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A biomechanical model of the effect of subtalar arthroereisis on the adult flexible flat foot.

机译:距下动脉硬化对成年柔性扁平足的影响的生物力学模型。

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Objective. The hypothesis tested was that the increased load on the medial arch in the adult flat foot can be reduced through a 6 mm subtalar arthroereisis. Design. A three-dimensional multisegment biomechanical model was used in conjunction with experimental data and data from the literature. Background. Biomechanical models have been used to study the plantar fascia, medial arch height, subtalar motion, medial displacement calcaneal osteotomy and distribution of forces in the foot. Methods. Responses of a normal foot, a flat foot, and a flat foot with a subtalar arthroereisis to an applied load of 683 N were analyzed and the distribution of support among the metatarsal heads and the moment about various joints were computed. Results. The flattened foot results in an increase in the load on the head of the first metatarsal from 10% to 24% of the body weight, and an increase in the moment about the talo-navicular joint from 3.4 to 11.9 Nm. Insertion of a 6 mm cylinder into the sinus tarsi, subtalar arthroereisis, results in a shift of the load back toward the lateral column, decreasing the load on the first metatarsal to 6% of the body weight and decreasing the moment about the talo-navicular joint to 6.0 Nm. Conclusions. Our analysis indicates that a 6 mm subtalar arthroereisis in an adult flat foot model decreases the load on the medial arch.Relevance Our analysis adds a quantitative biomechanical rationale to subtalar arthroereisis for the treatment of the flat foot.
机译:目的。测试的假设是,通过6 mm距骨下关节置换术可以减少成人扁平足内侧足弓增加的负荷。设计。三维多段生物力学模型与实验数据和文献数据一起使用。背景。生物力学模型已被用于研究足底筋膜,足弓内侧高度,距下运动,跟骨跟骨截骨术的内侧移位和足部力量的分布。方法。分析了正常脚,扁平足和具有距下动脉硬化的扁平足对683 N施加载荷的响应,并计算了head骨头之间的支撑分布以及各个关节的力矩。结果。扁平的脚导致第一meta骨头部的负载从体重的10%增加到24%,并且在滑石-鼻-关节周围的弯矩从3.4 Nm增加到11.9 Nm。将6 mm圆柱体插入距tal骨下动脉的窦内,导致负荷向侧柱的移动,将第一meta骨的负荷降低至体重的6%,并减少了围绕滑石鼻的力矩联合至6.0 Nm。结论我们的分析表明,在成年扁平足模型中6 mm距骨下动脉硬化可减轻内侧足弓的负荷。相关性我们的分析为距骨下动脉硬化治疗扁平足增加了定量的生物力学原理。

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