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利用摆动腿上的自由力矩或关节力矩辅助步态。

Assisting gait with free moments or joint moments on the swing leg.

作者信息

Jabeen Saher, Berry Andrew, Geijtenbeek Thomas, Harlaar Jaap, Vallery Heike

出版信息

IEEE Int Conf Rehabil Robot. 2019 Jun;2019:1079-1084. doi: 10.1109/ICORR.2019.8779389.

Abstract

Wearable actuators in lower-extremity active orthoses or prostheses have the potential to address a variety of gait disorders. However, whenever conventional joint actuators exert moments on specific limbs, they must simultaneously impose opposing reaction moments on other limbs, which may reduce the desired effects and perturb posture. Momentum exchange actuators exert free moments on individual limbs, potentially overcoming or mitigating these issues.We simulate unperturbed gait to compare conventional joint actuators placed on the knee or hip of the swing leg, and equivalent angular momentum exchange actuators placed on the shank or thigh. Our results indicate that, while conventional joint actuators excel at increasing toe clearance when assisting knee flexion, free moments can yield greater increases in stride length when assisting knee extension or hip flexion.

摘要

下肢主动矫形器或假肢中的可穿戴致动器有潜力解决多种步态障碍。然而,每当传统关节致动器在特定肢体上施加力矩时,它们必须同时在其他肢体上施加相反的反作用力矩,这可能会降低预期效果并干扰姿势。动量交换致动器在单个肢体上施加自由力矩,有可能克服或减轻这些问题。我们模拟无干扰步态,以比较放置在摆动腿膝盖或臀部的传统关节致动器,以及放置在小腿或大腿上的等效角动量交换致动器。我们的结果表明,虽然传统关节致动器在辅助膝关节屈曲时能有效增加脚趾间隙,但自由力矩在辅助膝关节伸展或髋关节屈曲时能使步幅有更大增加。

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