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在跑道上跑步至精疲力竭过程中弹簧-质量模型参数和能量消耗的变化。

Changes in spring-mass model parameters and energy cost during track running to exhaustion.

作者信息

Slawinski Jean, Heubert Richard, Quievre Jacques, Billat Véronique, Hanon Christine

机构信息

Laboratory of Biomechanics and Physiology, National Institute of Sports (INSEP), Paris, France.

出版信息

J Strength Cond Res. 2008 May;22(3):930-6. doi: 10.1519/JSC.0b013e31816a4475.

Abstract

The purpose of this study was to determine whether exhaustion modifies the stiffness characteristics, as defined in the spring-mass model, during track running. We also investigated whether stiffer runners are also the most economical. Nine well-trained runners performed an exhaustive exercise over 2000 meters on an indoor track. This exhaustive exercise was preceded by a warm-up and was followed by an active recovery. Throughout all the exercises, the energy cost of running (Cr) was measured. Vertical and leg stiffness was measured with a force plate (Kvert and Kleg, respectively) integrated into the track. The results show that Cr increases significantly after the 2000-meter run (0.192 +/- 0.006 to 0.217 +/- 0.013 mL x kg(-1) x m(-1)). However, Kvert and Kleg remained constant (32.52 +/- 6.42 to 32.59 +/- 5.48 and 11.12 +/- 2.76 to 11.14 +/- 2.48 kN.m, respectively). An inverse correlation was observed between Cr and Kleg, but only during the 2000-meter exercise (r = -0.67; P < or = 0.05). During the warm-up or the recovery, Cr and Kleg, were not correlated (r = 0.354; P = 0.82 and r = 0.21; P = 0.59, respectively). On track, exhaustion induced by a 2000-meter run has no effect on Kleg or Kvert. The inverse correlation was only observed between Cr and Kleg during the 2000-meter run and not before or after the exercise, suggesting that the stiffness of the runner may be not associated with the Cr.

摘要

本研究的目的是确定力竭是否会改变在跑道跑步过程中弹簧 - 质量模型所定义的刚度特征。我们还研究了刚度较大的跑步者是否也是最经济的跑步者。九名训练有素的跑步者在室内跑道上进行了2000米的力竭运动。这项力竭运动之前有热身,之后有主动恢复。在所有运动过程中,测量了跑步的能量消耗(Cr)。使用集成在跑道中的测力台分别测量垂直刚度和腿部刚度(分别为Kvert和Kleg)。结果表明,2000米跑步后Cr显著增加(从(0.192\pm0.006)至(0.217\pm0.013) mL·kg⁻¹·m⁻¹)。然而,Kvert和Kleg保持不变(分别从(32.52\pm6.42)至(32.59\pm5.48)以及从(11.12\pm2.76)至(11.14\pm2.48) kN·m)。观察到Cr与Kleg之间存在负相关,但仅在2000米运动期间(r = -0.67;P≤0.05)。在热身或恢复期间,Cr与Kleg不相关(r分别为0.354;P = 0.82和r = 0.21;P = 0.59)。在跑道上,2000米跑步引起的力竭对Kleg或Kvert没有影响。仅在2000米跑步期间观察到Cr与Kleg之间存在负相关,而在运动之前或之后未观察到,这表明跑步者的刚度可能与Cr无关。

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