HiBSO Hip Exoskeleton: Toward a Wearable and Autonomous Design
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[1] Andrea Parri,et al. A light-weight active orthosis for hip movement assistance , 2015, Robotics Auton. Syst..
[2] A. Ortlieb,et al. Series Elastic Actuation for Assistive Orthotic Devices: Case Study of Pneumatic Actuator , 2016 .
[3] Andrea Parri,et al. Walking Assistance Using Artificial Primitives: A Novel Bioinspired Framework Using Motor Primitives for Locomotion Assistance Through a Wearable Cooperative Exoskeleton , 2016, IEEE Robotics & Automation Magazine.
[4] Nicola Vitiello,et al. Human–Robot Synchrony: Flexible Assistance Using Adaptive Oscillators , 2011, IEEE Transactions on Biomedical Engineering.
[5] Ken Endo,et al. A Quasi-Passive Leg Exoskeleton for Load-Carrying Augmentation , 2007, Int. J. Humanoid Robotics.
[6] Reymond Clavel,et al. A Ball-Screw Driven Motorized Hip Orthosis , 2014 .
[7] Daniel P. Ferris,et al. Invariant hip moment pattern while walking with a robotic hip exoskeleton. , 2011, Journal of biomechanics.
[8] Hannes Bleuler,et al. Influence of an Assistive Hip Orthosis on Gait , 2016, RAAD.
[9] Slavka Viteckova,et al. Wearable lower limb robotics: A review , 2013 .
[10] Leif Hasselquist,et al. Effects of a lower-body exoskeleton device on metabolic cost and gait biomechanics during load carriage , 2010, Ergonomics.
[11] Daniel P. Ferris,et al. State of the Art and Future Directions for Lower Limb Robotic Exoskeletons , 2017, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[12] D. Winter. Kinematic and kinetic patterns in human gait: Variability and compensating effects , 1984 .
[13] Hannes Bleuler,et al. Mechanisms for actuated assistive hip orthoses , 2015, Robotics Auton. Syst..
[14] Nicola Vitiello,et al. Oscillator-based assistance of cyclical movements: model-based and model-free approaches , 2011, Medical & Biological Engineering & Computing.