Fintelman D M, Sterling M, Hemida H, Li F-X
a School of Sport, Exercise and Rehabilitation Sciences , University of Birmingham , Birmingham , UK.
J Sports Sci. 2015;33(16):1730-7. doi: 10.1080/02640414.2015.1009936. Epub 2015 Feb 6.
To reduce aerodynamic resistance cyclists lower their torso angle, concurrently reducing Peak Power Output (PPO). However, realistic torso angle changes in the range used by time trial cyclists have not yet been examined. Therefore the aim of this study was to investigate the effect of torso angle on physiological parameters and frontal area in different commonly used time trial positions. Nineteen well-trained male cyclists performed incremental tests on a cycle ergometer at five different torso angles: their preferred torso angle and at 0, 8, 16 and 24°. Oxygen uptake, carbon dioxide expiration, minute ventilation, gross efficiency, PPO, heart rate, cadence and frontal area were recorded. The frontal area provides an estimate of the aerodynamic drag. Overall, results showed that lower torso angles attenuated performance. Maximal values of all variables, attained in the incremental test, decreased with lower torso angles (P < 0.001). The 0° torso angle position significantly affected the metabolic and physiological variables compared to all other investigated positions. At constant submaximal intensities of 60, 70 and 80% PPO, all variables significantly increased with increasing intensity (P < 0.0001) and decreasing torso angle (P < 0.005). This study shows that for trained cyclists there should be a trade-off between the aerodynamic drag and physiological functioning.
为了降低空气动力学阻力,自行车运动员会降低身体躯干角度,同时降低最大功率输出(PPO)。然而,计时赛自行车运动员所使用的实际躯干角度变化范围尚未得到研究。因此,本研究的目的是调查在不同常用计时赛姿势下,躯干角度对生理参数和 frontal area 的影响。19 名训练有素的男性自行车运动员在自行车测力计上以五个不同的躯干角度进行递增测试:他们偏好的躯干角度以及 0°、8°、16°和 24°。记录了摄氧量、二氧化碳呼出量、分钟通气量、总效率、PPO、心率、踏频和 frontal area。frontal area 可用于估算空气动力学阻力。总体而言,结果表明较低的躯干角度会削弱运动表现。递增测试中所有变量的最大值均随着躯干角度降低而下降(P < 0.001)。与所有其他研究姿势相比,0°躯干角度姿势对代谢和生理变量有显著影响。在 60%、70%和 80% PPO 的恒定次最大强度下,所有变量均随着强度增加(P < 0.0001)和躯干角度降低(P < 0.005)而显著增加。本研究表明,对于训练有素的自行车运动员来说,在空气动力学阻力和生理功能之间应进行权衡。