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Reducing the energy cost of human walking using an unpowered exoskeleton

机译:使用无动力外骨骼降低人类步行的能源成本

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摘要

With efficiencies derived from evolution, growth and learning, humans are very well-tuned for locomotion(1). Metabolic energy used during walking can be partly replaced by power input from an exoskeleton(2), but is it possible to reduce metabolic rate without providing an additional energy source? This would require an improvement in the efficiency of the human-machine system as a whole, and would be remarkable given the apparent optimality of human gait. Here we show that the metabolic rate of human walking can be reduced by an unpowered ankle exoskeleton. We built a lightweight elastic device that acts in parallel with the user's calf muscles, off-loading muscle force and thereby reducing the metabolic energy consumed in contractions. The device uses a mechanical clutch to hold a spring as it is stretched and relaxed by ankle movements when the foot is on the ground, helping to fulfil one function of the calf muscles and Achilles tendon. Unlike muscles, however, the clutch sustains force passively. The exoskeleton consumes no chemical or electrical energy and delivers no net positive mechanical work, yet reduces the metabolic cost of walking by 7.2 +/- 2.6% for healthy human users under natural conditions, comparable to savings with powered devices. Improving upon walking economy in this way is analogous to altering the structure of the body such that it is more energy-effective at walking. While strong natural pressures have already shaped human locomotion, improvements in efficiency are still possible. Much remains to be learned about this seemingly simple behaviour.
机译:凭借来自进化,成长和学习的效率,人类对于运动非常适应(1)。步行过程中使用的代谢能可以部分地由外骨骼输入的能量来代替(2),但是否有可能在不提供额外能量来源的情况下降低代谢率?这将需要提高整个人机系统的效率,并且鉴于人的步态具有明显的最佳性,这将是显着的。在这里,我们显示,无力的踝关节外骨骼可以降低人类步行的代谢率。我们制造了一种轻巧的弹性装置,可与使用者的小腿肌肉平行发挥作用,减轻肌肉力量,从而减少收缩时消耗的代谢能量。当脚在地面上时,该设备使用机械离合器握住弹簧,以通过脚踝运动拉伸和放松弹簧,从而有助于实现小腿肌肉和跟腱的功能。但是,与肌肉不同,离合器被动地承受力。外骨骼不消耗任何化学或电能,也不提供任何正的净机械功,但对于健康人在自然条件下的行走,其新陈代谢成本降低了7.2 +/- 2.6%,与用动力设备节省的成本相当。以这种方式改善步行经济性类似于改变身体的结构,使得步行时更加节能。尽管强大的自然压力已经决定了人类的运动,但效率的提高仍然是可能的。关于这种看似简单的行为,还有很多事情要学。

著录项

  • 来源
    《Nature》 |2015年第7555期|212-215|共4页
  • 作者单位

    Carnegie Mellon Univ, Dept Mech Engn, Pittsburgh, PA 15213 USA;

    N Carolina State Univ, Joint Dept Biomed Engn, Raleigh, NC 27695 USA|Univ North Carolina Chapel Hill, Raleigh, NC 27695 USA;

    N Carolina State Univ, Joint Dept Biomed Engn, Raleigh, NC 27695 USA|Univ North Carolina Chapel Hill, Raleigh, NC 27695 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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