• DocumentCode
    1482024
  • Title

    The function of the finger intrinsic muscles in response to electrical stimulation

  • Author

    Lauer, Richard T. ; Kilgore, Kevin L. ; Peckham, P. Hunter ; Bhadra, Niloy ; Keith, Michael W.

  • Author_Institution
    Cleveland FES Centre, Case Western Reserve Univ., Cleveland, OH, USA
  • Volume
    7
  • Issue
    1
  • fYear
    1999
  • fDate
    3/1/1999 12:00:00 AM
  • Firstpage
    19
  • Lastpage
    26
  • Abstract
    The actions of the dorsal interosseous, volar interosseous, and lumbrical muscles were investigated using applied electrical stimulation and recording the moments that were generated across the metacarpophalangeal joint in flexion/extension and abduction/adduction, the proximal interphalangeal joint in flexion/extension, and the distal interphalangeal joint in flexion/extension. These measurements were made isometrically at various joint angles and levels of stimulation with both able bodied subjects and persons who had sustained tetraplegia. It was determined that the dorsal interossei, including the first, were strong abductors of the fingers and generated a significant moment in metacarpophalangeal (MP) joint flexion and interphalangeal (IP) joint extension. The volar interossei were the primary adductors of the fingers, as well as providing a significant moment in MP joint flexion and IP joint extension. The lumbrical muscles were found to be MP joint flexors and IP joint extensors, although the moments that were generated were on average 70% lower than the interossei. The role of the lumbricals as finger abductors or adductors could not be determined from the data. This information on the actions and moment generating capabilities of the intrinsic muscles led to the incorporation of the interossei into electrically induced hand grasp provided by an implanted neuroprosthesis. The evaluation of the intrinsic muscles in the neuroprosthesis was accomplished by recording the moment generating capabilities of these muscles across each of the joints of the finger. These muscles were capable of generating moments that were 80-90% of the average attained by the able bodied subjects, and have provided a substantial improvement to the electrically induced hand grasp
  • Keywords
    bioelectric phenomena; biomechanics; neuromuscular stimulation; prosthetics; abduction/adduction; able bodied subjects; dorsal interosseous; electrical stimulation response; electrically induced hand grasp; finger intrinsic muscles function; flexion/extension; implanted neuroprosthesis; joint angle; lumbrical muscles; metacarpophalangeal joint; moment generating capabilities; tetraplegia; volar interosseous; Elbow; Electrical stimulation; Extremities; Fingers; Injuries; Muscles; Neuromuscular stimulation; Research and development; Shoulder; Wrist;
  • fLanguage
    English
  • Journal_Title
    Rehabilitation Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1063-6528
  • Type

    jour

  • DOI
    10.1109/86.750547
  • Filename
    750547