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Electroencephalography-guided upper-limb hybrid robotic platform to modulate cortical excitability.

, , , , , and . SMC, page 3179-3183. IEEE, (2017)

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Electroencephalography-guided upper-limb hybrid robotic platform to modulate cortical excitability., , , , , and . SMC, page 3179-3183. IEEE, (2017)Towards an ankle neuroprosthesis for hybrid robotics: Concepts and current sources for functional electrical stimulation., , , , , and . ICORR, page 1660-1665. IEEE, (2017)A Low Power Routing and Topology Control Protocol for Cluster-based Environmental Wireless Sensor Networks: The FLORA Project Case., , , , and . MASS, page 132-134. IEEE Computer Society, (2011)A Low Cost Platform based on FES and Muscle Synergies for Postural Control Research and Rehabilitation., , , , and . NEUROTECHNIX, page 21-31. SciTePress, (2013)Segmentation of stairs ascent and descent for neuroprosthetic motor control., , , , and . EMBC, page 6711-6714. IEEE, (2021)A novel FES control paradigm based on muscle synergies for postural rehabilitation therapy with hybrid exoskeletons., , , , , and . EMBC, page 1868-1871. IEEE, (2012)Combining a hybrid robotic system with a bain-machine interface for the rehabilitation of reaching movements: A case study with a stroke patient., , , , , , , , and . EMBC, page 6381-6384. IEEE, (2016)A new platform based on IEEE802.15.4 wireless inertial sensors for motion caption and assessment., , , , and . EMBC (Supplement), page 6497-6500. IEEE, (2006)Rationale for Multiple Compensation of Muscle Weakness Walking with a Wearable Robotic Orthosis., , , , and . ICRA, page 1914-1919. IEEE, (2005)A robotic exoskeleton for overground gait rehabilitation., , , , , and . ICRA, page 3356-3361. IEEE, (2013)