23 results on '"Dosen, Strahinja"'
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2. Artificial Skin and Electrotactile Stimulation for Advanced Tactile Feedback in Myoelectric Prostheses
3. SimBionics: Neuromechanical Simulation and Sensory Feedback for the Control of Bionic Legs
4. Supplementary feedback for upper-limb prostheses using noninvasive stimulation: methods, encoding, estimation-prediction processes, and assessment
5. Prosthetic Feedback Systems
6. Online Simultaneous Myoelectric Finger Control
7. Decoding Phantom Limb Neuro-Mechanical Function for a New Paradigm of Mind-Controlled Bionic Limbs
8. A Novel Physiologically-Inspired Method for Myoelectric Prosthesis Control Using Pattern Classification
9. HD-EMG to Assess Motor Learning in Myoelectric Control
10. A Novel Controller for Bipedal Locomotion Integrating Feed-Forward and Feedback Mechanisms
11. Chapter 5 - Supplementary feedback for upper-limb prostheses using noninvasive stimulation: methods, encoding, estimation-prediction processes, and assessment
12. A Novel Robot-Aided Therapy for Shoulder Rehabilitation after Stroke: Active-Assisted Control of the RehaArm Robot Using Electromyographic Signals
13. Physiological Recruitment of Large Populations of Motor Units Using Electrical Stimulation of Afferent Pathways
14. Benchmarking Human-Like Posture and Locomotion of Humanoid Robots: A Preliminary Scheme
15. Tremor Suppression Using Electromyography and Surface Sensory Electrical Stimulation
16. Switching between the Modes of Control: Implications for the Closed Loop Control of Prostheses
17. The HyVE: Hybrid Vibro-Electrotactile Stimulation for Sensory Feedback in Upper Limb Prostheses
18. A Novel Controller for Bipedal Locomotion Integrating Feed-Forward and Feedback Mechanisms.
19. Optimal Control of Walking with Functional Electrical Stimulation: Inclusion of Physiological Constraints
20. Benchmarking Human-Like Posture and Locomotion of Humanoid Robots: A Preliminary Scheme.
21. The HyVE: Hybrid Vibro-Electrotactile Stimulation for Sensory Feedback in Upper Limb Prostheses.
22. Switching between the Modes of Control: Implications for the Closed Loop Control of Prostheses.
23. Optimal Control of Walking with Functional Electrical Stimulation: Inclusion of Physiological Constraints.
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