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Effects of weighted sled towing on ground reaction force during the acceleration phase of sprint running

机译:短跑加速阶段加权雪橇牵引对地面反作用力的影响

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Athletes use weighted sled towing to improve sprint ability, but little is known about its biomechanics. The purpose of this study was to investigate the effect of weighted sled towing with two different loads on ground reaction force. Ten physically active men (mean ± SD: age 27.9 ± 1.9 years; stature 1.76 ± 0.06 m; body mass 80.2 ± 9.6 kg) performed 5 m sprints under three conditions; (a) unresisted, (b) towing a sled weighing 10% of body mass (10% condition) and (c) towing a sled weighing 30% of body mass (30% condition). Ground reaction force data during the second ground contact after the start were recorded and compared across the three conditions. No significant differences between the unresisted and 10% conditions were evident, whereas the 30% condition resulted in significantly greater values for the net horizontal and propulsive impulses (P < 0.05) compared with the unresisted condition due to longer contact time and more horizontal direction of force application to the ground. It is concluded that towing a sled weighing 30% of body mass requires more horizontal force application and increases the demand for horizontal impulse production. In contrast, the use of 10% body mass has minimal impact on ground reaction force.
机译:运动员使用加权雪橇牵引来提高短跑能力,但对其生物力学知之甚少。这项研究的目的是研究在两个不同载荷下的加权雪橇牵引对地面反作用力的影响。十名身体活跃的男子(平均±SD:年龄27.9±1.9岁;身高1.76±0.06 m;体重80.2±9.6 kg)在三种情况下进行5 m短跑; (a)没有抵抗力,(b)拖曳重量为体重的10%的雪橇(10%状况)和(c)拖曳重量为体重的30%的雪橇(30%状况)。记录开始后第二次接地过程中的地面反作用力数据,并比较这三个条件。未抵制和10%的条件之间没有明显差异,而30%的条件导致净水平和推进脉冲的值明显高于未抵制的条件(P <0.05),这是因为更长的接触时间和更大的水平方向强制应用到地面。结论是拖曳重量占体重30%的雪橇需要更多的水平力,并增加了对水平脉冲产生的需求。相反,使用10%的体重对地面反作用力的影响最小。

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