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Nitric Oxide, Odour Processing and Plasticity
Alan Gelperin
Princeton Neuroscience Institute
Research output
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peer-review
11
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Keyphrases
Nitric Oxide
100%
Odor Processing
100%
Procerebral Lobe
50%
LiMAx
50%
Field Potential Oscillation
50%
Oscillation
33%
Circuitry
33%
Design Features
33%
Olfactory System
33%
Odor Learning
33%
Intercellular Communication
16%
Generalist
16%
Oscillation Frequency
16%
Voltage Change
16%
Sensory Response
16%
Computational Analysis
16%
Oxide-based
16%
Sensory Input
16%
Local Region
16%
Repellent
16%
Coherent Oscillations
16%
Common Elements
16%
Depolarization
16%
Limax Maximus
16%
Olfactory Network
16%
Optical Recording
16%
Patch-clamp Recording
16%
Propagation Mode
16%
Mode Switching
16%
Burst Size
16%
Learnability
16%
Cerebral Ganglion
16%
Odor Identification
16%
Messenger
16%
Circuit Dynamics
16%
Near-UV
16%
Mode of Activity
16%
Cell Analysis
16%
Nitric Oxide Synthase Inhibitors
16%
Olfactory Receptor
16%
Odor Stimulation
16%
Perforated Patch
16%
Nystatin
16%
Terrestrial Gastropods
16%
Distal Pole
16%
Local Interneurons
16%
Field Potential Recording
16%
Odor Sensitivity
16%
Nitric Oxide Donors
16%
Wave Propagating
16%
Nitric Oxide Levels
16%
UV-Flash
16%
Neuroscience
Nitric Oxide
100%
Olfactory System
25%
Cell Communication
12%
Nitric Oxide Synthase
12%
Ganglion
12%
Optical Recording
12%
Olfactory Receptor
12%
Nystatin
12%
Interneuron
12%
Food Science
Nitric Oxide Synthase
100%
Chemical Engineering
Nitric Oxide
100%
Agricultural and Biological Sciences
Nystatin
33%
Interneuron
33%
Nitric Oxide Synthase
33%