DocumentCode
1420913
Title
Flexible Split-Ring Electrode for Insect Flight Biasing Using Multisite Neural Stimulation
Author
Tsang, Wei Mong ; Stone, Alice L. ; Aldworth, Zane N. ; Hildebrand, John G. ; Daniel, Tom L. ; Akinwande, Akintunde Ibitayo ; Voldman, Joel
Author_Institution
Res. Lab. of Electron., Massachusetts Inst. of Technol., Cambridge, MA, USA
Volume
57
Issue
7
fYear
2010
fDate
7/1/2010 12:00:00 AM
Firstpage
1757
Lastpage
1764
Abstract
We describe a flexible multisite microelectrode for insect flight biasing using neural stimulation. The electrode is made of two layers of polyimide (PI) with gold sandwiched in between in a split-ring geometry. The split-ring design in conjunction with the flexibility of the PI allows for a simple insertion process and provides good attachment between the electrode and ventral nerve cord of the insect. Stimulation sites are located at the ends of protruding tips that are circularly distributed inside the split-ring structure. These protruding tips penetrate into the connective tissue surrounding the nerve cord. We have been able to insert the electrode into pupae of the giant sphinx moth Manduca sexta as early as seven days before the adult moth emerges, and we are able to use the multisite electrode to deliver electrical stimuli that evoke multidirectional, graded abdominal motions in both pupae and adult moths. Finally, in loosely tethered flight, we have used stimulation through the flexible microelectrodes to alter the abdominal angle, thus causing the flying moth to deviate to the left or right of its intended path.
Keywords
microelectrodes; neuromuscular stimulation; zoology; Manduca sexta; electrical stimuli; evoke multidirectional-graded abdominal motions; flexible split-ring multisite microelectrode; giant sphinx moth; gold sandwich; insect flight biasing; loosely tethered flight; multisite neural stimulation; polyimide; pupae; ventral nerve cord; Biomedical electrodes; insect; neuromuscular stimulation; Animals; Behavior, Animal; Cybernetics; Electric Stimulation; Electrodes, Implanted; Evoked Potentials, Motor; Flight, Animal; Manduca; Motor Neurons; Pupa;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2010.2041778
Filename
5416317
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