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Fatty acid metabolism, the central nervous system, and feeding.
Gabriele V. Ronnett
, Amy M. Kleman
,
Eun Kyoung Kim
, Leslie E. Landree
, Yajun Tu
Department of Brain Sciences
Johns Hopkins University
Research output
:
Contribution to journal
›
Review article
›
peer-review
64
Scopus citations
Overview
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Neuroscience
Fatty Acids
100%
Feeding Behavior
100%
Central Nervous System
100%
Fatty Acid Synthase
50%
Carnitine Palmitoyltransferase I
33%
In Vivo
16%
Peptide
16%
Kinase
16%
Brain
16%
In Vitro
16%
Neuropeptide
16%
Gene Expression
16%
Protein Kinases
16%
Protein Kinase A
16%
Mitochondrion
16%
Enzymes
16%
Adenosine Monophosphate
16%
Energy Balance
16%
Biochemistry, Genetics and Molecular Biology
Fatty Acid Metabolism
100%
Energy
50%
Fatty Acid Synthase
50%
Fatty Acid
50%
Weight
33%
Peptide
16%
Kinase
16%
Regulatory Mechanism
16%
Gene Expression
16%
Alpha Oxidation
16%
Electric Potential
16%
Synthesis
16%
Small Molecule
16%
Lysozyme
16%
Neuropeptide
16%
Mitochondrion
16%
Degradation
16%
Protein Kinase
16%
Modulation
16%
In Vivo Study
16%
Beta Oxidation
16%