Area of research
Cellular and Molecular Neuroscience · Polymers and Plastics
Research interest
Research interests include Neuroscience and Neural Engineering, Conducting polymers and applications, Electrochemical sensors and biosensors, and EEG and Brain-Computer Interfaces.
In vivo microelectrode arrays for neuroscience
Effects of iron accumulation and its chelation on oxidative stress in intracortical implants
Monolithic three-dimensional neural probes from deterministic rolling of soft electronics
Self-supervised Traffic Accident Detection by Motion-Conditioned Diffusive Frame Prediction
Biodegradable nanofiber-based piezoelectric transducer
In vivo imaging of neuronal calcium during electrode implantation: Spatial and temporal mapping of damage and recovery
Melatonin improves quality and longevity of chronic neural recording
Meningeal inflammatory response and fibrous tissue remodeling around intracortical implants: An in vivo two-photon imaging study
Ultrasoft microwire neural electrodes improve chronic tissue integration
Multi-scale, multi-modal analysis uncovers complex relationship at the brain tissue-implant neural interface: new emphasis on the biological interface
Enhanced dopamine detection sensitivity by PEDOT/graphene oxide coating on in vivo carbon fiber electrodes
Neuroadhesive L1 coating attenuates acute microglial attachment to neural electrodes as revealed by live two-photon microscopy
Dexamethasone retrodialysis attenuates microglial response to implanted probes in vivo
Histological evaluation of a chronically-implanted electrocorticographic electrode grid in a non-human primate
Two-photon imaging of chronically implanted neural electrodes: Sealing methods and new insights
Poly(3,4-ethylenedioxythiophene)-ionic liquid coating improves neural recording and stimulation functionality of MEAs
Brain Tissue Responses to Neural Implants Impact Signal Sensitivity and Intervention Strategies