Area of research
Electrical and Electronic Engineering · Biomedical Engineering
Research interest
Research interests include Nanowire Synthesis and Applications, Advancements in Semiconductor Devices and Circuit Design, Neuroscience and Neural Engineering, and Semiconductor materials and devices.
A 2.5–20 kS/s In-Pixel Direct Digitization ECoG Front End With Submillisecond Stimulation Artifact Recovery
A Scalable Fishbone Nanowire Array (FINE) for 3D Quasi-Intracellular Recording in Intact Brains.
Low-Power Fully Integrated 256-Channel Nanowire Electrode-on-Chip Neural Interface for Intracellular Electrophysiology.
The Conformal, High‐Density SpineWrap Microelectrode Array for Focal Stimulation and Selective Muscle Recruitment
A TDMA Neural Recording SoC With IIR-RLS Adaptive Filters for 83.4 dB Artifact Suppression Across 256 Channels
Flexible, scalable, high channel count stereo-electrode for recording in the human brain
Flexible, scalable, high channel count stereo-electrode for recording in the human brain.
Conductive block copolymer elastomers and psychophysical thresholding for accurate haptic effects
Conductive block copolymer elastomers and psychophysical thresholding for accurate haptic effects.
A 0.00179 mm<sup>2</sup>/Ch Chopper-Stabilized TDMA Neural Recording System With Dynamic EOV Cancellation and Predictive Mixed-Signal Impedance Boosting
An electroencephalogram microdisplay to visualize neuronal activity on the brain surface.
Electrochemical and electrophysiological considerations for clinical high channel count neural interfaces.
Freestanding High-Power GaN Multi-Fin Camel Diode Varactors for Wideband Telecom Tunable Filters
A Comprehensive Large Signal, Small Signal, and Noise Model for IGZO Thin Film Transistor Circuits.
Human brain mapping with multithousand-channel PtNRGrids resolves spatiotemporal dynamics
Human brain mapping with multithousand-channel PtNRGrids resolves spatiotemporal dynamics.
Scalable Thousand Channel Penetrating Microneedle Arrays on Flex for Multimodal and Large Area Coverage BrainMachine Interfaces
Scalable Thousand Channel Penetrating Microneedle Arrays on Flex for Multimodal and Large Area Coverage BrainMachine Interfaces.
Ultra-Sharp Nanowire Arrays Natively Permeate, Record, and Stimulate Intracellular Activity in Neuronal and Cardiac Networks.
Constructing 2D maps of human spinal cord activity and isolating the functional midline with high-density microelectrode arrays.
Flexible, Scalable, High Channel Count Stereo-Electrode for Recording in the Human Brain
Ultra‐Sharp Nanowire Arrays Natively Permeate, Record, and Stimulate Intracellular Activity in Neuronal and Cardiac Networks
Microscale Physiological Events on the Human Cortical Surface
Microscale Physiological Events on the Human Cortical Surface.
Microscale dynamics of electrophysiological markers of epilepsy
Electrochemical safety limits for clinical stimulation investigated using depth and strip electrodes in the pig brain.
Considerations and recent advances in nanoscale interfaces with neuronal and cardiac networks.
An Analytical Model for Dual Gate Piezoelectrically Sensitive ZnO Thin Film Transistors
Strain engineering and epitaxial stabilization of halide perovskites
A fabrication process for flexible single-crystal perovskite devices
Force Sensing Surgical Forceps Using Novel Piezoelectric TFT Array for Robotic Surgery
MsRI-EW: Workshop for Clinical Translation of Implantable Devices. To be Held Virtually, August 10-12, 2020.
SNM: Scalable Nanomanufacturing of Fab Compatible High-Density Nanowire Arrays for High-Throughput Drug Screening
Monolithically Integrated High-Power GaN Devices and Si CMOS Circuits for High Frequency and High Power Converter
EAGER: Exploiting Superior Electrochemical Characteristics of Scaled PEDOT:PSS Microelectrode Arrays for High Fidelity Electrocorticography
In-situ Transmission Electron Microscopy Studies of Metal Contact with InGaAs Nanochannels: Correlating Interface Reactions with Properties
I-Corps: Dimensional touch: pressure-sensitive touchscreens for mobile applications
CAREER: High Density Bio-Compatible Electro-Fluidic Neural Interfaces for Mapping the Brain
3-D Nanowire Heterostructures from Earth Abundant Materials by Low-cost Fabrication Process for High-efficiency Photoelectrochemical Hydrogen Generation