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X因素(躯干旋转)和经验对羽毛球正手扣杀质量的影响。

The Influence of X-Factor (Trunk Rotation) and Experience on the Quality of the Badminton Forehand Smash.

作者信息

Zhang Zhao, Li Shiming, Wan Bingjun, Visentin Peter, Jiang Qinxian, Dyck Mary, Li Hua, Shan Gongbing

机构信息

Department of Kinesiology, University of Lethbridge, Canada.

Department of Kinesiology, University of Lethbridge, Canada; Department of Physical Education, Ocean University of China (Qingdao), China.

出版信息

J Hum Kinet. 2016 Oct 14;53:9-22. doi: 10.1515/hukin-2016-0006. eCollection 2016 Dec 1.

Abstract

No existing studies of badminton technique have used full-body biomechanical modeling based on three-dimensional (3D) motion capture to quantify the kinematics of the sport. The purposes of the current study were to: 1) quantitatively describe kinematic characteristics of the forehand smash using a 15-segment, full-body biomechanical model, 2) examine and compare kinematic differences between novice and skilled players with a focus on trunk rotation (the X-factor), and 3) through this comparison, identify principal parameters that contributed to the quality of the skill. Together, these findings have the potential to assist coaches and players in the teaching and learning of the forehand smash. Twenty-four participants were divided into two groups (novice, n = 10 and skilled, n = 14). A 10-camera VICON MX40 motion capture system (200 frames/s) was used to quantify full-body kinematics, racket movement and the flight of the shuttlecock. Results confirmed that skilled players utilized more trunk rotation than novices. In two ways, trunk rotation (the X-factor) was shown to be vital for maximizing the release speed of the shuttlecock - an important measure of the quality of the forehand smash. First, more trunk rotation invoked greater lengthening in the pectoralis major (PM) during the preparation phase of the stroke which helped generate an explosive muscle contraction. Second, larger range of motion (ROM) induced by trunk rotation facilitated a whip-like (proximal to distal) control sequence among the body segments responsible for increasing racket speed. These results suggest that training intended to increase the efficacy of this skill needs to focus on how the X-factor is incorporated into the kinematic chain of the arm and the racket.

摘要

现有的关于羽毛球技术的研究均未使用基于三维(3D)运动捕捉的全身生物力学模型来量化这项运动的运动学特征。本研究的目的是:1)使用一个包含15个部分的全身生物力学模型定量描述正手扣杀的运动学特征;2)以躯干旋转(X因素)为重点,研究并比较新手和熟练球员之间的运动学差异;3)通过这种比较,确定有助于提高技术质量的主要参数。这些研究结果共同有可能帮助教练和球员进行正手扣杀的教学和学习。24名参与者被分为两组(新手组,n = 10;熟练组,n = 14)。使用一个10台摄像机的VICON MX40运动捕捉系统(200帧/秒)来量化全身运动学、球拍运动和羽毛球的飞行轨迹。结果证实,熟练球员比新手更多地利用了躯干旋转。研究表明,躯干旋转(X因素)对于最大化羽毛球的释放速度至关重要,而释放速度是衡量正手扣杀质量的一个重要指标,这体现在两个方面。第一,在击球准备阶段,更多的躯干旋转会使胸大肌(PM)产生更大程度的拉长,这有助于产生爆发性的肌肉收缩。第二,躯干旋转引起的更大运动范围(ROM)促进了负责提高球拍速度的身体各节段之间类似鞭子一样(从近端到远端)的控制顺序。这些结果表明,旨在提高这项技术效果的训练需要关注X因素如何融入手臂和球拍的运动学链条中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8e1/5260572/f4a6e95c8db3/j_hukin-2016-0006_fig_001.jpg

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