Rowing Crew Coordination Dynamics at Increasing Stroke Rates
Identifieur interne : 000308 ( Pmc/Corpus ); précédent : 000307; suivant : 000309Rowing Crew Coordination Dynamics at Increasing Stroke Rates
Auteurs : Laura S. Cuijpers ; Frank T. J. M. Zaal ; Harjo J. De PoelSource :
- PLoS ONE [ 1932-6203 ] ; 2015.
Abstract
In rowing, perfect synchronisation is important for optimal performance of a crew. Remarkably, a recent study on ergometers demonstrated that antiphase crew coordination might be mechanically more efficient by reducing the power lost to within-cycle velocity fluctuations of the boat. However, coupled oscillator dynamics predict the stability of the coordination to decrease with increasing stroke rate, which in case of antiphase may eventually yield breakdowns to in-phase. Therefore, this study examined the effects of increasing stroke rate on in- and antiphase crew coordination in rowing dyads. Eleven experienced dyads rowed on two mechanically coupled ergometers on slides, which allowed the ergometer system to move back and forth as one ‘boat’. The dyads performed a ramp trial in both in- and antiphase pattern, in which stroke rates gradually increased from 30 strokes per minute (
Url:
DOI: 10.1371/journal.pone.0133527
PubMed: 26185987
PubMed Central: 4505883
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