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Passive Ankle Joint Stiffness Compensation by a Novel Ankle-Foot-Orthosis

机译:新型踝足矫形器的被动踝关节刚度补偿

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The stiffness of an Ankle-Foot-Orthosis (AFO) that aims to assist walking affects the gait biomechanics of patients with impaired gait. In patients with equinus (spastic paresis of the lower leg), impaired gait is a consequence of an increased passive ankle joint stiffness (originated from calf muscles) in combination with reduced active muscle strength. Though standard AFOs affect clinically relevant improvements of gait parameters, their designs interfere with the range of motion of the ankle joint. We hypothesize that, by lowering the total passive ankle joint stiffness with the AFO, patient's active range of motion will increase while supporting the patients' muscle forces during gait. We propose a novel AFO design with negative stiffness (nAFO) produced by a spring-loaded CAM follower mechanism. The aim of the device is to compensate for the passive stiffness caused by the calf muscles. This study describes the design, evaluation and walk-ability of the prototype nAFO. Results of the evaluation showed the required compensatory negative stiffness -57.4Nm. rad
机译:旨在协助步行的踝足矫形器(AFO)的刚度会影响步态不佳患者的步态生物力学。在患有马鼻nu(小腿痉挛)的患者中,步态不佳是被动脚踝关节僵硬(源自小腿肌肉)增加而活动肌肉强度降低的结果。尽管标准AFO会影响步态参数的临床相关改善,但其设计会干扰踝关节的运动范围。我们假设,通过使用AFO降低总的被动踝关节刚度,患者的活动范围将会增加,同时在步态中支持患者的肌肉力量。我们提出了一种新颖的AFO设计,该设计由弹簧加载的CAM从动机构产生,具有负刚度(nAFO)。该装置的目的是补偿小腿肌肉引起的被动僵硬。这项研究描述了原型nAFO的设计,评估和步行能力。评估结果表明所需的补偿负刚度为-57.4Nm。拉德

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