Poór Oliver, Zemková Erika
Department of Sports Kinanthropology, Faculty of Physical Education and Sport, Comenius University in Bratislava, 81469 Bratislava, Slovakia.
Sports Technology Institute, Faculty of Electrical Engineering and Information Technology, Slovak University of Technology in Bratislava, 81219 Bratislava, Slovakia.
Sports (Basel). 2018 Oct 9;6(4):113. doi: 10.3390/sports6040113.
This study evaluates changes in trunk rotational power at different weights and velocities after the preparatory and competitive periods in ice-hockey players, tennis players, and canoeists. The subjects performed trunk rotations to each side with a barbell of different weights placed on the shoulders (6, 10, 12, 16, 20, 22, and 26 kg) prior to and after 6 weeks of the preparatory period and 6 weeks of the competitive period. The results showed that mean power produced in the acceleration phase of trunk rotations increased significantly at weights from 10 to 26 kg or 6 to 26 kg after the preparatory and competitive periods in tennis players. The values obtained during trunk rotations with weights ≥12 kg also increased significantly after the preparatory period in ice-hockey players, whereas there were no significant changes after the competitive period. Similarly, the mean power during trunk rotations with weights ≥10 kg increased significantly only after the preparatory period in canoeists. Similar changes were observed for the peak power. These findings demonstrate that changes in trunk rotational power reflect the specificity of their training programs. This information may provide a basis for designing exercises focused on improvements of power produced during trunk rotations under loading conditions.
本研究评估了冰球运动员、网球运动员和皮划艇运动员在准备期和比赛期后,不同重量和速度下躯干旋转力量的变化。在准备期6周和比赛期6周之前及之后,受试者将不同重量的杠铃(6、10、12、16、20、22和26千克)置于肩部,向身体两侧进行躯干旋转动作。结果显示,在网球运动员的准备期和比赛期后,躯干旋转加速阶段产生的平均力量在重量从10千克到26千克或6千克到26千克时显著增加。在冰球运动员的准备期后,使用重量≥12千克进行躯干旋转时获得的值也显著增加,而在比赛期后则无显著变化。同样,皮划艇运动员仅在准备期后,使用重量≥10千克进行躯干旋转时的平均力量显著增加。峰值力量也观察到类似变化。这些发现表明,躯干旋转力量的变化反映了他们训练计划的特殊性。这些信息可为设计旨在提高负重条件下躯干旋转产生力量的练习提供依据。