有氧运动后静息肌力图。

William P S McKay, Philip D Chilibeck, Karen E Chad, Brian L F Daku
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引用次数: 23

摘要

对于运动后耗氧量的增加,已经提出了许多机制。将肌肉恢复到运动前状态的生化过程并不能解释运动后消耗的所有氧气。静止肌肉中的机械活动可能产生低频振动(即肌肉声音:机械肌图[MMG]活动),可能导致运动后过量耗氧量。因此,本研究的目的是确定运动后静息MMG振幅是否发生变化,以及这种变化是否与耗氧量(VO2)升高有关。10名年轻男性受试者(22.9岁)在自行车测力仪上进行30分钟的运动,强度相当于70%峰值VO2。在运动前和运动后5.5小时内,通过间接量热法测量氧气消耗,并通过在股四头肌中部放置加速度计测量MMG。以平均绝对加速度表示的MMG活动在运动后5.5小时内显著升高(p < 0.05)。运动后MMG和VO2呈指数衰减,时间常数分别为7.2 min和7.4 min。我们得出的结论是,肌肉在运动后机械活跃,这可能有助于提高VO2。
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Resting mechanomyography after aerobic exercise.

A number of mechanisms have been proposed for the elevation in oxygen consumption following exercise. Biochemical processes that return muscle to its preexercise state do not account for all the oxygen consumed after exercise. It is possible that mechanical activity in resting muscle, which produces low frequency vibrations (i.e., muscle sounds: mechano-myographic [MMG] activity), could contribute to the excess postexercise oxygen consumption. Therefore the purpose of this study was to determine whether the resting MMG amplitude changes after exercise, and whether the change is related to the elevation in oxygen consumption (VO2). Ten young male subjects (22.9 yrs) performed 30 minutes of exercise on a cycle ergometer at an intensity corresponding to 70% peak VO2. Oxygen consumption was measured by indirect calorimetry, and MMG by an accelerometer placed over the mid-quadriceps before exercise and for 5.5 hours after exercise. MMG activity, expressed as mean absolute acceleration, was significantly elevated for the 5.5 hours of measurement after exercise (p < 0.05). MMG and VO2 decayed exponentially after exercise with time constants of 7.2 minutes and 7.4 minutes, respectively. We conclude that muscle is mechanically active following exercise and that this may contribute to an elevated VO2.

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