Jonathan Camargo

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2016- Georgia Institute of Technology, Atlanta, GA 
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"Jonathan Camargo"
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Maldonado-Contreras JY, Bhakta K, Camargo J, et al. (2023) User- and Speed-Independent Slope Estimation for Lower-Extremity Wearable Robots. Annals of Biomedical Engineering
Camargo J, Bhakta K, Herrin K, et al. (2022) Biomechanical Evaluation of Stair Ambulation Using Impedance Control on an Active Prosthesis. Journal of Biomechanical Engineering
Kang I, Molinaro D, Choi G, et al. (2022) Subject-Independent Continuous Locomotion Mode Classification for Robotic Hip Exoskeleton Applications. Ieee Transactions On Bio-Medical Engineering
Camargo J, Molinaro D, Young A. (2022) Predicting biological joint moment during multiple ambulation tasks. Journal of Biomechanics. 134: 111020
Camargo J, Flanagan W, Csomay-Shanklin N, et al. (2021) A Machine Learning Strategy for Locomotion Classification and Parameter Estimation using Fusion of Wearable Sensors. Ieee Transactions On Bio-Medical Engineering
Camargo J, Ramanathan A, Flanagan W, et al. (2021) A comprehensive, open-source dataset of lower limb biomechanics in multiple conditions of stairs, ramps, and level-ground ambulation and transitions. Journal of Biomechanics. 119: 110320
Bhakta K, Camargo J, Compton W, et al. (2021) Evaluation of Continuous Walking Speed Determination Algorithms and Embedded Sensors for a Powered Knee & Ankle Prosthesis Ieee Robotics and Automation Letters. 6: 4820-4826
Molinaro DD, Kang I, Camargo J, et al. (2020) Biological Hip Torque Estimation using a Robotic Hip Exoskeleton. Proceedings of the ... Ieee/Ras-Embs International Conference On Biomedical Robotics and Biomechatronics. Ieee/Ras-Embs International Conference On Biomedical Robotics and Biomechatronics. 2020: 791-796
Camargo J, Ramanathan A, Csomay-Shanklin N, et al. (2020) Automated gap-filling for marker-based biomechanical motion capture data. Computer Methods in Biomechanics and Biomedical Engineering. 1-10
Bhakta K, Camargo J, Kunapuli P, et al. (2020) Impedance Control Strategies for Enhancing Sloped and Level Walking Capabilities for Individuals with Transfemoral Amputation Using a Powered Multi-Joint Prosthesis. Military Medicine. 185: 490-499
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