• DocumentCode
    1408625
  • Title

    Long-term biocompatibility of a miniature stimulator implanted in feline hind limb muscles

  • Author

    Cameron, Tracy ; Liinamaa, Tiina L. ; Loeb, Gerald E. ; Richmond, Frances J R

  • Author_Institution
    Adv. Neuromodulation Systems Inc., Allen, TX, USA
  • Volume
    45
  • Issue
    8
  • fYear
    1998
  • Firstpage
    1024
  • Lastpage
    1035
  • Abstract
    Chronic foreign-body responses and muscular changes were examined following the implantation of active miniature stimulators into the hind limb muscles of cats for periods of up to three months. The radio-frequency (RF)-powered stimulators were injected into muscles through a 12-gauge hypodermic needle. The tissue responses around the active stimulators were compared histologically to those provoked by passive devices, broken glass, silicone tubing, polyester suture material coated with polybutylate, and two of the internal components of the stimulator (ferrite, integrated circuit chip). Active and passive stimulators produced similar, benign foreign-body reactions that resulted in an essentially identical fibrous capsule over time. The responses were similar to those produced by the internal components and the suture material, and were more modest than those produced by the broken glass. The capsule did not appear to interfere with the functionality of active devices because thresholds measured during the post-implantation survival period did not change significantly over time. Unexpectedly, the severity of the reaction differed significantly amongst the various target muscles. Medial gastrocnemius exhibited the most severe response, whereas tibialis anterior had the least reaction.
  • Keywords
    bioelectric phenomena; biomechanics; biomedical equipment; muscle; neurophysiology; patient treatment; prosthetics; active miniature stimulators; benign foreign-body reactions; broken glass; chronic foreign-body responses; electrical stimulation; feline hind limb muscles; ferrite; fibrous capsule; functionality; hypodermic needle; integrated circuit chip; internal components; long-term biocompatibility; medial gastrocnemius; muscular changes; olyester suture material; passive devices; passive stimulators; polybutylate; post-implantation survival period; radio-frequency powered stimulators; silicone tubing; target muscles; tibialis anterior; tissue responses; Biological materials; Cats; Ferrites; Glass; Implants; Muscles; Needles; Proteins; Radio frequency; White blood cells; Animals; Atrophy; Biocompatible Materials; Cats; Electric Stimulation; Electrodes, Implanted; Equipment Failure; Female; Ferric Compounds; Fibrosis; Foreign-Body Reaction; Giant Cells; Glass; Hindlimb; Inflammation; Iridium; Male; Muscle Contraction; Muscle, Skeletal; Silicones; Tantalum;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/10.704871
  • Filename
    704871