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Effect of the Rotor Crank System on Cycling Performance

机译:转子曲柄系统对自行车性能的影响

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摘要

The aim of this study was to evaluate the impact of a novel crank system on laboratory time-trial cycling performance. The Rotor system makes each pedal independent from the other so that the cranks are no longer fixed at 180°. Twelve male competitive but non-elite cyclists (mean ± s: 35 ± 7 yr, Wmax = 363 ± 38 W, VO2peak = 4.5 ± 0.3 L·min-1) completed 6-weeks of their normal training using either a conventional (CON) or the novel Rotor (ROT) pedal system. All participants then completed two 40.23-km time-trials on an air-braked ergometer, one using CON and one using ROT. Mean performance speeds were not different between trials (CON = 41.7 km·h-1 vs. ROT = 41.6 km·h-1, P > 0.05). Indeed, the pedal system used during the time-trials had no impact on any of the measured variables (power output, cadence, heart rate, VO2, RER, gross efficiency). Furthermore, the ANOVA identified no significant interaction effect between main effects (Time-trial crank system*Training crank system, P > 0.05). To the authors’ knowledge, this is the first study to examine the effects of the Rotor system on endurance performance rather than endurance capacity. These results suggest that the Rotor system has no measurable impact on time-trial performance. However, further studies should examine the importance of the Rotor ‘regulation point’ and the suggestion that the Rotor system has acute ergogenic effects if used infrequently.Key points class="unordered" style="list-style-type:disc">The Rotor crank system does not improve gross efficiency in well-trained cyclists.The Rotor crank system has no measurable impact on laboratory 40.23-km time-trial performance.A 6-week period of familiarisation does not increase the effectiveness of the Rotor crank system.
机译:这项研究的目的是评估新型曲柄系统对实验室时间试验循环性能的影响。转子系统使每个踏板彼此独立,因此曲柄不再固定在180°。十二名男性竞技但非精英自行车运动员(平均±s:35±7岁,Wmax = 363±38 W,VO2peak = 4.5±0.3 L·min -1 )完成了正常比赛的6周使用常规(CON)或新型转子(ROT)踏板系统进行训练。然后,所有参加者在气力测功计上完成了两次40.23公里的时间试验,一次使用CON,另一次使用ROT。试验之间的平均表现速度没有差异(CON = 41.7 km·h -1 vs. ROT = 41.6 km·h -1 ,P> 0.05)。确实,在计时赛中使用的踏板系统对任何测量变量(动力输出,踏频,心率,VO2,RER,总效率)没有影响。此外,方差分析确定主要作用之间没有显着的相互作用作用(时间试验曲柄系统*训练曲柄系统,P> 0.05)。据作者所知,这是第一个研究转子系统对耐力性能而非耐力性能影响的研究。这些结果表明,转子系统对时间试验性能没有可测量的影响。但是,进一步的研究应该检查转子“调节点”的重要性,并建议转子系统如果不经常使用会产生严重的人为作用。要点 class =“ unordered” style =“ list-style-type:disc” > <!-list-behavior =无序前缀-word = mark-type = disc max-label-size = 0-> 转子曲柄系统无法提高训练有素的自行车手的总效率。 转子曲柄系统对实验室40.23公里的计时性能没有可测量的影响。 熟悉6周不会增加转子曲柄系统的有效性。

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