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Quantification of brake data acquired with a brake power meter during simulated cross-country mountain bike racing

机译:在模拟越野山地自行车赛车期间用制动功率计获得制动数据的量化

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摘要

There is currently a dearth of information describing cycling performance outside of propulsive and physiological variables. The aim of the present study was to utilise a brake power meter to quantify braking during a multi-lap cross-country mountain bike time trial and to determine how braking affects performance. A significant negative association was determined between lap time and brake power (800.8 +/- 216.4W, mean +/- SD; r=-0.446; p 0.05) which was attributed to decreased brake work (p<0.05) and brake time (p<0.05) in both the front and rear brakes by the final lap. A multiple regression model incorporating braking and propulsion was able to explain more of the variance in lap time (r(2)=0.935) than propulsion alone (r(2)=0.826). The present study highlights that riders' braking contributes to mountain bike performance. As riders repeat a cross-country mountain bike track, they are able to change braking, which in turn can counterbalance a reduction in power output. Further research is required to understand braking better.
机译:目前有一种缺乏的信息,描述了推进和生理变量之外的循环性能。本研究的目的是利用制动功率计来量化在多圈越野山地自行车时间试验中的制动,并确定制动方式如何影响性能。在圈时间和制动功率(800.8 +/- 216.4W之间,确定了一个显着的负关联(平均值+/- SD; r = -0.446; p 0.05),其归因于制动工作减少(P <0.05)和制动时间( P <0.05)在最后一圈的前后制动器中。包含制动和推进的多元回归模型能够解释液体时间(R(2)= 0.935)的更多方差,而不是单独的推进(R(2)= 0.826)。目前的一项研究突出了骑手的制动促进山地自行车性能。随着骑手重复越野山地自行车轨道,它们能够改变制动,这又可以平衡功率输出的减少。需要进一步的研究来更好地理解制动。

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