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最佳足跟垫刚度的研究:一项建模研究。

Investigation of the optimum heel pad stiffness: a modeling study.

作者信息

Lin Che-Yu, Chuang Hung-Jui, Cortes Daniel H

机构信息

Department of Mechanical and Nuclear Engineering, College of Engineering, The Pennsylvania State University, University Park, State College, PA, USA.

Department of Physical Medicine and Rehabilitation, National Taiwan University Hospital, Taipei, Taiwan, Republic of China.

出版信息

Australas Phys Eng Sci Med. 2017 Sep;40(3):585-593. doi: 10.1007/s13246-017-0565-z. Epub 2017 Jun 26.

Abstract

Due to the controversy regarding the criterion for diagnosing heel pad (HP) pathology based on evaluating the state of the heel pad stiffness (HPS), this paper intended to apply modeling to understand the influence of the HPS on the mechanical responses of the HP at heelstrike during locomotion, in an attempt to investigate the optimum HPS in terms of the health-related mechanical responses. Two different models, a finite element model and a classical mechanical model, were used to simulate the mechanical responses (force loading and deformation) experienced by the HP at heelstrike. Both excessive force loading and deformation are believed to be detrimental to the heel pad. In the simulation, the corresponding force loading, deformation and net effect (the adding of the normalized force loading and deformation) were calculated for each HPS value. Two models found consistent trends that the stiffer the HP, the greater the force loading and the lower the deformation. In contrast, a softer HP experienced a lower force loading and a greater deformation. Both the force loading and deformation were at medium levels and the net effect was minimal at a HPS value between the highest and lowest values used in the simulation. The modeling result suggested that the optimum HPS should be in a state at which both the force loading and deformation were at medium levels and the net effect was minimal, in terms of the health-related mechanical responses. The abnormal level of HPS, either too high or too low, may correlate to respective pathologies.

摘要

由于在基于评估足跟垫刚度(HPS)来诊断足跟垫(HP)病变的标准方面存在争议,本文旨在应用建模来了解HPS对运动中足跟触地时HP力学响应的影响,试图从与健康相关的力学响应方面研究最佳HPS。使用了两种不同的模型,即有限元模型和经典力学模型,来模拟足跟触地时HP所经历的力学响应(力加载和变形)。过大的力加载和变形都被认为对足跟垫有害。在模拟中,针对每个HPS值计算了相应的力加载、变形和净效应(归一化力加载和变形的相加)。两种模型都发现了一致的趋势,即HP越硬,力加载越大,变形越小。相反,较软的HP经历的力加载较小,变形较大。在模拟中使用的最高值和最低值之间的某个HPS值下,力加载和变形都处于中等水平,净效应最小。建模结果表明,就与健康相关的力学响应而言,最佳HPS应处于力加载和变形都处于中等水平且净效应最小的状态。HPS的异常水平,无论是过高还是过低,都可能与各自的病变相关。

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