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Force-velocity and power-velocity relationships during maximal short-term rowing ergometry.

机译:最大短期划船测功期间的力-速度和功率-速度关系。

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INTRODUCTION: Maximal rowing power-velocity relationships that exhibit ascending and descending limbs and a local maximum have not been reported. Further, duty cycle (portion of the stroke occupied by the pull phase) is unconstrained during rowing and is known to influence average muscular power output. PURPOSE: Our purposes for conducting this study were to fully describe maximal short-term rowing force-velocity and power-velocity relationships. Within the context of those purposes, we also aimed to determine the apex of the power-velocity relationship and the influence of freely chosen duty cycle on stroke power. METHODS: Collegiate varsity male rowers (N = 11, 22.9 +/- 2.3 yr, 84.1 + 12.1 kg, 184 +/- 7 cm) performed five maximal rowing trials using an inertial load ergometer. For each stroke, we determined force and power averaged for the pull phase and the complete stroke, instantaneous peak force and power, average handle velocity for the pull phase, handle velocity at peak instantaneous force andpower, pull time, recovery time, and freely chosen duty cycle. Force-velocity and power-velocity relationships were characterized using regression analyses, and optimal velocities were determined from the regression coefficients. RESULTS: Pull force-velocity (r2 = 0.99) and peak instantaneous force-velocity (r2 = 0.93) relationships were linear. Stroke power (r2 = 0.98), pull power (r2 = 0.99), and instantaneous peak power (r2 = 0.99) were quadratic, with apexes at 2.04, 3.25, and 3.43 m x s(-1), respectively. Maximum power values were 812 +/- 28 W (9.8 +/- 0.4 W x kg(-1)), 1995 +/- 67 W (23.9 +/- 0.7 W x kg(-1)), and 3481 +/- 112 W (41.9 +/- 1.3 W x kg(-1)) for stroke, pull, and instantaneous power, respectively. Freely chosen duty cycle decreased from 58 +/- 1% on the first stroke to 26 +/- 1% on the fifth stroke. CONCLUSIONS: These data characterized the maximal rowing force-velocity and power-velocity relationships and identified the optimal velocity for producing maximal rowing power. Differences in maximum pull and stroke power emphasized the importance of duty cycle.
机译:引言:最大的划艇力量-速度关系表现出上升和下降的肢体和局部最大值尚未见报道。此外,占空比(拉力阶段所占行程的一部分)在划船期间不受限制,并且已知会影响平均肌肉力量输出。目的:我们进行这项研究的目的是充分描述最大的短期划船力-速度和功率-速度关系。在这些目的的背景下,我们还旨在确定功率-速度关系的顶点以及自由选择的占空比对冲程功率的影响。方法:大学高校男性赛艇运动员(N = 11,22.9 +/- 2.3 yr,84.1 + 12.1 kg,184 +/- 7 cm)使用惯性负荷测功计进行了五次最大的划船试验。对于每个冲程,我们确定拉力阶段和整个冲程的平均力和功率,瞬时峰值力和功率,拉力阶段的平均手柄速度,峰值瞬时力和功率下的手柄速度,拉力时间,恢复时间,并自由选择占空比。使用回归分析来表征力-速度和功率-速度关系,并根据回归系数确定最佳速度。结果:拉力-速度(r2 = 0.99)和峰值瞬时力-速度(r2 = 0.93)的关系是线性的。冲程功率(r2 = 0.98),拉动功率(r2 = 0.99)和瞬时峰值功率(r2 = 0.99)是二次方的,其顶点分别为2.04、3.25和3.43 m x s(-1)。最大功率值为812 +/- 28 W(9.8 +/- 0.4 W x kg(-1)),1995 +/- 67 W(23.9 +/- 0.7 W x kg(-1))和3481 + / -冲程,拉力和瞬时功率分别为112 W(41.9 +/- 1.3 W x kg(-1))。自由选择的占空比从第一行程的58 +/- 1%降至第五行程的26 +/- 1%。结论:这些数据表征了最大划船力-速度和功率-速度关系,并确定了产生最大划船力的最佳速度。最大拉力和冲程功率的差异强调了占空比的重要性。

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