Keyphrases
Aplysia Californica
100%
Invertebrates
100%
Urotensin II
100%
Aplysia
53%
Vertebrates
30%
Central Nervous System
23%
Neuropeptides
23%
Mass Spectrometry
7%
Immunoreactivity
7%
Molecular Mechanism
7%
Immunohistochemistry
7%
Neuropeptide Precursor
7%
Invertebrate Model
7%
Molecular Pathways
7%
Homeostasis
7%
Bioactivity
7%
Prohormone
7%
Tandem Mass Spectrometry
7%
Protein Post-translational Modification
7%
Signaling Molecules
7%
Sensory Neurons
7%
Isolated Neurons
7%
Marine Molluscs
7%
Peptide Extracts
7%
Metazoan
7%
Like Peptide
7%
Feeding Behavior
7%
Hormonal Function
7%
Satiety
7%
Central Effects
7%
In Situ Hybridization
7%
Protein Precursors
7%
Electrophysiological Analysis
7%
Ancient Genes
7%
Representational Similarity Analysis
7%
Immunology and Microbiology
Aplysia Californica
100%
Aplysia
100%
Central Nervous System
42%
Precursor
28%
Immunoreactivity
14%
Homeostasis
14%
Biological Activity
14%
Protein Processing
14%
Mollusc
14%
Lineages
14%
Satiety
14%
Tandem Mass Spectrometry
14%
Extract
14%
in Situ Hybridization
14%
Animal
14%
Biochemistry, Genetics and Molecular Biology
Aplysia Californica
100%
Urotensin-II
100%
Aplysia
53%
Neuropeptide
30%
Messenger RNA
15%
Precursor
7%
Immunoreactivity
7%
Homeostasis
7%
Posttranslational Modification
7%
Mass Spectrometry
7%
Biological Activity
7%
Mollusc
7%
Tandem Mass Spectrometry
7%
Extract
7%
Animal
7%
in Situ Hybridization
7%
Satiety
7%
Invertebrates Animal Model
7%
Sensory Neuron
7%
Protein Precursor
7%
Representational Difference Analysis
7%