ sup 2 ^ = 0.575),并且单独的代谢变量(调整后的R ^ sup 2 ^ = 0.530)。结果表明,6,000米测功机的性能主要取决于通气阈值(解释差异的58.7%)下的功率输出。根据获得的相关性和回归模型,可以得出结论,在划船测功机上进行6,000 m距离比赛的赛艇运动员应将其训练时间用于瘦体重的改善和与通气阈值相对应的功率输出的改善。 [出版物摘要]

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  • 来源
    《Journal of Strength and Conditioning Research》 |2009年第6期|p.1851-1857|共7页
  • 作者

    Pavle Mikulic;

  • 作者单位

    PAVLE MIKULICHuman Performance Laboratory, School of Kinesiology, University of Zagreb, Zagreb, CroatiaThis project received no external financial or material support.Address correspondence to Pavle Mikulic, pavle.mikulic@kif.hr.23(6)/l851-1857Journal of Strength and Conditioning Research© 2009 National Strength and Conditioning Association;

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  • 入库时间 2022-08-17 23:33:29

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