Literature DB >> 8933495

Improved athletic performance in highly trained cyclists after interval training.

F H Lindsay1, J A Hawley, K H Myburgh, H H Schomer, T D Noakes, S C Dennis.   

Abstract

This study determined whether a 4-wk high-intensity interval training program (HIT) would improve the 40-km time trial performances (TT40) of 8 competitive cyclists (peak O2 uptake 5.2 +/- 0.4 I.min-1) with a background of moderate-intensity endurance training (BASE). Before intervention, all cyclists were tested on at least three separate occasions to ensure that their baseline performances were stable. In these tests, peak sustained power output (PPO) was measured during a progressive exercise test, muscular resistance to fatigue was determined during a timed ride to exhaustion at 150% of PPO (TF150), and a TT40 was performed on a cycle-simulator. The coefficient of variation for all baseline tests was < 1.7 +/- 1.3% (mean +/- SD). Cyclists then replaced 15 +/- 2% of their approximately 300 km.wk-1 BASE training with HIT, which took place on 6 d and consisted of six to eight 5-min repetitions at 80% of PPO, with 60-s recovery between work bouts. HIT significantly improved TT40 (56.4 +/- 3.6 vs 54.4 +/- 3.2 min; P < 0.0001), PPO (416 +/- 32 vs 434 +/- 34 W; P < 0.01) and TF150 (60.5 +/- 9.3 vs 72.5 +/- 7.6 s; P < 0.01). The faster TT40 was due to a significant increase in both the cyclists' absolute (301 +/- 42 vs 326 +/- 43 W; P < 0.0001) and relative (72.1 +/- 5.6 vs 75.0 +/- 6.8% of PPO; P < 0.05) power output after HIT. These results indicate that a 4-wk program of HIT increased the PPO and fatigue resistance of competitive cyclists and improved their 40-km time trial performances.

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Mesh:

Year:  1996        PMID: 8933495     DOI: 10.1097/00005768-199611000-00013

Source DB:  PubMed          Journal:  Med Sci Sports Exerc        ISSN: 0195-9131            Impact factor:   5.411


  37 in total

Review 1.  Interval training for performance: a scientific and empirical practice. Special recommendations for middle- and long-distance running. Part II: anaerobic interval training.

Authors:  L V Billat
Journal:  Sports Med       Date:  2001-02       Impact factor: 11.136

Review 2.  The scientific basis for high-intensity interval training: optimising training programmes and maximising performance in highly trained endurance athletes.

Authors:  Paul B Laursen; David G Jenkins
Journal:  Sports Med       Date:  2002       Impact factor: 11.136

Review 3.  Adaptations to training in endurance cyclists: implications for performance.

Authors:  J A Hawley; N K Stepto
Journal:  Sports Med       Date:  2001       Impact factor: 11.136

Review 4.  Improving cycling performance: how should we spend our time and money.

Authors:  A E Jeukendrup; J Martin
Journal:  Sports Med       Date:  2001       Impact factor: 11.136

Review 5.  Training techniques to improve endurance exercise performances.

Authors:  Zuko N Kubukeli; Timothy D Noakes; Steven C Dennis
Journal:  Sports Med       Date:  2002       Impact factor: 11.136

Review 6.  Methods to determine aerobic endurance.

Authors:  Laurent Bosquet; Luc Léger; Patrick Legros
Journal:  Sports Med       Date:  2002       Impact factor: 11.136

Review 7.  The impact of resistance training on distance running performance.

Authors:  Alan P Jung
Journal:  Sports Med       Date:  2003       Impact factor: 11.136

Review 8.  A framework for understanding the training process leading to elite performance.

Authors:  David J Smith
Journal:  Sports Med       Date:  2003       Impact factor: 11.136

9.  Which laboratory variable is related with time trial performance time in the Tour de France?

Authors:  A Lucia; J Hoyos; M Pérez; A Santalla; C P Earnest; J L Chicharro
Journal:  Br J Sports Med       Date:  2004-10       Impact factor: 13.800

10.  Effects of 20-s and 180-s double poling interval training in cross-country skiers.

Authors:  Johnny E Nilsson; Hans-Christer Holmberg; Per Tveit; Jostein Hallén
Journal:  Eur J Appl Physiol       Date:  2004-03-13       Impact factor: 3.078

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