Stimulating neural electrodes are required to deliver charge to an environment that presents itself as hostile. The electrodes need to maintain their electrical characteristics (charge and impedance) in vivo for a proper functioning of neural prostheses. Here we design implantable multi-walled carbon nanotubes coating for stainless steel substrate electrodes, targeted at wide frequency stimulation of deep brain structures. In well-controlled, low-frequency stimulation acute experiments, we show that multi-walled carbon nanotube electrodes maintain their charge storage capacity (CSC) and impedance in vivo. The difference in average CSCs (n = 4) between the in vivo (1.111 mC cm(-2)) and in vitro (1.008 mC cm(-2)) model was statistically insig...
The unique properties of single-wall carbon nanotubes (SWNTs) and the application of nanotechnology ...
Electrical microstimulation has shown promise in restoring neural deficits in humans. Electrodes coa...
The development of implantable neuroelectrodes is advancing rapidly as these tools are becoming incr...
Stimulating neural electrodes are required to deliver charge to an environment that presents itself ...
The development of microelectrodes capable of safely stimulating and recording neural activity is a ...
Neural electrodes hold tremendous potential for improving understanding of brain function and resto...
Objective. The development of electrode arrays able to reliably record brain electrical activity is ...
Thesis (Master's)--University of Washington, 2015Current neural-prosthetic devices fail to provide h...
Microelectrodes are widely used for monitoring neural activities in various neurobiological studies....
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
Microelectrodes are widely used for monitoring neural activities in various neurobiological studies....
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
The advent of nanotechnology has revolutionised our ability to engineer electrode interfaces. These ...
The ability of conducting polymers such as poly(3,4-ethylenedioxythiophene) (PEDOT) to store a drug ...
The unique properties of single-wall carbon nanotubes (SWNTs) and the application of nanotechnology ...
Electrical microstimulation has shown promise in restoring neural deficits in humans. Electrodes coa...
The development of implantable neuroelectrodes is advancing rapidly as these tools are becoming incr...
Stimulating neural electrodes are required to deliver charge to an environment that presents itself ...
The development of microelectrodes capable of safely stimulating and recording neural activity is a ...
Neural electrodes hold tremendous potential for improving understanding of brain function and resto...
Objective. The development of electrode arrays able to reliably record brain electrical activity is ...
Thesis (Master's)--University of Washington, 2015Current neural-prosthetic devices fail to provide h...
Microelectrodes are widely used for monitoring neural activities in various neurobiological studies....
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
Microelectrodes are widely used for monitoring neural activities in various neurobiological studies....
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
The advent of nanotechnology has revolutionised our ability to engineer electrode interfaces. These ...
The ability of conducting polymers such as poly(3,4-ethylenedioxythiophene) (PEDOT) to store a drug ...
The unique properties of single-wall carbon nanotubes (SWNTs) and the application of nanotechnology ...
Electrical microstimulation has shown promise in restoring neural deficits in humans. Electrodes coa...
The development of implantable neuroelectrodes is advancing rapidly as these tools are becoming incr...