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不同空气动力学计时赛自行车姿势对肌肉激活和曲柄扭矩的影响。

Effect of different aerodynamic time trial cycling positions on muscle activation and crank torque.

作者信息

Fintelman D M, Sterling M, Hemida H, Li F-X

机构信息

School of Sport, Exercise and Rehabilitation Sciences, University of Birmingham, Birmingham, UK.

School of Civil Engineering, University of Birmingham, Birmingham, UK.

出版信息

Scand J Med Sci Sports. 2016 May;26(5):528-34. doi: 10.1111/sms.12479. Epub 2015 May 21.

Abstract

To reduce air resistance, time trial cyclists and triathletes lower their torso angle. The aim of this study was to investigate the effect of lowering time trial torso angle positions on muscle activation patterns and crank torque coordination. It was hypothesized that small torso angles yield a forward shift of the muscle activation timing and crank torque. Twenty-one trained cyclists performed three exercise bouts at 70% maximal aerobic power in a time trial position at three different torso angles (0°, 8°, and 16°) at a fixed cadence of 85 rpm. Measurements included surface electromyography, crank torques and gas exchange. A significant increase in crank torque range and forward shift in peak torque timing was found at smaller torso angles. This relates closely with the later onset and duration of the muscle activation found in the gluteus maximus muscle. Torso angle effects were only observed in proximal monoarticular muscles. Moreover, all measured physiological variables (oxygen consumption, breathing frequency, minute ventilation) were significantly increased with lowering torso angle and hence decreased the gross efficiency. The findings provide support for the notion that at a cycling intensity of 70% maximal aerobic power, the aerodynamic gains outweigh the physiological/biomechanical disadvantages in trained cyclists.

摘要

为了减少空气阻力,计时赛自行车手和铁人三项运动员会降低他们的躯干角度。本研究的目的是调查降低计时赛躯干角度位置对肌肉激活模式和曲柄扭矩协调性的影响。研究假设是较小的躯干角度会使肌肉激活时间和曲柄扭矩向前偏移。21名受过训练的自行车手在85转/分钟的固定踏频下,于三种不同的躯干角度(0°、8°和16°)的计时赛姿势下,以最大有氧功率的70%进行了三次运动试验。测量包括表面肌电图、曲柄扭矩和气体交换。发现在较小的躯干角度下,曲柄扭矩范围显著增加,峰值扭矩时间向前偏移。这与臀大肌中发现的肌肉激活的延迟起始和持续时间密切相关。躯干角度效应仅在近端单关节肌肉中观察到。此外,随着躯干角度降低,所有测量的生理变量(耗氧量、呼吸频率、分钟通气量)均显著增加,从而降低了总效率。这些发现支持了这样一种观点,即在最大有氧功率的70%的骑行强度下,空气动力学收益超过了受过训练的自行车手中生理/生物力学方面的劣势。

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