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首页> 外文期刊>American Journal of Physiology >Influence of duty cycle on the time course of muscle fatigue and the onset of neuromuscular compensation during exhaustive dynamic isolated limb exercise
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Influence of duty cycle on the time course of muscle fatigue and the onset of neuromuscular compensation during exhaustive dynamic isolated limb exercise

机译:义循环对肌肉疲劳时间过程的影响及彻底动态肢体锻炼中神经肌肉补偿的发病

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摘要

We investigated the influence of altered muscle duty cycle on the performance decrements and neuromuscular responses occurring during constant-load, fatiguing bouts of knee extension exercise. We experimentally altered the durations of the muscularly inactive portion of the limb movement cycle and hypothesized that greater relative durations of inactivity within the same movement task would 1) reduce the rates and extent of muscle performance loss and 2) increase the forces necessary to trigger muscle fatigue. In each condition (duty cycle = 0.6 and 0.3), male subjects [age = 25.9 ± 2.0 yr (SE); mass = 85.4 ± 2.6 kg], completed 9-11 exhaustive bouts of two-legged knee extension exercise, at force outputs that elicited failure between 4 and 290 s. The novel duty cycle manipulation produced two primary results; first, we observed twofold differences in both the extent of muscle performance lost (DCo.6 = 761 ± 35 N vs. DC_(0.3) = 366 ± 49 N) and the time course of performance loss. For example, exhaustive trials at the midpoint of these force ranges differed in duration by more than 30 s (t_(0.6) = 36 ± 2.6 vs. t_(0.3) = 67 ± 4.3 s). Second, both the minimum forces necessary to exceed the peak aerobic capacity and initiate a reliance on anaerobic metabolism, and the forces necessary to elicit compensatory increases in electromyogram activity were 300% greater in the lower vs. higher duty cycle condition. These results indicate that the fatigue-induced compensatory behavior to recruit additional motor units is triggered by a reliance on anaerobic metabolism for ATP resynthesis and is independent of the absolute level or fraction of the maximum force produced by the muscle.
机译:我们调查了改变肌肉占空比对恒定载荷恒定疲劳术后发生的性能下降和神经肌肉反应的影响。我们通过实验改变了肢体运动周期的肌肉活动部分的持续时间,并假设相同运动任务中的更大的相对持续时间为1)降低肌肉性能损失的速率和程度,并且2)增加触发肌肉所需的力疲劳。在每个条件(占空比= 0.6和0.3)中,男性受试者[年龄= 25.9±2.0 yr(SE); MASS = 85.4±2.6千克],完成了9-11条令人遗憾的双腿膝关节延长练习,在4到290秒之间引发失败的力输出。新型占空比操纵产生了两个主要结果;首先,我们观察到肌肉性能的程度损失的双重差异(DCO.6 = 761±35 n vs.DC_(0.3)= 366±49 n)和性能损失的时间过程。例如,这些力的中点的详尽试验范围持续超过30秒(T_(0.6)= 36±2.6与T_(0.3)= 67±4.3秒)。其次,超过峰值有氧能力所需的最小力并开始依赖于厌氧代谢,并且在较高的占空比条件下,肌电图活性的补偿性增加所需的力量增加300%。这些结果表明,通过依赖于ATP重新合成的厌氧代谢依赖于厌氧代谢来引发疲劳诱导的补偿性行为,并且与肌肉产生的最大力的绝对水平或分数无关。

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