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在曲线上移动身体质心的动力学和机械功。

Kinetics and mechanical work done to move the body centre of mass along a curve.

机构信息

Laboratory of Biomechanics and Physiology of Locomotion, Institute of NeuroScience, Université catholique de Louvain, Louvain-la-Neuve, Belgium.

出版信息

PLoS One. 2024 Feb 12;19(2):e0298790. doi: 10.1371/journal.pone.0298790. eCollection 2024.

Abstract

When running on a curve, the lower limbs interact with the ground to redirect the trajectory of the centre of mass of the body (CoM). The goal of this paper is to understand how the trajectory of the CoM and the work done to maintain its movements relative to the surroundings (Wcom) are modified as a function of running speed and radius of curvature. Eleven participants ran at different speeds on a straight line and on circular curves with a 6 m and 18 m curvature. The trajectory of the CoM and Wcom were calculated using force-platforms measuring the ground reaction forces and infrared cameras recording the movements of the pelvis. To follow a circular path, runners overcompensate the rotation of their trajectory during contact phases. The deviation from the circular path increases when the radius of curvature decreases and speed increases. Interestingly, an asymmetry between the inner and outer lower limbs emerges as speed increases. The method to evaluate Wcom on a straight-line was adapted using a referential that rotates at heel strike and remains fixed during the whole step cycle. In an 18 m radius curve and at low speeds on a 6 m radius, Wcom changes little compared to a straight-line run. Whereas at 6 m s-1 on a 6 m radius, Wcom increases by ~25%, due to an augmentation in the work to move the CoM laterally. Understanding these adaptations provides valuable insight for sports sciences, aiding in optimizing training and performance in sports with multidirectional movements.

摘要

当在曲线上跑步时,下肢与地面相互作用,改变身体质心(CoM)的轨迹。本文的目的是了解 CoM 的轨迹和为维持相对于周围环境的运动所做的功(Wcom)如何随跑步速度和曲率半径而变化。11 名参与者在直线和曲率半径为 6 m 和 18 m 的圆形曲线上以不同速度跑步。使用测力板测量地面反作用力和红外摄像机记录骨盆运动来计算 CoM 和 Wcom 的轨迹。为了沿圆形路径运行,跑步者在接触阶段会过度补偿其轨迹的旋转。当曲率半径减小和速度增加时,偏离圆形路径的程度会增加。有趣的是,随着速度的增加,内下肢和外下肢之间出现不对称性。在直线上评估 Wcom 的方法通过使用在脚跟触地时旋转并在整个步幅周期内保持固定的参考系进行了调整。在 18 m 半径的曲线上和 6 m 半径的低速下,与直线跑步相比,Wcom 变化不大。而在 6 m s-1 的 6 m 半径上,Wcom 增加了约 25%,这是由于侧向移动 CoM 的工作量增加所致。了解这些适应有助于体育科学提供有价值的见解,有助于优化具有多向运动的运动的训练和表现。

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