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可变形 Leg,一种具有可变刚度致动器的外骨骼:来自 2016 年 CYBATHLON 的初步结果和用户评估。

Development of VariLeg, an exoskeleton with variable stiffness actuation: first results and user evaluation from the CYBATHLON 2016.

机构信息

Product Development Group Zurich, ETH Zurich, Leonhardstrasse 21, Zurich, 8092, Switzerland.

Rehabilitation Engineering Laboratory, ETH Zurich, Lengghalde 5, Zurich, 8092, Switzerland.

出版信息

J Neuroeng Rehabil. 2018 Mar 13;15(1):18. doi: 10.1186/s12984-018-0360-4.

Abstract

BACKGROUND

Powered exoskeletons are a promising approach to restore the ability to walk after spinal cord injury (SCI). However, current exoskeletons remain limited in their walking speed and ability to support tasks of daily living, such as stair climbing or overcoming ramps. Moreover, training progress for such advanced mobility tasks is rarely reported in literature. The work presented here aims to demonstrate the basic functionality of the VariLeg exoskeleton and its ability to enable people with motor complete SCI to perform mobility tasks of daily life.

METHODS

VariLeg is a novel powered lower limb exoskeleton that enables adjustments to the compliance in the leg, with the objective of improving the robustness of walking on uneven terrain. This is achieved by an actuation system with variable mechanical stiffness in the knee joint, which was validated through test bench experiments. The feasibility and usability of the exoskeleton was tested with two paraplegic users with motor complete thoracic lesions at Th4 and Th12. The users trained three times a week, in 60 min sessions over four months with the aim of participating in the CYBATHLON 2016 competition, which served as a field test for the usability of the exoskeleton. The progress on basic walking skills and on advanced mobility tasks such as incline walking and stair climbing is reported. Within this first study, the exoskeleton was used with a constant knee stiffness.

RESULTS

Test bench evaluation of the variable stiffness actuation system demonstrate that the stiffness could be rendered with an error lower than 30 Nm/rad. During training with the exoskeleton, both users acquired proficient skills in basic balancing, walking and slalom walking. In advanced mobility tasks, such as climbing ramps and stairs, only basic (needing support) to intermediate (able to perform task independently in 25% of the attempts) skill levels were achieved. After 4 months of training, one user competed at the CYBATHLON 2016 and was able to perform 3 (stand-sit-stand, slalom and tilted path) out of 6 obstacles of the track. No adverse events occurred during the training or the competition.

CONCLUSION

Demonstration of the applicability to restore ambulation for people with motor complete SCI was achieved. The CYBATHLON highlighted the importance of training and gaining experience in piloting an exoskeleton, which were just as important as the technical realization of the robot.

摘要

背景

动力外骨骼是一种有前途的方法,可以恢复脊髓损伤(SCI)后的行走能力。然而,目前的外骨骼在行走速度和日常生活任务(如爬楼梯或克服斜坡)的支持能力方面仍然有限。此外,文献中很少报道此类高级移动任务的训练进展。本文旨在展示 VariLeg 外骨骼的基本功能及其使完全性 SCI 患者能够执行日常生活移动任务的能力。

方法

VariLeg 是一种新型的动力下肢外骨骼,可调整腿部的顺应性,目的是提高在不平坦地形上行走的稳健性。这是通过膝关节的可变机械刚度致动系统实现的,该系统通过测试台实验进行了验证。通过两名截瘫患者进行了两次测试,两名患者均患有 T4 和 T12 处的完全性胸段损伤。患者每周训练三次,每次 60 分钟,为期四个月,目的是参加 2016 年 CYBATHLON 比赛,这是对外骨骼可用性的现场测试。报告了基本行走技能和高级移动任务(如倾斜行走和爬楼梯)的进展情况。在这项初步研究中,外骨骼使用恒定的膝关节刚度。

结果

对可变刚度致动系统的测试台评估表明,刚度可以以低于 30 Nm/rad 的误差呈现。在使用外骨骼进行训练期间,两名患者都熟练掌握了基本的平衡、行走和障碍行走技能。在高级移动任务中,如爬斜坡和楼梯,仅达到基本(需要支撑)到中级(能够在 25%的尝试中独立执行任务)技能水平。经过 4 个月的训练,一名患者参加了 2016 年 CYBATHLON 比赛,并能够完成赛道的 6 个障碍物中的 3 个(站立-坐下-站立、障碍和倾斜路径)。在训练和比赛过程中没有发生不良事件。

结论

成功证明了可用于恢复完全性 SCI 患者行走能力的适用性。CYBATHLON 强调了在操纵外骨骼方面进行培训和获得经验的重要性,这与机器人的技术实现同样重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c827/5851253/e429ba459516/12984_2018_360_Fig1_HTML.jpg

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