Doke Jiro, Kuo Arthur D
Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI 48109-2125, USA.
J Exp Biol. 2007 Jul;210(Pt 13):2390-8. doi: 10.1242/jeb.02782.
We compared two hypothesized energetic costs for swinging the human leg quickly. The first cost is to perform mechanical work on the leg, and the second is to produce muscle force cyclically at high frequencies. Substantial metabolic energy is expended to perform isolated leg swinging, especially at rates greater than the leg's natural pendular frequency. To determine whether the production of muscle force contributes to this cost, we measured oxygen consumption in human subjects (N=6) performing isolated swinging of the leg at frequencies 0.7-1.1 Hz. Amplitude of swing was varied as a function of frequency so that the rate of positive mechanical work performed on the leg remained fixed. We expected that the cost of producing force would increase, in contrast to the cost of performing work. The results showed that average rate of positive mechanical work performed on the leg remained nearly constant as a function of frequency, at 0.073+/-0.014 W kg(-1). Net metabolic rate, however, increased by 53%, from 0.66 W kg(-1) to 1.01 W kg(-1). Work may be performed on the leg and with a proportional metabolic cost, but it cannot explain the substantial increases observed here. Metabolic energy expenditure appears to increase in proportion with muscle force or torque, and in inverse proportion to duration of force. This energetic cost may be associated with cyclical calcium transport, where rate-limiting of crossbridge attachments may require greater sarcoplasmic calcium concentration at high frequencies of leg swinging to produce the same amplitude of muscle force. It may also be relevant to moving the legs back and forth relative to the body during walking.
我们比较了两种关于快速摆动人类腿部的假设能量消耗。第一种消耗是对腿部做功,第二种是高频周期性地产生肌肉力量。进行孤立的腿部摆动会消耗大量代谢能量,尤其是在高于腿部自然摆动频率的速率下。为了确定肌肉力量的产生是否导致了这种消耗,我们测量了6名人类受试者在0.7 - 1.1赫兹频率下进行孤立腿部摆动时的耗氧量。摆动幅度随频率变化,以使对腿部做的正向机械功的速率保持不变。我们预期与做功的消耗相比,产生力量的消耗会增加。结果表明,对腿部做的正向机械功的平均速率作为频率的函数几乎保持恒定,为0.073±0.014瓦·千克⁻¹。然而,净代谢率增加了53%,从0.66瓦·千克⁻¹增至1.01瓦·千克⁻¹。可以对腿部做功并伴有相应的代谢消耗,但这无法解释此处观察到的大幅增加。代谢能量消耗似乎与肌肉力量或扭矩成正比,与力量持续时间成反比。这种能量消耗可能与周期性的钙转运有关,在高频率腿部摆动时,横桥附着的速率限制可能需要更高的肌浆钙浓度才能产生相同幅度的肌肉力量。这也可能与行走过程中腿部相对于身体前后移动有关。