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首页> 外文期刊>Journal of biomechanical engineering. >Assessment of a Virtual Functional Prototyping Process for the Rapid Manufacture of Passive-Dynamic Ankle-Foot Orthoses
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Assessment of a Virtual Functional Prototyping Process for the Rapid Manufacture of Passive-Dynamic Ankle-Foot Orthoses

机译:评估虚拟功能原型工艺,用于快速制造被动动态踝足偏离矫形器

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摘要

Passive-dynamic ankle-foot orthosis (PD-AFO) bending stiffness is a key functional characteristic for achieving enhanced gait function. However, current orthosis customization methods inhibit objective premanufacture tuning of the PD-AFO bending stiffness, making optimization of orthosis function challenging. We have developed a novel virtual functional prototyping (VFP) process, which harnesses the strengths of computer aided design (CAD) model parameterization and finite element analysis, to quantitatively tune and predict the functional characteristics of a PD-AFO, which is rapidly manufactured via fused deposition modeling (FDM). The purpose of this study was to assess the VFP process for PD-AFO bending stiffness. A PD-AFO CAD model was customized for a healthy subject and tuned to four bending stiffness values via VFP. Two sets of each tuned model were fabricated via FDM using medical-grade polycarbonate (PC-ISO). Dimensional accuracy of the fabricated orthoses was excellent (average 0.51 ± 0.39 mm). Manufacturing precision ranged from 0.0 to 0.74 Nm/deg (average 0.30 ± 0.36 Nm/deg). Bending stiffness prediction accuracy was within 1 Nm/deg using the manufacturer provided PC-ISO elastic modulus (average 0.48 ± 0.35 Nm/deg). Using an experimentally derived PC-ISO elastic modulus improved the optimized bending stiffness prediction accuracy (average 0.29 ± 0.57 Nm/deg). Robustness of the derived modulus was tested by carrying out the VFP process for a disparate subject, tuning the PD-AFO model to five bending stiffness values. For this disparate subject, bending stiffness prediction accuracy was strong (average 0.20 ± 0.14 Nm/deg). Overall, the VFP process had excellent dimensional accuracy, good manufacturing precision, and strong prediction accuracy with the derived modulus. Implementing VFP as part of our PD-AFO customization and manufacturing framework, which also includes fit customization, provides a novel and powerful method to predictably tune and precisely manufacture orthoses with objectively customized fit and functional characteristics.
机译:被动动态的踝足矫形器(PD-AFO)弯曲刚度是实现增强的步态功能的关键功能特性。然而,目前的矫形器定制方法抑制了PD-AFO弯曲刚度的目标永久性调整,使得优化矫形功能具有挑战性。我们开发了一种新型虚拟功能原型设计(VFP)过程,它利用计算机辅助设计(CAD)模型参数化和有限元分析的优势,以定量调谐和预测PD-AFO的功能特性,可通过速度快速制造融合沉积建模(FDM)。本研究的目的是评估PD-AFO弯曲刚度的VFP过程。 PD-AFO CAD模型是为健康受试者定制的,通过VFP调谐到四个弯曲刚度值。使用医疗级聚碳酸酯(PC-ISO)通过FDM制造两组每个调谐模型。尺寸精度优异(平均为0.51±0.39mm)。制造精度范围为0.0至0.74nm / deg(平均0.30±0.36nm / deg)。使用制造商提供PC-ISO弹性模量(平均0.48±0.35nm / deg),弯曲刚度预测精度在1nm / deg内。使用实验衍生的PC-ISO弹性模量改善了优化的弯曲刚度预测精度(平均0.29±0.57nm / deg)。通过对不同主体进行VFP过程来测试衍生模量的鲁棒性,将PD-AFO模型调谐到五个弯曲刚度值。对于这种不同的主体,弯曲刚度预测精度强(平均为0.20±0.14nm / deg)。总的来说,VFP过程具有优异的尺寸精度,良好的制造精度,以及具有衍生模量的强预测精度。实施VFP作为我们的PD-AFO定制和制造框架的一部分,还包括适合定制,提供了一种新颖的和强大的方法,可预见到可预测和精确地制造矫形器,具有客观定制的拟合和功能特征。

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