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Design and Analysis of a Lower Limb Rehabilitation Training Component for Bedridden Stroke Patients

Xusheng Wang, Yongfei Feng, Jia‐Zhong Zhang, Yungui Li, Jianye Niu, Yandong Yang, Hongbo Wang

Year
2021
Citations
10
Access
Open access

Abstract

Carrying out the immediate rehabilitation interventional therapy will better improve the curative effect of rehabilitation therapy, after the condition of bedridden stroke patients becomes stable. A new lower limb rehabilitation training module, as a component of a synchronous rehabilitation robot for bedridden stroke patients’ upper and lower limbs, is proposed. It can electrically adjust the body shape of patients with a different weight and height. Firstly, the innovative mechanism design of the lower limb rehabilitation training module is studied. Then, the mechanism of the lower limb rehabilitation module is simplified and the geometric relationship of the human–machine linkage mechanism is deduced. Next, the trajectory planning and dynamic modeling of the human–machine linkage mechanism are carried out. Based on the analysis of the static moment safety protection of the human–machine linkage model, the motor driving force required in the rehabilitation process is calculated to achieve the purpose of rationalizing the rehabilitation movement of the patient’s lower limb. To reconstruct the patient’s motor functions, an active training control strategy based on the sandy soil model is proposed. Finally, the experimental platform of the proposed robot is constructed, and the preliminary physical experiment proves the feasibility of the lower limb rehabilitation component.

Keywords

RehabilitationPhysical medicine and rehabilitationLinkage (software)Mechanism (biology)Lower limbStroke (engine)Component (thermodynamics)TrajectoryPhysical therapyComputer science

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