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A bio-inspired design of a hand robotic exoskeleton for rehabilitation

Aira Patrice R. Ong, Nilo T. Bugtai

Year
2018
Citations
24
Access
Open access

Abstract

This paper presents the methodology for the design of a five-degree of freedom wearable robotic exoskeleton for hand rehabilitation. The design is inspired by the biological structure and mechanism of the human hand. One of the distinct features of the device is the cable-driven actuation, which provides the flexion and extension motion. A prototype of the orthotic device has been developed to prove the model of the system and has been tested in a 3D printed mechanical hand. The result showed that the proposed device was consistent with the requirements of bionics and was able to demonstrate the flexion and extension of the system.

Keywords

ExoskeletonBionicsWearable computerComputer scienceMechanism (biology)Robotic handPowered exoskeletonRehabilitation roboticsSimulationRobot

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