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Overground gait training using virtual reality aimed at gait symmetry.

Publication ,  Journal Article
Shideler, BL; Martelli, D; Prado, A; Agrawal, SK
Published in: Human movement science
April 2021

This study investigated if training in a virtual reality (VR) environment that provides visual and audio biofeedback on foot placement can induce changes to spatial and temporal parameters of gait during overground walking. Eighteen healthy young adults walked for 23 min back and forth on an instrumented walkway in three different conditions: (i) real environment (RE), (ii) virtual environment (VE) with no biofeedback, and (iii) VE with biofeedback. Visual and audio biofeedback while stepping on virtual footprint targets appearing along a straight path encouraged participants to walk with an asymmetrical step length (SL). A repeated-measures, one-way ANOVA, followed by a pairwise comparison post-hoc analysis with Bonferroni's correction, was performed to compare the step length difference (SLD), stance phase percentage difference (SPPD), and double-support percentage difference (DSPD) between early and late phases of all walking conditions. The results demonstrate the efficacy of the VE biofeedback system for training asymmetrical gait patterns. Participants temporarily adapted an asymmetrical gait pattern immediately post-training in the VE. Induced asymmetries persisted significantly while later walking in the RE. Asymmetry was significant in the spatial parameters of gait (SLD) but not in the temporal parameters (SPPD and DSPD). This paper demonstrates a method to induce unilateral changes in spatial parameters of gait using a novel VR tool. This study provides a proof-of-concept validation that VR biofeedback training can be conducted directly overground and could potentially provide a new method for treatment of hemiplegic gait or asymmetrical walking.

Duke Scholars

Published In

Human movement science

DOI

EISSN

1872-7646

ISSN

0167-9457

Publication Date

April 2021

Volume

76

Start / End Page

102770

Related Subject Headings

  • Young Adult
  • Walking
  • Virtual Reality
  • Male
  • Humans
  • Hemiplegia
  • Gait
  • Female
  • Experimental Psychology
  • Exercise Therapy
 

Citation

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Shideler, B. L., Martelli, D., Prado, A., & Agrawal, S. K. (2021). Overground gait training using virtual reality aimed at gait symmetry. Human Movement Science, 76, 102770. https://doi.org/10.1016/j.humov.2021.102770
Shideler, Blynn L., Dario Martelli, Antonio Prado, and Sunil K. Agrawal. “Overground gait training using virtual reality aimed at gait symmetry.Human Movement Science 76 (April 2021): 102770. https://doi.org/10.1016/j.humov.2021.102770.
Shideler BL, Martelli D, Prado A, Agrawal SK. Overground gait training using virtual reality aimed at gait symmetry. Human movement science. 2021 Apr;76:102770.
Shideler, Blynn L., et al. “Overground gait training using virtual reality aimed at gait symmetry.Human Movement Science, vol. 76, Apr. 2021, p. 102770. Epmc, doi:10.1016/j.humov.2021.102770.
Shideler BL, Martelli D, Prado A, Agrawal SK. Overground gait training using virtual reality aimed at gait symmetry. Human movement science. 2021 Apr;76:102770.
Journal cover image

Published In

Human movement science

DOI

EISSN

1872-7646

ISSN

0167-9457

Publication Date

April 2021

Volume

76

Start / End Page

102770

Related Subject Headings

  • Young Adult
  • Walking
  • Virtual Reality
  • Male
  • Humans
  • Hemiplegia
  • Gait
  • Female
  • Experimental Psychology
  • Exercise Therapy