Billaut François, Basset Fabien A, Falgairette Guy
Laboratoire Ergonomie Sportive et Performance -- EA 3162, Université du Sud Toulon-Var, Avenue de l'Université, BP 132, 83957 La Garde Cedex, France.
Neurosci Lett. 2005 Jun 3;380(3):265-9. doi: 10.1016/j.neulet.2005.01.048. Epub 2005 Feb 8.
Maximal muscle power is reported to decrease during explosive cyclical exercises owing to metabolic disturbances, muscle damage, and adjustments in the efferent neural command. The aim of the present study was to analyze the influence of inter-muscle coordination in fatigue occurrence during 10 intermittent 6-s cycling sprints, with 30-s recovery through electromyographic activity (EMG). Results showed a decrease in peak power output with sprint repetitions (sprint 1 versus sprint 10: -11%, P<0.01) without any significant modifications in the integrated EMG. The timing between the knee extensor and the flexor EMG activation onsets was reduced in sprint 10 (sprint 1 versus sprint 10: -90.2 ms, P<0.05), owing to an earlier antagonist activation with fatigue occurrence. In conclusion, the maximal power output, developed during intermittent cycling sprints of short duration, decreased possibly due to the inability of muscles to maintain maximal force. This reduction in maximal power output occurred in parallel to changes in the muscle coordination pattern after fatigue.
据报道,在爆发性周期性运动中,由于代谢紊乱、肌肉损伤以及传出神经指令的调整,最大肌肉力量会下降。本研究的目的是通过肌电图活动(EMG)分析肌肉间协调性在10次6秒间歇性自行车冲刺疲劳发生过程中的影响,每次冲刺后有30秒的恢复时间。结果显示,随着冲刺次数的增加,峰值功率输出下降(第1次冲刺与第10次冲刺相比:-11%,P<0.01),而EMG积分无任何显著变化。在第10次冲刺时,膝伸肌和屈肌EMG激活起始之间的时间间隔缩短(第1次冲刺与第10次冲刺相比:-90.2毫秒,P<0.05),这是由于随着疲劳的出现,拮抗肌激活提前。总之,在短时间间歇性自行车冲刺过程中产生的最大功率输出下降,可能是由于肌肉无法维持最大力量。最大功率输出的这种下降与疲劳后肌肉协调模式的变化同时发生。