Kamba Mutsumi, Naito Hisashi, Ozaki Hayao, Machida Shuichi, Katamoto Shizuo
Graduate School of Health and Sports Science, Juntendo University, 1-1 Hirakagakuendai, Inzai, Chiba 270-1695, Japan.
Faculty of Human Ecology, Wayo Woman's University, 2-3-1 Konodai, Ichikawa, Chiba 272-8533, Japan.
Sports (Basel). 2022 Dec 23;11(1):5. doi: 10.3390/sports11010005.
Gross efficiency (GE) and the index of pedal force effectiveness (IFE) are important factors that enhance cyclists' performance; however, the effects of changing pedal force (gear ratio) and cadence on these indices while riding on a road racing bicycle are poorly investigated. This study aimed to examine the effect of changing gear ratio or cadence on GE and IFE using a road racing bicycle. Nine male cyclists completed graded submaximal cycling tests (five stages of 4 min submaximal cycling sessions with 1 min passive rest intervals). The work rate of each stage was determined using two principles: changing gear ratio at a fixed cadence and changing cadence at a fixed gear ratio. We determined GE and IFE using respiratory variables and pedal reaction forces, respectively. Increasing the gear ratio improved GE, and was associated with the IFE. Although increasing the cadence slightly improved GE from the initial level, the increased values then mostly maintained. IFE was almost stable even when cadence increased. Moreover, no significant correlation was observed between the changes in GE and IFE accompanied by increasing cadence. Our data indicate that an increasing gear ratio, but not cadence, may affect GE and IFE while riding on a road racing bicycle.
总效率(GE)和踏蹬力效率指数(IFE)是提高自行车骑行者表现的重要因素;然而,在公路赛车骑行过程中,改变踏蹬力(传动比)和踏频对这些指标的影响鲜有研究。本研究旨在使用公路赛车考察改变传动比或踏频对GE和IFE的影响。九名男性骑行者完成了分级次最大强度骑行测试(五个阶段,每个阶段进行4分钟的次最大强度骑行,中间有1分钟的被动休息间隔)。每个阶段的工作强度根据两个原则确定:在固定踏频下改变传动比,以及在固定传动比下改变踏频。我们分别使用呼吸变量和踏蹬反作用力来确定GE和IFE。增大传动比可提高GE,并与IFE相关。虽然提高踏频会使GE较初始水平略有提高,但随后增加的值大多保持稳定。即使踏频增加,IFE也几乎保持稳定。此外,随着踏频增加,GE和IFE的变化之间未观察到显著相关性。我们的数据表明,在公路赛车骑行时,增大传动比而非踏频可能会影响GE和IFE。