Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Microelectrode, Intracellular, Electrophysiology, Neuroscience, Extracellular, and Microglia.
Significantly reduced inflammatory foreign-body-response to neuroimplants and improved recording performance in young compared to adult rats
Significant Sex Differences in the Efficacy of the CSF1R Inhibitor-PLX5622 on Rat Brain Microglia Elimination
Assessing the Feasibility of Developing in vivo Neuroprobes for Parallel Intracellular Recording and Stimulation: A Perspective
Inflammatory Foreign Body Response Induced by Neuro-Implants in Rat Cortices Depleted of Resident Microglia by a CSF1R Inhibitor and Its Implications
Ultrastructural Analysis of Neuroimplant-Parenchyma Interfaces Uncover Remarkable Neuroregeneration Along-With Barriers That Limit the Implant Electrophysiological Functions
Immunohistological and Ultrastructural Study of the Inflammatory Response to Perforated Polyimide Cortical Implants: Mechanisms Underlying Deterioration of Electrophysiological Recording Quality
Multisite Intracellular Recordings by MEA
Multisite Attenuated Intracellular Recordings by Extracellular Multielectrode Arrays, a Perspective
Multisite electrophysiological recordings by self-assembled loose-patch-like junctions between cultured hippocampal neurons and mushroom-shaped microelectrodes
On-chip, multisite extracellular and intracellular recordings from primary cultured skeletal myotubes
A feasibility study of multi-site,intracellular recordings from mammalian neurons by extracellular gold mushroom-shaped microelectrodes
Nanocrystalline diamond surfaces for adhesion and growth of primary neurons, conflicting results and rational explanation
Rescue of tau-induced synaptic transmission pathology by paclitaxel