Galbraith Andy, Hopker James, Cardinale Marco, Cunniffe Brian, Passfield Louis
School of Sport and Exercise Sciences, University of Kent, Chatham Maritime, UK.
Int J Sports Physiol Perform. 2014 Nov;9(6):1019-25. doi: 10.1123/ijspp.2013-0508. Epub 2014 Mar 19.
To examine the training and concomitant changes in laboratory- and field-test performance of highly trained endurance runners.
Fourteen highly trained male endurance runners (mean ± SD maximal oxygen uptake [VO2max] 69.8 ± 6.3 mL · kg-1 · min-1) completed this 1-y training study commencing in April. During the study the runners undertook 5 laboratory tests of VO2max, lactate threshold (LT), and running economy and 9 field tests to determine critical speed (CS) and the modeled maximum distance performed above CS (D'). The data for different periods of the year were compared using repeated-measures ANOVA. The influence of training on laboratory- and field-test changes was analyzed by multiple regression.
Total training distance varied during the year and was lower in May-July (333 ± 206 km, P = .01) and July-August (339 ± 206 km, P = .02) than in the subsequent January-February period (474 ± 188 km). VO2max increased from the April baseline (4.7 ± 0.4 L/min) in October and January periods (5.0 ± 0.4 L/min, P ≤ .01). Other laboratory measures did not change. Runners' CS was lowest in August (4.90 ± 0.32 m/s) and highest in February (4.99 ± 0.30 m/s, P = .02). Total training distance and the percentage of training time spent above LT velocity explained 33% of the variation in CS.
Highly trained endurance runners achieve small but significant changes in VO2max and CS in a year. Increases in training distance and time above LT velocity were related to increases in CS.
研究高水平耐力跑运动员的训练情况以及实验室测试和现场测试成绩的相应变化。
14名高水平男性耐力跑运动员(平均±标准差最大摄氧量[VO2max]为69.8±6.3 mL·kg-1·min-1)从4月开始参加了这项为期1年的训练研究。在研究期间,运动员进行了5次VO2max、乳酸阈值(LT)和跑步经济性的实验室测试,以及9次现场测试以确定临界速度(CS)和在CS以上的模拟最大跑距(D')。使用重复测量方差分析比较一年中不同时间段的数据。通过多元回归分析训练对实验室测试和现场测试变化的影响。
全年的总训练距离有所变化,5月至7月(333±206 km,P = 0.01)和7月至8月(339±206 km,P = 0.02)低于随后的1月至2月期间(474±188 km)。VO2max从4月的基线水平(4.7±0.4 L/min)在10月和1月期间有所增加(5.0±0.4 L/min,P≤0.01)。其他实验室指标没有变化。运动员的CS在8月最低(4.90±0.32 m/s),在2月最高(4.99±0.30 m/s,P = 0.02)。总训练距离和高于LT速度的训练时间百分比解释了CS变化的33%。
高水平耐力跑运动员在一年中VO2max和CS有微小但显著的变化。训练距离和高于LT速度的训练时间增加与CS的增加有关。