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奥运会和世界锦标赛竞走运动员的地面反作用力。

Ground reaction forces of Olympic and World Championship race walkers.

作者信息

Hanley Brian, Bissas Athanassios

机构信息

a Carnegie Faculty , Leeds Beckett University , Leeds , UK.

出版信息

Eur J Sport Sci. 2016;16(1):50-6. doi: 10.1080/17461391.2014.984769. Epub 2014 Nov 27.

DOI:10.1080/17461391.2014.984769
PMID:25429613
Abstract

Race walking is an Olympic event where no visible loss of contact should occur and the knee must be straightened until midstance. The purpose of this study was to analyse ground reaction forces of world-class race walkers and associate them with key spatiotemporal variables. Nineteen athletes race walked along an indoor track and made contact with two force plates (1000 Hz) while being filmed using high-speed videography (100 Hz). Race walking speed was correlated with flight time (r = .46, p = .049) and flight distance (r = .69, p = .001). The knee's movement from hyperextension to flexion during late stance meant the vertical push-off force that followed midstance was smaller than the earlier loading peak (p < .001), resulting in a flattened profile. Athletes with narrower stride widths experienced reduced peak braking forces (r = .49, p = .046), peak propulsive forces (r = .54, p = .027), peak medial forces (r = .63, p = .007) and peak vertical push-off forces (r = .60, p = .011). Lower fluctuations in speed during stance were associated with higher stride frequencies (r = .69, p = .001), and highlighted the importance of avoiding too much braking in early stance. The flattened trajectory and consequential decrease in vertical propulsion might help the race walker avoid visible loss of contact (although non-visible flight times were useful in increasing stride length), while a narrow stride width was important in reducing peak forces in all three directions and could improve movement efficiency.

摘要

竞走是一项奥运会项目,在竞走过程中不应出现明显的离地情况,并且膝盖必须伸直直至支撑中期。本研究的目的是分析世界级竞走运动员的地面反作用力,并将其与关键的时空变量相关联。19名运动员在室内跑道上进行竞走,在使用高速摄像(100Hz)拍摄的同时,与两个测力台(1000Hz)接触。竞走速度与腾空时间(r = 0.46,p = 0.049)和腾空距离(r = 0.69,p = 0.001)相关。支撑后期膝盖从过度伸展到屈曲的运动意味着支撑中期之后的垂直蹬地力小于早期的加载峰值(p < 0.001),从而导致力的分布变平。步幅较窄的运动员的峰值制动力(r = 0.49,p = 0.046)、峰值推进力(r = 0.54,p = 0.027)、峰值内侧力(r = 0.63,p = 0.007)和峰值垂直蹬地力(r = 0.60,p = 0.011)较低。支撑期速度波动较小与步频较高相关(r = 0.69,p = 0.001),并突出了在支撑早期避免过多制动的重要性。轨迹变平以及垂直推进力的相应降低可能有助于竞走运动员避免明显的离地情况(尽管不可见的腾空时间有助于增加步长),而较窄的步幅对于降低三个方向上的峰值力很重要,并且可以提高运动效率。

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