Transactions on Neural Systems and Rehabilitation Engineering
Featured Articles
12 Degrees of Freedom Muscle Force Driven Fibril-Reinforced Poroviscoelastic Finite Element Model of the Knee Joint
A. Esrafilian, L. Stenroth, M. E. Mononen, P. Tanska, S. V. Rossom, D. G. Lloyd, I. Jonkers, R. K. Korhonen
Accurate knowledge of the joint kinematics, kinetics, and soft tissue mechanical responses is essential in the evaluation of musculoskeletal (MS) disorders...
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Posted on 17 DEC 2020
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Synthesis of Subject-Specific Human Balance Responses Using a Task-Level Neuromuscular Control Platform
Misagh B. Mansouri, Nicolas A. Vivaldi, Cyril J. Donnelly, Mark A. Robinson, Jos Vanrenterghem, Jeffrey A. Reinbolt
Many activities of daily living require a high level of neuromuscular coordination and balance control to avoid falls. Complex musculoskeletal models paired with detailed neuromuscular simulations complement experimental studies and uncover principles of coordinated and uncoordinated movements. Here, we created...
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Posted on 12 APR 2018
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Neural Data-Driven Musculoskeletal Modeling for Personalized Neurorehabilitation Technologies
The development of personalized neurorehabilitation and augmentation technologies requires the profound understanding of the neuro-mechanical processes underlying an individual’s motor function, impairment, and recovery. A major challenge is the difficulty of accessing the in vivo neural activity underlying human movement...
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Posted on 26 APR 2016
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An Open-Source Toolbox for Surrogate Modeling of Joint Contact Mechanics
Ilan Eskinazi and Benjamin J. Fregly, University of Florida, USA, Volume 63, Issue 2, Page: 269-277
Incorporation of elastic joint contact models into simulations of human movement could facilitate studying the interactions between muscles, ligaments, and bones. Unfortunately, elastic joint contact models...
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Posted on 26 JAN 2016