The Effects of Clinical Applications of Robot-Assisted Therapy Methods: End-Effector, Fixed Exoskeleton, and Wearable Exoskeleton on Functional Activities in Stroke Patients. [PDF]
Lee JH.
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An upper-limb teleoperation exoskeleton with stepless arm-length parameterization and adaptive force-triggered impedance blending. [PDF]
Zeng P +6 more
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Research on Control Strategy of Lower Limb Exoskeleton Robots: A Review. [PDF]
Xu X +5 more
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Experimental Evaluation of Kinematic Compatibility in Three Upper Limb Exoskeleton Configurations Using Interface Force and Torque. [PDF]
Zeng H, Liu H, Fu L, Cao Q.
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Adaptive intelligent controller for a lower limb rehabilitation robot using QAOA-based online membership optimization. [PDF]
Abd-Elhaleem S +2 more
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Efficacy of Wearable Exoskeleton for Gait Recovery in Patients With Stroke: A Multicenter Randomized Controlled Trial. [PDF]
Chang WH +8 more
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Dead Matter, Living Machines: Repurposing Crustaceans' Abdomen Exoskeleton for Bio-Hybrid Robots. [PDF]
Kim S, Gilday K, Hughes J.
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Design an Upper Limb Exoskeleton Robot
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Advancements in Robotic Exoskeleton
2018 International Conference on Circuits and Systems in Digital Enterprise Technology (ICCSDET), 2018The application of robotics in health systems are more likely to be achieved because of the first and most important progress of the system and the need for population to increase the value of people in their work. As a result, a worldwide robot treatment system has been developed for the training of both the final and the lower sections.
Athira P., Reshma Mary Oommen
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