Hunter Joseph P, Marshall Robert N, McNair Peter J
Department of Sport and Exercise Science, The University of Auckland, Auckland, New Zealand.
Med Sci Sports Exerc. 2004 Feb;36(2):261-71. doi: 10.1249/01.MSS.0000113664.15777.53.
A "negative interaction" between step length and step rate refers to an increase in one factor resulting in a decrease in the other.
There were three main purposes: a) to investigate the relative influence of the determinants of step length and step rate, b) to determine the sources of negative interaction between step length and step rate, and c) to investigate the effects of manipulation of this interaction.
Thirty-six athletes performed maximal-effort sprints. Video and ground reaction force data were collected at the 16-m mark. Sprint velocity, step length, step rate, and their underlying determinants were calculated. Analyses included correlations, multiple linear regressions, paired t-tests, and a simple simulation based on alterations in flight determining parameters.
A wide range of step length and step rate combinations was evident, even for subgroups of athletes with similar sprint velocities. This was partly due to a negative interaction that existed between step length and step rate; that is, those athletes who used a longer step length tended to have a lower step rate and vice versa. Vertical velocity of takeoff was the most prominent source of the negative interaction.
Leg length, height of takeoff, and vertical velocity of takeoff are all possible sources of a negative interaction between step length and step rate. The very high step lengths and step rates achieved by elite sprinters may be possible only by a technique that involves a high horizontal and low vertical velocity of takeoff. However, a greater vertical velocity of takeoff might be of advantage when an athlete is fatigued and struggling to maintain a high step rate.
步长与步频之间的“负交互作用”是指一个因素增加会导致另一个因素减少。
有三个主要目的:a)研究步长和步频决定因素的相对影响,b)确定步长和步频之间负交互作用的来源,c)研究操纵这种交互作用的效果。
36名运动员进行全力冲刺。在16米标记处收集视频和地面反作用力数据。计算冲刺速度、步长、步频及其潜在决定因素。分析包括相关性、多元线性回归、配对t检验以及基于飞行决定参数改变的简单模拟。
即使对于冲刺速度相似的运动员亚组,步长和步频的组合范围也很明显。这部分是由于步长和步频之间存在负交互作用;也就是说,那些步长较长的运动员往往步频较低,反之亦然。起跳垂直速度是负交互作用最突出的来源。
腿长、起跳高度和起跳垂直速度都是步长和步频之间负交互作用的可能来源。优秀短跑运动员实现的非常高的步长和步频可能只有通过一种涉及高水平和低垂直起跳速度的技术才有可能。然而,当运动员疲劳且难以保持高步频时,更大的起跳垂直速度可能具有优势。