Department of Sports Research, Japan Institute of Sports Sciences, Tokyo, Japan.
Faculty of Health and Sport Sciences, University of Tsukuba, Tsukuba, Japan.
Sports Biomech. 2021 Aug;20(5):583-602. doi: 10.1080/14763141.2019.1585472. Epub 2019 Apr 30.
The purpose of this study was to identify the dynamic factors contributing to pelvis angular velocity about its longitudinal axis (pelvis axial angular velocity) during the golf swing. Thirty-one right-handed skilled golfers (handicap, 3.5 ± 1.8) performed swings with a driver. The kinematic and kinetic data were collected using an optical motion analysis system and two force platforms. The dynamic factors (i.e., joint torque, gravitational force, motion-dependent forces and inertia forces) contributing to pelvis axial angular acceleration were calculated. The present study revealed that the left (lead) hip flexor and adductor torques as well as the right (trail) hip extensor and abductor torques were identified as the main contributors to pelvis axial angular velocity. These hip joint torques contributed not synchronously but sequentially to the pelvis. Although the knee joint torques contributed little to pelvis axial angular velocity directly, the knee joint torques might support the generation of large hip joint torques by regulating joint postures. These findings indicate that the functional coordination of the lower limb segments as well as the magnitude of the joint torques play an important role in rotating the pelvis.
本研究旨在确定高尔夫挥杆过程中骨盆绕其纵轴(骨盆轴向角速度)的动态因素。31 名右利手熟练高尔夫球手(差点 3.5±1.8)使用球杆进行挥杆。运动学和动力学数据是使用光学运动分析系统和两个力台收集的。计算了对骨盆轴向角加速度有贡献的动力学因素(即关节扭矩、重力、运动相关力和惯性力)。本研究表明,左(前导)髋关节屈肌和内收肌扭矩以及右(随动)髋关节伸肌和外展肌扭矩是骨盆轴向角速度的主要贡献者。这些髋关节扭矩不是同步而是顺序地作用于骨盆。虽然膝关节扭矩对骨盆轴向角速度的直接贡献很小,但膝关节扭矩可以通过调节关节姿势来支持产生较大的髋关节扭矩。这些发现表明,下肢节段的功能协调性以及关节扭矩的大小在骨盆旋转中起着重要作用。