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A Kinematic and Kinetic Case Study of a Netball Shoulder Pass

机译:无挡板篮球肩传球的运动学和动力学案例研究

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The majority of studies analysing netball skills using force platforms have focused on reducing the risk of injury from compression and torsion forces on the knee and ankle joints during landing and pivoting. In this preliminary case study our aim was to investigate the efficacy of a combination of tools to describe the kinematic and kinetic mechanisms underlying the netball shoulder pass. The segmental movements of the netball shoulder pass were analysed from video and force platform data in order to develop a suitable methodology for use in a larger study. Peak vertical ground reaction force of 850 N was found to coincide with the point of maximum velocity of the centre of pressure, occurring 40 ms before ball release. The participant’s centre of pressure continued anteriorly for 40 ms after ball release. The wrist traveled in a linear path during the propulsion phases, maximising impulse to the ball. A large shear force also occurred in the anterior posterior direction coinciding with ball release due to friction between the left shoe and the force platform, resisting the forward momentum of the body. Negative acceleration of the upper limb following the propulsion phase reached a peak of 68.6 rad/s-2 for the arm and 82.4 rad/s-2 for the forearm. Peak shoulder deceleration torque was calculated at 4.1 Nm which was greater than during acceleration (1.6 Nm). The combination of kinematic and kinetic tools yielded a comprehensive analysis of the investigated skill. Future biomechanical studies may determine differences in skill execution between novice and professional players or variability in movement within a population of skilled netball players.
机译:使用力平台分析无板篮球技能的大多数研究都集中于降低着陆和枢转期间膝盖和踝关节受到压缩和扭转力伤害的风险。在这个初步的案例研究中,我们的目的是研究描述无挡板篮球传球的运动学和动力学机制的工具组合的功效。从视频和力量平台数据中分析了无挡板篮球肩pass传球的分段运动,以便开发出适用于较大研究的合适方法。发现最大峰值地面反作用力为850 N,与球释放前40毫秒发生的最大压力中心速度点一致。释放球后,参与者的压力中心向前方持续40毫秒。在推进阶段,手腕以线性路径运动,从而最大程度地推动了对球的冲动。由于左鞋与受力平台之间的摩擦,在前后方向上也会产生较大的剪切力,这与球的释放相吻合,从而抵抗了身体的向前动量。推进阶段后,上肢的负加速度达到峰值,手臂为68.6 rad / s-2,前臂为82.4 rad / s-2。计算得出的峰值肩部减速扭矩为4.1 Nm,大于加速期间的峰值扭矩(1.6 Nm)。运动学和动力学工具的结合产生了对所研究技能的全面分析。未来的生物力学研究可能会确定新手和专业运动员之间在技能执行上的差异,或在熟练的无板篮球运动员群体中运动的差异。

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