This profile is built from public research funding records (CIHR, NSERC and SSHRC). We have not imported them from a University of British Columbia directory, so their publications, courses and email address may be missing. Find their university profile.
Latest funding
- $810,900
Dissecting the gustatory and mechanosensory basis of feeding and egg-laying behaviour in disease-vectoring mosquitoes
CIHR · 2023 · Co-investigator
- $604,350
The cellular and molecular mechanisms of lactic acid taste in flies and disease-vectoring mosquitoes.
CIHR · 2021 · Nominated PI
- $626,891
Dissecting the neural mechanisms underlying taste processing and modulation.
CIHR · 2016 · Nominated PI
Dissecting the gustatory and mechanosensory basis of feeding and egg-laying behaviour in disease-vectoring mosquitoes
Principal investigators: Matthews, Benjamin J
Keywords: Behaviour; Disease Vectors; Drosophila; Feeding; Mosquito; Neural Circuits; Reproduction; Sensory Receptors; Taste; Touch
The cellular and molecular mechanisms of lactic acid taste in flies and disease-vectoring mosquitoes.
Principal investigators: Gordon, Michael D
Keywords: Behaviour; Calcium Imaging; Disease Vectors; Drosophila; Feeding; Mosquitoes; Neural Circuits; Receptors; Sour; Taste
Dissecting the neural mechanisms underlying taste processing and modulation.
Principal investigators: Gordon, Michael D
Keywords: Drosophila; Feeding; Model Systems; Modulation; Mosquitoes; Neural Circuits; Neuroscience; Sensory Integration; Sensory Processing; Taste
Taste-independent regulation of nutrient intake in Drosophila.
Principal investigators: Gordon, Michael
Taste-independent regulation of nutrient intake in Drosophila.
Principal investigators: Gordon, Michael
Dissecting synaptic mechanisms in sensory processing, motivation, and development.
Principal investigators: Gordon, Michael D
Keywords: Behaviour; Drosophila; Feeding; Hunger; Neural Circuits; Neurogenetics; Sensory Processing; Synapse Formation; Synaptic Modulation; Taste
Genetic dissection of taste circuits and feeding behaviour in Drosophila
Principal investigators: Gordon, Michael D
Keywords: Behavioural Genetics; Chemosensation; Drosophila; Imaging; Ingestive Behaviour; Model System; Neural Circuits; Neuroanatomy; Neurophysiology; Taste/Gustation
Functional metamorphosis of a Drosophila taste circuit motor neuron
Principal investigators: Gordon, Michael
Genetic dissection of taste circuits and feeding behaviour in Drosophila
Principal investigators: Gordon, Michael D
Keywords: Behavioural Genetics; Chemosensation; Drosophila; Imaging; Ingestive Behaviour; Model System; Neural Circuits; Neuroanatomy; Neurophysiology; Taste/Gustation
Genetic dissection of taste circuits and feeding behaviour in Drosophila
Principal investigators: Gordon, Michael D
Keywords: Behavioural Genetics; Chemosensation; Drosophila; Imaging; Ingestive Behaviour; Model System; Neural Circuits; Neuroanatomy; Neurophysiology; Taste/Gustation
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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