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The midpoint between ventilatory thresholds approaches maximal lactate steady state intensity in amateur cyclists

机译:通气阈值之间的中点接近业余骑自行车者的最大乳酸稳态强度

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The aim was to determine whether the midpoint between ventilatory thresholds (MPVT) corresponds to maximal lactate steady state (MLSS). Twelve amateur cyclists (21.0 ± 2.6 years old; 72.2 ± 9.0 kg; 179.8 ± 7.5 cm) performed an incremental test (25 W·min-1) until exhaustion and several constant load tests of 30 minutes to determine MLSS, on different occasions. Using MLSS determination as the reference method, the agreement with five other parameters (MPVT; first and second ventilatory thresholds: VT1 and VT2; respiratory exchange ratio equal to 1: RER = 1.00; and Maximum) was analysed by the Bland-Altman method. The difference between workload at MLSS and VT1, VT2, RER=1.00 and Maximum was 31.1 ± 20.0, -86.0 ± 18.3, -63.6 ± 26.3 and -192.3 ± 48.6 W, respectively. MLSS was underestimated from VT1 and overestimated from VT2, RER = 1.00 and Maximum. The smallest difference (-27.5 ± 15.1 W) between workload at MLSS and MPVT was in better agreement than other analysed parameters of intensity in cycling. The main finding is that MPVT approached the workload at MLSS in amateur cyclists, and can be used to estimate maximal steady state.
机译:目的是确定通气阈值(MPVT)之间的中点是否对应于最大乳酸稳态(MLSS)。十二名业余自行车手(21.0±2.6岁; 72.2±9.0千克; 179.8±7.5厘米)进行了增量测试(25 W·min-1),直到筋疲力尽,并在不同情况下进行了30分钟的几次恒负​​荷测试以确定MLSS。使用MLSS测定作为参考方法,通过Bland-Altman方法分析了与其他五个参数(MPVT;第一和第二通气阈值:VT1和VT2;呼吸交换比等于1:RER = 1.00;以及最大值)的一致性。 MLSS和VT1,VT2,RER = 1.00和最大时的工作负载之间的差异分别为31.1±20.0,-86.0±18.3,-63.6±26.3和-192.3±48.6W。 MLSS被VT1低估,而VT2被高估,RER = 1.00和最大值。 MLSS和MPVT的工作量之间的最小差异(-27.5±15.1 W)比其他强度分析参数在自行车运动中具有更好的一致性。主要发现是MPVT接近了业余自行车手MLSS的工作量,可用于估计最大稳态。

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