• DocumentCode
    2915788
  • Title

    Development of body weight support gait training system using antagonistic bi-articular muscle model

  • Author

    Shibata, Yoshiyuki ; Imai, Shingo ; Nobutomo, Tatsuya ; Miyoshi, Tasuku ; Yamamoto, Shin-ichiroh

  • Author_Institution
    SIT, Saitama, Japan
  • fYear
    2010
  • fDate
    Aug. 31 2010-Sept. 4 2010
  • Firstpage
    4468
  • Lastpage
    4471
  • Abstract
    The purpose of this study is to develop a body weight support gait training system for stroke and spinal cord injury. This system consists of a powered orthosis, treadmill and equipment of body weight support. Attachment of the powered orthosis is able to fit subject who has difference of body size. This powered orthosis is driven by pneumatic McKibben actuator. Actuators are arranged as pair of antagonistic bi-articular muscle model and two pairs of antagonistic mono-articular muscle model like human musculoskeletal system. Part of the equipment of body weight support suspend subject by wire harness, and body weight of subject is supported continuously by counter weight. The powered orthosis is attached equipment of body weight support by parallel linkage, and movement of the powered orthosis is limited at sagittal plane. Weight of the powered orthosis is compensated by parallel linkage with gas-spring. In this study, we developed system that has orthosis powered by pneumatic McKibben actuators and equipment of body weight support. We report detail of our developed body weight support gait training system.
  • Keywords
    gait analysis; injuries; medical control systems; muscle; orthotics; physiological models; pneumatic actuators; antagonistic bi-articular muscle model; body weight support gait training system; gas-spring; human musculoskeletal system; parallel linkage; pneumatic McKibben actuator; powered orthosis; sagittal plane; spinal cord injury; stroke; treadmill; wire harness; Actuators; Hip; Joints; Mathematical model; Muscles; Training; Valves; Body Weight; Computer Simulation; Equipment Design; Equipment Failure Analysis; Gait; Gait Disorders, Neurologic; Humans; Models, Biological; Muscle Contraction; Muscle, Skeletal; Orthotic Devices; Robotics; Therapy, Computer-Assisted;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Engineering in Medicine and Biology Society (EMBC), 2010 Annual International Conference of the IEEE
  • Conference_Location
    Buenos Aires
  • ISSN
    1557-170X
  • Print_ISBN
    978-1-4244-4123-5
  • Type

    conf

  • DOI
    10.1109/IEMBS.2010.5625972
  • Filename
    5625972