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An Externally Powered, Multichannel, Implantable Stimulator for Versatile Control of Paralyzed Muscle
Authors:Smith   Brian Peckham   P. Hunter Keith   Michael W. Roscoe   Dennis D.
Affiliation:Rehabilitation Engineering Center and Electronics Design Center, Departments of Biomedical Engineering and Orthopaedics, Case Western University, and Veterans Administration Medical Center;
Abstract:Through the use of semicustom integrated circuit technology, an implantable muscle stimulator has been developed. The unit is small, lightweight, has low power consumption, and is intended for permanent usage. The stimulator circuitry is externally controlled and powered by a single encoded radio frequency carrier. Up to eight independently controlled stimulus output channels are provided, with output channel selection, stimulus pulse width, and stimulus pulse frequency under external control. A constant current biphasic stimulus pulse is used, in which the stimulus current amplitude can be preset by a single resistor value. The stimulator circuitry has been implemented in thick film hybrid form, and has undergone laboratory evaluation for 48 months.
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