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Pedaling rate is an important determinant of human oxygen uptake during exercise on the cycle ergometer

机译:踏板速度是骑自行车测功机上锻炼过程中人体摄氧量的重要决定因素

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AbstractEstimation of human oxygen uptake (V˙o2) during exercise is often used as an alternative when its direct measurement is not feasible. The American College of Sports Medicine (ACSM) suggests estimating human V˙o2 during exercise on a cycle ergometer through an equation that considers individual's body mass and external work rate, but not pedaling rate (PR). We hypothesized that including PR in the ACSM equation would improve its V˙o2 prediction accuracy. Ten healthy male participants’ (age 19–48 years) were recruited and their steady-state V˙o2 was recorded on a cycle ergometer for 16 combinations of external work rates (0, 50, 100, and 150 W) and PR (50, 70, 90, and 110 revolutions per minute). V˙o2 was calculated by means of a new equation, and by the ACSM equation for comparison. Kinematic data were collected by means of an infrared 3-D motion analysis system in order to explore the mechanical determinants of V˙o2. Including PR in the ACSM equation improved the accuracy for prediction of sub-maximal V˙o2 during exercise (mean bias 1.9 vs. 3.3 mL O2 kg−1 min−1) but it did not affect the accuracy for prediction of maximal V˙o2 (P  0.05). Confirming the validity of this new equation, the results were replicated for data reported in the literature in 51 participants. We conclude that PR is an important determinant of human V˙o2 during cycling exercise, and it should be considered when predicting oxygen consumption.
机译:摘要当无法直接测量人体运动过程中的摄氧量(V˙o2)时,通常将其作为替代方法。美国运动医学学院(ACSM)建议通过一个方程式估算自行车运动测功机上的人体V˙o2,该方程式考虑个人的体重和外部工作率,而不考虑踩踏率(PR)。我们假设在ACSM方程中包含PR会提高其V˙o2预测精度。招募了10名健康的男性参与者(年龄在19-48岁之间),并将其稳态V˙o2记录在自行车测力计上,用于16种外部工作率(0、50、100和150W)和PR(50 ,每分钟70、90和110转)。 V˙o2是通过新方程式和ACSM方程式进行比较计算的。运动数据通过红外3-D运动分析系统收集,以探索V˙o2的机械决定因素。在ACSM方程中包含PR可以提高运动中亚最大V˙o2预测的准确性(平均偏差1.9对3.3 mL O 2 kg -1 min −1 ),但它不会影响预测最大V˙o2的准确性(P> 0.05)。为证实这一新方程式的有效性,该结果被复制用于51名参与者的文献报道数据。我们得出的结论是,PR是自行车运动过程中人V˙o2的重要决定因素,在预测氧气消耗时应考虑这一点。

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