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精英场地短距离自行车运动员无疲劳状态下的力-速度和功率-速度曲线:持续时间、传动比和踏频的影响

Fatigue-Free Force-Velocity and Power-Velocity Profiles for Elite Track Sprint Cyclists: The Influence of Duration, Gear Ratio and Pedalling Rates.

作者信息

Dunst Anna Katharina, Hesse Clemens, Ueberschär Olaf, Holmberg Hans-Christer

机构信息

Department of Endurance Sports, Institute for Applied Training Science, 04109 Leipzig, Germany.

German Cycling Federation, 60528 Frankfurt, Germany.

出版信息

Sports (Basel). 2022 Aug 31;10(9):130. doi: 10.3390/sports10090130.

Abstract

Background: Maximal force-velocity (F/v) profiles for track cyclists are commonly derived from ergometer sprints using an isovelocity or isoinertial approach. Previously, an attempt was made to derive maximal F/v profiles from a single maximal 65-m sprint on the cycling track. Hypothesising that this approach may not accurately reflect the fatigue-free F/v profile, we propose an alternative procedure and compare it to the previous method. Moreover, we test for the impact of gear ratio on diagnostic results. Methods: Twelve elite track cyclists completed a high-cadence low-resistance pedalling test on a freestanding roller (motoric test) and two series of three maximal 65-m sprints on a cycling track with different gear ratios. F/v profiles were calculated based on the measured crank force and cadence either during the first 6−7 revolutions (≤6 s) on the track (model I) or were derived from the first 3−4 revolutions (≤3 s) on the track combined with 1 or 2 fatigue-free cycles at cadences above 160 rpm from the motoric test (model II). Results: Although both models exhibit high-to-excellent linearity between force and velocity, the extrapolated isometric force was higher (1507.51 ± 257.60 N and 1384.35 ± 276.84 N; p < 0.002; d = 2.555) and the slope steeper (−6.78 ± 1.17 and −5.24 ± 1.11; p < 0.003, d = −2.401) with model I. An ICC of 1.00 indicates excellent model consistency when comparing the F/v profiles (model II) derived from the different geared sprints. Conclusions: Assuring fatigue-free measurements and including high-cadence data points in the calculations provide valid maximal F/v and P/v profiles from a single acceleration-sprint independent of gear ratio.

摘要

背景

场地自行车运动员的最大力-速度(F/v)曲线通常通过使用等速或等惯性方法的测力计冲刺来得出。此前,曾尝试从在自行车赛道上进行的一次65米最大冲刺中得出最大F/v曲线。鉴于这种方法可能无法准确反映无疲劳的F/v曲线,我们提出了一种替代程序,并将其与先前的方法进行比较。此外,我们测试了传动比对阵断结果的影响。方法:12名精英场地自行车运动员在独立的滚筒上完成了一次高踏频低阻力蹬踏测试(动力测试),以及在自行车赛道上进行的两组,每组三次不同传动比的最大65米冲刺。F/v曲线根据在赛道上最初6至7圈(≤6秒)的测量曲柄力和踏频计算得出(模型I),或者从赛道上最初3至4圈(≤3秒)结合动力测试中高于160转/分钟的1或2个无疲劳周期得出(模型II)。结果:尽管两个模型在力和速度之间均呈现出高至极佳的线性关系,但模型I的外推等长力更高(1507.51±257.60牛和1384.35±276.84牛;p<0.002;d=2.555),斜率更陡(-6.78±1.17和-5.24±1.11;p<0.003,d=-2.401)。当比较不同传动比冲刺得出的F/v曲线(模型II)时,组内相关系数为1.00表明模型一致性极佳。结论:确保无疲劳测量并在计算中纳入高踏频数据点,可从单次加速冲刺中得出有效的最大F/v和P/v曲线,且与传动比无关。

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