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两足奔跑的能量学。I. 产生力的代谢成本。

Energetics of bipedal running. I. Metabolic cost of generating force.

作者信息

Roberts T J, Kram R, Weyand P G, Taylor C R

机构信息

Harvard University, Museum of Comparative Zoology, Concord Field Station, Old Causeway Road, Bedford, MA 01730, USA.

出版信息

J Exp Biol. 1998 Oct;201(Pt 19):2745-51. doi: 10.1242/jeb.201.19.2745.

Abstract

Similarly sized bipeds and quadrupeds use nearly the same amount of metabolic energy to run, despite dramatic differences in morphology and running mechanics. It has been shown that the rate of metabolic energy use in quadrupedal runners and bipedal hoppers can be predicted from just body weight and the time available to generate force as indicated by the duration of foot-ground contact. We tested whether this link between running mechanics and energetics also applies to running bipeds. We measured rates of energy consumption and times of foot contact for humans (mean body mass 78.88 kg) and five species of birds (mean body mass range 0.13-40.1 kg). We find that most (70-90%) of the increase in metabolic rate with speed in running bipeds can be explained by changes in the time available to generate force. The rate of force generation also explains differences in metabolic rate over the size range of birds measured. However, for a given rate of force generation, birds use on average 1.7 times more metabolic energy than quadrupeds. The rate of energy consumption for a given rate of force generation for humans is intermediate between that of birds and quadrupeds. These results support the idea that the cost of muscular force production determines the energy cost of running and suggest that bipedal runners use more energy for a given rate of force production because they require a greater volume of muscle to support their body weight.

摘要

体型相近的两足动物和四足动物在奔跑时消耗的代谢能量几乎相同,尽管它们在形态和奔跑机制上存在显著差异。研究表明,四足奔跑者和两足跳跃者的代谢能量使用速率可以仅根据体重以及脚与地面接触持续时间所表明的产生力的可用时间来预测。我们测试了这种奔跑机制与能量学之间的联系是否也适用于两足奔跑者。我们测量了人类(平均体重78.88千克)和五种鸟类(平均体重范围为0.13 - 40.1千克)的能量消耗速率和脚接触时间。我们发现,两足奔跑者中代谢率随速度增加的大部分(70 - 90%)可以通过产生力的可用时间的变化来解释。产生力的速率也解释了所测量鸟类体型范围内代谢率的差异。然而,对于给定的产生力速率,鸟类平均比四足动物多使用1.7倍的代谢能量。人类在给定产生力速率下的能量消耗速率介于鸟类和四足动物之间。这些结果支持了肌肉力量产生的成本决定奔跑能量成本的观点,并表明两足奔跑者在给定的力产生速率下使用更多能量,因为它们需要更大体积的肌肉来支撑体重。

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