Traditional neuronal interfaces utilize metallic electrodes which in recent years have reached a plateau in terms of the ability to provide safe stimulation at high resolution or rather with high densities of microelectrodes with improved spatial selectivity. To achieve higher resolution it has become clear that reducing the size of electrodes is required to enable higher electrode counts from the implant device. The limitations of interfacing electrodes including low charge injection limits, mechanical mismatch and foreign body response can be addressed through the use of organic electrode coatings which typically provide a softer, more roughened surface to enable both improved charge transfer and lower mechanical mismatch with neural tiss...
Neurons communicate via secretion of neurotransmitters which trigger electrical responses to modulat...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
This research investigates the use of conducting polymer coatings on platinum (Pt) electrodes for us...
Traditional neuronal interfaces utilize metallic electrodes which in recent years have reached a pla...
Microelectrodes for stimulating and/or recording signals have made possible direct electrical connec...
Microelectrodes for stimulating and/or recording signals have made possible direct electrical connec...
Neural electrodes are essential for nerve signal recording, neurostimulation, neuroprosthetics and n...
Neural prosthetic devices are artificial extensions to the body that restore or supplement function ...
Neurons communicate via secretion of neurotransmitters which trigger electrical responses to modulat...
Neurons communicate via secretion of neurotransmitters which trigger electrical responses to modulat...
A key limitation associated with conducting polymers (CP) for implantable electrodeapplications is t...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Active implantable neurological devices like deep brain stimulators have been used over the past few...
Neurons communicate via secretion of neurotransmitters which trigger electrical responses to modulat...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
This research investigates the use of conducting polymer coatings on platinum (Pt) electrodes for us...
Traditional neuronal interfaces utilize metallic electrodes which in recent years have reached a pla...
Microelectrodes for stimulating and/or recording signals have made possible direct electrical connec...
Microelectrodes for stimulating and/or recording signals have made possible direct electrical connec...
Neural electrodes are essential for nerve signal recording, neurostimulation, neuroprosthetics and n...
Neural prosthetic devices are artificial extensions to the body that restore or supplement function ...
Neurons communicate via secretion of neurotransmitters which trigger electrical responses to modulat...
Neurons communicate via secretion of neurotransmitters which trigger electrical responses to modulat...
A key limitation associated with conducting polymers (CP) for implantable electrodeapplications is t...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Active implantable neurological devices like deep brain stimulators have been used over the past few...
Neurons communicate via secretion of neurotransmitters which trigger electrical responses to modulat...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
This research investigates the use of conducting polymer coatings on platinum (Pt) electrodes for us...