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Cartilage Stiffness Effect on Foot Biomechanics of Chinese Bound Foot: A Finite Element Analysis

机译:软骨刚度对中国足部足生物力学的影响:有限元分析

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摘要

The purpose of this study is to investigate the effect of cartilage stiffness on inner foot biomechanics of Chinese bound foot while balanced standing using finite element method. A three-dimensional FE model of bound foot involving 28 bones, 72 ligaments, 5 plantar fascia, cartilages, and encapsulated soft tissue was constructed and validated. To conduct the sensitivity analysis of cartilage stiffness, the incremental Young’s modulus of 1, 5, 10, and 15 MPa were assigned to the cartilage. 25% of the body weight was applied to the Achilles tendon to adjust the anterior- posterior displacement of center of pressure agreeable with the measured result. As the Young’s modulus of cartilage increased, the peak von Mises stress in the fifth metatarsal increased obviously, while that in the calcaneus remains unchanged. The plantar fascia experienced reduced total tension with stiffer cartilage. The cartilage stiffening also caused a general increase of contact pressure at mid- and forefoot joints. Cartilage stiffening due to foot binding gave rise to risks of foot pain and longitude arch damage. Knowledge of this study contributes to the understanding of bound foot biomechanical behavior and demonstrating the mechanism of long-term injury and function damage in terms of weight-bearing due to foot binding.
机译:本研究的目的是利用有限元方法研究平衡状态下软骨刚度对中国on足内足生物力学的影响。建立并验证了包含28个骨骼,72条韧带,5个足底筋膜,软骨和包封的软组织的绑脚的三维有限元模型。为了进行软骨硬度的敏感性分析,将增加的1、5、10和15 MPa的杨氏模量分配给软骨。将25%的体重施加到跟腱上,以调整压力中心的前后位移,使其与测量结果一致。随着杨氏软骨模量的增加,第五meta骨的von Mises峰值应力明显增加,而跟骨的峰值则保持不变。足底筋膜总张力降低,软骨变硬。软骨变硬还导致中足和前足关节的接触压力普遍增加。由于足部约束而导致的软骨变硬导致足部疼痛和经度足弓损坏的风险。这项研究的知识有助于人们理解脚的束缚生物力学行为,并通过脚束的负重来说明长期伤害和功能受损的机制。

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