Sport and Health Department, Faculdade de Motricidade Humana, Universidade de Lisboa, Estrada da Costa, 1499-688 Cruz-Quebrada, Portugal.
Interdisciplinary Center for the Study of Human Performance (CIPER), Faculdade de Motricidade Humana, Universidade de Lisboa, Estrada da Costa, 1499-688 Cruz-Quebrada, Portugal.
Int J Environ Res Public Health. 2022 Mar 29;19(7):4074. doi: 10.3390/ijerph19074074.
In athletics sprint events, the block start performance can be fundamental to the outcome of a race. This Systematic Review aims to identify biomechanical factors of critical importance to the block start and subsequent first two steps performance. A systematic search of relevant English-language articles was performed on three scientific databases (PubMed, SPORTDiscus, and Web of Science) to identify peer-reviewed articles published until June 2021. The keywords "Block Start", "Track and Field", "Sprint Running", and "Kinetics and Kinematics" were paired with all possible combinations. Studies reporting biomechanical analysis of the block start and/or first two steps, with track and field sprinters and reporting PB100m were sought for inclusion and analysis. Thirty-six full-text articles were reviewed. Several biomechanical determinants of sprinters have been identified. In the "Set" position, an anthropometry-driven block setting facilitating the hip extension and a rear leg contribution should be encouraged. At the push-off, a rapid extension of both hips and greater force production seems to be important. After block exiting, shorter flight times and greater propulsive forces are the main features of best sprinters. This systematic review emphasizes important findings and recommendations that may be relevant for researchers and coaches. Future research should focus on upper limbs behavior and on the analysis of the training drills used to improve starting performance.
在田径短跑项目中,起跑器的使用表现对比赛结果至关重要。本系统综述旨在确定起跑和随后的前两步表现的关键生物力学因素。在三个科学数据库(PubMed、SPORTDiscus 和 Web of Science)上进行了相关英文文献的系统检索,以确定截至 2021 年 6 月发表的同行评审文章。关键词“起跑器”、“田径”、“短跑”和“运动学和运动力学”与所有可能的组合配对。我们寻找并分析了报告起跑器和/或前两步生物力学分析的、有田径短跑运动员和 PB100m 记录的研究。共审查了 36 篇全文文章。已经确定了一些短跑运动员的生物力学决定因素。在“预备”位置,应鼓励一种由人体测量学驱动的起跑器设置,以促进髋关节伸展和后腿贡献。在蹬离时,两个髋关节的快速伸展和更大的力量产生似乎很重要。离开起跑器后,较短的腾空时间和更大的推进力是最佳短跑运动员的主要特征。本系统综述强调了可能对研究人员和教练有重要意义的重要发现和建议。未来的研究应集中在分析上肢行为和用于提高起跑性能的训练练习上。