DocumentCode
1079584
Title
Chronic measurement of the stimulation selectivity of the flat interface nerve electrode
Author
Leventhal, Daniel K. ; Durand, Dominique M.
Author_Institution
Dept. of Biomed. Eng., Case Western Reserve Univ., Cleveland, OH, USA
Volume
51
Issue
9
fYear
2004
Firstpage
1649
Lastpage
1658
Abstract
The flat interface nerve electrode (FINE) is an attempt to improve the stimulation selectivity of extraneural electrodes. By reshaping peripheral nerves into elliptical cylinders, central fibers are moved closer to the nerve-electrode interface, and additional surface area is created for contact placement. The goals of this study were to test the hypothesis that greater nerve reshaping leads to improved selectivity and to examine the chronic recruitment properties of the FINE. Three FINEs were developed to reshape peripheral nerves to different degrees. Four electrodes of each type were implanted on the sciatic nerves of 12 cats and tested for selectivity over at least three months. There was physiologic evidence of nerve injury in two cats with the tightest cuffs, but the other animals behaved normally. All cuff types were capable of selectively activating branches of the sciatic nerve, as well as groups of fibers within branches. The electrodes that moderately reshaped the nerves demonstrated the most selectivity. Both the selectivity measurements and the recruitment curve characteristics were stable throughout the implant period. From an electrophysiological standpoint, the FINE is a viable alternative for neuroprosthetic devices. A histological analysis of the nerves is under way to evaluate the safety of the FINE.
Keywords
bioelectric phenomena; biomedical electrodes; neurophysiology; cat sciatic nerves; chronic stimulation selectivity measurement; electrophysiology; extraneural electrodes; flat interface nerve electrode; nerve injury; neuroprosthetic devices; reshaping peripheral nerves; Animals; Cats; Electrodes; Implants; Injuries; Neural prosthesis; Optical fiber devices; Optical fiber testing; Recruitment; Safety; Animals; Cats; Electric Stimulation; Electric Stimulation Therapy; Electrodes, Implanted; Equipment Design; Equipment Failure Analysis; Muscle Contraction; Muscle, Skeletal; Prostheses and Implants; Recruitment, Neurophysiological; Reproducibility of Results; Sciatic Nerve; Sensitivity and Specificity;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2004.827535
Filename
1325825
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