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Changes in the multi-joint kinematics and co-ordination after repetitive windsurfing pumping task

机译:重复帆板抽水任务后多关节运动学和协调的变化

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Aim. This study investigated the change in kinematics after repetitive continuous maximal windsurfing pumping on a simulator by utilizing 3-D motion analysis. Methods. Six competitive windsurfers exercised on a tailor-made simulator. The wind force was simulated by attaching the boom to the power head of a rowing ergometer. The exercise consisted of 3 sets of 3-minute maximum pumping. The motion of wrist, elbow, shoulder (on sagittal and frontal planes), waist, hip, knee and ankle joints were recorded by 2 video cameras. Kinematic analysis included the assessment of the change of the range of motion, movement speed (pulling phase and the whole pumping cycle), as well as the movement pattern of all tested joints. Results. Modified motor strategy was documented by the significant drop of vertical excursion of the body centre of mass. Moreover, the ankle plantar flexors and dorsiflexors, mid-deltoid as well as wrist extensor and flexor, had significant change of movement according to the assessed parameters. Therefore, they may be the muscles that were more influenced than the other assessed muscles after continuous maximal pumping. The change of muscle co-ordination may be a compensation mechanism to maintain work output. Conclusion. Findings in this study may suggest the importance of implementing specific muscle training program for the competitive windsurfers to increase the pumping capacity.
机译:目标。这项研究通过利用3-D运动分析研究了在模拟器上反复连续进行最大风帆冲浪后的运动学变化。方法。在定制的模拟器上锻炼了六个有竞争力的风帆冲浪者。通过将吊杆连接到划船测功机的动力头来模拟风力。练习包括3组3分钟的最大抽气时间。腕部,肘部,肩膀(在矢状和额面),腰部,臀部,膝盖和脚踝关节的运动均由两台摄像机记录。运动学分析包括评估运动范围,运动速度(牵引阶段和整个泵送周期)以及所有测试关节的运动方式的变化。结果。身体质心的垂直偏移显着下降证明了改良的运动策略。此外,根据评估的参数,踝足底屈肌和背屈肌,中三角肌以及腕部伸肌和屈肌的运动发生了显着变化。因此,在连续最大抽水后,它们可能是比其他评估肌肉影响更大的肌肉。肌肉协调性的改变可能是维持工作量的补偿机制。结论。这项研究的结果可能表明,为有竞争力的风帆运动员实施特定的肌肉训练计划以提高抽水能力非常重要。

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