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An Analysis on Kinematically Contributing Factors at Impact of Forehand Drive Motion in Squash

Authors :
Lee Kyung Il
Heekyung-Lee
Source :
Korean Journal of Sport Biomechanics. 17:29-39
Publication Year :
2007
Publisher :
Korean Society of Sport Biomechanics, 2007.

Abstract

This study were obtained elapsed time phase-by-phases, displacement, user angle, velocity and angular velocity to analyse kinematically contributing factors at impact of forehand drive motion, on targeting three male players. The results of the study were presented as follows; In the forehand drive swing, the elapsed time by phases was a total of .52 seconds: .30 seconds from backswing to impact and .22 seconds from impact to follow-through, Considering the mean change in locations of COM of each(partbody segment) at impact, racket head, left shoulder, right wrist and left hip, the left-right directions(X-axis) were showm to be each , , , , and . The displacement differences of COM of each body segment were shown to be -.57, -.05, -.33, and .16m. For the vertical direction(Z-axis), the center of mass was lowest at impact and highest at E3. For the displacement of the right wrist on the left hip, the right wrist moved to .82m to the lower direction without change in the locations of the hip from E1 from E2. When the left hip moved .02m from E2 to E3, the right wrist moved .7m in the upper direction. In respect to the velocity of each body segment, the hip and the shoulder joint accelerated and then the wrist followed. Then the right wrists of all the subjects and their racket heads showed maximum speed, and an effective swing was observed. At the angle of each part, the angle of the right wrist was the smallest at the backswing and the largest at the moment of the impact. Then it increased gradually in the follow-through section. In respect of angular velocity for subject A, the hip moved and the largest change occurred. Immediately before the impact, the subject made a swing using his right wrist, his hip, and the shoulder joint, showing the maximum value, which was judged to be effective.

Details

ISSN :
12262226
Volume :
17
Database :
OpenAIRE
Journal :
Korean Journal of Sport Biomechanics
Accession number :
edsair.doi...........684f6eb573d7fbe975896baccf3260da