de Jesus Karla, de Jesus Kelly, Fernandes Ricardo J, Vilas-Boas João Paulo, Sanders Ross
Centre of Research, Education, Innovation and Intervention in Sport, Faculty of Sport, University of Porto, Porto, Portugal.
Centre of Research, Education, Innovation and Intervention in Sport, Faculty of Sport, University of Porto, Porto, Portugal. ; Porto Biomechanics Laboratory, University of Porto, Porto, Portugal.
J Hum Kinet. 2014 Oct 10;42:27-40. doi: 10.2478/hukin-2014-0058. eCollection 2014 Sep 29.
As sprint swimming events can be decided by margins as small as .01 s, thus, an effective start is essential. This study reviews and discusses the 'state of the art' literature regarding backstroke start biomechanics from 23 documents. These included two swimming specific publications, eight peer-reviewed journal articles, three from the Biomechanics and Medicine in Swimming Congress series, eight from the International Society of Biomechanics in Sports Conference Proceedings, one from a Biomechanics Congress and one academic (PhD) thesis. The studies had diverse aims, including swimmers' proficiency levels and data collection settings. There was no single consensus for defining phase descriptions; and kinematics, kinetics and EMG approaches were implemented in laboratory settings. However, researchers face great challenges in improving methods of quantifying valid, reliable and accurate data between laboratory and competition conditions. For example, starting time was defined from the starting signal to distances as disparate as ∼5 m to 22.86 m in several studies. Due to recent rule changes, some of the research outcomes now refer to obsolete backstroke start techniques, and only a few studies considered the actual international rules. This literature review indicated that further research is required, in both laboratory and competition settings focusing on the combined influences of the current rules and block configuration on backstroke starting performances.
由于短距离游泳项目的胜负可能仅在0.01秒的差距中决出,因此,一个有效的出发至关重要。本研究回顾并讨论了23份关于仰泳出发生物力学的“前沿”文献。其中包括两份游泳专项出版物、八篇同行评审期刊文章、三篇来自游泳生物力学与医学大会系列、八篇来自国际运动生物力学学会会议论文集、一篇来自生物力学大会以及一篇学术(博士)论文。这些研究有不同的目的,包括游泳者的熟练程度和数据收集环境。对于阶段描述的定义没有单一的共识;并且在实验室环境中采用了运动学、动力学和肌电图方法。然而,研究人员在改进实验室和比赛条件之间量化有效、可靠和准确数据的方法上面临巨大挑战。例如,在几项研究中,出发时间从出发信号到5米至22.86米不等的距离来定义。由于最近的规则变化,一些研究结果现在涉及过时的仰泳出发技术,并且只有少数研究考虑了实际的国际规则。这篇文献综述表明,需要在实验室和比赛环境中进行进一步研究,重点关注当前规则和出发台配置对仰泳出发成绩的综合影响。