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A patient-specific EMG-driven musculoskeletal model for improving the effectiveness of robotic neurorehabilitation

  • The University of Auckland

科研成果: 期刊稿件文章同行评审

3 引用 (Scopus)

摘要

An EMG-driven musculoskeletal model for controlling the humaninspired robotic neurorehabilitation is proposed in this paper. This model is built upon the state-of-the-art computer generated musculoskeletal framework which provides patient-specific muscular-tendon physiological, musculartendon kinematics parameters. Muscle forces and joint moment during locomotion are predicted through activation dynamics and contraction dynamics based on the hill-type muscle mechanics model. A hybrid Simulink- M simulated anneal algorithm is used for parameters optimization. The preliminary result showed that based on only a few EMG channels, the proposed model could efficiently predict joint moment and muscle forces. The proposed model has the potential to control the rehabilitation robot based only on a few of EMG channels from extensor and flexor muscle.

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