Lin Shuangshuang, Song Yang, Cen Xuanzhen, Bálint Kovács, Fekete Gusztáv, Sun Dong
Faculty of Sports Science, Ningbo University, Ningbo 315211, China.
Doctoral School on Safety and Security Sciences, Óbuda University, 1034 Budapest, Hungary.
Bioengineering (Basel). 2022 Sep 22;9(10):497. doi: 10.3390/bioengineering9100497.
Although various sports footwear demonstrated marked changes in running biomechanical variables, few studies have yielded definitive findings on the underlying mechanisms of shoe constructions affecting running-related performance and injuries. Therefore, this study focused on examining the effect of basic shoe constructions on running biomechanics and assessing the current state of sports shoe production in terms of injury and efficiency. Relevant literature was searched on five databases using Boolean logic operation and then screened by eligibility criteria. A total of 1260 related articles were retrieved in this review, and 41 articles that met the requirements were finally included, mainly covering the influence of midsole, longitudinal bending stiffness, heel-toe drop, shoe mass, heel flare, and heel stabilizer on running-related performance and injuries. The results of this review study were: (1) The functional positioning of running shoe design and the target groups tend to influence running performance and injury risk; (2) Thickness of 15-20 mm, hardness of Asker C50-C55 of the midsole, the design of the medial or lateral heel flares of 15°, the curved carbon plate, and the 3D printed heel cup may be beneficial to optimize performance and reduce running-related injuries; (3) The update of research and development concepts in sports biomechanics may further contribute to the development of running shoes; (4) Footwear design and optimization should also consider the influences of runners' strike patterns.
尽管各种运动鞋在跑步生物力学变量方面表现出显著变化,但很少有研究能就影响跑步相关表现和损伤的鞋类构造潜在机制得出明确结论。因此,本研究聚焦于考察基本鞋类构造对跑步生物力学的影响,并从损伤和效率方面评估运动鞋生产的现状。使用布尔逻辑运算在五个数据库中检索相关文献,然后根据入选标准进行筛选。本综述共检索到1260篇相关文章,最终纳入41篇符合要求的文章,主要涵盖中底、纵向弯曲刚度、足跟落差、鞋重、鞋跟外扩和足跟稳定器对跑步相关表现和损伤的影响。本综述研究的结果如下:(1)跑鞋设计的功能定位和目标群体往往会影响跑步表现和损伤风险;(2)中底厚度为15 - 20毫米、Asker C50 - C55硬度、内侧或外侧鞋跟外扩15°的设计、弯曲碳板以及3D打印足跟杯可能有利于优化表现并减少跑步相关损伤;(3)运动生物力学研发概念的更新可能会进一步推动跑鞋的发展;(4)鞋类设计和优化还应考虑跑步者着地方式的影响。