We report for the first time how coatings made by directly growing carbon nanotubes (CNTs) on the tip of neural microelectrodes outperform others made by electrodeposited CNT composites. Not only do they reduce microelectrode impedance but they also are able to inject high currents without degradation and are stable in time. These results suggest that they are excellent candidates for chronic applications especially when both neural recording and stimulation have to be performed by the same microelectrode. © 2011 American Chemical Society
Neural electrodes hold tremendous potential for improving understanding of brain function and resto...
AbstractCarbon nanotube (CNT) was considered as a good modified material to prepare CNT chemically m...
Microelectrode arrays of carbon nanotube (CNT)/carbon composite posts with high aspect ratio and mil...
We report for the first time how coatings made by directly growing carbon nanotubes (CNTs) on the ti...
Implantable electrodes are one of the most common tools in electrophysiology research, both for acut...
Microelectrodes are widely used for monitoring neural activities in various neurobiological studies....
<p>Electrical stimulation is capable of restoring function to a damaged or diseased nervous system a...
DoctorThis Ph. D. thesis can be divided into three parts. In first part, the fabrication of carbon n...
Microelectrodes are widely used for monitoring neural activities in various neurobiological studies....
Aiming to improve the charge transfer ability at the neural electrode interface, a new and simple me...
Extracellular metal microelectrodes are widely used to record single neuron activity in vivo. Howeve...
Advances in neural interface technologies have sought to identify electroactive materials that are a...
Improvement in the safety, efficacy, selectivity, and/or power consumption of devices used for neura...
Microelectrodes modified with carbon nanotubes (CNTs) are useful for the detection of neurotransmitt...
In this study, we test the hypothesis that increased surface roughness due to carbon nanotubes (CNTs...
Neural electrodes hold tremendous potential for improving understanding of brain function and resto...
AbstractCarbon nanotube (CNT) was considered as a good modified material to prepare CNT chemically m...
Microelectrode arrays of carbon nanotube (CNT)/carbon composite posts with high aspect ratio and mil...
We report for the first time how coatings made by directly growing carbon nanotubes (CNTs) on the ti...
Implantable electrodes are one of the most common tools in electrophysiology research, both for acut...
Microelectrodes are widely used for monitoring neural activities in various neurobiological studies....
<p>Electrical stimulation is capable of restoring function to a damaged or diseased nervous system a...
DoctorThis Ph. D. thesis can be divided into three parts. In first part, the fabrication of carbon n...
Microelectrodes are widely used for monitoring neural activities in various neurobiological studies....
Aiming to improve the charge transfer ability at the neural electrode interface, a new and simple me...
Extracellular metal microelectrodes are widely used to record single neuron activity in vivo. Howeve...
Advances in neural interface technologies have sought to identify electroactive materials that are a...
Improvement in the safety, efficacy, selectivity, and/or power consumption of devices used for neura...
Microelectrodes modified with carbon nanotubes (CNTs) are useful for the detection of neurotransmitt...
In this study, we test the hypothesis that increased surface roughness due to carbon nanotubes (CNTs...
Neural electrodes hold tremendous potential for improving understanding of brain function and resto...
AbstractCarbon nanotube (CNT) was considered as a good modified material to prepare CNT chemically m...
Microelectrode arrays of carbon nanotube (CNT)/carbon composite posts with high aspect ratio and mil...