Literature DB >> 9587650

Biomechanical events in the time to exhaustion at maximum aerobic speed.

F Gazeau1, J P Koralsztein, V Billat.   

Abstract

Recent studies reported good intra-individual reproducibility, but great inter-individual variation in a sample of elite athletes, in time to exhaustion (tlim) at the maximal aerobic speed (MAS: the lowest speed that elicits VO2max in an incremental treadmill test). The purpose of the present study was, on the one hand, to detect modifications of kinematic variables at the end of the tlim of the VO2max test and, on the other hand, to evaluate the possibility that such modifications were factors responsible for the inter-individual variability in tlim. Eleven sub-elite male runners (Age = 24 +/- 6 years; VO2max = 69.2 +/- 6.8 ml kg-1 min-1; MAS = 19.2 +/- 1.45 km h-1; tlim = 301.9 +/- 82.7 s) performed two exercise tests on a treadmill (0% slope): an incremental test to determine VO2max and MAS, and an exhaustive constant velocity test to determine tlim at MAS. Statistically significant modifications were noted in several kinematic variables. The maximal angular velocity of knee during flexion was the only variable that was both modified through the tlim test and influenced the exercise duration. A multiple correlation analysis showed that tlim was predicted by the modifications of four variables (R = 0.995, P < 0.01). These variables are directly or indirectly in relation with the energic cost of running. It was concluded that runners who demonstrated stable running styles were able to run longer during MAS test because of optimal motor efficiency.

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Year:  1997        PMID: 9587650     DOI: 10.1076/apab.105.6.583.3272

Source DB:  PubMed          Journal:  Arch Physiol Biochem        ISSN: 1381-3455            Impact factor:   4.076


  5 in total

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4.  Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs.

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5.  Pacing Strategy Affects the Sub-Elite Marathoner's Cardiac Drift and Performance.

Authors:  Véronique Louise Billat; Florent Palacin; Matthieu Correa; Jean-Renaud Pycke
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  5 in total

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