• DocumentCode
    2186354
  • Title

    Influence of the robotic exoskeleton Lokomat on the control of human gait: An electromyographic and kinematic analysis

  • Author

    Barroso, F. ; Santos, Cristina ; Moreno, J.C.

  • Author_Institution
    Univ. of Minho, Guimaraes, Portugal
  • fYear
    2013
  • fDate
    20-23 Feb. 2013
  • Firstpage
    1
  • Lastpage
    6
  • Abstract
    Nowadays there is an increasing percentage of elderly people and it is expected that this percentage will continue increasing, carrying huge organizational costs in rehabilitation services. Recent robotic devices for gait training are more and more regarded as alternatives to solve cost-efficiency issues and provide novel approaches for training. Nevertheless, there is a need to address how to target muscular activation and kinematic patterns for optimal recovery after a neurological damage. The main objective of this work was to understand the underlying principles that the human nervous system employs to synchronize muscular activity during walking assisted by Lokomat. A basic low-dimensional locomotor program can explain the synergistic activation of muscles during assisted gait. As a main contribution, we generated a detailed description of the electromyographic and biomechanical response to variations in robotic assistance in intact humans, which can be used for future control strategies to be implemented in motor rehabilitation.
  • Keywords
    electromyography; gait analysis; geriatrics; medical robotics; neurophysiology; patient rehabilitation; robot kinematics; basic low-dimensional locomotor program; biomechanical response; cost-efficiency issues; elderly people; electromyographic analysis; electromyographic response; future control strategies; gait training; human gait control; human nervous system; kinematic analysis; kinematic patterns; motor rehabilitation; muscle synergistic activation; muscular activation; neurological damage; optimal recovery; organizational costs; rehabilitation services; robotic assistance; robotic devices; robotic exoskeleton Lokomat; Biomechanics; Indexes; Legged locomotion; Manganese; Muscles; Robot kinematics; Electromyography; Exoskeleton; Human gait; Motor control; Neurorehabilitation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Bioengineering (ENBENG), 2013 IEEE 3rd Portuguese Meeting in
  • Conference_Location
    Braga
  • Print_ISBN
    978-1-4673-4859-1
  • Type

    conf

  • DOI
    10.1109/ENBENG.2013.6518442
  • Filename
    6518442