Micromodular implants to provide electrical stimulation of paralyzed muscles and limbs
- 1 January 1997
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Biomedical Engineering
- Vol. 44 (9) , 781-790
- https://doi.org/10.1109/10.623047
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/spl times/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 /spl mu/s in 1-/spl mu/s 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
This publication has 33 references indexed in Scilit:
- Functional Neuromuscular StimulationInternational Journal of Sports Medicine, 1994
- Biocompatibility of glass-encapsulated electronic chips (transponders) used for the identification of pigsVeterinary Record, 1993
- A functional electrical stimulation exercise system designed to increase bone density in spinal cord injured individualsIEEE Transactions on Rehabilitation Engineering, 1993
- Constipation associated with chronic spinal cord injury: the effect of pelvic parasympathetic stimulation by the Brindley stimulatorSpinal Cord, 1991
- Long-term follow-up of patients with sacral anterior root stimulator implantsSpinal Cord, 1990
- Implantable functional neuromuscular stimulation in the tetraplegic handThe Journal of Hand Surgery, 1989
- Effects of Waveform on Comfort During Neuromuscular Electrical StimulationClinical Orthopaedics and Related Research, 1988
- RF powering of millimeter- and submillimeter-sized neural prosthetic implantsIEEE Transactions on Biomedical Engineering, 1988
- Hybrid FES orthosis incorporating closed loop control and sensory feedbackJournal of Biomedical Engineering, 1988
- Functional Walking in Paralyzed Patients by Means of Electrical StimulationPublished by Wolters Kluwer Health ,1983