首页> 美国卫生研究院文献>Journal of Sports Science Medicine >Influence of Posture on Pulmonary O2 Uptake Kinetics Muscle Deoxygenation and Myolectrical Activity During Heavy-Intensity Exercise
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Influence of Posture on Pulmonary O2 Uptake Kinetics Muscle Deoxygenation and Myolectrical Activity During Heavy-Intensity Exercise

机译:大强度运动过程中姿势对肺氧摄取动力学肌肉脱氧和肌电活动的影响

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摘要

The aim of the present study was to test the hypothesis that compared to upright posture, slower oxygen uptake (VO2) kinetics resulting from exercise at the same relative metabolic load in the supine posture will be associated with increased muscle de-oxygenation and greater myoelectrical activity. Nine subjects completed one 12-min heavy-intensity constant-load exercises in each of the supine and upright postures on an electronically braked cycle ergometer at a same gain in metabolism per unit increase in work intensity (10.8 ± 1.3 vs. 11.8 ± 1.1 mlO2·min-1·W-1 in upright and supine, respectively) on separate days. Breath-by-breath VO2 kinetics were analyzed with a double exponential model to characterize the primary and slow component phases. Myoelectrical activity (RMS) of the vastus lateralis (VL), rectus femoris, and biceps femoris muscles was recorded at different epochs of the exercise. Oxygenation of the VL muscle was recorded continuously by near-infrared spectroscopy. In supine compared with upright cycling, the primary time constant of VO2 kinetics was significantly increased (32.7 ± 10.7 s vs. 23.5 ± 6.7 s, respectively) while the absolute magnitude of VO2 slow component was decreased (p < 0.05) but not the relative amplitude. VL de-oxygenation was higher (p < 0.05) in supine cycling throughout the exercising period whereas RMS values for all muscles did not change appreciably over time. Our findings suggest that lowered oxygen supply induced by supine heavy exercise, alters oxidative metabolism dynamics and increases muscle de-oxygenation. However, cycling supine did not increase markedly the rate of muscle fatigue.Key Points class="unordered" style="list-style-type:disc">Hydrostatic pressure gradients in blood vessels oriented longitudinally in the body are lesser in supine than in upright posture.Lowered oxygen supply induced with supine exercise slows oxidative metabolism dynamics and increases muscle de-oxygenation during heavy exercise.Compared to upright, supine exercise did not increase markedly the rate of muscle fatigue at a same relative metabolic load.
机译:本研究的目的是检验以下假设:与直立姿势相比,仰卧姿势下在相同的相对代谢负荷下运动导致的较慢的氧气吸收(VO2)动力学与肌肉脱氧增加和肌电活动增强有关。九名受试者在电子制动的自行车测功机上以仰卧和直立姿势中的每一个姿势完成了一次12分钟的大强度恒定负荷运动,单位工作强度增加时新陈代谢的增加相同(10.8±1.3 vs. 11.8±1.1 mlO2)分别在竖立和仰卧处·min -1 ·W -1 )。用双指数模型分析了一次呼吸的VO2动力学,以表征主要组分相和缓慢组分相。在运动的不同时期记录了股外侧肌(VL),股直肌和股二头肌的肌电活动(RMS)。 VL肌肉的氧合通过近红外光谱连续记录。在仰卧状态下,与直立骑行相比,VO2动力学的主要时间常数显着增加(分别为32.7±10.7 s和23.5±6.7 s),而VO2缓慢成分的绝对幅度减小了(p <0.05),但相对值没有减小振幅。在整个运动期间的仰卧骑行中,VL的脱氧率较高(p <0.05),而所有肌肉的RMS值均不会随时间明显变化。我们的发现表明,仰卧剧烈运动引起的氧气供应降低,改变了氧化代谢动力学并增加了肌肉的脱氧作用。但是,仰卧骑自行车并不会显着增加肌肉疲劳率。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior = unordered prefix-word = mark- type = disc max-label-size = 0-> 在身体中纵向定向的血管中的静水压力梯度在仰卧时比在直立姿势中要小。 仰卧运动引起的氧气供应减少 与直立运动相比,仰卧运动在相同的相对代谢负荷下并未明显增加肌肉疲劳率。

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