Area of research
Endocrine and Autonomic Systems · Cognitive Neuroscience
Research interest
Research interests include Regulation of Appetite and Obesity, Sleep and Wakefulness Research, Biochemical Analysis and Sensing Techniques, and Acupuncture Treatment Research Studies.
Gut-brain cholinergic signaling mediates the antiseizure effects of Bacteroides fragilis
Multimodal and Data-Driven Approaches in Acupuncture Research: Methods, Applications, and Challenges
Electroacupuncture Attenuates High‐Fat Diet‐Exacerbated Alzheimer's Pathology by Enhancing <scp>TFEB</scp>/<scp>TFE3</scp>‐Mediated Autophagic Clearance of Tau and <scp>NLRP3</scp> Inflammasome in <scp>3xTg</scp> Mice
Obesity causes selective and long-lasting desensitization of AgRP neurons to dietary fat
Soma-Targeted Imaging of Neural Circuits by Ribosome Tethering
Genetic Identification of Vagal Sensory Neurons That Control Feeding
A gut-to-brain signal of fluid osmolarity controls thirst satiation
Sustained NPY signaling enables AgRP neurons to drive feeding
Dynamics of Gut-Brain Communication Underlying Hunger
The Forebrain Thirst Circuit Drives Drinking through Negative Reinforcement
Thirst neurons anticipate the homeostatic consequences of eating and drinking
Hunger neurons drive feeding through a sustained, positive reinforcement signal
Making sense of the sensory regulation of hunger neurons
Sensory Detection of Food Rapidly Modulates Arcuate Feeding Circuits