Outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmills

Abstract Most wearable robots that assist the gait of workers, soldiers, athletes, and hobbyists are developed towards a vision of outdoor, overground walking. However, so far, these devices have predominantly been tested indoors on laboratory treadmills. It is unclear whether treadmill-based labora...

Full description

Bibliographic Details
Main Authors: Florian Leander Haufe, Eléonore Gascou Duroyon, Peter Wolf, Robert Riener, Michele Xiloyannis
Format: Article
Language:English
Published: Nature Publishing Group 2021-07-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-94448-2
id doaj-952086dd054246d39388296805c25b33
record_format Article
spelling doaj-952086dd054246d39388296805c25b332021-07-25T11:22:12ZengNature Publishing GroupScientific Reports2045-23222021-07-011111910.1038/s41598-021-94448-2Outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmillsFlorian Leander Haufe0Eléonore Gascou Duroyon1Peter Wolf2Robert Riener3Michele Xiloyannis4Sensory-Motor Systems (SMS) Lab, Institute of Robotics and Intelligent Systems (IRIS), ETH ZurichSensory-Motor Systems (SMS) Lab, Institute of Robotics and Intelligent Systems (IRIS), ETH ZurichSensory-Motor Systems (SMS) Lab, Institute of Robotics and Intelligent Systems (IRIS), ETH ZurichSensory-Motor Systems (SMS) Lab, Institute of Robotics and Intelligent Systems (IRIS), ETH ZurichSensory-Motor Systems (SMS) Lab, Institute of Robotics and Intelligent Systems (IRIS), ETH ZurichAbstract Most wearable robots that assist the gait of workers, soldiers, athletes, and hobbyists are developed towards a vision of outdoor, overground walking. However, so far, these devices have predominantly been tested indoors on laboratory treadmills. It is unclear whether treadmill-based laboratory tests are an accurate representation of overground ambulation outdoors with respect to essential outcomes such as the metabolic benefits of robotic assistance. In this study, we investigated the metabolic benefits of the Myosuit, a wearable robot that assists hip and knee extension during the stance phase of gait, for eight unimpaired participants during uphill walking trials in three settings: outside, on a self-paced treadmill with a virtual reality display, and on a standard treadmill at a fixed gait speed. The relative metabolic reduction with Myosuit assistance was most pronounced in the outside setting at − 10.6% and significantly larger than in the two treadmill settings (− 6.9%, p = 0.015 and − 6.2%, p = 0.008). This indicates that treadmill tests likely result in systematically low estimate for the true metabolic benefits of wearable robots during outside, overground walking. Hence, wearable robots should preferably be tested in an outdoor environment to obtain more representative—and ultimately more favorable—results with respect to the metabolic benefit of robotic gait assistance.https://doi.org/10.1038/s41598-021-94448-2
collection DOAJ
language English
format Article
sources DOAJ
author Florian Leander Haufe
Eléonore Gascou Duroyon
Peter Wolf
Robert Riener
Michele Xiloyannis
spellingShingle Florian Leander Haufe
Eléonore Gascou Duroyon
Peter Wolf
Robert Riener
Michele Xiloyannis
Outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmills
Scientific Reports
author_facet Florian Leander Haufe
Eléonore Gascou Duroyon
Peter Wolf
Robert Riener
Michele Xiloyannis
author_sort Florian Leander Haufe
title Outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmills
title_short Outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmills
title_full Outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmills
title_fullStr Outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmills
title_full_unstemmed Outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmills
title_sort outside testing of wearable robots for gait assistance shows a higher metabolic benefit than testing on treadmills
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-07-01
description Abstract Most wearable robots that assist the gait of workers, soldiers, athletes, and hobbyists are developed towards a vision of outdoor, overground walking. However, so far, these devices have predominantly been tested indoors on laboratory treadmills. It is unclear whether treadmill-based laboratory tests are an accurate representation of overground ambulation outdoors with respect to essential outcomes such as the metabolic benefits of robotic assistance. In this study, we investigated the metabolic benefits of the Myosuit, a wearable robot that assists hip and knee extension during the stance phase of gait, for eight unimpaired participants during uphill walking trials in three settings: outside, on a self-paced treadmill with a virtual reality display, and on a standard treadmill at a fixed gait speed. The relative metabolic reduction with Myosuit assistance was most pronounced in the outside setting at − 10.6% and significantly larger than in the two treadmill settings (− 6.9%, p = 0.015 and − 6.2%, p = 0.008). This indicates that treadmill tests likely result in systematically low estimate for the true metabolic benefits of wearable robots during outside, overground walking. Hence, wearable robots should preferably be tested in an outdoor environment to obtain more representative—and ultimately more favorable—results with respect to the metabolic benefit of robotic gait assistance.
url https://doi.org/10.1038/s41598-021-94448-2
work_keys_str_mv AT florianleanderhaufe outsidetestingofwearablerobotsforgaitassistanceshowsahighermetabolicbenefitthantestingontreadmills
AT eleonoregascouduroyon outsidetestingofwearablerobotsforgaitassistanceshowsahighermetabolicbenefitthantestingontreadmills
AT peterwolf outsidetestingofwearablerobotsforgaitassistanceshowsahighermetabolicbenefitthantestingontreadmills
AT robertriener outsidetestingofwearablerobotsforgaitassistanceshowsahighermetabolicbenefitthantestingontreadmills
AT michelexiloyannis outsidetestingofwearablerobotsforgaitassistanceshowsahighermetabolicbenefitthantestingontreadmills
_version_ 1721283321936216064