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Powered orthosis for lower limb movements assistance and rehabilitation

机译:动力矫形器帮助下肢运动和康复

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摘要

This paper presents two rehabilitation approaches of the lower limb: passive and active. The passive one ensures repetitive motions of the limb without any effort delivered by the wearer. Within the active one, a human-exoskeleton interaction approach is proposed. It allows us to provide a knee joint torque support, adapted according to the intention and ability of the wearer, for assistance-as-needed. The wearer's intention is estimated using a realistic model of the muscles actuating the knee joint. The identification process concerns the inertial parameters of the shank-foot-exoskeleton and the muscu-lotendinous parameters. Experiments were conducted online on a healthy subject and have shown satisfactory results in terms of tracking error, intention detection and passive-rehabilitation/active-assistance.
机译:本文介绍了下肢的两种康复方法:被动和主动。被动式确保了肢体的重复运动,而无需佩戴者付出任何努力。在主动的领域内,提出了一种人与骨骼的相互作用方法。它使我们能够提供膝关节扭矩支持,并根据穿戴者的意图和能力进行调整,以根据需要提供帮助。佩戴者的意图是使用逼真的膝关节肌肉模型来估算的。识别过程涉及小腿-脚-外骨骼的惯性参数和肌肉-脂肪参数。在线对健康受试者进行了实验,这些实验在跟踪误差,意图检测和被动康复/主动帮助方面显示出令人满意的结果。

著录项

  • 来源
    《Control Engineering Practice》 |2014年第5期|245-253|共9页
  • 作者单位

    Laboratory of Image, Signal and Intelligent Systems - LISSI, University of Paris-Est Creteil - UPEC, 122 Rue Paul Armangot, 94400 Vitry-Sur-Seine, France;

    Laboratory of Image, Signal and Intelligent Systems - LISSI, University of Paris-Est Creteil - UPEC, 122 Rue Paul Armangot, 94400 Vitry-Sur-Seine, France;

    Laboratory of Image, Signal and Intelligent Systems - LISSI, University of Paris-Est Creteil - UPEC, 122 Rue Paul Armangot, 94400 Vitry-Sur-Seine, France;

    Laboratory of Image, Signal and Intelligent Systems - LISSI, University of Paris-Est Creteil - UPEC, 122 Rue Paul Armangot, 94400 Vitry-Sur-Seine, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Actuated orthosis; Wearable robots; Musculoskeletal modeling; Rehabilitation robotics;

    机译:矫形器可穿戴机器人肌肉骨骼建模;康复机器人;

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