躯干稳定降低了产生循环动力的代谢成本。

John McDaniel, Andrew Subudhi, James C Martin
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引用次数: 35

摘要

许多研究人员利用骑车运动来评估肌肉代谢。这些研究固有的假设是,全身呼吸的变化仅仅是由于工作肌肉的呼吸。然而,一些研究人员推测,躯干稳定的代谢成本可能有助于循环的代谢成本。因此,我们的主要目的是确定躯干稳定装置是否会降低产生循环动力的代谢成本。我们的第二个目的是确定本研究中使用的测力仪的有效性。9名男性骑自行车者在Velotron自行车测力仪上骑行,机械功率输出旨在在40、60和80 rpm时达到50%、75%和100%的通气阈值,有和没有躯干稳定。功率由Velotron在等功率模式下控制,并使用SRM功率计进行测量。我们通过间接热量测量和记录能量输出来确定代谢消耗。躯干稳定显著降低了产生次最大功率的代谢成本(1%),并且在踏板力最大的较低蹬速下(40转1.6%,60转1.2%,80转0.2%),降低幅度最大。用SRM功率计测量的功率与Velotron测力计控制单元的指定功率密切相关(R(2) > 0.99)。我们得出的结论是,与躯干稳定相关的肌肉收缩引起显著的代谢成本,这往往在低蹬速时最大。想要对腿部工作肌肉的新陈代谢做出精确推断的研究人员可能希望提供躯干稳定性作为减少可变性的一种手段,特别是在比较大范围蹬车速率的代谢数据时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Torso stabilization reduces the metabolic cost of producing cycling power.

Many researchers have used cycling exercise to evaluate muscle metabolism. Inherent in such studies is an assumption that changes in whole-body respiration are due solely to respiration at the working muscle. Some researchers, however, have speculated that the metabolic cost of torso stabilization may contribute to the metabolic cost of cycling. Therefore, our primary purpose was to determine whether a torso stabilization device would reduce the metabolic cost of producing cycling power. Our secondary purpose was to determine the validity of the ergometer used in this study. Nine male cyclists cycled on a Velotron cycle ergometer at mechanical power outputs intended to elicit 50, 75, and 100% of their ventilatory threshold at 40, 60, and 80 rpm, with and without torso stabilization. Power was controlled by the Velotron in iso-power mode and measured with an SRM powermeter. We determined metabolic cost by indirect calorimetery and recorded power output. Torso stabilization significantly reduced metabolic cost of producing submaximal power (1%), and reduction tended to be greatest at the lower pedaling rates where pedaling force was greatest (1.6% at 40 rpm, 1.2% at 60 rpm, 0.2% at 80 rpm). Power, measured with the SRM powermeter, was strongly correlated with that specified to the Velotron ergometer control unit (R(2) > 0.99). We conclude that muscular contractions associated with torso stabilization elicit significant metabolic costs, which tend to be greatest at low pedaling rates. Researchers who intend to make precise inferences regarding metabolism in the working muscles of the legs may wish to provide torso stabilization as a means of reducing variability, particularly when comparing metabolic data across a wide range of pedaling rates.

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