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Cycling exercise and the determination of electromechanical delay

机译:骑车运动和机电延迟的确定

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The main aim of the present paper was to address the validity of a methodology proposed in a previous paper [Li L, Baum BS. Electromechanical delay estimated by using electromyography during cycling at different pedaling frequencies. J Electromyogr Kinesiol 2004;14(6):647-52], aimed at determining the electromechanical delay from pedaling exercise performed at various cadences. Twelve trained subjects undertook pedaling bouts corresponding to combinations of cadences ranging from 50 to 100 RPM and power output from 37.5% to 75% of Pmax. As cadence increased, peak torque angle was found to shift forward in crank cycle (from 60-650 at 50 RPM to 75-800 at 100 RPM, depending on the power output level), while muscle bursts shifted backward in accordance with previous works. It is therefore suggested to take into account this peak torque angle lag to improve the methodology proposed by Li and Baum. The present results also evidenced that the central strategy, consisting in earlier muscle activation in crank cycle as cadence increases, is only partial. Neural strategy seems to be a trade-off between mechanical efficiency of muscular force output and coactivation. (c) 2006 Elsevier Ltd. All rights reserved.
机译:本文的主要目的是解决先前论文中提出的方法的有效性[Li L,Baum BS。通过在不同踏板频率下骑行期间使用肌电图估计的机电延迟。 J Electromyogr Kinesiol 2004; 14(6):647-52],旨在确定在各种节奏下进行踩踏运动所产生的机电延迟。 12名受过训练的受试者进行了脚踏操,对应的节奏范围为50至100 RPM,功率输出为Pmax的37.5%至75%。随着踏频的增加,发现峰值扭矩角在曲柄循环中向前移动(从50 RPM时的60-650变为100 RPM时的75-800,具体取决于功率输出水平),而肌肉爆发则根据先前的工作向后移动。因此,建议考虑该峰值转矩角滞后以改善Li和Baum提出的方法。本研究结果还表明,中央策略(包括随着节奏增加而在曲柄循环中较早地激活肌肉)只是局部的。神经策略似乎是肌肉力量输出的机械效率与共激活之间的权衡。 (c)2006 Elsevier Ltd.保留所有权利。

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