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Endurance Training Of Trained Athletes-An Electromyogram Study

机译:训练有素的运动员的耐力训练-肌电图研究

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Little is known about the mechanism that improves the capabilities of athletes by high, intensity interval training (HIT). This study was conducted to determine the neurophysiological changes due to HIT. Changes in surface electromyography (SEMG) in well-trained endurance cyclists due to the training were identified. Seven subjects (maximal oxygen uptake [VO2max] 64.6 plusmn 4.8 ml.kg-1.min-1, mean plusmn SD) undertook a 3 week training intervention, replacing ~ 15% of their weekly endurance training with 6 sessions of laboratory-based HIT (8times5 min work bouts at 82% of PPO [~85% VO2max], with 60 sec active recovery at 100 W). SEMG was used to assess neuromuscular changes before and after the 3 wk training program. During the first and sixth training session, SEMG was recorded. To determine the effects of the HIT program on performance, subjects performed a 40 km time trial (TT40) before and after the training intervention. The frequency of SEMG is a measure of the muscle fatigue and hence was used to identify the variation of the signal properties. Three weeks of intensified training decreased the mean power frequency of the SEMG signal during the latter stages of HIT (interval seven) 50.2 plusmn 5.1 to 47.5 plusmn 4.2 Hz (P0.05). The preliminary conclusions of these experiments suggest that high-intensity interval training enhanced endurance performance and reduced the fatiguing of the muscles. It is suggested that this was possibly due to recruitment of addition slow-twitch motor units
机译:通过高强度间歇训练(HIT)提高运动员能力的机制知之甚少。进行该研究以确定由于HIT引起的神经生理学变化。识别出由于训练而导致训练有素的耐力自行车手的表面肌电图(SEMG)的变化。七名受试者(最大摄氧量[VO2max] 64.6 plusmn 4.8 ml.kg-1.min-1,平均plusmn SD)进行了为期3周的训练干预,以6次基于实验室的HIT代替了约15%的每周耐力训练(在82%的PPO [〜85%VO2max]下工作8次5分钟,在100 W功率下有60秒的主动恢复)。在3周训练计划之前和之后,使用SEMG评估神经肌肉的变化。在第一和第六次培训期间,记录了SEMG。为了确定HIT计划对运动表现的影响,受试者在训练干预前后进行了40 km的计时赛(TT40)。 SEMG的频率是肌肉疲劳的量度,因此被用来识别信号特性的变化。经过三周的强化训练,在HIT的后期(间隔7),SEMG信号的平均功率频率降低了50.2±5.1至47.5±4.2 Hz(P <0.05)。这些实验的初步结论表明,高强度间歇训练可增强耐力表现并减少肌肉疲劳。建议这可能是由于补充了慢速抽动电机单元

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