• DocumentCode
    1551294
  • Title

    Micromodular implants to provide electrical stimulation of paralyzed muscles and limbs

  • Author

    Cameron, Tracy ; Loeb, Gerald E. ; Peck, Raymond A. ; Schulman, Joseph H. ; Strojnik, Primoz ; Troyk, Philip R.

  • Author_Institution
    Biomed. Eng. Unit, Queen´´s Univ., Kingston, Ont., Canada
  • Volume
    44
  • Issue
    9
  • fYear
    1997
  • Firstpage
    781
  • Lastpage
    790
  • Abstract
    Describes the design, fabrication, and output capabilities of a microminiature electrical stimulator that can be injected in or near nerves and muscles. Each single channel microstimulator consists of a cylindrical glass capsule with hermetically sealed electrodes in either end (2-mm diameter×13-mm overall length). Power and digital control data can be transmitted to multiple implants (256 unique addresses) via a 2-MHz RF field created by an external AM oscillator and inductive coil. In vitro testing demonstrated accurate control of output pulsewidth (3-258 μs in 1-μs steps) and current (0-30 mA in two linear ranges of 16 steps each, up to 8.5 V available compliance voltage). Microstimulators were used successfully for chronic stimulation in hindlimb muscles of cats. Design and fabrication issues affecting yield and reliability of the packaging and electronics are discussed.
  • Keywords
    bioelectric phenomena; biomedical electronics; coils; muscle; neurophysiology; prosthetics; radiofrequency oscillators; 0 to 30 mA; 1 mus; 13 mm; 2 MHz; 2 mm; 3 to 258 mus; 8.5 V; cat hindlimb muscles; cylindrical glass capsule; digital control data; external AM oscillator; fabrication; hermetically sealed electrodes; in vitro testing; inductive coil; microminiature electrical stimulator; micromodular implants; multiple implants; output pulsewidth control; packaging; reliability; single channel microstimulator; Digital control; Digital-controlled oscillators; Electrical stimulation; Electrodes; Fabrication; Glass; Hermetic seals; Implants; Muscles; Radio frequency; Action Potentials; Animals; Biocompatible Materials; Cats; Electric Impedance; Electric Power Supplies; Electric Stimulation; Electrodes; Equipment Failure; Iridium; Muscle, Skeletal; Paralysis; Peripheral Nerves; Prostheses and Implants; Prosthesis Design; Surface Properties; Tantalum;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/10.623047
  • Filename
    623047