DocumentCode
1015717
Title
In Vitro Magnetic Stimulation of Pig Phrenic Nerve With Transverse and Longitudinal Induced Electric Fields: Analysis of the Stimulation Site
Author
Lontis, Eugen R. ; Nielsen, Karsten ; Struijk, Johannes J.
Author_Institution
Dept. of Health Sci. & Technol., Aalborg Univ., Aalborg
Volume
56
Issue
2
fYear
2009
Firstpage
500
Lastpage
512
Abstract
The induced electric field transverse to peripheral nerve trunks has been shown to lead to stimulation, contrary to predictions of the cable equation. Two possible mechanisms of activation have been documented in literature: the change in the transmembrane voltage due to an electric field transverse to the membrane of a cylindrical fiber and the transverse field projection on the undulating fiber path within the fascicle. To distinguish between these alternatives, an analysis of the stimulation site was performed in vitro along 15 phrenic nerves from pigs, with a 5-cm-diameter round coil. Stimulation with induced electric field having longitudinal and attenuated transverse components resulted in stimulation sites in the vicinity of the negative peak of the spatial derivative of the longitudinal electric field and threshold variations with coil positions along the nerve trunk. Stimulation with a transverse field yielded patterns of one, two, or three stimulation sites, scattered or uniformly distributed around the location of the two field maxima. A nerve structure analysis outlined the fiber undulation within the fascicle and a network of wavy fascicles. The presence of this network and the variations of the stimulation site, and of the threshold suggest that the path of the fiber has a major undulation due to the undulation of the fascicles within the nerve trunk, which may be responsible for the stimulation with an electric field transverse to the nerve trunk.
Keywords
biomagnetism; biomembranes; neuromuscular stimulation; fascicle; in vitro magnetic stimulation; pig phrenic nerve; transmembrane voltage; transverse field projection; Coils; Councils; Equations; In vitro; In vivo; Magnetic stimulation; Nerve fibers; Nonuniform electric fields; Optical fiber cables; Optical fiber theory; Permission; Postal services; Space technology; Virtual manufacturing; Voltage; in vitro magnetic stimulation; Fascicle and fiber undulation; mechanism of activation; peripheral nerve trunk; Algorithms; Animals; Electric Stimulation; Electromagnetic Fields; Phrenic Nerve; Reproducibility of Results; Swine;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2008.2009929
Filename
4694124
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