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抗阻训练后的神经肌肉疲劳。

Neuromuscular fatigue after resistance training.

机构信息

Studies, Research and Sport Medicine Center, Government of Navarre, Spain.

出版信息

Int J Sports Med. 2009 Aug;30(8):614-23. doi: 10.1055/s-0029-1214379. Epub 2009 Apr 20.

Abstract

This study examined the effects of heavy resistance training on dynamic exercise-induced fatigue task (5 x 10RM leg-press) after two loading protocols with the same relative intensity (%) (5 x 10RM(Rel)) and the same absolute load (kg) (5 x 10RM(Abs)) as in pretraining in men (n=12). Maximal strength and muscle power, surface EMG changes [amplitude and spectral indices of muscle fatigue], and metabolic responses (i.e.blood lactate and ammonia concentrations) were measured before and after exercise. After training, when the relative intensity of the fatiguing dynamic protocol was kept the same, the magnitude of exercise-induced loss in maximal strength was greater than that observed before training. The peak power lost after 5 x 10RM(Rel) (58-62%, pre-post training) was greater than the corresponding exercise-induced decline observed in isometric strength (12-17%). Similar neural adjustments, but higher accumulated fatigue and metabolic demand were observed after 5 x 10RM(Rel). This study therefore supports the notion that similar changes are observable in the EMG signal pre- and post-training at fatigue when exercising with the same relative load. However, after training the muscle is relatively able to work more and accumulate more metabolites before task failure. This result may indicate that rate of fatigue development (i.e. power and MVC) was faster and more profound after training despite using the same relative intensity.

摘要

本研究考察了两种负荷方案(5 x 10RM(Rel)和 5 x 10RM(Abs))对男性(n=12)进行相同相对强度(%)和相同绝对负荷(kg)的预训练后,对动态运动引起的疲劳任务(5 x 10RM 腿推)的影响。在运动前后测量最大力量和肌肉力量、表面肌电图变化[肌肉疲劳的幅度和频谱指数]以及代谢反应(即血乳酸和氨浓度)。训练后,当疲劳动态方案的相对强度保持不变时,最大力量引起的运动损失幅度大于训练前。5 x 10RM(Rel)(58-62%,训练前后)后峰值功率的损失大于等长强度观察到的相应运动引起的下降(12-17%)。在 5 x 10RM(Rel)之后观察到类似的神经调整,但累积疲劳和代谢需求更高。因此,本研究支持这样一种观点,即在使用相同相对负荷进行运动时,疲劳前后的肌电图信号在训练前后可以观察到相似的变化。然而,训练后,肌肉在任务失败前能够更有效地工作并积累更多的代谢物。尽管使用相同的相对强度,但这一结果可能表明疲劳发展的速度(即功率和 MVC)更快、更深刻。

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