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Accuracy and repeatability of wrist joint angles in boxing using an electromagnetic tracking system
Authors
A de Lange
A Field
+50 more
A Murgia
A Schmitz
B Buchholz
B Huang
B Noehren
BA Piorkowski
CD Metcalf
CJ van Andel
D Kimm
D Roetenberg
E Roux
ES Grood
F-C Su
FI Michel
G Rab
G Wu
GA Hansson
H Gellman
HEJ Veeger
Ian T. Gatt
IH Lopez-Nava
J Aizawa
JB Shepherd
JC Coburn
JG Andrews
JG Hall
JM Bland
Jon Wheat
JR Landis
JS Sun
K Asundi
M Fagarasanu
M Loosemore
M Loosemore
MS Smith
MT Worsey
NR Heneghan
P Chen
PW Johnson
R Schmidt
RB Brumbaugh
RJ Butler
RL Gajdosik
RM Greenwald
RM Patterson
RMA El-Raheem
S Delorme
Tom Allen
WC Whiting
WT Jackson
Publication date
7 December 2019
Publisher
'Springer Science and Business Media LLC'
Doi
Abstract
© 2019, The Author(s). The hand-wrist region is reported as the most common injury site in boxing. Boxers are at risk due to the amount of wrist motions when impacting training equipment or their opponents, yet we know relatively little about these motions. This paper describes a new method for quantifying wrist motion in boxing using an electromagnetic tracking system. Surrogate testing procedure utilising a polyamide hand and forearm shape, and in vivo testing procedure utilising 29 elite boxers, were used to assess the accuracy and repeatability of the system. 2D kinematic analysis was used to calculate wrist angles using photogrammetry, whilst the data from the electromagnetic tracking system was processed with visual 3D software. The electromagnetic tracking system agreed with the video-based system (paired t tests) in both the surrogate ( 0.9). In the punch testing, for both repeated jab and hook shots, the electromagnetic tracking system showed good reliability (ICCs > 0.8) and substantial reliability (ICCs > 0.6) for flexion–extension and radial-ulnar deviation angles, respectively. The results indicate that wrist kinematics during punching activities can be measured using an electromagnetic tracking system
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Sheffield Hallam University Research Archive
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oai:shura.shu.ac.uk:25689
Last time updated on 20/01/2020
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Last time updated on 24/10/2020
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E-space: Manchester Metropolitan University's Research Repository
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oai:e-space.mmu.ac.uk:625036
Last time updated on 26/03/2020