Vinetti Giovanni, Pollastri Luca, Lanfranconi Francesca, Bruseghini Paolo, Taboni Anna, Ferretti Guido
Department of Molecular and Translational Medicine, University of Brescia, Brescia, Italy.
Institute of Mountain Emergency Medicine, Eurac Research, Bolzano, Italy.
J Strength Cond Res. 2023 Apr 1;37(4):866-871. doi: 10.1519/JSC.0000000000004350. Epub 2022 Aug 25.
Vinetti, G, Pollastri, L, Lanfranconi, F, Bruseghini, P, Taboni, A, and Ferretti, G. Modeling the power-duration relationship in professional cyclists during the Giro d'Italia. J Strength Cond Res 37(4): 866-871, 2023-Multistage road bicycle races allow the assessment of maximal mean power output (MMP) over a wide spectrum of durations. By modeling the resulting power-duration relationship, the critical power ( CP ) and the curvature constant ( W' ) can be calculated and, in the 3-parameter (3-p) model, also the maximal instantaneous power ( P0 ). Our aim is to test the 3-p model for the first time in this context and to compare it with the 2-parameter (2-p) model. A team of 9 male professional cyclists participated in the 2014 Giro d'Italia with a crank-based power meter. The maximal mean power output between 10 seconds and 10 minutes were fitted with 3-p, whereas those between 1 and 10 minutes with the 2- model. The level of significance was set at p < 0.05. 3-p yielded CP 357 ± 29 W, W' 13.3 ± 4.2 kJ, and P0 1,330 ± 251 W with a SEE of 10 ± 5 W, 3.0 ± 1.7 kJ, and 507 ± 528 W, respectively. 2-p yielded a CP and W' slightly higher (+4 ± 2 W) and lower (-2.3 ± 1.1 kJ), respectively ( p < 0.001 for both). Model predictions were within ±10 W of the 20-minute MMP of time-trial stages. In conclusion, during a single multistage racing event, the 3-p model accurately described the power-duration relationship over a wider MMP range without physiologically relevant differences in CP with respect to 2-p, potentially offering a noninvasive tool to evaluate competitive cyclists at the peak of training.
维内蒂,G,波拉斯蒂,L,兰弗兰科尼,F,布鲁斯基尼,P,塔博尼,A,费雷蒂,G。模拟环意大利自行车赛期间职业自行车手的功率-持续时间关系。《力量与体能研究杂志》37(4): 866 - 871,2023年 - 多阶段公路自行车赛允许在广泛的持续时间范围内评估最大平均功率输出(MMP)。通过对由此产生的功率 - 持续时间关系进行建模,可以计算出临界功率(CP)和曲率常数(W'),并且在三参数(3 - p)模型中,还可以计算出最大瞬时功率(P0)。我们的目标是在此背景下首次测试3 - p模型,并将其与二参数(2 - p)模型进行比较。一支由9名男性职业自行车手组成的团队使用基于曲柄的功率计参加了2014年环意大利自行车赛。10秒至10分钟之间的最大平均功率输出用3 - p模型拟合,而1至10分钟之间的用2 - p模型拟合。显著性水平设定为p < 0.05。3 - p模型得出CP为357 ± 29瓦,W'为13.3 ± 4.2千焦,P0为1330 ± 251瓦,标准误差估计值(SEE)分别为10 ± 5瓦、3.0 ± 1.7千焦和507 ± 528瓦。2 - p模型得出的CP略高(+4 ± 2瓦),W'略低(-2.3 ± 1.1千焦)(两者p均< 0.001)。模型预测在计时赛阶段20分钟MMP的±10瓦范围内。总之,在单个多阶段赛车赛事中,3 - p模型在更宽的MMP范围内准确描述了功率 - 持续时间关系,与2 - p模型相比,CP在生理上无相关差异,这可能为评估处于训练巅峰的竞技自行车手提供一种非侵入性工具。