Carbon Nanotube Micro-Electrode Array
A novel class of micro electrodes, specifically designed to interface with neuronal systems, is presented. The electrodes were fabricated by synthesizing high density carbon nanotube islands on lithographically defined, passivated titanium nitride conductors on a silicon dioxide substrate. Here we s...
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Published in | TRANSDUCERS 2007 - 2007 International Solid-State Sensors, Actuators and Microsystems Conference pp. 1553 - 1556 |
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Main Authors | , , , , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
01.06.2007
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Subjects | |
Online Access | Get full text |
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Abstract | A novel class of micro electrodes, specifically designed to interface with neuronal systems, is presented. The electrodes were fabricated by synthesizing high density carbon nanotube islands on lithographically defined, passivated titanium nitride conductors on a silicon dioxide substrate. Here we show that these novel bio-compatible electrodes facilitate two special functions: neuronal tissue patterning as well as recording of the cell's electrical activity. High fidelity extra-cellular recordings from cultured neurons was performed and analyzed to validate the effectiveness of the fabricated electrodes. |
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AbstractList | A novel class of micro electrodes, specifically designed to interface with neuronal systems, is presented. The electrodes were fabricated by synthesizing high density carbon nanotube islands on lithographically defined, passivated titanium nitride conductors on a silicon dioxide substrate. Here we show that these novel bio-compatible electrodes facilitate two special functions: neuronal tissue patterning as well as recording of the cell's electrical activity. High fidelity extra-cellular recordings from cultured neurons was performed and analyzed to validate the effectiveness of the fabricated electrodes. |
Author | Abrams, Z.R. Hanein, Y. Sorkin, R. Ben-Jacob, E. Ben-David, M. Gabay, T. Kalifa, I. |
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Snippet | A novel class of micro electrodes, specifically designed to interface with neuronal systems, is presented. The electrodes were fabricated by synthesizing high... |
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SubjectTerms | Carbon nanotubes cell patterning Chemical vapor deposition Conductors Electrodes Nanobioscience neural networks Neurons Rough surfaces self-assembly Surface roughness Surface topography Titanium |
Title | Carbon Nanotube Micro-Electrode Array |
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