Wilson Cassie, Simpson Scott E, van Emmerik Richard E A, Hamill Joseph
Cardiff School of Sport, University of Wales Institute Cardiff, Cardiff, UK.
Sports Biomech. 2008 Jan;7(1):2-9. doi: 10.1080/14763140701682983.
The aim of this study was to examine the influence of skill of expert triple jumpers on the coordination variability of lower extremity intra-limb couplings. In contrast to the traditional motor learning perspective, we hypothesized that as skill and thus performance increases, movement coordination variability will also increase. Three-dimensional kinematic and ground reaction force data were collected during the hop-step transition phase of the triple jump. Relative motion plots and a modified vector coding technique were used to quantify the coordination variability across the trials. The results were consistent with a U-shaped curve, representing coordination variability, as skill increases. The high coordination variability in less skilled athletes is present while the appropriate characteristics defining the movement coordination patterns are acquired. This coordination variability may not be beneficial to performance. As the refinement of these characteristics is achieved, coordination variability decreases, resulting in a more consistent or regulated performance. In the final stages of developing a skilled performance, a functional variability is accessed that brings flexibility to the system allowing it to cope with perturbations. This study highlights the need to address the learning effect when analysing coordination variability from a dynamical systems perspective.
本研究的目的是考察优秀三级跳远运动员的技能对下肢肢体内部耦合协调性变异性的影响。与传统的运动学习观点不同,我们假设随着技能以及成绩的提高,运动协调变异性也会增加。在三级跳远的单足跳-跨步跳过渡阶段收集了三维运动学和地面反作用力数据。使用相对运动图和一种改进的矢量编码技术来量化各试验中的协调变异性。结果与技能提高时表示协调变异性的U形曲线一致。技能较低的运动员存在较高的协调变异性,同时获得了定义运动协调模式的适当特征。这种协调变异性可能对成绩没有益处。随着这些特征的细化,协调变异性降低,从而导致表现更加一致或规范。在熟练表现发展的最后阶段,会出现一种功能性变异性,为系统带来灵活性,使其能够应对干扰。本研究强调了从动态系统角度分析协调变异性时考虑学习效应的必要性。