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5 公里计时赛中跑步力学和弹性能量特征的变化。

Changes in running mechanics and spring-mass behaviour during a 5-km time trial.

机构信息

Research and Education Centre, ASPETAR - Qatar Orthopaedic and Sports Medicine Hospital, Doha, Qatar.

出版信息

Int J Sports Med. 2013 Sep;34(9):832-40. doi: 10.1055/s-0032-1329958. Epub 2013 Apr 2.

Abstract

Research into the biomechanical manifestation of fatigue during exhaustive runs is increasingly popular but additional understanding of the adaptation of the spring-mass behaviour during the course of strenuous, self-paced exercises continues to be a challenge in order to develop optimized training and injury prevention programs. This study investigated continuous changes in running mechanics and spring-mass behaviour during a 5-km run. 12 competitive triathletes performed a 5-km running time trial (mean performance: ̴17 min 30 s) on a 200 m indoor track. Vertical and anterior-posterior ground reaction forces were measured every 200 m by a 5-m long force platform system, and used to determine spring-mass model characteristics. After a fast start, running velocity progressively decreased (- 11.6%; P<0.001) in the middle part of the race before an end spurt in the final 400-600 m. Stride length (- 7.4%; P<0.001) and frequency (- 4.1%; P=0.001) decreased over the 25 laps, while contact time (+ 8.9%; P<0.001) and total stride duration (+ 4.1%; P<0.001) progressively lengthened. Peak vertical forces (- 2.0%; P<0.01) and leg compression (- 4.3%; P<0.05), but not centre of mass vertical displacement (+ 3.2%; P>0.05), decreased with time. As a result, vertical stiffness decreased (- 6.0%; P<0.001) during the run, whereas leg stiffness changes were not significant (+ 1.3%; P>0.05). Spring-mass behaviour progressively changes during a 5-km time trial towards deteriorated vertical stiffness, which alters impact and force production characteristics.

摘要

在进行剧烈的、自我调节的运动时,研究疲劳时的生物力学表现的现象越来越普遍,但为了开发优化的训练和预防损伤计划,人们仍然需要进一步了解弹簧质量行为在运动过程中的适应性,这仍然是一个挑战。本研究调查了 5 公里跑步过程中跑步力学和弹簧质量行为的连续变化。12 名竞技铁人三项运动员在 200 米室内跑道上进行了 5 公里跑步计时赛(平均成绩:~17 分 30 秒)。通过 5 米长的力台系统每隔 200 米测量垂直和前后地面反作用力,并用于确定弹簧质量模型特征。在快速启动后,跑步速度在比赛中段逐渐下降(-11.6%;P<0.001),然后在最后 400-600 米冲刺。在 25 圈中,步长(-7.4%;P<0.001)和频率(-4.1%;P=0.001)逐渐减小,而接触时间(+8.9%;P<0.001)和总步幅时间(+4.1%;P<0.001)逐渐延长。垂直力峰值(-2.0%;P<0.01)和腿部压缩(-4.3%;P<0.05)随时间而降低,但质心垂直位移没有变化(+3.2%;P>0.05)。因此,垂直刚度在跑步过程中降低(-6.0%;P<0.001),而腿部刚度变化不显著(+1.3%;P>0.05)。在 5 公里计时赛中,弹簧质量行为逐渐向垂直刚度恶化的方向变化,从而改变了冲击和力产生的特征。

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