纵向弓稳定性的生物力学评价。

C K Huang, H B Kitaoka, K N An, E Y Chao
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引用次数: 304

摘要

尽管扁平足的常见发生和多次手术已被报道缓解相关症状,但很少有关于各种结构对足弓稳定的相对贡献的报道。将12具新鲜冷冻的人尸体脚沿胫骨轴施加230、460和690牛顿的压缩载荷,标本完好无损,并依次对足底筋膜、足底韧带和弹簧韧带进行切片。以6种不同的顺序对结构进行切片,并测量内侧弓垂直和水平尺寸的变化。足底筋膜对足弓稳定性的相对贡献最大,其次是足底韧带和弹簧韧带。足底筋膜是维持内侧纵弓的主要因素。它在尸体足上的分裂使足弓刚度降低了25%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomechanical evaluation of longitudinal arch stability.

In spite of the common occurrence of pes planus and multiple operations that have been reported to relieve the associated symptoms, there is little published on the relative contribution of various structures to stabilization of the arch of the foot. Twelve fresh-frozen human cadaveric feet were loaded along the tibial axis with compressive loads of 230, 460, and 690 newtons with the specimens intact and after sequential sectioning of plantar fascia, plantar ligaments, and spring ligament. Structures were sectioned in six different sequences and changes in vertical and horizontal dimensions of the medial arch were measured. The highest relative contribution to arch stability was provided by the plantar fascia, followed by plantar ligaments and spring ligament. Plantar fascia was a major factor in maintenance of the medial longitudinal arch. Its division in the cadaveric feet decreased arch stiffness by 25%.

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