An empirical study of race times in recreational endurance runners

被引:53
作者
Vickers A.J. [1 ]
Vertosick E.A. [1 ]
机构
[1] Memorial Sloan Kettering Cancer Center, 485 Lexington Avenue, New York, 10017, NY
基金
美国国家卫生研究院;
关键词
Performance; Prediction modeling; Running; Sports training;
D O I
10.1186/s13102-016-0052-y
中图分类号
学科分类号
摘要
Background: Studies of endurance running have typically involved elite athletes, small sample sizes and measures that require special expertise or equipment. Methods: We examined factors associated with race performance and explored methods for race time prediction using information routinely available to a recreational runner. An Internet survey was used to collect data from recreational endurance runners (N = 2303). The cohort was split 2:1 into a training set and validation set to create models to predict race time. Results: Sex, age, BMI and race training were associated with mean race velocity for all race distances. The difference in velocity between males and females decreased with increasing distance. Tempo runs were more strongly associated with velocity for shorter distances, while typical weekly training mileage and interval training had similar associations with velocity for all race distances. The commonly used Riegel formula for race time prediction was well-calibrated for races up to a half-marathon, but dramatically underestimated marathon time, giving times at least 10 min too fast for half of runners. We built two models to predict marathon time. The mean squared error for Riegel was 381 compared to 228 (model based on one prior race) and 208 (model based on two prior races). Conclusions: Our findings can be used to inform race training and to provide more accurate race time predictions for better pacing. © 2016 The Author(s).
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共 25 条
[1]  
Race Time Predictor
[2]  
Coast J.R., Blevins J.S., Wilson B.A., Do gender differences in running performance disappear with distance?, Can J Appl Physiol, 29, 2, pp. 139-145, (2004)
[3]  
Cheuvront S.N., Carter R., Deruisseau K.C., Moffatt R.J., Running performance differences between men and women:an update, Sports Med, 35, 12, pp. 1017-1024, (2005)
[4]  
Karp J.R., Training characteristics of qualifiers for the U.S. Olympic Marathon Trials, Int J Sports Physiol Perform, 2, 1, pp. 72-92, (2007)
[5]  
Seiler S., Tonnessen E., Intervals, thresholds, and long slow distance: The role of intensity and duration in endurance training, Sportscience, 13, pp. 32-53, (2009)
[6]  
Riegel P.S., Athletic records and human endurance, Am Sci, 69, pp. 285-290, (1981)
[7]  
Takeshima N., Tanaka K., Prediction of endurance running performance for middle-aged and older runners, Br J Sports Med, 29, 1, pp. 20-23, (1995)
[8]  
Knechtle B., Relationship of anthropometric and training characteristics with race performance in endurance and ultra-endurance athletes, Asian J Sports Med, 5, 2, pp. 73-90, (2014)
[9]  
Florence S., Weir J.P., Relationship of critical velocity to marathon running performance, Eur J Appl Physiol Occup Physiol, 75, 3, pp. 274-278, (1997)
[10]  
Rust C.A., Knechtle B., Knechtle P., Barandun U., Lepers R., Rosemann T., Predictor variables for a half marathon race time in recreational male runners, Open Access J Sports Med, 2, pp. 113-119, (2011)