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research article

A musculoskeletal shoulder model based on pseudo-inverse and null-space optimization

Terrier, Alexandre  
•
Aeberhard, Martin
•
Michellod, Yvan
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2010
Medical Engineering and Physics

The goal of the present work was assess the feasibility of using a pseudo-inverse and null-space optimization approach in the modeling of the shoulder biomechanics. The method was applied to a simplified musculoskeletal shoulder model. The mechanical system consisted in the arm, and the external forces were the arm weight, 6 scapulohumeral muscles and the reaction at the glenohumeral joint, which was considered as a spherical joint. The muscle wrapping was considered around the humeral head assumed spherical. The dynamical equations were solved in a Lagrangian approach. The mathematical redundancy of the mechanical system was solved in two steps: a pseudo-inverse optimization to minimize the square of the muscle stress and a null-space optimization to restrict the muscle force to physiological limits. Several movements were simulated. The mathematical and numerical aspects of the constrained redundancy problem were efficiently solved by the proposed method. The prediction of muscle moment arms was consistent with cadaveric measurements and the joint reaction force was consistent with in vivo measurements. This preliminary work demonstrated that the developed algorithm has a great potential for more complex musculoskeletal modeling of the shoulder joint. In particular it could be further applied to a non-spherical joint model, allowing for the natural translation of the humeral head in the glenoid fossa.

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Type
research article
DOI
10.1016/j.medengphy.2010.07.006
Web of Science ID

WOS:000284660700013

Author(s)
Terrier, Alexandre  
Aeberhard, Martin
Michellod, Yvan
Müllhaupt, Philippe  
Gillet, Denis  
Farron, Alain
Pioletti, Dominique P.  
Date Issued

2010

Publisher

Elsevier

Published in
Medical Engineering and Physics
Volume

32

Issue

9

Start page

1050

End page

1056

Subjects

Shoulder

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Musculoskeletal modeling

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Dynamics

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Glenohumeral Joint

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Moment Arms

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Humerus Translation

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Contact Forces

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Muscle Forces

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Abduction

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Prostheses

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Motion

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Supraspinatus

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Algorithms

Editorial or Peer reviewed

REVIEWED

Written at

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Available on Infoscience
July 15, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/51681
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