Area of research
Sensory Systems · Nutrition and Dietetics
Research interest
Research focused on Neuroscience and Olfactory bulb, with related work in Sensory system, Odor, Olfactory system. Notable publications include 'Hyperlipidemic Diet Causes Loss of Olfactory Sensory Neurons, Reduces Olfactory Discrimination, and Disrupts Odor-Reversal Learning', 'The incretin hormone glucagon‐like peptide 1 increases mitral cell excitability by decreasing conductance of a voltage‐dependent potassium channel', and 'Olfactory ability and object memory in three mouse models of varying body weight, metabolic hormones, and adiposity'.
A unique olfactory bulb microcircuit driven by neurons expressing the precursor to glucagon-like peptide 1
Elevated Anxiety and Impaired Attention in Super-Smeller, Kv1.3 Knockout Mice
Loss of odor-induced c-Fos expression of juxtaglomerular activity following maintenance of mice on fatty diets
Differential serotonergic modulation across the main and accessory olfactory bulbs
Neuromodulation in Chemosensory Pathways
The incretin hormone glucagon‐like peptide 1 increases mitral cell excitability by decreasing conductance of a voltage‐dependent potassium channel
Hyperlipidemic Diet Causes Loss of Olfactory Sensory Neurons, Reduces Olfactory Discrimination, and Disrupts Odor-Reversal Learning
Glucose sensitivity of mouse olfactory bulb neurons is conveyed by a voltage‐gated potassium channel
Olfactory ability and object memory in three mouse models of varying body weight, metabolic hormones, and adiposity