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Systematic Review of the Role of Footwear Constructions in Running Biomechanics: Implications for Running-Related Injury and Performance

机译:系统审查鞋类建设在运行生物力学中的作用:对与跑步相关伤害和性能的影响

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摘要

Although the role of shoe constructions on running injury and performance has been widely investigated, systematic reviews on the shoe construction effects on running biomechanics were rarely reported. Therefore, this review focuses on the relevant research studies examining the biomechanical effect of running shoe constructions on reducing running-related injury and optimising performance. Searches of five databases and Footwear Science from January 1994 to September 2018 for related biomechanical studies which investigated running footwear constructions yielded a total of 1260 articles. After duplications were removed and exclusion criteria applied to the titles, abstracts and full text, 63 studies remained and categorised into following constructions: (a) shoe lace, (b) midsole, (c) heel flare, (d) heel-toe drop, (e) minimalist shoes, (f) Masai Barefoot Technologies, (g) heel cup, (h) upper, and (i) bending stiffness. Some running shoe constructions positively affect athletic performance-related and injury-related variables: 1) increasing the stiffness of running shoes at the optimal range can benefit performance-related variables; 2) softer midsoles can reduce impact forces and loading rates; 3) thicker midsoles can provide better cushioning effects and attenuate shock during impacts but may also decrease plantar sensations of a foot; 4) minimalist shoes can improve running economy and increase the cross-sectional area and stiffness of Achilles tendon but it would increase the metatarsophalangeal and ankle joint loading compared to the conventional shoes. While shoe constructions can effectively influence running biomechanics, research on some constructions including shoe lace, heel flare, heel-toe drop, Masai Barefoot Technologies, heel cup, and upper requires further investigation before a viable scientific guideline can be made. Future research is also needed to develop standard testing protocols to determine the optimal stiffness, thickness, and heel–toe drop of running shoes to optimise performance-related variables and prevent running-related injuries.Key points Increasing the forefoot bending stiffness of running at the optimal range can benefit performance-related variables.Softer or thicker midsoles can provide remarkable cushioning effects but may decrease plantar sensations at touchdown.Minimalist shoes can improve running economy and build the cross-sectional area and stiffness of Achilles tendon but also induce greater loading of the ankle and metatarsophalangeal joint.
机译:虽然鞋结构对运行伤害和性能的作用得到了广泛调查的,但很少报道对运行生物力学的鞋子施工影响的系统评价很少。因此,本综述侧重于相关研究研究检查运行鞋结构的生物力学效果,以减少与运行相关的伤害和优化性能。从1994年1月到2018年9月的五个数据库和鞋类科学搜索有关的相关生物力学研究,调查了鞋业建筑的鞋业建设产生了1260篇文章。除了删除重复并将摘要标准删除并应用于标题,摘要和全文后,63项研究仍然持续,并分为以下结构:(a)鞋蕾丝,(b)鞋跟,(c)鞋跟耀斑,(d)脚趾眩光,(e)MINEAL鞋子,(F)Masai赤脚技术,(g)鞋跟杯,(h)鞋面和(i)弯曲刚度。一些跑步鞋结构积极影响运动性能相关和伤害相关的变量:1)增加最佳范围的跑步鞋的刚度可以使性能相关的变量; 2)更柔软的中间可以减少冲击力和装载率; 3)较厚的中座可以提供更好的缓冲效果并在撞击过程中衰减冲击,但也可能降低脚的跖跖; 4)极简主义鞋子可以改善运行经济,增加阿基里斯肌腱的横截面积和刚度,但与传统鞋相比,它会增加跖趾和踝关节载荷。虽然鞋结构可以有效地影响运行生物力学,但在包括鞋蕾丝,脚跟,脚趾下降,马来斯赤脚技术,脚跟杯和上部需要进一步调查的一些建筑,在包括鞋子蕾丝,脚跟,脚趾下落,鞋跟杯和上部需要进一步调查。还需要进行未来的研究来开发标准测试协议,以确定跑步鞋的最佳刚度,厚度和脚趾脚趾滴落,以优化与性能相关的变量,防止与武流有关的损伤.KEY点增加了在跑步的前掌弯曲刚度最佳范围可以益处与性能相关的变量。更厚或更厚的中间座可以提供显着的缓冲效果,但可能会降低触控的跖序。可以改善运行经济,并建立阿基里斯肌腱的横截面区域和刚度踝关节和跖趾关节。

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