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A Novel Dorsal Trimline Approach for Passive-Dynamic Ankle-Foot Orthoses

机译:一种用于被动动态踝关节斜面的新型背部修剪方法

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摘要

An ankle-foot orthosis (AFO) is an externally applied assistive device that encompasses the lower leg, ankle, and foot of the human body. In the current one-piece passive-dynamic AFO design, the trimming process is performed from lateral and medial parts of the ankle to ensure desired rotational displacement (hereafter referred to as Design I). In most cases, stress concentrations occurring over the trimmed regions during walking can cause permanent damage to the AFO. In this study, to reduce the stress concentration and ensure a homogeneous stress distribution, a new trimming approach is presented, in which the trim zones were transferred from lateral and medial to dorsal (hereafter referred to as Design II). Finite element analyses of the Designs I and II models were carried out. Displacement and von Mises stress values for both models under the same loading and boundary conditions were obtained. Maximum displacement values were 8.51 mm and 9.05 mm for Design I and Design II, respectively. Maximum stress values were 15.19 MPa and 6.70 MPa for Design I and Design II, respectively. For the similar range of motion of ankle joint, the novel design produced less stress and more homogeneous stress distribution than the currently used design, thus indicating that Design II would be more resistant to plastic deformation than Design I.
机译:脚踝脚矫形器(AFO)是一种外部应用辅助装置,包括小腿,脚踝和人体脚。在当前的单件式无源动态AFO设计中,修剪过程由踝部的横向和内侧部件进行,以确保期望的旋转位移(以下称为设计I)。在大多数情况下,在步行过程中,在整个修剪区域发生的应力浓度会对AFO造成永久性损坏。在该研究中,为了降低应力浓缩并确保均匀的应力分布,提出了一种新的修整方法,其中修剪区域从横向和内侧转移到背侧(以下称为设计II)。进行了设计I和II模型的有限元分析。获得的位移和von在相同的加载和边界条件下获得两种模型的压力值。对于设计I和设计II,最大位移值分别为8.51 mm和9.05 mm。对于设计I和设计II,最大应力值分别为15.19MPa和6.70MPa。对于踝关节的相似运动范围,新颖的设计比目前使用的设计产生更小的应力和更均匀的应力分布,从而表明设计II更耐塑性变形比设计更具抵抗力。

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