Faculty of Health Sciences (Exercise Health and Performance Research Group), The University of Sydney, Lidcombe, NSW, Australia.
Scand J Med Sci Sports. 2013 Aug;23(4):468-77. doi: 10.1111/j.1600-0838.2011.01404.x. Epub 2011 Oct 30.
The effect of rowing ergometer design upon power delivery and coordination patterns of the rowing stroke was analyzed for 14 elite rowers. Rowers were tested in three ergometer conditions: the fixed stretcher Concept2c ergometer, the Concept2c ergometer mounted on sliding rails, and the sliding stretcher RowPerfect ergometer. Ergometers were instrumented to measure the external force generated at the handle and the foot stretcher and a nine-segment inverse dynamics model used to calculate joint and overall power delivery. Peak power generation and absorption at the knee joint was significantly greater, and total power delivered to the ergometer delayed on the fixed stretcher ergometer when compared to the sliding stretcher ergometers. No differences were found in the mechanical energy delivered to the handle of the three ergometers; however, greater joint mechanical energy production of the lower limb reduced mechanical efficiency when rowing the Concept2c fixed ergometer. The fixed foot stretcher on the Concept2c fixed ergometer acts to increase the inertial forces that the rower must overcome at the catch, increasing the moment and power output at the knee, and affecting the coordination pattern during the recovery phase.
对 14 名精英赛艇运动员进行了赛艇划桨器设计对划桨动作的动力传递和协调模式的影响分析。在三种划桨器条件下对赛艇运动员进行了测试:固定拉索Concept2c 划桨器、安装在滑动轨道上的 Concept2c 划桨器和滑动拉索RowPerfect 划桨器。划桨器配备了用于测量手柄和脚蹬处产生的外力的仪器,以及用于计算关节和整体动力传递的九个部分逆动力学模型。与滑动拉索划桨器相比,在固定拉索划桨器上时,膝关节处的峰值功率产生和吸收明显更大,并且传递到划桨器的总功率延迟。三个划桨器的手柄传递的机械能没有差异;然而,当划桨Concept2c 固定划桨器时,下肢关节的机械能产生更大,从而降低了机械效率。Concept2c 固定划桨器上的固定脚蹬器作用是增加划手在抓水时必须克服的惯性力,增加膝关节的扭矩和功率输出,并影响恢复阶段的协调模式。