DocumentCode :
2775280
Title :
Fabrication of multi-layer, high-density micro-electrode arrays for neural stimulation and bio-signal recording
Author :
Suaning, G.J. ; Schuettler, M. ; Ordonez, J.S. ; Lovell, N.H.
Author_Institution :
Sch. of Eng., Newcastle Univ., Callaghan, NSW
fYear :
2007
fDate :
2-5 May 2007
Firstpage :
5
Lastpage :
8
Abstract :
The electrode-tissue interface is of principal importance in neuroprosthesis. Indeed the successes of the cochlear implant and other therapeutic devices are directly attributable to the design and fabrication techniques of their interfaces with neural tissue, that is, the electrode or electrode array. Traditional fabrication techniques are often labor-intensive and do not lend themselves to automation thereby increasing the cost of the electrode, and owing to fabrication variability, potentially compromising the reliability of the devices incorporating them. Exacerbating the difficulties in electrode fabrication further is the fact that only a handful of materials have been demonstrated to be biologically inert. These same materials are often among the most difficult to utilize in the fabrication of neural electrodes. In the present paper, a new methodology for automated fabrication of high-density electrode arrays is presented. Using exclusively biologically-inert raw materials, laser machining techniques combined with multiple layer structuring is shown to achieve feature sizes of the order of 25 mum. As an illustrative example, a 98 electrode array for interfacing with surviving retinal tissue through a visual prosthesis for the blind is presented. Overall dimensions of the array are of the order of 8.7 times 9.4 mm, consistent with approximately 25 degrees of visual field.
Keywords :
laser beam machining; medical signal processing; microelectrodes; neural nets; neuromuscular stimulation; prosthetics; biologically-inert raw materials; biosignal recording; cochlear implant; electrode-tissue interface; laser machining; multilayer high-density microelectrode array fabrication; multiple layer structuring; neural electrode fabrication; neural interface; neural stimulation; neural tissue; neuroprosthesis; retinal tissue; therapeutic devices; visual prosthesis; Automation; Biological materials; Cochlear implants; Costs; Electrodes; Machining; Optical device fabrication; Optical materials; Raw materials; Retina; electrode array; neural interface; neuroprosthesis; retina; vision prosthesis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Neural Engineering, 2007. CNE '07. 3rd International IEEE/EMBS Conference on
Conference_Location :
Kohala Coast, HI
Print_ISBN :
1-4244-0792-3
Electronic_ISBN :
1-4244-0792-3
Type :
conf
DOI :
10.1109/CNE.2007.369597
Filename :
4227202
Link To Document :
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