首页> 外文期刊>Canadian journal of surgery: Journal canadien de chirurgie >A biomechanical study in cadavers of cast boots used in the early postoperative period after first metatarsophalangeal joint arthrodesis.
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A biomechanical study in cadavers of cast boots used in the early postoperative period after first metatarsophalangeal joint arthrodesis.

机译:首次boots趾关节关节置换术后早期使用的铸靴尸体的生物力学研究。

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摘要

OBJECTIVES: To compare the effectiveness of 3 common models of walking boots (Walkabout, Samson Walker and Equalizer Premium Walker) to that of a fibreglass cast in protecting an arthrodesis of the first metatarsophalangeal (MTP) joint in the early postoperative period, we carried out a biomechanical study in cadavers in the bioengineering laboratory at Memorial University of Newfoundland. METHODS: Two cadaver models of a first MTP joint arthrodesis were prepared by placing a strain gauge at the joint. This provided a measure of the bending moment across the fusion site. Walking was simulated by applying a force to the sole of the cadaver foot at multiple positions from heel to toe, representing the stages of gait from heel strike to toe off. RESULTS: For both cadaver specimens, the Walkabout boot had the lowest mean moment. The Walkabout and Sampson Walker boots were better than the Equalizer Premium Walker boot and the fibreglass cast (p < 0.05), but the Walkabout boot was the best (p < 0.05). Also, for both specimens, the Walkabout boot had the smallest absolute maximum moment (p < 0.05). CONCLUSION: On a first MTP joint arthrodesis site, removable cast boots provide the same, if not more, reduction of force as a traditional cast.
机译:目的:为了比较3种常见的步行靴(Walkabout,Samson Walker和Equalizer Premium Walker)与玻璃纤维铸模在术后早期保护第一meta趾(MTP)关节的关节固定中的有效性,我们进行了研究在纽芬兰纪念大学的生物工程实验室对尸体进行了生物力学研究。方法:通过在关节处放置应变计,制备两个第一关节置换术的尸体模型。这提供了跨越融合部位的弯矩的量度。通过从尸体脚跟到脚趾的多个位置对尸体脚底施加力来模拟步行,代表从​​脚跟撞击到脚趾离开的步态阶段。结果:对于两个尸体标本,Walkabout靴的平均力矩最低。 Walkabout和Sampson Walker靴优于Equalizer Premium Walker靴和玻璃纤维铸件(p <0.05),但Walkabout靴最好(p <0.05)。同样,对于两个样本,Walkabout靴均具有最小的绝对最大力矩(p <0.05)。结论:在第一个MTP关节固定部位,可移动的铸靴可提供与传统铸模相同的,甚至更多的力降低。

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