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Validation of a new method for estimating VO2max based on VO2 reserve.

机译:验证基于VO2储量估算VO2max的新方法。

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PURPOSE: The American College of Sports Medicine's (ACSM) preferred method for estimating maximal oxygen consumption (VO2max) has been shown to overestimate VO2max, possibly due to the short length of the cycle ergometry stages. This study validates a new method that uses a final 6-min stage and that estimates VO2max from the relationship between heart rate reserve (HRR) and VO2 reserve. METHODS: A cycle ergometry protocol was designed to elicit 65-75% HRR in the fifth and sixth minutes of the final stage. Maximal workload was estimated by dividing the workload of the final stage by %HRR. VO2max was then estimated using the ACSM metabolic equation for cycling. After the 6-min stage was completed, an incremental test to maximal effort was used to measure actual VO2max. Forty-nine subjects completed a pilot study using one protocol to reach the 6-min stage, and 50 additional subjects completed a modified protocol. RESULTS: The pilot study obtained a valid estimate of VO2max (r = 0.91, SEE = 3.4 mL x min(-1) x kg-1) with no over- or underestimation (mean estimated VO2max = 35.3 mL x min(-1) x kg(-1), mean measured VO2max = 36.1 mL x min(-1) x kg(-1)), but the average %HRR achieved in the 6-min stage was 78%, with several subjects attaining heart rates considered too high for submaximal fitness testing. The second study also obtained a valid estimate of VO2max (r = 0.89, SEE = 4.0 mL x min(-1) x kg(-1)) with no over- or underestimation (mean estimated VO2max = 36.7 mL x min(-1) x kg(-1), mean measured VO2max = 36.9 mL x min(-1) x kg(-1), and the average %HRR achieved in the 6-min stage was 64%. CONCLUSIONS: A new method for estimating VO2max from submaximal cycling based on VO2 reserve has been found to be valid and more accurate than previous methods.
机译:目的:美国运动医学会(ACSM)估算最大耗氧量(VO2max)的首选方法已被证明高估了VO2max,这可能是由于循环测功阶段的长度较短。这项研究验证了使用最后6分钟阶段并根据心率储备(HRR)和VO2储备之间的关系估算VO2max的新方法。方法:设计了一个循环测功规程,以在最后阶段的第五和第六分钟引发65-75%的HRR。通过将最后阶段的工作负载除以%HRR来估算最大工作负载。然后使用ACSM代谢方程式估算循环最大摄氧量。完成6分钟的阶段后,使用最大程度的增量测试来测量实际的VO2max。四十九名受试者使用一种方案达到了6分钟的阶段完成了一项初步研究,另外50名受试者完成了修改后的方案。结果:该初步研究获得了有效的最大摄氧量估计值(r = 0.91,SEE = 3.4 mL x min(-1)x kg-1),没有出现高估或低估的情况(平均估计VO2max = 35.3 mL x min(-1) x kg(-1),平均测得的VO2max = 36.1 mL x min(-1)x kg(-1)),但在6分钟内达到的平均%HRR为78%,其中一些受试者获得了心率对于次最大的适应性测试而言太高。第二项研究还获得了最大摄氧量的有效估计值(r = 0.89,SEE = 4.0 mL x min(-1)x kg(-1)),没有高估或低估(平均估计VO2max = 36.7 mL x min(-1) )x kg(-1),平均测得的VO2max = 36.9 mL x min(-1)x kg(-1),在6分钟内达到的平均%HRR为64%。结论:一种新的估算方法已经发现基于VO2储备的次最大循环的VO2max是有效的,并且比以前的方法更准确。

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