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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Biomechanical behavior of human crural fascia in anterior and posterior regions of the lower limb
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Biomechanical behavior of human crural fascia in anterior and posterior regions of the lower limb

机译:下肢前部和后部人的筋膜筋膜的生物力学行为

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摘要

The present work focuses on the numerical modeling of the mechanical behavior of the crural fascia, the deep fascia enwrapping the lower limb muscles. This fascia has an important biomechanical role, due to its interaction with muscles during contraction and its association with pathological events, such as compartment syndrome. The mechanical response of the crural fascia is described by assuming a hyperelastic fiber-reinforced constitutive model, with families of fibers disposed according to the spatial disposition of the collagen network, as shown in histological analyses. A two-dimensional finite element model of a lower limb transversal section has been developed to analyze deformational behavior, with particular attention on interaction phenomena between crural fascia and enwrapped muscles. The constitutive model adopted for the crural fascia well fits experimental data taken along the proximal-distal and medial-lateral directions. The finite element analysis allows for interpreting the relation between change in volume and pressure of muscle compartments and the crural fascia deformation.
机译:目前的工作集中在关键筋膜,包裹下肢肌肉的深筋膜的力学行为的数值模拟上。该筋膜具有重要的生物力学作用,这是由于其在收缩过程中与肌肉相互作用以及与诸如隔室综合征等病理事件的关联。如组织学分析所示,通过假设超弹性纤维增强的本构模型描述了筋膜的机械反应,其中纤维家族根据胶原蛋白网络的空间分布而布置。已经开发了下肢横断面的二维有限元模型来分析变形行为,特别是注意筋膜筋膜和包裹的肌肉之间的相互作用现象。筋膜筋膜采用的本构模型很好地拟合了沿近端-远端和内侧-外侧方向获取的实验数据。有限元分析可以解释肌肉隔室的体积和压力变化与筋膜筋膜变形之间的关系。

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