The effect of self-selected versus standardised warm-ups on kayak ergometer performance in Hungarian elite kayakers: a randomized controlled crossover trial

匈牙利精英皮划艇运动员自主选择热身方式与标准化热身方式对皮划艇测功仪成绩的影响:一项随机对照交叉试验

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Abstract

BACKGROUND: Warm-up strategies play a crucial role in enhancing athletic performance and preventing injuries, yet the optimal warm-up protocol for sprint kayaking remains unclear. METHODS: This study compared the effects of four different warm-up approaches—interval, increasing intensity, continuous, and self-selected—on performance in a 2-minute maximal kayak ergometer test among eleven elite male sprint kayakers. Each participant completed all warm-up types in a randomized order, followed by a 2-minute all-out time trial. Performance power output, heart rate, blood lactate levels, and subjective ratings of the warm-ups were measured. RESULTS: Results showed that the interval warm-up produced the highest average power output, significantly outperforming the increasing intensity warm-up. However, performance after the self-selected warm-up was not significantly different from the interval warm-up, and athletes rated the self-selected warm-up significantly better than the other warm-ups. Higher blood lactate concentrations measured immediately before the time trial were strongly associated with reduced performance regardless of warm-up type. The increasing intensity warm-up resulted in the highest pre-trial lactate levels and lowest performance. CONCLUSIONS: These findings suggest that while structured interval warm-ups can enhance performance, self-selected warm-ups are appreciated by experienced sprint kayakers and can be implemented if blood lactate level is not excessively elevated. This study highlights the importance of balancing warm-up intensity to maximize performance without inducing premature fatigue. TRIAL REGISTRATION: Not applicable. This study did not involve a health care intervention and did not meet the criteria for clinical trial registration. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s13102-026-01555-6.

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