DocumentCode
3439355
Title
The influence of cricket bowler´s joint rotations on ball release speed
Author
Yanxin Zhang ; Unka, J. ; Guangyu Liu
Author_Institution
Dept. of Sport & Exercise Sci., Univ. of Auckland, Auckland, New Zealand
fYear
2011
fDate
19-22 Aug. 2011
Firstpage
1022
Lastpage
1025
Abstract
The aim was to identify: first, how cricket bowlers´ upper body segmental rotations influenced ball release speed; second, whether flexing forcefully the lower trunk increases ball release speed and bowling accuracy. Vicon motion capture system was used to record three dimensional kinematic data of 8 male fast bowlers under three cricket bowling conditions: sub-max condition, max condition, and max-trunk condition. The accuracy of each delivery was measured. It shows that the average ball release speeds for the max-trunk condition were faster and proximal to distal sequencing was a typical pattern. A slight decrement in accuracy was observed in the max-trunk condition. In all conditions, the upper arm rotation made the largest contribution, followed in turn by torso and thorax rotation, pelvis rotation, linear velocity of pelvis, forearm and hand rotation.
Keywords
biomechanics; image motion analysis; image sequences; medical image processing; orthopaedics; sport; 3D kinematics; Vicon motion capture system; ball release speed; bowling accuracy; cricket bowler; distal sequencing; flexing; forearm rotation; hand rotation; joint rotation; lower trunk; pelvis linear velocity; pelvis rotation; proximal sequencing; thorax rotation; torso rotation; upper arm rotation; upper body segmental rotation; Accuracy; Biomechanics; Joints; Motion segmentation; Pelvis; Thorax; Torso; cricket bowling; kinematics; motion analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Human Health and Biomedical Engineering (HHBE), 2011 International Conference on
Conference_Location
Jilin
Print_ISBN
978-1-61284-723-8
Type
conf
DOI
10.1109/HHBE.2011.6028997
Filename
6028997
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