首页> 美国卫生研究院文献>Journal of Sports Science Medicine >Maximal Oxygen Uptake cannot be Determined in the Incremental Phase of The Lactate Minimum Test on a Cycle Ergometer
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Maximal Oxygen Uptake cannot be Determined in the Incremental Phase of The Lactate Minimum Test on a Cycle Ergometer

机译:在循环测功机上的最小乳酸盐测试增量阶段无法确定最大摄氧量

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摘要

The aim of this study was to investigate the maximal oxygen uptake (VO2MAX) determined using the incremental phase of the lactate minimum test (LM) on a cycle ergometer. Fifteen trained men were submitted to a graded exercise test (GXT) to evaluate the VO2MAX and LM. The total durations of the GXT and LM were 11.2±1.8 minutes (CI95%:10.2-12.3 minutes) and 25.3±3.2 minutes (CI95%:23.5-27.0), respectively. For the variables measured at exhaustion in both the GXT and LM, the oxygen uptake (54.6 ± 8.1 ml·kg−1·min−1vs 50.0 ± 7.7 ml·kg−1·min−1), carbon dioxide production (66.1 ± 7.5 ml·kg−1·min−1 vs 50.4 ± 8.0 ml·kg−1·min−1), ventilation (153.9 ± 19.0 L·min−1 vs 129.9 ± 22.9 L·min−1), respiratory exchange ratio (1.22 ± 0.10 vs1.01 ± 0.05), maximal power output achieved (331.6 ± 45.8 W vs 242.4 ± 41.0 W), heart rate (183.1 ± 6.9 bpm vs175.9 ± 10.6 bpm) and lactate (10.5 ± 2.3 mmol·L−1 vs 6.6 ± 2.2 mmol·L−1) were statistically lower in the LM (p < 0.05). However, the values of rating of perceived exertion (17.6 ± 2.5 for GXT and 17.2 ± 2.3 for LM) did not differ (ES = 0.12 and CV = 7.8%). There was no good agreement between the values of the VO2MAX from the GXT and VO2PEAK from the LM, as evidenced in the Bland-Altman plot (4.7 ml·kg−1·min−1 and 0.34 L·min−1 of mean differences, respectively), as well as the high values of the upper and lower limits of agreement. We conclude that the VO2PEAK values obtained in the incremental phase of the LM underestimate the VO2MAX.Key points class="unordered" style="list-style-type:disc">The VO2MAX is not attained during the incremental phase of the lactate minimum test;The physiological responses at exhaustion during LM are not similar to physiological responses measured during GXT;There is a weak agreement between the peak VO2 measured at exhaustion during LM and the VO2MAX measured during GXT.
机译:这项研究的目的是调查在循环测功机上使用最小乳酸盐测试(LM)的增量阶段确定的最大摄氧量(VO2MAX)。 15名受过训练的男人接受了分级运动测试(GXT),以评估VO2MAX和LM。 GXT和LM的总持续时间分别为11.2±1.8分钟(CI95%:10.2-12.3分钟)和25.3±3.2分钟(CI95%:23.5-27.0)。对于在GXT和LM疲劳状态下测量的变量,摄氧量(54.6±8.1 ml·kg -1 ·min -1 vs 50.0±7.7 ml·kg -1 ·min -1 ),二氧化碳生成量(66.1±7.5 ml·kg −1 ·min -1 vs 50.4±8.0 ml·kg −1 ·min -1 ),通风(153.9±19.0 L·min -1 vs 129.9 ±22.9 L·min −1 ),呼吸交换比(1.22±0.10 vs1.01±0.05),获得的最大功率输出(331.6±45.8 W vs 242.4±41.0 W),心率(183.1 ±6.9 bpm vs.175.9±10.6 bpm)和乳酸(10.5±2.3mmol·L -1 与6.6±2.2mmol·L -1 )在统计学上较低LM(p <0.05)。但是,感觉到的劳累等级值(GXT为17.6±2.5,LM为17.2±2.3)没有差异(ES = 0.12和CV = 7.8%)。 Bland-Altman图(4.7 ml·kg −1 ·min -1 <的结果)证明了GXT的VO2MAX值和LM的VO2PEAK值之间没有很好的一致性。 / sup>和均值差的0.34 L·min -1 ),以及协议上限和下限的较高值。我们得出结论,在LM的增量阶段获得的VO2PEAK值低估了VO2MAX。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior = unordered prefix- word = mark-type = disc max-label-size = 0-> 在乳酸最低限度试验的递增阶段未达到VO2MAX; LM衰竭时的生理反应为与GXT期间测得的生理反应不同; 在LM期间在精疲力竭时测得的VO2峰值与GXT期间测得的VO2MAX之间存在较弱的一致性。

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