Scinovex
articleTop 10% cited

Flexible polyimide-based intracortical electrode arrays with bioactive capability

IEEE Transactions on Biomedical Engineering · 2001 · Vol. 48(3) · pp. 361–371
P.J. RouscheD.S. PellinenD.P. PivinJustin C. WilliamsR.J. VetterDaryl R. Kipke

Abstract

The promise of advanced neuroprosthetic systems to significantly improve the quality of life for a segment of the deaf, blind, or paralyzed population hinges on the development of an efficacious, and safe, multichannel neural interface for the central nervous system. The candidate implantable device that is to provide such an interface must exceed a host of exacting design parameters. We present a thin-film, polyimide-based, multichannel intracortical Bio-MEMS interface manufactured with standard planar photo-lithographic CMOS-compatible techniques on 4-in silicon wafers. The use of polyimide provides a mechanically flexible substrate which can be manipulated into unique three-dimensional designs. Polyimide also provides an ideal surface for the selective attachment of various important bioactive species onto the device in order to encourage favorable long-term reactions at the tissue-electrode interface. Structures have an integrated polyimide cable providing efficient contact points for a high-density connector. This report details in vivo and in vitro device characterization of the biological, electrical and mechanical properties of these arrays. Results suggest that these arrays could be a candidate device for long-term neural implants.

Neuroscience and Neural EngineeringConducting polymers and applicationsAdvanced Memory and Neural ComputingPolyimideMaterials scienceElectrodeBrain–computer interfaceMicroelectrodeMicroelectromechanical systemsWaferCMOSNeural ProsthesisOptoelectronics

MeSH terms

AnimalsElectric StimulationElectrodes, ImplantedElectroencephalographyEquipment DesignMaterials TestingResins, SyntheticSomatosensory CortexElectric ImpedanceRats
Citations
639
FWCI
4.49
field-weighted impact
References
36
Percentile
96%
vs. same field & year
Citations per year
Cited by
Recent advances in nanocellulose for biomedical applications
Journal of Applied Polymer Science · 2014 · 725 citations
Microneedles for drug and vaccine delivery
Advanced Drug Delivery Reviews · 2012 · 1,661 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Flexible polyimide-based intracortical electrode arrays with bioactive capability · Scinovex