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A validated computational framework to evaluate the stiffness of 3D printed ankle foot orthoses

机译:经过验证的计算框架,可评估3D打印的踝足矫形器的刚度

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The purpose of this study was to create and validate a standardized framework for the evaluation of the ankle stiffness of two designs of 3D printed ankle foot orthoses (AFOs). The creation of four finite element (FE) models allowed patient-specific quantification of the stiffness and stress distribution over their specific range of motion during the second rocker of the gait. Validation was performed by comparing the model outputs with the results obtained from a dedicated experimental setup, which showed an overall good agreement with a maximum relative error of 10.38% in plantarflexion and 10.66% in dorsiflexion. The combination of advanced computer modelling algorithms and 3D printing techniques clearly shows potential to further improve the manufacturing process of AFOs.
机译:这项研究的目的是创建和验证一个标准化的框架,用于评估两种3D打印的踝足矫形器(AFO)设计的踝部僵硬度。通过创建四个有限元(FE)模型,可以在步态第二个摇杆期间根据患者的特定运动范围对刚度和应力分布进行量化。通过将模型输出与从专用实验装置获得的结果进行比较来进行验证,这显示出总体良好的一致性,最大屈曲相对误差为10.38%,背屈最大为10.66%。先进的计算机建模算法和3D打印技术的结合清楚地表明了进一步改善AFO制造工艺的潜力。

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