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Muscle Activation During Exercise in Severe Acute Hypoxia: Role of Absolute and Relative Intensity

机译:严重急性缺氧运动中的肌肉活化:绝对强度和相对强度的作用

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摘要

Torres-Peralta, Rafael, José Losa-Reyna, Miriam González-Izal, Ismael Perez-Suarez, Jaime Calle-Herrero, Mikel Izquierdo, and José A.L. Calbet. Muscle activation during exercise in severe acute hypoxia: Role of absolute and relative intensity. High Alt Med Biol 15:472–482, 2014.—The aim of this study was to determine the influence of severe acute hypoxia on muscle activation during whole body dynamic exercise. Eleven young men performed four incremental cycle ergometer tests to exhaustion breathing normoxic (FIo2=0.21, two tests) or hypoxic gas (FIo2=0.108, two tests). Surface electromyography (EMG) activities of rectus femoris (RF), vastus medialis (VL), vastus lateralis (VL), and biceps femoris (BF) were recorded. The two normoxic and the two hypoxic tests were averaged to reduce EMG variability. Peak Vo2 was 34% lower in hypoxia than in normoxia (p<0.05). The EMG root mean square (RMS) increased with exercise intensity in all muscles (p<0.05), with greater effect in hypoxia than in normoxia in the RF and VM (p<0.05), and a similar trend in VL (p=0.10). At the same relative intensity, the RMS was greater in normoxia than in hypoxia in RF, VL, and BF (p<0.05), with a similar trend in VM (p=0.08). Median frequency increased with exercise intensity (p<0.05), and was higher in hypoxia than in normoxia in VL (p<0.05). Muscle contraction burst duration increased with exercise intensity in VM and VL (p<0.05), without clear effects of FIo2. No significant FIo2 effects on frequency domain indices were observed when compared at the same relative intensity. In conclusion, muscle activation during whole body exercise increases almost linearly with exercise intensity, following a muscle-specific pattern, which is adjusted depending on the FIo2 and the relative intensity of exercise. Both VL and VM are increasingly involved in power output generation with the increase of intensity and the reduction in FIo2.
机译:Torres-Peralta,Rafael,JoséLosa-Reyna,MiriamGonzález-Izal,Ismael Perez-Suarez,Jaime Calle-Herrero,Mikel Izquierdo和JoséA.L. Calbet。严重急性缺氧运动中的肌肉激活:绝对强度和相对强度的作用。 High Alt Med Biol 15:472–482,2014年。这项研究的目的是确定严重的急性低氧对全身动态运动过程中肌肉激活的影响。十一名年轻男子进行了四次增量式脚踏车测力计测试,以检测出有氧呼吸(常氧(FIo2 = 0.21,两项测试))或低氧气体(FIo2 = 0.108,两项测试)。记录了股直肌(RF),股内侧肌(VL),股外侧肌(VL)和股二头肌(BF)的表面肌电图(EMG)活动。对两个常氧测试和两个低氧测试进行平均,以减少EMG的变异性。低氧时的峰值Vo2比常氧时低34%(p <0.05)。在所有肌肉中,EMG均方根(RMS)随运动强度的增加而增加(p <0.05),对缺氧的影响大于对RF和VM正常氧的影响(p <0.05),并且VL的趋势相似(p = 0.10) )。在相同的相对强度下,RF,VL和BF的常氧RMS高于低氧(p <0.05),VM的趋势相似(p = 0.08)。中频随运动强度的增加而增加(p <0.05),低氧时VL高于正常氧(p <0.05)。肌肉收缩爆发持续时间随VM和VL中的运动强度而增加(p <0.05),而没有FIo2的明显作用。在相同的相对强度下进行比较时,未观察到对频域指数的显着FIo2影响。总之,全身运动过程中的肌肉激活几乎随运动强度线性增加,遵循特定于肌肉的模式,该模式根据FIo2和运动的相对强度进行调整。随着强度的增加和FIo2的减少,VL和VM都越来越多地参与发电输出。

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