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后跟先着地和前脚掌先着地跑时足弓变形和足底筋膜受力:动态有限元分析。

Foot arch deformation and plantar fascia loading during running with rearfoot strike and forefoot strike: A dynamic finite element analysis.

机构信息

Department of Biomedical Engineering, Faculty of Engineering, The Hong Kong Polytechnic University, Hong Kong Special Administrative Region, China.

Department of Biomedical Engineering, Faculty of Engineering, The Hong Kong Polytechnic University, Hong Kong Special Administrative Region, China; The Hong Kong Polytechnic University Shenzhen Research Institute, Shenzhen, China.

出版信息

J Biomech. 2019 Jan 23;83:260-272. doi: 10.1016/j.jbiomech.2018.12.007. Epub 2018 Dec 8.

Abstract

Forefoot strike becomes popular among runners because it facilitates better impact attenuation. However, forefoot strike may overload the plantar fascia and impose risk of plantar fasciitis. This study aimed to examine and compare the foot arch deformation and plantar fascia tension between different foot strike techniques in running using a computational modelling approach. A three-dimensional finite element foot model was reconstructed from the MRI of a healthy runner. The foot model included twenty bones, bulk soft tissue, ligaments, tendons, and plantar fascia. The time-series data of segmental kinematics, foot muscle force, and ankle joint reaction force were derived from a musculoskeletal model of the same participant based on the motion capture analysis and input as the boundary conditions for the finite element analysis. Rearfoot strike and forefoot strike running were simulated using a dynamic explicit solver. The results showed that, compared to rearfoot strike, forefoot strike reduced the foot arch height by 9.12% and increased the medial longitudinal arch angle by 2.06%. Forefoot strike also increased the plantar connective tissues stress by 18.28-200.11% and increased the plantar fascia tensile force by 18.71-109.10%. Although it is currently difficult to estimate the threshold value of stress or force that results in injury, forefoot strike runners appeared to be more vulnerable to plantar fasciitis.

摘要

前足着地在跑步者中变得流行,因为它有助于更好地减轻冲击。然而,前足着地可能会使足底筋膜过载,并增加足底筋膜炎的风险。本研究旨在通过计算建模方法研究和比较不同足着地技术在跑步中的足弓变形和足底筋膜张力。从一名健康跑步者的 MRI 重建了一个三维有限元足部模型。足部模型包括二十块骨头、大量软组织、韧带、肌腱和足底筋膜。基于运动捕捉分析和输入作为有限元分析的边界条件,从同一参与者的肌肉骨骼模型中得出了节段运动学、足部肌肉力和踝关节反作用力的时间序列数据。使用动力显式求解器模拟了后足着地和前足着地跑步。结果表明,与后足着地相比,前足着地使足弓高度降低了 9.12%,内侧纵弓角度增加了 2.06%。前足着地还使足底结缔组织的应力增加了 18.28-200.11%,足底筋膜的张力增加了 18.71-109.10%。尽管目前很难估计导致损伤的应力或力的阈值,但前足着地的跑步者似乎更容易患足底筋膜炎。

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