a Institute of Sport, Exercise and Active Living (ISEAL) , College of Sport and Exercise Science, Victoria University , Melbourne , Australia.
Sports Biomech. 2014 Nov;13(4):307-19. doi: 10.1080/14763141.2014.981201. Epub 2014 Nov 27.
The handball pass is influential in Australian football, and achieving higher ball speeds in flight is an advantage in increasing distance and reducing the chance of interceptions. The purpose of this study was to provide descriptive kinematic data and identify key technical aspects of maximal handball performance. Three-dimensional full body kinematic data from 19 professional Australian football players performing handball pass for maximal speed were collected, and the hand speed at ball contact was used to determine performance. Sixty-four kinematic parameters initially obtained were reduced to 15, and then grouped into like components through a two-stage supervised principal components analysis procedure. These components were then entered into a multiple regression analysis, which indicated that greater hand speed was associated with greater shoulder angular velocity and separation angle between the shoulders and pelvis at ball contact, as well as an earlier time of maximum upper-trunk rotation velocity. These data suggested that in order to increase the speed of the handball pass in Australian football, strategies like increased shoulder angular velocity, increased separation angle at ball contact, and earlier achievement of upper-trunk rotation speed might be beneficial.
手球传球在澳大利亚足球中很有影响力,在飞行中提高球速是增加距离和减少拦截机会的优势。本研究的目的是提供描述性运动学数据,并确定最大手球性能的关键技术方面。从 19 名专业澳大利亚足球运动员进行最大速度手球传球中收集了三维全身运动学数据,并用球接触时的手速来确定表现。最初获得的 64 个运动学参数减少到 15 个,然后通过两级监督主成分分析程序将这些参数分为相似的组件。然后将这些组件输入到多元回归分析中,结果表明,更大的手速与球接触时更大的肩部角速度和肩部与骨盆之间的分离角度以及更大的上躯干旋转速度的最大时间有关。这些数据表明,为了提高澳大利亚足球的手球传球速度,增加肩部角速度、增加球接触时的分离角度以及更早地实现上躯干旋转速度可能是有益的策略。