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Three-Dimensional Rotations of the Scapula During Arm Abduction: Evaluation of the Acromion Marker Cluster Method in Comparison With a Model-Based Approach Using Biplanar Radiograph Images

Article dans une revue avec comité de lecture
Author
DUPREY, Sonia
581164 Laboratoire de Biomécanique et Mécanique des Chocs [LBMC UMR T9406]
BILLUART, Fabien
484605 LBM/institute de Biomécanique humaine Georges Charpak
SAH, Sungjin
581164 Laboratoire de Biomécanique et Mécanique des Chocs [LBMC UMR T9406]
OHL, Xavier
484605 LBM/institute de Biomécanique humaine Georges Charpak
ROBERT, Thomas
581164 Laboratoire de Biomécanique et Mécanique des Chocs [LBMC UMR T9406]
ccSKALLI, Wafa
484605 LBM/institute de Biomécanique humaine Georges Charpak
WANG, Xuguang
581164 Laboratoire de Biomécanique et Mécanique des Chocs [LBMC UMR T9406]

URI
http://hdl.handle.net/10985/18159
DOI
10.1123/jab.2014-0244
Date
2015
Journal
Journal of Applied Biomechanics

Abstract

Noninvasive methods enabling measurement of shoulder bone positions are paramount in clinical and ergonomics applications. In this study, the acromion marker cluster (AMC) method is assessed in comparison with a model-based approach allowing scapula tracking from low-dose biplanar radiograph images. Six healthy male subjects participated in this study. Data acquisition was performed for 6 arm abduction positions (0°, 45°, 90°, 120°, 150°, 180°). Scapula rotations were calculated using the coordinate systems and angle sequence was defined by the ISB. The comparison analysis was based on root mean square error (RMSE) calculation and nonparametric statistical tests. RMSE remained under 8° for 0° to 90° arm abduction and under 13.5° for 0° to 180° abduction; no significant differences were found between the 2 methods. Compared with previous works, an improved accuracy of the AMC approach at high arm abduction positions was obtained. This could be explained by the different sources of data used as the "gold standard."

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