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Effects of plantar fascia stiffness on the biomechanical responses of the ankle-foot complex.

机译:足底筋膜僵硬对踝足复合体生物力学响应的影响。

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Background. The plantar fascia is one of the major stabilizing structures of the longitudinal arch of human foot, especially during midstance of the gait cycle. Knowledge of its functional biomechanics is important for establishing the biomechanical rationale behind different rehabilitation, orthotic and surgical treatment of plantar fasciitis. This study aims at quantifying the biomechanical responses of the ankle-foot complex with different plantar fascia stiffness. Methods. A geometrical detailed three-dimensional finite element model of the human foot and ankle, incorporating geometric and contact nonlinearities was constructed by 3D reconstruction of MR images. A sensitivity study was conducted to evaluate the effects of varying elastic modulus (0-700 MPa) of the plantar fascia on the stress/strain distribution of the bony, ligamentous and encapsulated soft tissue structures. Findings. The results showed that decreasing the Young's modulus of plantar fascia would increase the strains of the long and short plantar and spring ligaments significantly. With zero fascia Young's modulus to simulate the plantar fascia release, there was a shift in peak von Mises stresses from the third to the second metatarsal bones and increased stresses at the plantar ligament attachment area of the cuboid bone. Decrease in arch height and midfoot pronation were predicted but did not lead to the total collapse of foot arch. Interpretation. Surgical dissection of the plantar fascia may induce excessive strains or stresses in the ligamentous and bony structures. Surgical release of plantar fascia should be well-planned to minimise the effect on its structural integrity to reduce the risk of developing arch instability and subsequent painful foot syndrome.
机译:背景。足底筋膜是人脚纵弓的主要稳定结构之一,尤其是在步态周期中。了解其功能性生物力学对于确定足底筋膜炎的不同康复,矫形和手术治疗背后的生物力学原理很重要。这项研究旨在量化不同足底筋膜刚度的踝足复合体的生物力学响应。方法。通过对MR图像进行3D重建,构建了包含几何和接触非线性的人脚和脚踝的几何详细三维有限元模型。进行了敏感性研究,以评估足底筋膜的变化弹性模量(0-700 MPa)对骨,韧带和包囊软组织结构的应力/应变分布的影响。发现。结果表明,降低足底筋膜的杨氏模量将显着增加长,短足底和春季韧带的应变。用零筋膜杨氏模量来模拟足底筋膜的释放,冯·米塞斯峰的应力从第三to骨转移到第二meta骨,并且在长方体足底韧带附着区应力增加。可以预测足弓高度和中足内旋的减少,但不会导致足弓完全塌陷。解释。足底筋膜的外科解剖可能会在韧带和骨结构中引起过度的拉力或应力。脚底筋膜的外科手术释放应精心计划,以最小化对其结构完整性的影响,以减少发生牙弓不稳定和随后的足痛综合征的风险。

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