Novel Gait Adaptation and Neuromotor Training Results Using an Active Leg Exoskeleton
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S. K. Banala | J. Scholz | S. Kim | S.K. Agrawal | Seok Hun Kim | S.K. Banala | J.P. Scholz | S. Agrawal
[1] L. Cohen,et al. Role of voluntary drive in encoding an elementary motor memory. , 2005, Journal of neurophysiology.
[2] Alin Albu-Schäffer,et al. ROKVISS - robotics component verification on ISS current experimental results on parameter identification , 2006, Proceedings 2006 IEEE International Conference on Robotics and Automation, 2006. ICRA 2006..
[3] S. Hesse,et al. A mechanized gait trainer for restoring gait in nonambulatory subjects. , 2000, Archives of physical medicine and rehabilitation.
[4] John Croney. Anthropometry for designers , 1971 .
[5] Eduardo Rocon,et al. Biomechanical modelling of the upper limb for robotics-based orthotic tremor suppression , 2005 .
[6] S.K. Agrawal,et al. Motion control of a novel planar biped with nearly linear dynamics , 2006, IEEE/ASME Transactions on Mechatronics.
[7] Constantinos Mavroidis,et al. Control of electro-rheological fluid based resistive torque elements for use in active rehabilitation devices , 2007 .
[8] A. Mayr,et al. Prospective, Blinded, Randomized Crossover Study of Gait Rehabilitation in Stroke Patients Using the Lokomat Gait Orthosis , 2007, Neurorehabilitation and neural repair.
[9] S. K. Banala,et al. Journal of Neuroengineering and Rehabilitation Open Access Novel Swing-assist Un-motorized Exoskeletons for Gait Training , 2022 .
[10] S.J. Harkema,et al. An assistive robotic device that can synchronize to the pelvic motion during human gait training , 2005, 9th International Conference on Rehabilitation Robotics, 2005. ICORR 2005..
[11] S. Hesse,et al. A mechanized gait trainer for restoration of gait. , 2000, Journal of rehabilitation research and development.
[12] Carlos Canudas de Wit,et al. A survey of models, analysis tools and compensation methods for the control of machines with friction , 1994, Autom..
[13] C. Braun,et al. Motor learning elicited by voluntary drive. , 2003, Brain : a journal of neurology.
[14] V. Dietz,et al. Treadmill training of paraplegic patients using a robotic orthosis. , 2000, Journal of rehabilitation research and development.
[15] S.K. Agrawal,et al. Active Leg Exoskeleton (ALEX) for Gait Rehabilitation of Motor-Impaired Patients , 2007, 2007 IEEE 10th International Conference on Rehabilitation Robotics.
[16] Jörg Krüger,et al. HapticWalker---a novel haptic foot device , 2005, TAP.
[17] J. Burdick,et al. Implications of Assist-As-Needed Robotic Step Training after a Complete Spinal Cord Injury on Intrinsic Strategies of Motor Learning , 2006, The Journal of Neuroscience.
[18] Yoshiyuki Sankai,et al. Power assist method based on Phase Sequence and muscle force condition for HAL , 2005, Adv. Robotics.
[19] Daniel P. Ferris,et al. Mechanical performance of artificial pneumatic muscles to power an ankle-foot orthosis. , 2006, Journal of biomechanics.
[20] P R Fine,et al. Task performance in spinal cord injury: effect of helplessness training. , 1980, Archives of physical medicine and rehabilitation.
[21] Steven Dubowsky,et al. The design of a friction compensation control architecture for a heavy lift precision manipulator in contact with the environment , 2006, Proceedings 2006 IEEE International Conference on Robotics and Automation, 2006. ICRA 2006..
[22] R. Riener,et al. Patient-cooperative strategies for robot-aided treadmill training: first experimental results , 2005, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[23] Frans C. T. van der Helm,et al. A Series Elastic- and Bowden-Cable-Based Actuation System for Use as Torque Actuator in Exoskeleton-Type Robots , 2006, Int. J. Robotics Res..
[24] N. Skinner,et al. Learned helplessness: performance as a function of task significance. , 1979, The Journal of psychology.
[25] D.A. Bradley,et al. The analysis, design and implementation of a model of an exoskeleton to support mobility , 2005, 9th International Conference on Rehabilitation Robotics, 2005. ICORR 2005..
[26] S.K. Agrawal,et al. Assessment of Motion of a Swing Leg and Gait Rehabilitation With a Gravity Balancing Exoskeleton , 2007, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[27] F. Müller,et al. Effects of Locomotion Training With Assistance of a Robot-Driven Gait Orthosis in Hemiparetic Patients After Stroke: A Randomized Controlled Pilot Study , 2007, Stroke.
[28] S.K. Agrawal,et al. Robot assisted gait training with active leg exoskeleton (ALEX) , 2009, 2008 2nd IEEE RAS & EMBS International Conference on Biomedical Robotics and Biomechatronics.
[29] Allison M. Okamura,et al. Friction compensation for a force-feedback telerobotic system , 2006, Proceedings 2006 IEEE International Conference on Robotics and Automation, 2006. ICRA 2006..
[30] S. Agrawal,et al. Differentially Flat Design of Bipeds Ensuring Limit Cycles , 2009 .
[31] Sunil Kumar Agrawal,et al. Gravity-Balancing Leg Orthosis and Its Performance Evaluation , 2006, IEEE Transactions on Robotics.