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首页> 外文期刊>The Journal of Experimental Biology >Effect of muscle temperature on rate of oxygen uptake during exercise in humans at different contraction frequencies
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Effect of muscle temperature on rate of oxygen uptake during exercise in humans at different contraction frequencies

机译:在不同的收缩频率下,肌肉温度对人体运动过程中摄氧速率的影响

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The effect of elevated human muscle temperature on energy turnover was investigated during cycling exercise (at 85 % of V-O2max) at a contraction frequency of 60revs min(-1). Muscle temperature was passively elevated prior to exercise by immersion of the legs in a hot water bath (42degreesC). During exercise at this low pedalling rate, total energy turnover was higher (P<0.05) when muscle temperature was elevated compared with normal temperature (70.4+/-3.7 versus 66.9+/-2.4kJ min(-1), respectively). Estimated net mechanical efficiency was found to be lower when muscle temperature was elevated. A second experiment was conducted in which the effect of elevated human muscle temperature on energy turnover was investigated during cycling exercise (at 85 % of V-O2max) at a contraction frequency of 120 revs min(-1). Under the conditions of a high pedalling frequency, an elevated muscle temperature resulted in a lower energy turnover (P<0.05) compared with the normal muscle temperature (64.9&PLUSMN;3.7 versus 69.0&PLUSMN;4.7 kJmin(-1), respectively). The estimated net mechanical efficiency was therefore higher when muscle temperature was elevated. We propose that, in these experiments, prior heating results in an inappropriately fast rate of cross-bridge cycling when exercising at 60 revs min(-1), leading to an increased energy turnover and decreased efficiency. However, at the faster pedalling rate, the effect of heating the muscle shifts the efficiency/velocity relationship to the right so that crossbridge detachment is more appropriately matched to the contraction velocity and, hence, energy turnover is reduced.
机译:在60revs min(-1)的收缩频率下的自行车运动期间(在V-O2max的85%时)研究了人体肌肉温度升高对能量转换的影响。运动前,通过将双腿浸入热水浴(42℃)中,肌肉温度被动升高。在以这种低踏板速度进行运动的过程中,与正常温度相比,肌肉温度升高时,总能量转换更高(P <0.05)(分别为70.4 +/- 3.7与66.9 +/- 2.4kJ min(-1))。当肌肉温度升高时,估计的净机械效率会降低。进行了第二个实验,其中在120 rpm min(-1)的收缩频率下(在V-O2max的85%时)研究了人体肌肉温度升高对能量转换的影响。在高踏板频率的条件下,与正常肌肉温度相比,升高的肌肉温度导致较低的能量转换(P <0.05)(分别为64.9&PLUSMN; 3.7与69.0&PLUSMN; 4.7 kJmin(-1))。因此,当肌肉温度升高时,估计的净机械效率更高。我们建议,在这些实验中,以60转min(-1)进行运动时,事先加热会导致过桥自行车循环的速度过快,从而导致能量转换增加和效率降低。然而,在更快的蹬踏速度下,加热肌肉的效果使效率/速度关系向右移动,从而使跨桥脱离更适合于收缩速度,因此减少了能量转换。

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