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人类跑步中的共振步频。

The resonant step frequency in human running.

作者信息

Cavagna G A, Mantovani M, Willems P A, Musch G

机构信息

Istituto di Fisiologia Umana, Università di Milano, Via Mangiagalli 32, I-20133 Milano, Italy.

出版信息

Pflugers Arch. 1997 Nov;434(6):678-84. doi: 10.1007/s004240050451.

Abstract

At running speeds less than about 13 km h-1 the freely chosen step frequency (ffree) is lower than the frequency at which the mechanical power is minimized (fmin). This dissociation between ffree and fmin was investigated by measuring mechanical power, metabolic energy expenditure and apparent natural frequency of the body's bouncing system (fsist) during running at three given speeds with different step frequencies. The ffree requires a mechanical power greater than that at fmin mainly due to a larger vertical oscillation of the body at each step. Energy expenditure is minimal and the mechanical efficiency is maximal at ffree. At a given speed, an increase in step frequency above ffree results in an increase in energy expenditure despite a decrease in mechanical power. On the other hand, a decrease in step frequency below ffree results in a larger increase in energy expenditure associated with an increase in mechanical power. When the step frequency is forced to values above or below ffree, fsist is forced to change similarly by adjusting the stiffness of the bouncing system. However the best match between fsist and step frequency takes place only in proximity of ffree (2. 6-2.8 Hz). It is concluded that during running at speeds less than 13 km h-1 energy is saved by tuning step frequency to fsist, even if this requires a mechanical power larger than necessary.

摘要

在跑步速度低于约13千米/小时时,自由选择的步频(ffree)低于使机械功率最小化的频率(fmin)。通过在三种给定速度下以不同步频跑步时测量机械功率、代谢能量消耗以及身体弹跳系统的表观固有频率(fsist),对ffree与fmin之间的这种分离现象进行了研究。ffree所需的机械功率大于fmin时的功率,这主要是因为每一步身体的垂直振荡更大。在ffree时能量消耗最小,机械效率最高。在给定速度下,步频高于ffree时,尽管机械功率下降,但能量消耗仍会增加。另一方面,步频低于ffree时,能量消耗的增加幅度更大,同时机械功率也会增加。当步频被迫高于或低于ffree时,通过调整弹跳系统的刚度,fsist也会被迫做出类似变化。然而,fsist与步频之间的最佳匹配仅在ffree附近(2.6 - 2.8赫兹)出现。研究得出结论,在速度低于13千米/小时的跑步过程中,即使这需要比必要功率更大的机械功率,通过将步频调整到与fsist匹配也能节省能量。

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