| 2023 | ICRA | Bilateral asymmetric hip stiffness applied by a robotic hip exoskeleton elicits kinematic and kinetic adaptation. | Banu Abdikadirova, Mark Price, Jonaz Moreno Jaramillo, Wouter Hoogkamer, Meghan E. Huber |
| 2022 | IROS | Unilateral stiffness modulation with a robotic hip exoskeleton elicits adaptation during gait. | Mark Price, Banu Abdikadirova, Dominic Locurto, Jonaz Moreno Jaramillo, Nicholas Cline, Wouter Hoogkamer, Meghan E. Huber |
| 2021 | IROS | Muscle-reflex model of human locomotion entrains to mechanical perturbations. | Banu Abdikadirova, Jongwoo Lee, Neville Hogan, Meghan E. Huber |
| 2020 | ICRA | Modulating hip stiffness with a robotic exoskeleton immediately changes gait. | Jongwoo Lee, Haley R. Warren, Vibha Agarwal, Meghan E. Huber, Neville Hogan |
| 2019 | ICRA | Human-inspired balance model to account for foot-beam interaction mechanics. | Jongwoo Lee, Meghan E. Huber, Enrico Chiovetto, Martin A. Giese, Dagmar Stemad, Neville Hogan |
| 2019 | IROS | Feasibility of Gait Entrainment to Hip Mechanical Perturbation for Locomotor Rehabilitation. | Jongwoo Lee, Devon Goetz, Meghan E. Huber, Neville Hogan |
| 2018 | IROS | Robot Controllers Compatible with Human Beam Balancing Behavior. | Jongwoo Lee, Meghan E. Huber, Dagmar Stemad, Neville Hogan |
| 2017 | IROS | Visual perception of limb stiffness. | Meghan E. Huber, Charlotte Folinus, Neville Hogan |