Liew Bernard, Netto Kevin, Morris Susan
1 Curtin University.
J Appl Biomech. 2017 Oct 1;33(5):347-353. doi: 10.1123/jab.2016-0226. Epub 2017 Sep 23.
Optimal tuning of leg stiffness has been associated with better running economy. Running with a load is energetically expensive, which could have a significant impact on athletic performance where backpack carriage is involved. The purpose of this study was to investigate the impact of load magnitude and velocity on leg stiffness. We also explored the relationship between leg stiffness and running joint work. Thirty-one healthy participants ran overground at 3 velocities (3.0, 4.0, 5.0 m·s), whilst carrying 3 load magnitudes (0%, 10%, 20% weight). Leg stiffness was derived using the direct kinetic-kinematic method. Joint work data was previously reported in a separate study. Linear models were used to establish relationships between leg stiffness and load magnitude, velocity, and joint work. Our results found that leg stiffness did not increase with load magnitude. Increased leg stiffness was associated with reduced total joint work at 3.0 m·s, but not at faster velocities. The association between leg stiffness and joint work at slower velocities could be due to an optimal covariation between skeletal and muscular components of leg stiffness, and limb attack angle. When running at a relatively comfortable velocity, greater leg stiffness may reflect a more energy efficient running pattern.
腿部刚度的优化调整与更好的跑步经济性相关。负重跑步在能量消耗上较大,这可能会对涉及背负背包的运动表现产生重大影响。本研究的目的是调查负荷大小和速度对腿部刚度的影响。我们还探讨了腿部刚度与跑步关节功之间的关系。31名健康参与者在地面上以3种速度(3.0、4.0、5.0米/秒)跑步,同时背负3种负荷大小(体重的0%、10%、20%)。使用直接动力学 - 运动学方法得出腿部刚度。关节功数据先前已在另一项研究中报告。使用线性模型来建立腿部刚度与负荷大小、速度和关节功之间的关系。我们的结果发现,腿部刚度并未随负荷大小增加。在3.0米/秒时,腿部刚度增加与总关节功减少相关,但在更快速度时并非如此。在较慢速度下腿部刚度与关节功之间的关联可能是由于腿部刚度的骨骼和肌肉成分与肢体着地角度之间的最佳协同变化。当以相对舒适的速度跑步时,更大的腿部刚度可能反映出一种更节能的跑步模式。