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Multimodal Human-Robot Interaction for Walker-Assisted Gait., , , , and . IEEE Systems Journal, 10 (3): 933-943 (2016)A Novel Multimodal Cognitive Interaction for Walker-Assisted Rehabilitation Therapies., , , , , , and . ICORR, page 905-910. IEEE, (2019)Feasibility study: Towards Estimation of Fatigue Level in Robot-Assisted Exercise for Cardiac Rehabilitation., , , , , , and . ICORR, page 911-916. IEEE, (2019)PREC 2019: Personal Robots for Exercising and Coaching., , , , and . HRI, page 679-680. IEEE, (2019)Human-Robot interaction strategy for overground rehabilitation in patients with Cerebral Palsy., , , , and . BioRob, page 729-734. IEEE, (2016)Assessment of Walker-assisted Human Interaction from LRF and Wearable Wireless Inertial Sensors., , , , , and . NEUROTECHNIX, page 143-151. SciTePress, (2013)Smart Walkers: Advanced Robotic Human Walking-Aid Systems., , , , , and . Intelligent Assistive Robots, volume 106 of Springer Tracts in Advanced Robotics, Springer, (2015)Human-in-the-Loop Control for AGoRA Unilateral Lower-Limb Exoskeleton., , and . J. Intell. Robotic Syst., 104 (1): 3 (2022)Gait Phase Detection for Lower-Limb Exoskeletons using Foot Motion Data from a Single Inertial Measurement Unit in Hemiparetic Individuals., , , and . Sensors, 19 (13): 2988 (2019)PREC 2018: Personal Robots for Exercising and Coaching., , , , and . HRI (Companion), page 401-402. ACM, (2018)