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Feasibility test of a novel power-harvesting mechanism to adjust ankle stiffness in ankle foot orthosis

机译:新型电力收集机制的可行性试验,以调整踝脚矫形器踝关节僵硬

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Orthotic devices are used widely in orthopaedics to improve the gait of patients with conditions such as stroke, one of the most common causes of impairment, who develop drop foot. Although there are passive or power harvesting orthosis for them, their effectiveness is limited due to the fact that they usually have a unique stiffness throughout the whole gait cycle or because they focus only on modify damping. Thus, we develop and test a novel passive power-harvesting mechanism to adjust ankle stiffness in ankle foot orthosis. The mechanism is based on two matching grooves that pull a string when they are pressed, deflecting a spring that helps to generate dorsiflexion. The mechanism is optimized and tested using 3D printing technologies. Results show that it changes the stiffness through gait cycle, thus allowing dorsiflexion, although bigger torque is needed to reach average levels of ankle torque.
机译:矫形器件广泛用于骨科,以改善患有中风等条件的患者的步态,其中损害最常见的障碍原因之一,他们开发脚。虽然有被动或功率收获的矫形矫形器,但它们的有效性是有限的,因为它们通常在整个步态周期中具有独特的僵硬,或者因为它们仅关注修改阻尼。因此,我们开发和测试一种新的被动电力收集机制,以调整踝足矫形器的踝僵硬度。该机构基于两个匹配的凹槽,当按下时拉串,偏转有助于产生背屈的弹簧。使用3D印刷技术进行优化和测试机制。结果表明,它通过步态周期改变刚度,从而允许背屈,尽管需要更大的扭矩来达到平均脚踝扭矩的水平。

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