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首页> 外文期刊>Journal of Biomechanics >Influence of altered geometry and material properties on tissue stress distribution under load in tendinopathic Achilles tendons - A subject-specific finite element analysis
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Influence of altered geometry and material properties on tissue stress distribution under load in tendinopathic Achilles tendons - A subject-specific finite element analysis

机译:改变几何和材料特性对肌腱脑腱载下组织应力分布的影响 - 对象特异性有限元分析

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摘要

Achilles tendon material properties and geometry are altered in Achilles tendinopathy. The purpose of this study was to determine the relative contributions of altered material properties and geometry to free Achilles tendon stress distribution during a sub-maximal contraction in tendinopathic relative to healthy tendons. Tendinopathic (n = 8) and healthy tendons (n = 8) were imaged at rest and during a sub maximal voluntary isometric contraction using three-dimensional freehand ultrasound. Images were manually segmented and used to create subject-specific finite element models. The resting cross-sectional area of the free tendon was on average 31% greater for the tendinopathic compared to healthy tendons. Material properties for each tendon were determined using a numerical parameter optimisation approach that minimised the difference in experimentally measured longitudinal strain and the strain predicted by the finite element model under submaximal loading conditions for each tendon. The mean Young's modulus for tendinopathic tendons was 53% lower than the corresponding control value. Finite element analyses revealed that tendinopathic tendons experience 24% less stress under the same sub maximal external loading conditions compared to healthy tendons. The lower tendon stress in tendinopathy was due to a greater influence of tendon cross-sectional area, which alone reduced tendon stress by 30%, compared to a lower Young's modulus, which alone increased tendon stress by 8%. These findings suggest that the greater tendon cross-sectional area observed in tendinopathy compensates for the substantially lower Young's modulus, thereby protecting pathological tendon against excessive stress. (C) 2018 Published by Elsevier Ltd.
机译:Achilles肌腱材料特性和几何形状在Achilles肌腱病变中改变。本研究的目的是确定改变材料特性和几何形状的相对贡献,以在肌腱病变相对于健康肌腱中的患者患者中的亚显收缩期间获得肌腱应激分布。肌腱病(n = 8)和健康肌腱(n = 8)在休息和亚最大自愿等距收缩期间使用三维自写超声造成。手动分割图像并用于创建特定主题的有限元模型。与健康肌腱相比,自由肌腱的休息横截面积平均较高31%。使用数值参数优化方法测定每个肌腱的材料特性,所述数值参数优化方法测定,最小化实验测量的纵向应变的差异和由有限元模型在每个肌腱的潜水负载条件下预测的菌株预测的菌株。腹膜病变肌腱的平均杨氏模量比相应的对照值低53%。有限元分析显示,与健康肌腱相比,肌腱病肌腱在相同亚最大外部负载条件下的压力下降24%。与较低的杨氏模量相比,肌腱剖视区的肌腱横截面积较低的肌腱横截面积较大的影响是较大的肌腱横截面积,该腹部横截面积仅减小肌腱胁迫将其单独增加肌腱应力增加8%。这些发现表明,在肌腱病变中观察到的较大肌腱横截面积补偿了基本上较低的杨氏模量,从而保护病理肌腱免受过度应激。 (c)2018由elestvier有限公司出版

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