Area of research
Sensory Systems · Cognitive Neuroscience
Research interest
Research focused on Electrode and Electrical impedance, with related work in Iridium, Conductive polymer, Doping. Notable publications include 'Conducting polymer coated neural recording electrodes', 'Correlation of the impedance and effective electrode area of doped PEDOT modified electrodes for brain–machine interfaces', and 'Optical and Electrochemical Methods for Determining the Effective Area and Charge Density of Conducting Polymer Modified Electrodes for Neural Stimulation'.
Predicting neural recording performance of implantable electrodes
Effective Area and Charge Density of Iridium Oxide Neural Electrodes
Correlation of Impedance and Effective Electrode Area of Iridium Oxide Neural Electrodes
Effective Area and Charge Density of Chondroitin Sulphate Doped PEDOT Modified Electrodes
Effective area and charge density of dextran sulphate doped PEDOT modified electrodes
Correlation of Impedance and Effective Electrode Area of Dextran Sulfate Doped PEDOT Modified Electrodes
Correlation of impedance and effective electrode area of chondroitin sulphate doped PEDOT modified electrodes
Correlation of the impedance and effective electrode area of doped PEDOT modified electrodes for brain–machine interfaces
Optical and Electrochemical Methods for Determining the Effective Area and Charge Density of Conducting Polymer Modified Electrodes for Neural Stimulation
Conducting polymer coated neural recording electrodes