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Plos One|October 18, 2019
Algorithmic differentiation improves the computational efficiency of OpenSim-based trajectory optimization of human movementAntoine Falisse, Gil Serrancolí, Christopher L Dembia, et al.
Plos One|March 2, 2016
Stretching Your Energetic Budget: How Tendon Compliance Affects the Metabolic Cost of RunningThomas K Uchida, Jennifer L Hicks, Christopher L Dembia, et al.
The Journal of Experimental Biology|March 26, 2017
Muscle-tendon mechanics explain unexpected effects of exoskeleton assistance on metabolic rate during walkingRachel W Jackson, Christopher L Dembia, Scott L Delp, et al.
Journal of the Royal Society, Interface|August 22, 2019
Rapid predictive simulations with complex musculoskeletal models suggest that diverse healthy and pathological human gaits can emerge from similar control strategiesAntoine Falisse, Gil Serrancolí, Christopher L Dembia, et al.
Plos Computational Biology|December 28, 2020
OpenSim Moco: Musculoskeletal optimal controlChristopher L Dembia, Nicholas A Bianco, Antoine Falisse, et al.
Plos One|July 13, 2017
Simulating ideal assistive devices to reduce the metabolic cost of walking with heavy loadsChristopher L Dembia, Amy Silder, Thomas K Uchida, et al.
IEEE Transactions on Bio-Medical Engineering|July 9, 2016
Full-Body Musculoskeletal Model for Muscle-Driven Simulation of Human GaitApoorva Rajagopal, Christopher L Dembia, Matthew S DeMers, et al.
Plos One|September 23, 2016
Simulating Ideal Assistive Devices to Reduce the Metabolic Cost of RunningThomas K Uchida, Ajay Seth, Soha Pouya, et al.
Scientific Reports|April 5, 2020
Foot strike pattern during running alters muscle-tendon dynamics of the gastrocnemius and the soleusJennifer R Yong, Christopher L Dembia, Amy Silder, et al.
Plos Computational Biology|July 27, 2018
OpenSim: Simulating musculoskeletal dynamics and neuromuscular control to study human and animal movementAjay Seth, Jennifer L Hicks, Thomas K Uchida, et al.
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