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Effect of the Combination of Whole-Body Neuromuscular Electrical Stimulation and Voluntary Exercise on Metabolic Responses in Human

机译:全身神经肌肉电刺激和自愿运动的结合对人体代谢反应的影响

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Purpose Since neuromuscular electrical stimulation (NMES) can recruit high-threshold motor units and enhance glucose metabolism, the combination of NMES and voluntary low-intensity exercise would induce both anerobic and aerobic energy consumptions and this type of exercise could be more efficient and effective than conventional exercise regimens. We aimed to investigate metabolic responses and muscle fatigue during whole body NMES (WB-NMES), voluntary exercise, and their combination. Methods The blood lactate concentration and maximal voluntary contraction were measured before and after specified exercises: WB-NMES (E), voluntary exercise (V), and their combination (VE), and expired gas was sampled during the exercises in thirteen healthy young men. Each exercise was conducted for 15 min and interval between exercise was & 48h. Results Energy expenditure and V ˙ O 2 relative to the body mass during VE were significantly higher than during V and E ( p & 0.05). The Respiratory gas exchange ratio (RER) during both E and VE was higher than during V ( p & 0.05), and the blood lactate concentration after VE was significantly higher than after V and E ( p & 0.05). Although V ˙ O 2 relative to the body mass was 18.6 ± 3.1 ml/min/kg and the metabolic equivalent was 5.31 ± 0.89 Mets, the blood lactate concentration reached 7.5 ± 2.7 mmol/L after VE. Conclusion These results suggest that the combination of WB-NMES and voluntary exercise can enhance the metabolic response to a level equivalent to high intensity exercise under the net physiological burden of low-middle intensity exercises.
机译:目的由于神经肌肉电刺激(NMES)可以募集高阈运动单位并增强葡萄糖代谢,因此将NMES与自愿的低强度运动相结合会诱发有氧和有氧能量消耗,而这种运动比常规运动方案。我们旨在研究全身NMES(WB-NMES),自愿运动及其组合过程中的代谢反应和肌肉疲劳。方法在13名健康的青年男子中,在进行以下特定运动:WB-NMES(E),自愿运动(V)及其组合(VE)和运动期间,测量其血液中的乳酸浓度和最大自愿收缩率。每次运动进行15分钟,并且运动之间的间隔> 10分钟。 48小时结果VE期间相对于体重的能量消耗和V˙O2明显高于V和E期间(p <0.05)。 E和VE期间的呼吸气体交换率(RER)均高于V期间(p <0.05),VE后的血液乳酸浓度显着高于V和E之后(p <0.05)。尽管V˙O 2相对于体重为18.6±3.1 ml / min / kg,代谢当量为5.31±0.89 Mets,但VE后血乳酸浓度达到7.5±2.7 mmol / L。结论这些结果表明,在中低强度运动的净生理负担下,WB-NMES与自愿运动的结合可以使代谢反应提高到与高强度运动相当的水平。

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