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首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Design and Functional Evaluation of a Quasi-Passive Compliant Stance Control Knee–Ankle–Foot Orthosis
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Design and Functional Evaluation of a Quasi-Passive Compliant Stance Control Knee–Ankle–Foot Orthosis

机译:准被动姿态控制膝-踝-足矫形器的设计和功能评估

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摘要

In this paper, we present the mechanical design, control algorithm, and functional evaluation of a quasi-passive compliant stance control knee–ankle–foot orthosis. The orthosis implements a spring in parallel with the knee joint during the stance phase of the gait and allows free rotation during the swing phase. The design is inspired by the moment-angle analysis of the knee joint revealing that the knee function approximates that of a linear torsional spring in the stance phase of the gait. Our orthosis aims to restore the natural function of a knee that is impaired by injury, stroke, post-polio, multiple sclerosis, spinal cord injury, patellofemoral pain syndrome, osteoarthritis, and others. Compared with state-of-the-art stance control orthoses, which rigidly lock the knee during the stance phase, the described orthosis intends to provide the natural shock absorption function of the knee in order to reduce compensatory movements both in the affected and unaffected limbs. Preliminary testing on three unimpaired subjects showed that compliant support of the knee provided by the orthosis explained here results in higher gait speed as well as more natural kinematic profiles for the lower extremities when compared with rigid support of the knee provided by an advanced commercial stance control orthosis.
机译:在本文中,我们介绍了准被动顺应性姿势控制膝-踝-足矫形器的机械设计,控制算法和功能评估。矫形器在步态的站立阶段与膝关节平行执行弹簧,并在摆动阶段允许自由旋转。该设计的灵感来自膝关节的力矩角分析,揭示了在步态的站立阶段中,膝关节功能近似于线性扭转弹簧的功能。我们的矫形器旨在恢复因受伤,中风,脊髓灰质炎,多发性硬化症,脊髓损伤,pa股疼痛综合征,骨关节炎等而受损的膝盖的自然功能。与最新的姿势控制矫形器(在姿势阶段牢固地锁定膝盖)相比,所述矫形器旨在提供膝盖的自然减震功能,以减少患肢和未患肢的代偿运动。对三个未受损受试者的初步测试表明,与先进的商业姿势控制所提供的刚性支撑相比,矫形器所提供的对膝盖的顺应性支撑可导致更高的步态速度以及下肢更自然的运动学特征矫形器。

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