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短跑起跑蹬伸中下肢关节动力学和踝关节刚度

Lower limb joint kinetics and ankle joint stiffness in the sprint start push-off.

机构信息

Cardiff School of Sport, University of Wales Institute Cardiff, Cardiff, UK.

出版信息

J Sports Sci. 2012;30(1):1-9. doi: 10.1080/02640414.2011.616948. Epub 2011 Nov 18.

Abstract

Sprint push-off technique is fundamental to sprint performance and joint stiffness has been identified as a performance-related variable during dynamic movements. However, joint stiffness for the push-off and its relationship with performance (times and velocities) has not been reported. The aim of this study was to quantify and explain lower limb net joint moments and mechanical powers, and ankle stiffness during the first stance phase of the push-off. One elite sprinter performed 10 maximal sprint starts. An automatic motion analysis system (CODA, 200 Hz) with synchronized force plates (Kistler, 1000 Hz) collected kinematic profiles at the hip, knee, and ankle and ground reaction forces, providing input for inverse dynamics analyses. The lower-limb joints predominately extended and revealed a proximal-to-distal sequential pattern of maximal extensor angular velocity and positive power production. Pearson correlations revealed relationships (P < 0.05) between ankle stiffness (5.93 ± 0.75 N x m x deg(-1)) and selected performance variables. Relationships between negative power phase ankle stiffness and horizontal (r = -0.79) and vertical (r = 0.74) centre of mass velocities were opposite in direction to the positive power phase ankle stiffness (horizontal: r = 0.85; vertical: r = -0.54). Thus ankle stiffness may affect the goals of the sprint push-off in different ways, depending on the phase of stance considered.

摘要

冲刺起跑技术是短跑表现的基础,关节刚度已被确定为动态运动中与表现相关的变量。然而,关于起跑时的关节刚度及其与表现(时间和速度)的关系尚未有报道。本研究的目的是量化和解释起跑阶段第一支撑相下肢关节的净力矩和机械功率,以及踝关节刚度。一名精英短跑运动员进行了 10 次最大冲刺起跑。自动运动分析系统(CODA,200 Hz)与同步力板(Kistler,1000 Hz)一起收集髋关节、膝关节和踝关节的运动学轮廓和地面反作用力,为反向动力学分析提供输入。下肢关节主要伸展,并呈现出从近端到远端的最大伸展角速度和正功率产生的顺序模式。皮尔逊相关性分析显示踝关节刚度(5.93 ± 0.75 N x m x deg(-1))与部分表现变量之间存在关系(P < 0.05)。负功率阶段踝关节刚度与水平(r = -0.79)和垂直(r = 0.74)质心速度之间的关系与正功率阶段踝关节刚度的方向相反(水平:r = 0.85;垂直:r = -0.54)。因此,踝关节刚度可能会以不同的方式影响短跑起跑的目标,这取决于所考虑的支撑相阶段。

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