a Institute of Sport Science , Friedrich Schiller University of Jena , Jena , Germany.
b Olympiastützpunkt Sachsen-Anhalt , Magdeburg , Germany.
Eur J Sport Sci. 2018 May;18(4):491-496. doi: 10.1080/17461391.2018.1435726. Epub 2018 Feb 15.
During competition, kayak athletes must optimally adapt to environmental factors (e.g. wind, waves) to achieve peak performance. However, the ability to adapt to such perturbations has never been assessed in kayak paddling. Therefore, the aim of the current study was to evaluate the local dynamic stability in sports technique of youth sprint kayak athletes. In a cross-sectional study, 14 healthy male athletes were recruited from an elite youth sprint kayak squad. During an incremental kayak ergometer test, mean power, heart rates and local dynamic technique stability of hands, arms, trunk and paddle were registered and the association with the athletes 2000 m free-water times were estimated using mixed models. The 2000 m free-water performance significantly predicted the paddles (p = .037) local dynamic stability whereas no association was found for the trunk or the upper extremity kinematics. In conclusion, kayak athletes with high-performance capability over 2000 m paddling depict high local dynamic technique stability. This emphasizes the importance of a stable technique for advanced kayak skills, especially regarding paddling movements.
在比赛中,皮划艇运动员必须最大限度地适应环境因素(如风、浪),以达到最佳表现。然而,在皮划艇划桨中,从来没有评估过适应这种干扰的能力。因此,本研究的目的是评估青年短距离皮划艇运动员的运动技术的局部动态稳定性。在一项横断面研究中,从一个精英青年短距离皮划艇队中招募了 14 名健康的男性运动员。在递增式皮划艇测功仪测试中,记录了平均功率、心率以及手、臂、躯干和桨的局部动态技术稳定性,并使用混合模型估计了运动员 2000 米自由泳时间的相关性。2000 米自由泳成绩显著预测了桨的局部动态技术稳定性(p=.037),而躯干或上肢运动学则没有相关性。总之,在 2000 米划桨中表现出高能力的皮划艇运动员具有较高的局部动态技术稳定性。这强调了稳定技术对于高级皮划艇技能的重要性,尤其是在划桨动作方面。