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首页> 外文期刊>Acta physiologica Scandinavica >Neuromuscular function during prolonged pedalling exercise at different cadences.
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Neuromuscular function during prolonged pedalling exercise at different cadences.

机译:在不同节奏下进行长时间的踏板运动时的神经肌肉功能。

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摘要

Aim: The purpose of the present work was to assess the strategies set by the central nervous system in order to provide the power output required throughout a prolonged (1-h) pedalling exercise performed at different cadences (50 rpm, 110 rpm and the freely chosen cadence). Methods: Neuromuscular (NM) activity of vastus lateralis, rectus femoris, biceps femoris and gastrocnemius lateralis muscles was studied quantitatively [root-mean square (RMS) and mean power frequency (MPF)] and qualitatively (timing of onset and offset of muscle bursts during crank cycle). Results: The present results showed that increased cadence resulted in earlier muscle activation in crank cycle. The influence of cadence on RMS and MPF depended on the considered muscle and its functional role during pedalling. Timing of onset and offset of muscle bursts was not altered by fatigue throughout the prolonged exercise. In contrast, RMS and MPF of some muscles was found to increase during prolonged exercise. Conclusion: In summary, the present study revealed that tonic aspects of the NM activity (RMS, MPF) are altered during prolonged pedalling exercise, while phasic aspects are remained unchanged. These results suggest that the strategies set by the central nervous system in order to provide the power output required by the exercise are held constant throughout the exercise, but that quantitative aspects of the central drive are increased in order to adapt to the progressive occurrence of the NM fatigue.
机译:目的:本研究的目的是评估中枢神经系统设定的策略,以便在以不同节奏(50 rpm,110 rpm和自由节奏)进行的长时间(1-h)踏板运动中提供所需的动力输出节奏)。方法:定量研究股外侧肌,股直肌,股二头肌和腓肠腓肠肌的神经肌肉(NM)活性[均方根(RMS)和平均功率频率(MPF)],并定性研究(肌肉爆发的发生和偏移时间在曲柄循环中)。结果:目前的结果表明,节奏的增加导致曲柄周期中肌肉的早期活化。节奏对RMS和MPF的影响取决于所考虑的肌肉及其在踩踏过程中的功能作用。在整个长时间的运动中,疲劳不会改变肌肉爆发的发生和偏移的时间。相反,在长时间运动中,某些肌肉的RMS和MPF会增加。结论:总的来说,本研究表明长时间的蹬踏运动会改变NM活动的强直方面(RMS,MPF),而相位方面则保持不变。这些结果表明,中枢神经系统为提供锻炼所需的动力输出而设定的策略在整个锻炼过程中保持恒定,但是为了适应逐渐发展的中枢神经系统,增加了中枢驱动力的定量方面。 NM疲劳。

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