Long-range correlations and complex regulation of pacing in long-distance road racing
Purpose: To analyze time-domain, spectral, and fractal properties of speed regulation during half-marathon racing. Methods: In 21 male experienced runners, high-resolution data on speed (V), stride frequency (SF), and stride length (SL) were assessed during half-marathon competition (21,098 m). Performance times, timeand frequency-domain variability, spectral-scaling exponent (beta), and fractal dimension (FD) of V, SF, and SL were analyzed. Results: V of 3.65 ± 0.41 m/s, SF of 1.41 ± 0.05 Hz, and SL of 2.58 ± 0.25 m occurred with higher (P < .05) individual variability in V and SL than in SF. Beta and FD were always 1.04-1.88 and 1.56-1.99, respectively. Beta and FD differed (P < .05) in SF and SL compared with V and were correlated in V and SL (r = .91, P < .05). Spectral peaks of V, SF, and SL occurred at wavelengths of 3-35 min, and those of V and SL were interrelated (r = .56, P < .05). Mean SF and mean SL were significantly correlated with performance (r = .59 and r = .95, P < .05). SL accounted for 84% ± 6% and SF for 16% ± 6% of speed variability. Conclusions: The observed nonrandom fluctuations in V, SF, and SL correspond to nonstationary fractional Brownian motion with inherent long-range correlations. This indicates a similar complex regulation process in experienced runners that is primarily mediated via SL.
© Copyright 2014 International Journal of Sports Physiology and Performance. All rights reserved.
| Subjects: | |
|---|---|
| Notations: | endurance sports |
| Tagging: | Pacing Halbmarathon |
| Published in: | International Journal of Sports Physiology and Performance |
| Language: | English |
| Published: |
2014
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| Online Access: | http://doi.org/10.1123/IJSPP.2012-0334 |
| Volume: | 9 |
| Issue: | 3 |
| Pages: | 544-553 |
| Document types: | article |
| Level: | advanced |