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三维耦合足靴模型的有限元建模。

Finite element modeling of a 3D coupled foot-boot model.

机构信息

School of Mechanical and Aerospace Engineering, Nanyang Technological University 50 Nanyang Avenue, 639798 Singapore.

出版信息

Med Eng Phys. 2011 Dec;33(10):1228-33. doi: 10.1016/j.medengphy.2011.05.012. Epub 2011 Jun 14.

Abstract

Increasingly, musculoskeletal models of the human body are used as powerful tools to study biological structures. The lower limb, and in particular the foot, is of interest because it is the primary physical interaction between the body and the environment during locomotion. The goal of this paper is to adopt the finite element (FE) modeling and analysis approaches to create a state-of-the-art 3D coupled foot-boot model for future studies on biomechanical investigation of stress injury mechanism, foot wear design and parachute landing fall simulation. In the modeling process, the foot-ankle model with lower leg was developed based on Computed Tomography (CT) images using ScanIP, Surfacer and ANSYS. Then, the boot was represented by assembling the FE models of upper, insole, midsole and outsole built based on the FE model of the foot-ankle, and finally the coupled foot-boot model was generated by putting together the models of the lower limb and boot. In this study, the FE model of foot and ankle was validated during balance standing. There was a good agreement in the overall patterns of predicted and measured plantar pressure distribution published in literature. The coupled foot-boot model will be fully validated in the subsequent works under both static and dynamic loading conditions for further studies on injuries investigation in military and sports, foot wear design and characteristics of parachute landing impact in military.

摘要

越来越多的人体肌肉骨骼模型被用作研究生物结构的强大工具。下肢,特别是足部,是研究的重点,因为在运动过程中,它是身体和环境之间的主要物理相互作用部位。本文的目的是采用有限元(FE)建模和分析方法,为未来的生物力学研究、足部装备设计和降落伞着陆模拟建立一个最先进的 3D 耦合足部-鞋靴模型。在建模过程中,使用 ScanIP、Surfacer 和 ANSYS 根据计算机断层扫描(CT)图像开发了包含小腿的足踝模型。然后,通过组装基于足踝 FE 模型的上壳、鞋垫、中底和外底的 FE 模型来表示鞋靴,最后通过组合下肢和鞋靴的模型来生成耦合的足部-鞋靴模型。在这项研究中,通过平衡站立来验证足部和踝关节的 FE 模型。在文献中公布的预测和测量足底压力分布的整体模式上,存在很好的一致性。在随后的静态和动态加载条件下,将对耦合足部-鞋靴模型进行全面验证,以便进一步研究军事和运动中的损伤调查、足部装备设计和军事中降落伞着陆冲击的特点。

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