机器人
弹道
计算机科学
大腿
膝关节
康复
运动(物理)
物理医学与康复
模拟
人工智能
物理
医学
物理疗法
解剖
天文
外科
作者
Yao Pei,Y. Kim,Goro Obinata,E. Genda,D. Stefanov
标识
DOI:10.1109/embc.2013.6610046
摘要
In this paper, we propose a simultaneous design method of motion and external force trajectories for knee joint rehabilitation based on the biomechanical analysis of the lower limb. In this method we assume to use two robots manipulators which provide forces and moments at shank and thigh. We developed a 7 degree of freedom musculoskeletal model of lower limb with 19 muscles. The valuation function of rehabilitation efficiency e has been maximized by Genetic Algorithm (GA) that refers to the musculoskeletal model and tunes motion trajectory of the robots and forces acting on the shank and thigh.
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