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Effect of Achilles tendon loading on plantar fascia tension in the standing foot.

机译:跟腱加载对站立脚的足底筋膜张力的影响。

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BACKGROUND: The plantar fascia, which is one of the major arch-supporting structures of the human foot, sustains high tensions during weight-bearing. A positive correlation between Achilles tendon loading and plantar fascia tension has been reported. Excessive stretching and tightness of the Achilles tendon are thought to be the risk factors of plantar fasciitis but their biomechanical effects on the plantar fascia have not been fully addressed. METHODS: A three-dimensional finite element model of the human foot and ankle, incorporating geometrical and material nonlinearity, was employed to investigate the loading response of the plantar fascia in the standing foot with different magnitudes of Achilles tendon loading. FINDINGS: With the total ground reaction forces of one foot maintained at 350 N to represent half body weight, an increase in Achilles tendon load from (0-700 N) resulted in a general increase in total force and peak plantar pressure at the forefoot of up to about 250%. There was a lateral and anterior shift of the centre of pressure and a reduction in the arch height with an increasing Achilles tendon load as a result of the plantar flexion moment on the calcaneus. From the finite element predictions of simulated balanced standing, Achilles tendon forces of 75% of the total weight on the foot (350 N) were found to provide the closest match of the measured centre of pressure of the subject during balanced standing. Both the weight on the foot and Achilles tendon loading resulted in an increase in tension of the plantar fascia with the latter showing a two-times larger straining effect. INTERPRETATION: Increasing tension on the Achilles tendon is coupled with an increasing strain on the plantar fascia. Overstretching of the Achilles tendon resulting from intense muscle contraction and passive stretching of tight Achilles tendon are plausible mechanical factors for overstraining of the plantar fascia.
机译:背景:足底筋膜是人脚的主要足弓支撑结构之一,在负重过程中会承受高张力。据报道跟腱负荷与足底筋膜张力之间呈正相关。阿基里斯腱过度拉伸和紧绷被认为是足底筋膜炎的危险因素,但其对足底筋膜的生物力学影响尚未得到充分解决。方法:采用人脚和脚踝的三维有限元模型,结合几何和材料非线性,研究足跟筋膜在不同跟腱强度下的站立足对足底的响应。结果:由于一只脚的总地面反作用力保持在350 N,代表一半的体重,跟腱负荷从(0-700 N)的增加导致总力和足前部足底压力的总体增加。高达约250%。由于跟骨the骨屈曲力矩的作用,压力中心发生了侧向和向前移动,弓跟高度降低,跟腱负荷增加。根据模拟平衡站立的有限元预测,发现脚部总重量的75%(350 N)的阿喀琉斯腱力提供了平衡站立期间受试者测得的压力中心的最接近值。脚上的重量和跟腱加载都导致足底筋膜的张力增加,后者表现出两倍大的拉紧效果。解释:跟腱的张力增加与脚底筋膜的张力增加有关。剧烈的肌肉收缩和紧致的跟腱被动拉伸导致的跟腱过度伸展是are肌筋膜过度劳损的合理机械因素。

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