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Comparing Fatigue Reducing Stimulation Strategies During Cycling Induced by Functional Electrical Stimulation: a Case Study with one Spinal Cord Injured Subject., , , , , , , , and . EMBC, page 6394-6397. IEEE, (2021)An assistive upper-limb exoskeleton controlled by multi-modal interfaces for severely impaired patients: development and experimental assessment., , , , , , , , , and 5 other author(s). Robotics Auton. Syst., (2021)A Novel Inverse Kinematics Method for Upper-Limb Exoskeleton under Joint Coordination Constraints., , , , , and . IROS, page 3404-3409. IEEE, (2020)Review on Patient-Cooperative Control Strategies for Upper-Limb Rehabilitation Exoskeletons., , , , and . Frontiers Robotics AI, (2021)Quantitative and Qualitative Evaluation of Exoskeleton Transparency Controllers for Upper-Limb Neurorehabilitation., , and . ICORR, page 1-6. IEEE, (2023)AGREE: an upper-limb robotic platform for personalized rehabilitation, concept and clinical study design., , , , , , , , , and . ICORR, page 1-6. IEEE, (2022)Adaptive Cooperative Control for Hybrid FES-Robotic Upper Limb Devices: a Simulation Study., , , and . EMBC, page 6398-6401. IEEE, (2021)Patient-cooperative mechatronic solutions for rehabilitative and assistive upper-limb exoskeletons.. Polytechnic University of Milan, Italy, (2021)Development and Electromyographic Validation of a Compliant Human-Robot Interaction Controller for Cooperative and Personalized Neurorehabilitation., , , , and . Frontiers Neurorobotics, (2021)Development and Validation of a Kinematically Accurate Upper-Limb Exoskeleton Digital Twin for Stroke Rehabilitation., , , and . ICORR, page 1-6. IEEE, (2023)