School of Physical Education, Sport, and Exercise Science, Ball State University, Muncie, IN, USA.
Sports Biomech. 2012 Jun;11(2):190-6. doi: 10.1080/14763141.2011.638386.
The purpose of this study was to determine if body position, weight transfer, and/or pelvis/trunk rotations changed as a result of a golf specific fatiguing protocol and whether these changes affected resultant club head velocity at impact and shot consistency. Six male golfers and one female golfer participated in the study, who had a mean age, height, and body mass of 23.9 +/- 3.9 years, 177.4 +/- 4.9 cm, and 75.3 +/- 9.9 kg, respectively. Path analysis was used to determine the relationships between fatigue, biomechanical variables, and resultant club head velocity at impact and shot consistency. In the statistical models representing the effects of biomechanical variables calculated at the top of the swing and ball contact, golf specific fatigue was associated with a 2.0% and 2.5% reduction in the club head velocity and a 7.1% and 9.4% improvement in the shot consistency, respectively. These data suggest that golf specific fatigue was not related to the initial lower body sagittal plane angles at address nor was simulated golf specific fatigue related to peak transverse plane pelvis and trunk rotational velocities (or their timings) in a manner that indicates a relationship to resultant club head velocity and shot consistency.
本研究旨在确定在特定的高尔夫疲劳协议下,身体姿势、重心转移和/或骨盆/躯干旋转是否会发生变化,以及这些变化是否会影响击球时的球杆头速度和击球一致性。六名男性高尔夫球手和一名女性高尔夫球手参与了这项研究,他们的平均年龄、身高和体重分别为 23.9±3.9 岁、177.4±4.9 厘米和 75.3±9.9 公斤。路径分析用于确定疲劳、生物力学变量与击球时的球杆头速度和击球一致性之间的关系。在代表挥杆顶部和球接触时计算的生物力学变量影响的统计模型中,特定于高尔夫的疲劳与球杆头速度分别降低 2.0%和 2.5%以及击球一致性分别提高 7.1%和 9.4%相关。这些数据表明,特定于高尔夫的疲劳与初始站位时的下半身矢状面角度无关,模拟的特定于高尔夫的疲劳也与峰值横向平面骨盆和躯干旋转速度(或其时间)无关,这表明与击球时的球杆头速度和击球一致性有关。