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Ankle joint mechanics and foot proportions differ between human sprinters and non-sprinters

机译:短跑运动员和非短跑运动员的踝关节力学和足部比例不同

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摘要

Recent studies of sprinters and distance runners have suggested that variations in human foot proportions and plantarflexor muscle moment arm correspond to the level of sprint performance or running economy. Less clear, however, is whether differences in muscle moment arm are mediated by altered tendon paths or by variation in the centre of ankle joint rotation. Previous measurements of these differences have relied upon assumed joint centres and measurements of bone geometry made externally, such that they would be affected by the thickness of the overlying soft tissue. Using magnetic resonance imaging, we found that trained sprinters have shorter plantarflexor moment arms (p = 0.011) and longer forefoot bones (p = 0.019) than non-sprinters. The shorter moment arms of sprinters are attributable to differences in the location of the centre of rotation (p < 0.001) rather than to differences in the path of the Achilles tendon. A simple computer model suggests that increasing the ratio of forefoot to rearfoot length permits more plantarflexor muscle work during plantarflexion that occurs at rates expected during the acceleration phase following the sprint start.
机译:对短跑选手和长跑运动员的最新研究表明,人脚比例和plant屈肌力矩臂的变化与短跑成绩水平或跑步经济性相对应。然而,尚不清楚的是,肌腱臂的差异是通过改变肌腱路径还是通过踝关节旋转中心的变化来介导的。先前对这些差异的测量依赖于假定的关节中心和外部进行的骨几何学测量,因此它们将受到上覆软组织厚度的影响。使用磁共振成像,我们发现训练有素的短跑运动员比非短跑运动员具有更短的plant屈力矩臂(p = 0.011)和更长的前足骨骼(p = 0.019)。短跑运动员的短弯臂归因于旋转中心位置的差异(p <0.001),而不是跟腱的路径差异。一个简单的计算机模型表明,增加前脚与后脚长度的比率可以在足底屈曲期间进行更多的足底屈肌工作,而这种运动的速度是在冲刺开始后的加速阶段。

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