Faculty profile
James Nagy
Back to facultyThis profile is built from public research funding records (CIHR, NSERC and SSHRC). We have not imported them from a University of Manitoba directory, so their publications, courses and email address may be missing. Find their university profile.
Research
Latest funding
- $898,876
Control of muscle force generation by electrically coupled cholinergic spinal interneurons governing motoneuron excitability
CIHR · 2024 · Nominated PI
- $742,050
Structural composition and regulation of electrical synapses in the CNS
CIHR · 2021 · Nominated PI
- $216,000
Structural organization and functional roles of electrical synapses formed by Cx36-containing gap junctions in neural systems
NSERC · 2020 · Principal investigator
Control of muscle force generation by electrically coupled cholinergic spinal interneurons governing motoneuron excitability
Principal investigators: Nagy, James I
Keywords: Cholinergic V0c Neurons; Connexin36; Electrical Synaptic Transmission; Electrically Coupled Networks; Gap Junctions; Motoneuron Electrophysiology; Motoneuron Excitability; Muscle Force Generation; Slow And Fast Motoneurons; Spinal Motor Systems
Structural composition and regulation of electrical synapses in the CNS
Principal investigators: Nagy, James I
Keywords: Cell Culture; Confocal Microscope Imaging; Electrical Coupling; Electrical Synapse Molecular Structure; Electrical Synapse Plasticity; Electrical Synapses In The Central Nervous System; Gap Junction-Adherens Junction Complex; Intracellular Signalling; Neuronal Gap Junctions; Regulation Of Electrical Synaptic Transmission
Structural organization and functional roles of electrical synapses formed by Cx36-containing gap junctions in neural systems
Principal investigators: Nagy, James
Structural composition and regulation of electrical synapses in the CNS
Principal investigators: Nagy, James I
Keywords: Adherens Junctions; Brain; Cell Signalling; Connexins; Electrical Coupling; Electrical Synapses; Gap Junctions; Neurons; Synaptic Transmission; Ultrastructure
Electrical synapses formed by connexin45 in mammalian CNS
Principal investigators: Nagy, James I; Jackson, Michael F
Keywords: Brain; Connexins; Electrical Coupling; Electrical Synapses; Electrophysiology; Gap Junctions; Hippocampus; Pyramidal Cells; Synaptic Transmission; Ultrastructure And Morphology
Functional roles of electrical synapses formed by neuronal gap junctions
Principal investigators: Nagy, James
Canadian Stroke Network (2006 Renewal Competition)
Principal investigators: Hakim, Antoine
Structural composition and regulation of neuronal gap junctions in the CNS
Principal investigators: Nagy, James I
Keywords: Cell Signalling; Connexins; Electrical Synapses; Gap Junctions; Neurons; Proteomics
Canadian Stroke Network (2006 Renewal Competition)
Principal investigators: Hakim, Antoine
Regulation of neuronal gap junctions turnover by LNX-mediated ubiquitination of the neuronal gap junction protein connexin36
Principal investigators: Nagy, James
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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