Area of research
Cellular and Molecular Neuroscience · Molecular Biology
Research interest
Research interests include Neurotransmitter Receptor Influence on Behavior, Receptor Mechanisms and Signaling, Stress Responses and Cortisol, and Neuroscience and Neuropharmacology Research.
Dopamine D1–D2 signalling in hippocampus arbitrates approach and avoidance
Design and validation of novel brain-penetrant HCN channel inhibitors to ameliorate social stress-induced susceptible phenotype
Stress History Modulates Corticotropin-Releasing Factor Neurons to Establish Resilience
Male and female behavioral variability and morphine response in C57BL/6J, DBA/2J, and their BXD progeny following chronic stress exposure
Male and female variability in response to chronic stress and morphine in C57BL/6J, DBA/2J, and their BXD progeny
HCN channel inhibitor induces ketamine-like rapid and sustained antidepressant effects in chronic social defeat stress model
Dopaminoceptive D1 and D2 neurons in ventral hippocampus arbitrate approach and avoidance in anxiety
Mesolimbic Neural Response Dynamics Predict Future Individual Alcohol Drinking in Mice
Midbrain projection to the basolateral amygdala encodes anxiety-like but not depression-like behaviors
Stress History Modulates CRF Neurons to Establish Resilience
Different adaptations of dopamine release in Nucleus Accumbens shell and core of individual alcohol drinking groups of mice
Small-Conductance, Calcium-Activated Potassium Channels: A Key Circuit Determinant for Stress-Induced Amygdala Dysfunction
α1- and β3-Adrenergic Receptor–Mediated Mesolimbic Homeostatic Plasticity Confers Resilience to Social Stress in Susceptible Mice
Nicotine and alcohol: the role of midbrain dopaminergic neurons in drug reinforcement
Author Correction: Midbrain circuit regulation of individual alcohol drinking behaviors in mice
Dopaminergic dynamics underlying sex-specific cocaine reward
Midbrain circuit regulation of individual alcohol drinking behaviors in mice
Nicotinic receptors mediate stress-nicotine detrimental interplay via dopamine cells’ activity