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Estimation of Quasi-Stiffness and Propulsive Work of the Human Ankle in the Stance Phase of Walking Kamran Shamaei1*, Gregory S. Sawicki2, Aaron M. Dollar1 1 School of Engineering and Applied Science, Department of Mecha
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Document Date: 2013-03-24 14:27:42


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East Carolina University / Laboratory of Biomedical Technologies / University of Rochester / University Institutional Review Board / University of North Carolina / Chapel Hill / North Carolina State University / NC State University / Partial Least Square / Yale University / /

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prosthetic and orthotic devices / wearable assistive devices / assistive devices / 3D software / biologically-inspired assistive devices / quasi-passive systems / energy return stage / collection protocols / design tool / assistive device / latter applications / artificial systems / energy / exoskeletal devices / real-time mode / maximum propulsion energy / active systems / reagents/materials/analysis tools / stores energy / orthotic device / e-a / orthotic and prosthetic devices / /

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Joint Department of Biomedical Engineering / School of Engineering and Applied Science / Engineering Center / University of North Carolina / Human PoWeR Lab / Biomechanics Lab / NC State University / University of Rochester / University Institutional Review Board / Yale University / East Carolina University / Department of Mechanical Engineering and Materials Science / Laboratory of Biomedical Technologies / KS AD / Politecnico Di Milano / US Army Natick Soldier Research Development and Engineering Center / North Carolina State University / /

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