Journal article
Muscle Synergies Based on a Biomechanical Biaxial Isometric Shoulder Model Minimizing Fatigue
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Nassajian Moghadam, Mohamadreza
Sharif University of Technology, Tehran, Iran
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Aminian, Kamiar
Ecole Polytechnique Fe´de´rale de Lausanne, Lausanne, Switzerland
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Asghari, Mohsen
Sharif University of Technology, Tehran, Iran
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Parnianpour, Mohammad
Sharif University of Technology, Tehran, Iran
Published in:
- ASME 2010 10th Biennial Conference on Engineering Systems Design and Analysis, Volume 1. - ASMEDC. - 2010
English
In this study we utilize the concept of synergy formation as a simplifying control strategy to manage the high number of degrees of freedom presented in the maintenance of the posture of the shoulder joint. We address how to find the muscle synergy recruitment map to the biomechanical demands (biaxial external torque) during an isometric shoulder task. We use a numerical optimization based shoulder model to obtain muscle activation levels when a biaxial external isometric torque is exposed at the shoulder glenohumeral joint. In the numerical simulations, different shoulder torque vectors parallel to the horizontal plane are considered. For each selected direction for the torque, the resulting muscle activation data are calculated and then used for grouping muscles in some fixed element synergies by nonnegative matrix factorization method Next, the muscle synergies are converted from activation level to the torque space to see how muscle synergy recruitment addresses the torque production in a specific direction at the shoulder joint. The results confirmed our expectation that the few dominant synergies are sufficient to address the torque vectors in directions which coincide to the basic vectors of torque space, such that each muscle contributed to more than one synergy.
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Language
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Open access status
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closed
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Identifiers
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Persistent URL
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https://sonar.ch/global/documents/159260
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