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Cycling performance and mechanical variables using a new prototype chainring

机译:使用新型原型链轮的自行车性能和机械变量

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摘要

The primary aim of our study was to examine supra-maximal cycling performance and related mechanical variables in trained cyclists using a new prototype chainring (PC) designed to produce a higher mean net torque (T N mean) than a standard chainring (SC). The main feature of the PC is that crank-arm alignment and lever-arm length change as a function of the crank angle during the pedaling cycle. The PC presents two features theorized to effect cycling performance: (1) out of line of pedal cranks resulting in an decrease in the dead points, and (2) a change in crank arm length inducing a torque different from that of SC during the down- and up-stroke of the pedaling cycle. To investigate this theory, we examined eight male cyclists who performed a 1-km “all-out” cycling test in the following order: SC, PC, and SC. Performance was measured as the time (s) to complete the 1-km test. Mechanical variables included torque (N m?1), crank velocity (rad s?1), and power output (W). We performed our statistical analysis using a two-way ANOVA for repeated measurements and Newman–Keuls post hoc assessment. Our results showed that performance was similar for SC (69.41 ± 6.69 s) and PC (73.33 ± 4.58 s). Torque, crank velocity, and power output were also similar throughout (P > 0.05). We conclude that despite the theoretically benefits proposed by the inventors the new PC investigated in our study failed to improve cycling performance or mechanical variables during a supramaximal test when compared with SC.
机译:我们研究的主要目的是使用新的原型链轮(PC)来研究训练有素的自行车手的超最大自行车性能和相关的机械变量,该原型链轮的设计可产生比标准链轮更高的平均净扭矩(TN mean )。 SC)。 PC的主要功能是在踩踏过程中曲柄的对准和杠杆臂的长度根据曲柄角的变化而变化。 PC具有两个理论上可影响骑行性能的功能:(1)踏板曲柄偏离直线,导致死点减少;(2)曲柄臂长度的变化产生的扭矩与SC下降时的扭矩不同-踩踏板。为了研究这一理论,我们检查了八名男性自行车手,他们按以下顺序进行了1公里的“全面”自行车测试:SC,PC和SC。以完成1公里测试的时间(秒)来衡量性能。机械变量包括扭矩(N m?1 ),曲柄速度(rad s?1 )和功率输出(W)。我们使用双向方差分析(ANOVA)进行重复测量和Newman–Keuls事后评估,进行了统计分析。我们的结果表明,SC(69.41±6.69 s)和PC(73.33±4.58 s)的性能相似。扭矩,曲柄速度和功率输出在整个过程中也相似(P> 0.05)。我们得出的结论是,尽管发明人提出了理论上的好处,但与SC相比,我们在本研究中研究的新型PC在超最大测试期间未能改善循环性能或机械变量。

著录项

  • 来源
    《European Journal of Applied Physiology》 |2007年第6期|721-726|共6页
  • 作者单位

    Laboratoire Efficience et Déficience Motrices EA 2991 Faculté des Sciences du Sport Université de Montpellier 1 700 Avenue du Pic Saint Loup 34090 Montpellier France;

    Laboratoire Efficience et Déficience Motrices EA 2991 Faculté des Sciences du Sport Université de Montpellier 1 700 Avenue du Pic Saint Loup 34090 Montpellier France;

    Laboratoire Efficience et Déficience Motrices EA 2991 Faculté des Sciences du Sport Université de Montpellier 1 700 Avenue du Pic Saint Loup 34090 Montpellier France;

    Laboratoire Efficience et Déficience Motrices EA 2991 Faculté des Sciences du Sport Université de Montpellier 1 700 Avenue du Pic Saint Loup 34090 Montpellier France;

    Laboratoire Efficience et Déficience Motrices EA 2991 Faculté des Sciences du Sport Université de Montpellier 1 700 Avenue du Pic Saint Loup 34090 Montpellier France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cycling performance; Prototype chainring; Pedaling; Sprint; Fatigue index;

    机译:骑车性能;原型链;踏板;冲刺;疲劳指数;

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