Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/89974

TítuloFabrication and mechanical characterization of long and different penetrating length neural microelectrode arrays
Autor(es)Gonçalves, Sandra Beatriz Tomé
Peixoto, Alexandre Coumiotis Moreira
Ferreira da Silva, Alexandre
Correia, J. H.
Palavras-chaveNeural electrodes
Dicing technology
Mechanical characterization
Data1-Mai-2015
EditoraIOP Publishing Ltd
RevistaJournal of Micromechanics and Microengineering
Resumo(s)This paper presents a detailed description of the design, fabrication and mechanical characterization of 3D microelectrode arrays (MEA) that comprise high aspect-ratio shafts and different penetrating lengths of electrodes (from 3 mm to 4 mm). The array's design relies only on a bulk silicon substrate dicing saw technology. The encapsulation process is accomplished by a medical epoxy resin and platinum is used as the transduction layer between the probe and neural tissue. The probe's mechanical behaviour can significantly affect the neural tissue during implantation time. Thus, we measured the MEA maximum insertion force in an agar gel phantom and a porcine cadaver brain. Successful 3D MEA were produced with shafts of 3 mm, 3.5 mm and 4 mm in length. At a speed of 180 mm min(-1), the MEA show maximum penetrating forces per electrode of 2.65 mN and 12.5 mN for agar and brain tissue, respectively. A simple and reproducible fabrication method was demonstrated, capable of producing longer penetrating shafts than previously reported arrays using the same fabrication technology. Furthermore, shafts with sharp tips were achieved in the fabrication process simply by using a V-shaped blade.
TipoArtigo
URIhttps://hdl.handle.net/1822/89974
DOI10.1088/0960-1317/25/5/055014
ISSN0960-1317
Arbitragem científicayes
AcessoAcesso restrito autor
Aparece nas coleções:DEI - Artigos em revistas internacionais

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