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高尔夫挥杆过程中的角动量与平衡调节

Angular Impulse and Balance Regulation During the Golf Swing.

作者信息

Peterson Travis J, Wilcox Rand R, McNitt-Gray Jill L

机构信息

Department of Biomedical Engineering, University of Southern California, Los Angeles, CA.

出版信息

J Appl Biomech. 2016 Aug;32(4):342-9. doi: 10.1123/jab.2015-0131. Epub 2016 Mar 8.

Abstract

Our aim was to determine how skilled players regulate linear and angular impulse while maintaining balance during the golf swing. Eleven highly-skilled golf players performed swings with a 6-iron and driver. Components contributing to linear and angular impulse generated by the rear and target legs (resultant horizontal reaction force [RFh], RFh-angle, and moment arm) were quantified and compared across the group and within a player (α = .05). Net angular impulse generated by both the rear and target legs was greater for the driver than the 6-iron. Mechanisms used to regulate angular impulse generation between clubs varied across players and required coordination between the legs. Increases in net angular impulse with a driver involved increases in target leg RFh. Rear leg RFh-angle was maintained between clubs whereas target leg RFh became more aligned with the target line. Net linear impulse perpendicular to the target line remained near zero, preserving balance, while net linear impulse along the target line decreased in magnitude. These results indicate that the net angular impulse was regulated between clubs by coordinating force generation of the rear and target legs while sustaining balance throughout the task.

摘要

我们的目的是确定技术娴熟的球员在高尔夫挥杆过程中保持平衡时如何调节线性和角冲量。11名技术高超的高尔夫球员使用6号铁杆和发球杆进行挥杆。对后脚和前脚产生线性和角冲量的组成部分(合成水平反作用力[RFh]、RFh角度和力臂)进行了量化,并在组内和球员个体内进行了比较(α = 0.05)。与6号铁杆相比,发球杆由后脚和前脚产生的净角冲量更大。不同球员用于调节不同球杆之间角冲量产生的机制各不相同,且需要双腿之间的协调。使用发球杆时净角冲量的增加涉及前脚RFh的增加。不同球杆之间后脚RFh角度保持不变,而前脚RFh与目标线的对齐程度更高。垂直于目标线的净线性冲量保持接近零,从而保持平衡,而沿目标线的净线性冲量大小减小。这些结果表明,在整个任务中保持平衡的同时,通过协调后脚和前脚的力产生来调节不同球杆之间的净角冲量。

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