Area of research
Cellular and Molecular Neuroscience · Ecology, Evolution, Behavior and Systematics
Research interest
Research interests include Biology, Anopheles stephensi, Antennal lobe, Neuroscience, Ecology, and Malaria.
Regulation of diel locomotor activity and retinal responses of Anopheles stephensi by ingested histamine and serotonin is temperature- and infection-dependent
Ingested histamine and serotonin interact to alter Anopheles stephensi feeding and flight behavior and infection with Plasmodium parasites
Anopheles stephensi Feeding, Flight Behavior, and Infection With Malaria Parasites are Altered by Ingestion of Serotonin
Human attractive cues and mosquito host-seeking behavior
Fruit odorants mediate co-specialization in a multispecies plant–animal mutualism
Histamine Ingestion by Anopheles stephensi Alters Important Vector Transmission Behaviors and Infection Success with Diverse Plasmodium Species
A Fruitful Endeavor: Scent Cues and Echolocation Behavior Used by <i>Carollia castanea</i> to Find Fruit
The olfactory basis of orchid pollination by mosquitoes
Visual-Olfactory Integration in the Human Disease Vector Mosquito Aedes aegypti
Computational and experimental insights into the chemosensory navigation of <i>Aedes aegypti</i> mosquito larvae
Flower discrimination by pollinators in a dynamic chemical environment
Neural Basis of a Pollinator’s Buffet: Olfactory Specialization and Learning in <i>Manduca sexta</i>
Species-Specific Effects of Herbivory on the Oviposition Behavior of the Moth Manduca sexta
Olfactory modulation by dopamine in the context of aversive learning