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首页> 外文期刊>Journal of applied physiology >Mechanisms underlying enhancements in muscle force and power output during maximal cycle ergometer exercise induced by chronic beta2-adrenergic stimulation in men
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Mechanisms underlying enhancements in muscle force and power output during maximal cycle ergometer exercise induced by chronic beta2-adrenergic stimulation in men

机译:在男性慢性β2-肾上腺素能刺激诱导的最大循环中测力计训练过程中肌肉力和功率输出中的潜在增强的机制

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摘要

The study was a randomized placebo-controlled trial investigating mechanisms by which chronic 32-adrenergic stimulation enhances muscle force and power output during maximal cycle ergometer exercise in young men. Eighteen trained men were assigned to an experimental group [oral terbutaline 5 mg/30 kg body weight (bw) twice daily (TER); n = 9] or a control group [placebo (PLA); n = 9] for a 4-wk intervention. No changes were observed with the intervention in PLA. Isometric muscle force of the quadriceps increased (P < 0.01) by 97 ± 29 N (means ± SE) with the intervention in TER compared with PLA. Peak and mean power output during 30 s of maximal cycling increased (P < 0.01) by 32 ± 8 and 25 ± 9 W, respectively, with the intervention in TER compared with PLA. Maximal oxygen consumption (Vo2max) and time to fatigue during incremental cycling did not change with the intervention. Lean body mass increased by 1.95 ± 0.8 kg (P < 0.05) with the intervention in TER compared with PLA. Change in single fiber cross-sectional area of myosin heavy chain (MHC) I (1,205 ± 558 mum2; P < 0.01) and MHC II fibers (1,277 ± 595 mum2; P < 0.05) of the vastus lateralis muscle was higher for TER than PLA with the intervention, whereas no changes were observed in MHC isoform distribution. Expression of muscle proteins involved in growth, ion handling, lactate production, and clearance increased (P < 0.05) with the intervention in TER compared with PLA, with no change in oxidative enzymes. Our observations suggest that muscle hypertrophy is the primary mechanism underlying enhancements in muscle force and peak power during maximal cycling induced by chronic beta2-adrenergic stimulation in humans.
机译:该研究是一种随机安慰剂对照试验调查机制,其慢性32-肾上腺素能刺激增强了在年轻人的最大循环磨光器运动中的肌肉力和功率输出。将十八培训的男性分配给实验组[口服丁滨5mg / 30kg体重(BW)每日两次(三倍); n = 9]或对照组[安慰剂(PLA); n = 9]对于4 WK干预。在PLA的干预中没有观察到任何变化。 Quadriceps的等距肌肉力量增加(p <0.01),含有97±29 n(平均值±SE),与PLA相比,介入。在最大循环的30秒内的峰值和平均功率输出分别在32±8和25±9°W中增加(P <0.01),与PLA相比,TER的干预。最大氧气消耗(VO2MAX)和增量循环期间疲劳的时间不会随着干预而改变。贫体质量增加1.95±0.8千克(P <0.05),与PLA相比,TER的干预措施。肌苷重链(MHC)I(MHC)I(1,205±558毫米2; P <0.01)和MHC II纤维(1,277±595 mum2; P <0.05)的肌菌横截面积的变化比PLA介入,而MHC同种型分布中没有观察到任何变化。参与生长,离子处理,乳酸盐产生和间隙的肌肉蛋白的表达(P <0.05)与PLA相比,涉及萜件,氧化酶没有变化。我们的观察结果表明,肌肉肥大是肌肉力和慢性循环在人类慢性β2-肾上腺素能刺激诱导期间肌肉力和峰值功率的主要机制。

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