Autonomous hip exoskeleton saves metabolic cost of walking uphill

IEEE Int Conf Rehabil Robot. 2017 Jul:2017:246-251. doi: 10.1109/ICORR.2017.8009254.

Abstract

We have developed a hip joint exoskeleton to boost gait function in the elderly and rehabilitation of post-stroke patients. To quantitatively evaluate the impact of the power and mass of the exoskeleton, we measured the metabolic cost of walking on slopes of 0, 5, and 10% grade, once not wearing the exoskeleton and then wearing it. The exoskeleton reduced the metabolic cost by 13.5,15.5 and 9.8% (31.9, 51.6 and 45.6 W) at 0, 5, and 10% grade, respectively. The exoskeleton performance index was computed as 0.97, 1.24, and 1.24 at each grade, implicating that the hip exoskeleton was more effective on slopes than level ground in saving the metabolic cost.

MeSH terms

  • Adult
  • Energy Metabolism / physiology*
  • Equipment Design
  • Exoskeleton Device*
  • Gait / physiology
  • Hip / physiology*
  • Humans
  • Male
  • Stroke Rehabilitation / instrumentation*
  • Walking / physiology*