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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Predictive prosthetic socket design: part 1-population-based evaluation of transtibial prosthetic sockets by FEA-driven surrogate modelling
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Predictive prosthetic socket design: part 1-population-based evaluation of transtibial prosthetic sockets by FEA-driven surrogate modelling

机译:预测假肢套接字设计:FEA驱动的代理模拟的基于第一群人的宁静假肢套接字评估

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摘要

It has been proposed that finite element analysis can complement clinical decision making for the appropriate design and manufacture of prosthetic sockets for amputees. However, clinical translation has not been achieved, in part due to lengthy solver times and the complexity involved in model development. In this study, a parametric model was created, informed by variation in (i) population-driven residuum shape morphology, (ii) soft tissue compliance and (iii) prosthetic socket design. A Kriging surrogate model was fitted to the response of the analyses across the design space enabling prediction for new residual limb morphologies and socket designs. It was predicted that morphological variability and prosthetic socket design had a substantial effect on socket-limb interfacial pressure and shear conditions as well as sub-dermal soft tissue strains. These relationships were investigated with a higher resolution of anatomical, surgical and design variability than previously reported, with a reduction in computational expense of six orders of magnitude. This enabled real-time predictions (1.6 ms) with error vs the analytical solutions of < 4 kPa in pressure at residuum tip, and < 3% in soft tissue strain. As such, this framework represents a substantial step towards implementation of finite element analysis in the prosthetics clinic.
机译:已经提出了有限元分析可以补充临床决策,以适当的设计和制造用于患者的假体插座。然而,临床翻译尚未实现,部分原因是漫长的求解器时间和模型开发中涉及的复杂性。在这项研究中,创建了参数模型,通过(i)群体驱动的残留形状形态(II)软组织顺应性和(iii)假体套接字设计。 Kriging代理模型适用于对设计空间的分析响应,从而实现了新的残留肢体形态和插座设计的预测。预测,形态变异性和假体套接字设计对插座 - 肢体界面压力和剪切条件以及亚皮肤软组织菌株具有显着影响。通过比以前报告的解剖学,手术和设计变异性更高的解剖学,手术和设计变异,降低了这些关系,其计算费用减少了六个数量级。这使得这种具有误差与误差的实时预测(1.6毫秒)在残留尖端的压力下对<4kPa的分析溶液,以及在软组织菌株中的<3%。因此,该框架代表了对假肢诊所的有限元分析实施的实质性步骤。

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