The use of platinum as stimulating microelectrodes for high-resolution and site-specific neural prostheses is challenging due to its limited interfacial properties, which are not adequate to elicit the appropriate neural response. In order to improve the performance of platinum for neural stimulation applications, the surface has to be modified to enhance its electrochemical and biological properties. In this research, the interfacial properties of electrochemically roughened platinum electrodes as well as the adsorption behaviour of perilymph proteins are investigated. The oxidation-reduction technique of roughening a platinum surface was systematically optimised using a central composite experimental design. The interfacial properties an...
A small Platinum (Pt) electrode (geometric area: -0.43 mm2) was treated in an electrochemical etchin...
Polypyrrole (PPy) and poly(3,4-ethylenedioxythiophene) (PEDOT) conducting polymers are being applied...
Neural electrodes are essential for nerve signal recording, neurostimulation, neuroprosthetics and n...
Devices called neural electrodes are generally used to record and / or stimulate neural activity whi...
Implantable microelectrodes have the potential to become part of neural prostheses to restore lost n...
The size of implantable electrodes for neuroprosthetic application is reduced to the order of microm...
The performance of implantable stimulating electrodes to restore sensory perceptioncan be enhanced b...
Micromachined neural prosthetic devices facilitate the functional stimulation of and recording from ...
The interface between micromachined neural microelectrodes and neural tissue plays an important role...
Objective. Neural stimulation is usually performed with fairly large platinum electrodes. Smaller el...
Nerve implanted prostheses are of great interest for the recovery of damaged neurological functions ...
Platinized Pt (platinum black) electrodes were employed as a base electrode for the immobilization o...
A key limitation associated with conducting polymers (CP) for implantable electrodeapplications is t...
grantor: University of TorontoThis thesis focused on the production of noble metal, surfac...
The electrochemistry of 50 mu m diameter Pt electrodes used for neural stimulation was studied in vi...
A small Platinum (Pt) electrode (geometric area: -0.43 mm2) was treated in an electrochemical etchin...
Polypyrrole (PPy) and poly(3,4-ethylenedioxythiophene) (PEDOT) conducting polymers are being applied...
Neural electrodes are essential for nerve signal recording, neurostimulation, neuroprosthetics and n...
Devices called neural electrodes are generally used to record and / or stimulate neural activity whi...
Implantable microelectrodes have the potential to become part of neural prostheses to restore lost n...
The size of implantable electrodes for neuroprosthetic application is reduced to the order of microm...
The performance of implantable stimulating electrodes to restore sensory perceptioncan be enhanced b...
Micromachined neural prosthetic devices facilitate the functional stimulation of and recording from ...
The interface between micromachined neural microelectrodes and neural tissue plays an important role...
Objective. Neural stimulation is usually performed with fairly large platinum electrodes. Smaller el...
Nerve implanted prostheses are of great interest for the recovery of damaged neurological functions ...
Platinized Pt (platinum black) electrodes were employed as a base electrode for the immobilization o...
A key limitation associated with conducting polymers (CP) for implantable electrodeapplications is t...
grantor: University of TorontoThis thesis focused on the production of noble metal, surfac...
The electrochemistry of 50 mu m diameter Pt electrodes used for neural stimulation was studied in vi...
A small Platinum (Pt) electrode (geometric area: -0.43 mm2) was treated in an electrochemical etchin...
Polypyrrole (PPy) and poly(3,4-ethylenedioxythiophene) (PEDOT) conducting polymers are being applied...
Neural electrodes are essential for nerve signal recording, neurostimulation, neuroprosthetics and n...