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Predicting VO2max in Collegiate American-Style Football Athletes

机译:预测大学美式足球运动员的最大摄氧量

摘要

Introduction: Maximal oxygen uptake (VO2max) is an important measurement for athletic performance. A common method of VO2max prediction is the Foster equation (MSSE, 1996). This equation produces accurate predictions in a normal population, however, significant difference has been noted between predicted and measured VO2max values when testing athletes. While other studies have produced new equations for athletes in general or even for soccer players, to our knowledge none have made one specifically for American-style football players. Purpose: The aim of this study is to develop an accurate VO2max prediction equation for collegiate American-style football athletes for testing on the treadmill with the standard Bruce protocol. Methods: Over 13 years, a total of 413 collegiate American football players (age: 18.5±1.15 yrs, height: 186.8±7.0 cm, weight 102.1±20.8 kg) were assessed for VO2max (Medical Graphics, Corp® Metabolic Cart) using the standard Bruce treadmill protocol. Linear regression analysis (JMP v. 12) determined which factor out of height, weight, or time spent on the test had a greater impact on VO2max. The linear regression analysis of the most significant factor against VO2max produced a prediction equation. Predicted VO2max was calculated using these data in both the Foster equation and this novel equation. Predicted values were compared to actual measured values with a t-test. α=0.05 for all statistical tests. Results: Of all the factors, time had the strongest relationship (pu3c0.0001; r2=0.6464). The linear regression between VO2max and time produced a prediction equation: VO2max= -3.546 + 3.904(time in minutes). Both the Foster equation and this new equation were significantly and positively correlated with the actual VO2max values (Foster=0.805, New r=0.804). However, t-tests indicate that the Foster equation results were significantly different from the measured values (p=0.0007), and the new model’s results were not significantly different (p=1.0). Conclusion: The Foster equation is not a reliable predictor of VO2max as assessed on a treadmill in collegiate American-style football athletes. This new equation is more accurate to predict VO2max in this population.
机译:简介:最大摄氧量(VO2max)是衡量运动成绩的重要指标。 VO2max预测的一种常用方法是Foster方程(MSSE,1996)。该方程可在正常人群中产生准确的预测值,但是,在测试运动员时,VO2max预测值与测量值之间存在显着差异。尽管其他研究为一般运动员甚至足球运动员提供了新的方程式,但据我们所知,还没有一个方程式专门针对美式足球运动员。目的:本研究的目的是为大学橄榄球运动员开发精确的VO2max预测方程式,以便使用标准Bruce协议在跑步机上进行测试。方法:在13年中,总共413名美国大学橄榄球运动员(年龄:18.5±1.15岁,身高:186.8±7.0 cm,体重102.1±20.8 kg)使用VO2max评估(医学图形,Corp®代谢推车)。标准的布鲁斯跑步机协议。线性回归分析(JMP v。12)确定了身高,体重或测试时间中哪个因素对VO2max的影响更大。针对最大VO2max的最重要因素的线性回归分析产生了一个预测方程。使用Foster方程和此新方程式中的这些数据来计算预测的VO2max。通过t检验将预测值与实际测量值进行比较。所有统计检验的α= 0.05。结果:在所有因素中,时间具有最强的关系(p u3c0.0001; r2 = 0.6464)。 VO2max和时间之间的线性回归产生一个预测方程:VO2max = -3.546 + 3.904(以分钟为单位的时间)。 Foster方程和这个新方程均与实际VO2max值显着正相关(Foster = 0.805,New r = 0.804)。但是,t检验表明Foster方程的结果与测量值有显着差异(p = 0.0007),新模型的结果也无显着差异(p = 1.0)。结论:在大学跑步的美式足球运动员中,Foster方程并不是VO2max的可靠预测指标。这个新方程更准确地预测了该人群的最大摄氧量。

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