Area of research
Physiology · Cellular and Molecular Neuroscience
Research interest
Research interests include Neuroscience, Hippocampal formation, Hippocampus, Optogenetics, Internal medicine, and CREB.
Targeting vulnerable microcircuits in the ventral hippocampus of male transgenic mice to rescue Alzheimer-like social memory loss
Alzheimer‐like tau accumulation in dentate gyrus mossy cells induces spatial cognitive deficits by disrupting multiple memory‐related signaling and inhibiting local neural circuit
Medial septum tau accumulation induces spatial memory deficit via disrupting medial septum–hippocampus cholinergic pathway
Targeted Reducing of Tauopathy Alleviates Epileptic Seizures and Spatial Memory Impairment in an Optogenetically Inducible Mouse Model of Epilepsy
Periphery Biomarkers for Objective Diagnosis of Cognitive Decline in Type 2 Diabetes Patients
Posterior basolateral amygdala to ventral hippocampal CA1 drives approach behaviour to exert an anxiolytic effect
Elevation of pS262-Tau and Demethylated PP2A in Retina Occurs Earlier than in Hippocampus During Hyperhomocysteinemia
Tau accumulation induces synaptic impairment and memory deficit by calcineurin-mediated inactivation of nuclear CaMKIV/CREB signaling
Accumulation of human full-length tau induces degradation of nicotinic acetylcholine receptor α4 via activating calpain-2