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Design of a Soft Ankle-Foot Orthosis Exosuit for Foot Drop Assistance

机译:脚踝辅助软踝足矫形器的设计

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This paper presents the design of a soft ankle-foot orthosis (AFO) exosuit to aid natural gait restoration for individuals suffering from foot drop. The sock-like AFO is comprised of soft actuators made from fabric-based, thermally-bonded nylon and designed to be worn over the users shoes. The system assists dorsiflexion during swing phase of the gait cycle utilizing a contracting soft actuator, and provides ankle joint proprioception during stance with a variable stiffness soft actuator. A computational model is developed using finite element analysis to optimize the performance characteristics of the fabric actuators prior to fabrication, maximize contraction, and minimize overall volume. The dorsiflexion actuator is able to achieve a linear tensile force of 197 N at 200 kPa. The variable stiffness actuator generates up to 1. 2 Nm of torque at the same pressure. The computational model and soft AFO are experimentally validated and with a healthy participant through kinematic and electromyography studies. When active the AFO is capable of reducing by 13.3% the activity of the muscle responsible for ankle dorsiflexion during the swing phase.
机译:本文介绍了软踝足矫形器(AFO)的设计,以帮助患有脚下垂的人恢复自然步态。袜子状的AFO由柔软的执行器组成,该执行器由基于织物的热粘合尼龙制成,设计为可以穿在使用者的鞋子上。该系统利用收缩的软致动器在步态周期的摆动阶段辅助背屈,并在姿势稳定的过程中使用可变刚度的软致动器提供踝关节本体感受。使用有限元分析开发了一个计算模型,以在制造之前优化织物执行器的性能特征,最大程度地收缩和最小化整体体积。背屈致动器能够在200 kPa的压力下获得197 N的线性张力。可变刚度执行器在相同压力下可产生高达1. 2 Nm的扭矩。通过运动学和肌电图研究,计算模型和软性AFO经过实验验证,并有健康参与者参加。活跃时,AFO能够将挥杆阶段负责踝背屈的肌肉活动降低13.3%。

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