• DocumentCode
    744655
  • Title

    Postural arm control following cervical spinal cord injury

  • Author

    Perreault, Eric J. ; Crago, Patrick E. ; Kirsch, Robert F.

  • Author_Institution
    Dept. of Physiol., Northwestern Univ. Med. Sch., Chicago, IL, USA
  • Volume
    9
  • Issue
    4
  • fYear
    2001
  • Firstpage
    369
  • Lastpage
    377
  • Abstract
    This study used estimates of dynamic endpoint stiffness to quantify postural arm stability following cervical spinal cord injury (SCI) and to investigate how this stability was affected by functional neuromuscular stimulation (FNS). Measurements were made in the horizontal plane passing through the glenohumeral joint on three SCI-impaired arms, which ranged in functional level from a weak C5 to a strong C6. Endpoint stiffness, which characterizes the relationship between externally imposed hand displacements and the resultant forces, was estimated during the application of planar, stochastic perturbations to each arm. These estimates were used in conjunction with voluntary endpoint force measurements to quantify stability and strength during voluntary contractions and during voluntary contractions in the presence of triceps FNS. The primary findings were: (1) the differences in the force generating capabilities of these arms were due primarily to differences in shoulder strength; (2) measurements of strength alone could not be used to predict arm stability; and (3) triceps FNS improved postural arm stability for all tested conditions. These results suggest strategies for improved control of FNS systems designed to restore arm function following cervical SCI and underscore the importance of examining the effects of FNS on both strength and stability.
  • Keywords
    biocontrol; biomechanics; mechanical stability; mechanoception; neuromuscular stimulation; prosthetics; cervical spinal cord injury; endpoint stiffness; externally imposed hand displacements; force generating capabilities; functional neuromuscular stimulation; glenohumeral joint; horizontal plane; implanted neuroprosthesis; planar stochastic perturbations; postural arm control; posture stability; triceps FES; voluntary contractions; Arm; Control systems; Displacement measurement; Force measurement; Neuromuscular stimulation; Shoulder; Spinal cord injury; Stability; Stochastic processes; Testing; Algorithms; Arm; Cervical Vertebrae; Computer Simulation; Elasticity; Electric Stimulation Therapy; Humans; Models, Biological; Movement; Muscle Contraction; Posture; Reproducibility of Results; Spinal Cord Injuries; Weight-Bearing;
  • fLanguage
    English
  • Journal_Title
    Neural Systems and Rehabilitation Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1534-4320
  • Type

    jour

  • DOI
    10.1109/TNSRE.2001.1000117
  • Filename
    1000117