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一种新型踏板设计对训练有素的自行车运动员最大输出功率和机械效率的影响。

Effect of a novel pedal design on maximal power output and mechanical efficiency in well-trained cyclists.

作者信息

Koninckx Erwin, van Leemputte Marc, Hespel Peter

机构信息

Department of Biomedical Kinesiology, Faculty of Kinesiology and Rehabilitation Sciences, KU Leuven, Leuven, Belgium.

出版信息

J Sports Sci. 2008 Aug;26(10):1015-23. doi: 10.1080/02640410801930184.

Abstract

In this study, we evaluated the effects of a novel pedal design, characterized by a downward and forward shift of the cleat fixing platform relative to the pedal axle, on maximal power output and mechanical efficiency in 22 well-trained cyclists. Maximal power output was measured during a series of short (5-s) intermittent sprints on an isokinetic cycle ergometer at cadences from 40 to 120 rev min(-1). Mechanical efficiency was evaluated during a submaximal incremental exercise test on a bicycle ergometer using continuous VO(2) and VCO(2) measurement. Similar tests with conventional pedals and the novel pedals, which were mounted on the individual racing bike of the participant, were randomized. Maximal power was greater with novel pedals than with conventional pedals (between 6.0%, s(x) = 1.5 at 40 rev min(-1) and 1.8%, s(x) = 0.7 at 120 rev min(-1); P = 0.01). Torque production between crank angles of 60 degrees and 150 degrees was higher with novel pedals than with conventional pedals (P = 0.004). The novel pedal design did not affect whole-body VO(2) or VCO(2). Mechanical efficiency was greater with novel pedals than with conventional pedals (27.2%, s(x) = 0.9 and 25.1%, s(x) = 0.9% respectively; P = 0.047; effect size = 0.9). In conclusion, the novel pedals can increase maximal power output and mechanical efficiency in well-trained cyclists.

摘要

在本研究中,我们评估了一种新型踏板设计(其特点是防滑钉固定平台相对于踏板轴向下和向前移动)对22名训练有素的自行车运动员最大输出功率和机械效率的影响。在等动自行车测力计上,以每分钟40至120转的踏频进行一系列短时间(5秒)间歇冲刺时测量最大输出功率。在自行车测力计上进行次最大递增运动测试期间,通过连续测量VO₂和VCO₂来评估机械效率。将安装在参与者个人赛车自行车上的传统踏板和新型踏板进行类似测试,并随机安排顺序。使用新型踏板时的最大输出功率高于使用传统踏板时的最大输出功率(在每分钟40转时高6.0%,标准误sx = 1.5;在每分钟120转时高1.8%,标准误sx = 0.7;P = 0.01)。新型踏板在曲柄角度60度至150度之间产生的扭矩高于传统踏板(P = 0.004)。新型踏板设计不影响全身的VO₂或VCO₂。新型踏板的机械效率高于传统踏板(分别为27.2%,标准误sx = 0.9和25.1%,标准误sx = 0.9%;P = 0.047;效应大小 = 0.9)。总之,新型踏板可提高训练有素的自行车运动员的最大输出功率和机械效率。

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