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    Rehabilitation Robotics: Technology and Application

    Vittorio Sanguineti,Roberto Colombo|2018.03.10

    1. Physiological basis of neuromotor recovery 2. An overall framework for neurorehabilitation robotics: implications for recovery 3. Biomechatronic design criteria of systems for robot-mediated rehabilitation therapy 4. Actuators and sensors for rehabilitation and prosthetic robots 5. Assistive controllers and modalities for robot-aided neurorehabilitation 6. Exoskeletons for upper limb rehabilitation 7. Exoskeletons for lower limb rehabilitation 8. Performance measures in robot-assisted assessment of sensorimotor functions 9. Computational models of the recovery process in robot-assisted training 10. Control of rehabilitation robots: from guidance to interaction 11. Promoting motivation during robot-assisted rehabilitation 12. Software platforms for integrating robots and virtual environments 13. Twenty+ Years of Robotics for Upper Extremity Rehabilitation following a Stroke 14. Three-dimensional, task-specific robot therapy 15. Robot-assisted therapy of hand function 16. Robot-assisted gait training 17. Wearable robotic applications for neurorehabilitation 18. Robot-assisted rehabilitation in multiple sclerosis 19. Robots for cognitive rehabilitation and symptom management 20. Hybrid NMES-robot devices for training of activities of daily living 21. Robotic techniques for evaluation and training of proprioceptive deficits 22. Psychophysiological responses during robot-assisted rehabilitation 23. The role of muscle synergies in robot-assisted neurorehabilitation 24. Telerehabilitation Robotics

    • 페이스북아이콘
    • 트위터 아이콘

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