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Predicting Maximal Oxygen Uptake Using the 3-Minute All-Out Test in High-Intensity Functional Training Athletes

机译:使用高强度函数训练运动员的3分钟全面测试预测最大氧吸收

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摘要

Maximal oxygen uptake (VO2max) and critical speed (CS) are key fatigue-related measurements that demonstrate a relationship to one another and are indicative of athletic endurance performance. This is especially true for those that participate in competitive fitness events. However, the accessibility to a metabolic analyzer to accurately measure VO2max is expensive and time intensive, whereas CS may be measured in the field using a 3 min all-out test (3MT). Therefore, the purpose of this study was to examine the relationship between VO2max and CS in high-intensity functional training (HIFT) athletes. Twenty-five male and female (age: 27.6 ± 4.5 years; height: 174.5 ± 18.3 cm; weight: 77.4 ± 14.8 kg; body fat: 15.7 ± 6.5%) HIFT athletes performed a 3MT as well as a graded exercise test with 48 h between measurements. True VO2max was determined using a square-wave supramaximal verification phase and CS was measured as the average speed of the last 30 s of the 3MT. A statistically significant and positive correlation was observed between relative VO2max and CS values (r = 0.819, p < 0.001). Based on the significant correlation, a linear regression analysis was completed, including sex, in order to develop a VO2max prediction equation (VO2max (mL/kg/min) = 8.449(CS) + 4.387(F = 0, M = 1) + 14.683; standard error of the estimate = 3.34 mL/kg/min). Observed (47.71 ± 6.54 mL/kg/min) and predicted (47.71 ± 5.7 mL/kg/min) VO2max values were compared using a dependent t-test and no significant difference was displayed between the observed and predicted values (p = 1.000). The typical error, coefficient of variation, and intraclass correlation coefficient were 2.26 mL/kg/min, 4.90%, and 0.864, respectively. The positive and significant relationship between VO2max and CS suggests that the 3MT may be a practical alternative to predicting maximal oxygen uptake when time and access to a metabolic analyzer is limited.
机译:最大氧气吸收(VO2MAX)和临界速度(CS)是关键的疲劳相关测量,其彼此展示了关系,并指示运动耐力性能。对于参与竞争性健身事件的人尤其如此。然而,对代谢分析仪进行准确测量VO2Max的可访问性是昂贵的且时间密集,而CS可以使用3分钟的全输出测试(3MT)在现场中测量。因此,本研究的目的是检查VO2MAX与CS在高强度函数训练(六升)运动员之间的关系。二十五名男女(年龄:27.6±4.5岁;身高:174.5±18.3厘米;体脂:15.7±6.5%)送达运动员300万,以及48次进行评分运动试验测量之间的h。使用方波SupraMaximal验证阶段测定真正的VO2Max,并且Cs被测量为3MT的最后30秒的平均速度。在相对vO2max和Cs值之间观察到统计学上显着和正相关(r = 0.819,p <0.001)。基于显着的相关性,完成了线性回归分析,包括性别,以便开发VO2MAX预测方程(VO2MAX(ml / kg / min)= 8.449(Cs)+ 4.387(f = 0,m = 1)+ 14.683;估计标准误差= 3.34ml / kg / min)。观察到(47.71±6.54ml / kg / min),预测(47.71±5.7ml / kg / mm / kg / min)使用依赖的t检验进行比较,观察和预测值之间没有显着差异(p = 1.000) 。典型的误差,变化系数和脑相关系数分别为2.26ml / kg / min,4.90%和0.864。 VO2MAX和CS之间的正面和显着关系表明,3MT可以是预测时间和对代谢分析仪的最大氧摄取的实际替代方案。

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