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Modulation of Achilles tendon force with load carriage and exosuit assistance.

Publication ,  Journal Article
Schmitz, DG; Nuckols, RW; Lee, S; Akbas, T; Swaminathan, K; Walsh, CJ; Thelen, DG
Published in: Science robotics
October 2022

Exosuits have the potential to assist locomotion in both healthy and pathological populations, but the effect of exosuit assistance on the underlying muscle-tendon tissue loading is not yet understood. In this study, we used shear wave tensiometers to characterize the modulation of Achilles tendon force with load carriage and exosuit assistance at the ankle. When walking (1.25 m/s) unassisted on a treadmill with load carriage weights of 15 and 30% of body weight, peak Achilles tendon force increased by 11 and 23%, respectively. Ankle exosuit assistance significantly reduced peak Achilles tendon force relative to unassisted, although the magnitude of change was variable across participants. Peak Achilles tendon force was significantly correlated with peak ankle torque for unassisted walking across load carriage conditions. However, when ankle plantarflexor assistance was applied, the relationship between peak tendon force and peak biological ankle torque was no longer significant. An outdoor pilot study was conducted in which a wearable shear wave tensiometer was used to measure Achilles tendon wave speed and compare across an array of assistance loading profiles. Reductions in tendon loading varied depending on the profile, highlighting the importance of in vivo measurements of muscle and tendon forces when studying and optimizing exoskeletons and exosuits.

Duke Scholars

Published In

Science robotics

DOI

EISSN

2470-9476

ISSN

2470-9476

Publication Date

October 2022

Volume

7

Issue

71

Start / End Page

eabq1514

Related Subject Headings

  • Walking
  • Pilot Projects
  • Humans
  • Biomechanical Phenomena
  • Ankle Joint
  • Achilles Tendon
  • 4608 Human-centred computing
  • 4602 Artificial intelligence
  • 4007 Control engineering, mechatronics and robotics
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Schmitz, D. G., Nuckols, R. W., Lee, S., Akbas, T., Swaminathan, K., Walsh, C. J., & Thelen, D. G. (2022). Modulation of Achilles tendon force with load carriage and exosuit assistance. Science Robotics, 7(71), eabq1514. https://doi.org/10.1126/scirobotics.abq1514
Schmitz, Dylan G., Richard W. Nuckols, Sangjun Lee, Tunc Akbas, Krithika Swaminathan, Conor J. Walsh, and Darryl G. Thelen. “Modulation of Achilles tendon force with load carriage and exosuit assistance.Science Robotics 7, no. 71 (October 2022): eabq1514. https://doi.org/10.1126/scirobotics.abq1514.
Schmitz DG, Nuckols RW, Lee S, Akbas T, Swaminathan K, Walsh CJ, et al. Modulation of Achilles tendon force with load carriage and exosuit assistance. Science robotics. 2022 Oct;7(71):eabq1514.
Schmitz, Dylan G., et al. “Modulation of Achilles tendon force with load carriage and exosuit assistance.Science Robotics, vol. 7, no. 71, Oct. 2022, p. eabq1514. Epmc, doi:10.1126/scirobotics.abq1514.
Schmitz DG, Nuckols RW, Lee S, Akbas T, Swaminathan K, Walsh CJ, Thelen DG. Modulation of Achilles tendon force with load carriage and exosuit assistance. Science robotics. 2022 Oct;7(71):eabq1514.

Published In

Science robotics

DOI

EISSN

2470-9476

ISSN

2470-9476

Publication Date

October 2022

Volume

7

Issue

71

Start / End Page

eabq1514

Related Subject Headings

  • Walking
  • Pilot Projects
  • Humans
  • Biomechanical Phenomena
  • Ankle Joint
  • Achilles Tendon
  • 4608 Human-centred computing
  • 4602 Artificial intelligence
  • 4007 Control engineering, mechatronics and robotics