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Retracted: Design and analysis of a spatial four-DOF lower limb rehabilitation robot

Hongbo Wang, Yongfei Feng, Xincheng Wang, Lingxue Ren, Jianye Niu, Luige Vlădăreanu

Year
2018
Citations
2

Abstract

Aiming at the existing problem that most of the lower limb rehabilitation robots can only realize patient's leg to move in the sagittal plane, cannot achieve the patient's leg to move in coronal plane, a spatial four-DOF multi-pose lower limb rehabilitation robot is proposed. The robot could also realize the sitting training posture, the lying training posture and the standing training posture. The robot includes seat, left mechanical leg and right mechanical leg. Each mechanical leg with series-parallel mechanism includes the hip joint with two DOFs, knee joint with one DOF and ankle joint with one DOF which correspond to the hip joint, knee joint and ankle joint of human. This paper describes the mechanical design and kinematic analysis of the rehabilitation robot. The coordinate system of the lower limb rehabilitation robot is established, and the degree of freedom of the spatial leg mechanism is calculated.

Keywords

AnkleSagittal planeKinematicsCoronal planeRobotKnee JointComputer scienceRehabilitationPhysical medicine and rehabilitationRehabilitation robotics

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