Laboratory «Motricité, Interactions, Performance» (EA 4334), University of Nantes, 25 bis boulevard Guy Mollet, BP 72206, 44322, Nantes cedex 3, France.
Eur J Appl Physiol. 2011 Dec;111(12):3017-29. doi: 10.1007/s00421-011-1928-x. Epub 2011 Mar 31.
The present study was designed to quantify the effect of power output on muscle coordination during rowing. Surface electromyographic (EMG) activity of 23 muscles and mechanical variables were recorded in eight untrained subjects and seven experienced rowers. Each subject was asked to perform three 2-min constant-load exercises performed at 60, 90 and 120% of the mean power output over a maximal 2,000-m event (denoted as P60, P90, and P120, respectively). A decomposition algorithm (nonnegative matrix factorization) was used to extract the muscle synergies that represent the global temporal and spatial organization of the motor output. The results showed a main effect of power output for 22 of 23 muscles (p values ranged from <0.0001 to 0.004) indicating a significant increase in EMG activity level with power output for both untrained and experienced subjects. However, for the two populations, no dramatic modification in the shape of individual EMG patterns (mean r (max) value = 0.93 ± 0.09) or in their timing of activation (maximum lag time = -4.3 ± 3.8% of the rowing cycle) was found. The results also showed a large consistency of the three extracted muscle synergies, for both synergy activation coefficients (mean r (max) values range from 0.87 to 0.97) and muscle synergy vectors (mean r values range from 0.70 to 0.76) across the three power outputs. In conclusion, despite significant changes in the level of muscle activity, the global temporal and spatial organization of the motor output is very little affected by power output on a rowing ergometer.
本研究旨在量化划桨过程中功率输出对肌肉协调的影响。对 8 名未经训练的受试者和 7 名有经验的划桨运动员进行了表面肌电图(EMG)活动和机械变量的记录。要求每位受试者进行 3 次 2 分钟的恒负荷运动,分别在 2,000 米最大事件的平均功率输出的 60%、90%和 120%(分别表示为 P60、P90 和 P120)下进行。采用分解算法(非负矩阵分解)提取肌肉协同作用,以表示运动输出的全局时间和空间组织。结果表明,23 块肌肉中的 22 块(p 值范围从<0.0001 到 0.004)存在功率输出的主要效应,表明未经训练和有经验的受试者的肌肉活动水平随功率输出显著增加。然而,对于这两种人群,个体 EMG 模式的形状(平均 r(max)值=0.93±0.09)或其激活的时间(最大滞后时间=-4.3±3.8%的划桨周期)均无明显变化。结果还表明,在三种功率输出下,三个提取的肌肉协同作用的协同作用激活系数(平均 r(max)值范围从 0.87 到 0.97)和肌肉协同作用向量(平均 r 值范围从 0.70 到 0.76)都具有很大的一致性。总之,尽管肌肉活动水平有显著变化,但在划船测功仪上,运动输出的全局时间和空间组织受功率输出的影响很小。