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Relationship between muscle metabolic rate and muscle torque complexity during fatiguing intermittent isometric contractions in humans

机译:疲劳间歇性等距收缩期间肌肉代谢率与肌肉扭矩复杂度之间的关系

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摘要

To test the hypothesis that a system’s metabolic rate and the complexity of fluctuations in the output of that system are related, thirteen healthy participants performed intermittent isometric knee extensor contractions at intensities where a rise in metabolic rate would (40% maximal voluntary contraction, MVC) and would not (20% MVC) be expected. The contractions had a 60% duty factor (6 sec contraction, 4 sec rest) and were performed until task failure or for 30 min, whichever occurred sooner. Torque and surface EMG signals were sampled continuously. Complexity and fractal scaling of torque were quantified using approximate entropy (ApEn) and the detrended fluctuation analysis (DFA) α scaling exponent. Muscle metabolic rate was determined using near‐infrared spectroscopy. At 40% MVC, task failure occurred after (mean ± SD) 11.5 ± 5.2 min, whereas all participants completed 30 min of contractions at 20% MVC. Muscle metabolic rate increased significantly after 2 min at 40% MVC (2.70 ± 1.48 to 4.04 ± 1.23 %·s‐1, P < 0.001), but not at 20% MVC. Similarly, complexity decreased significantly at 40% MVC (ApEn, 0.53 ± 0.19 to 0.15 ± 0.09; DFA α, 1.37 ± 0.08 to 1.60 ± 0.09; both P < 0.001), but not at 20% MVC. The rates of change of torque complexity and muscle metabolic rate at 40% MVC were significantly correlated (ApEn, ρ = −0.63, P = 0.022; DFA, ρ = 0.58, P = 0.037). This study demonstrated that an inverse relationship exists between muscle torque complexity and metabolic rate during high‐intensity contractions.
机译:为了检验系统代谢率与系统输出波动的复杂性相关的假设,十三名健康参与者在代谢率会升高的强度下进行间歇性等距膝盖伸肌收缩(最大自愿收缩为40%,MVC)并且不会(20%MVC)被期望。收缩的占空比为60%(收缩6秒,休息4秒),直到任务失败或持续30分钟(以较早发生者为准)。连续采样扭矩和表面肌电信号。使用近似熵(ApEn)和去趋势波动分析(DFA)α缩放指数来量化扭矩的复杂度和分形缩放比例。使用近红外光谱法测定肌肉代谢率。在MVC为40%时,任务失败发生在(平均±SD)11.5±5.2分钟后,而所有参与者在20%MVC时完成了30分钟的收缩。在40%MVC下2分钟后,肌肉代谢率显着增加(2.70±1.48至4.04±1.23%·s -1 ,P <0.001),但在20%MVC处没有。同样,复杂度在MVC为40%时显着降低(ApEn,0.53±0.19至0.15±0.09; DFAα,1.37±0.08至1.60±0.09;两者P <0.001),但在20%MVC时没有降低。在40%MVC时,扭矩复杂性的变化率和肌肉代谢率的变化率显着相关(ApEn,ρ= −0.63,P = 0.022; DFA,ρ= 0.58,P = 0.037)。这项研究表明,高强度收缩期间肌肉扭矩复杂度与代谢率之间存在反比关系。

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