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Hypothalamic gene expression underlying pre-hibernation satiety
C. Schwartz
,
Marshall E Hampton
, M. T. Andrews
Mathematics & Statistics
Research output
:
Contribution to journal
›
Article
›
peer-review
35
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Scopus citations
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Keyphrases
Satiety
100%
Ground Squirrel
100%
Hypothalamic Gene Expression
100%
Pre-hibernation
100%
Hypophagic
75%
Obesity
50%
Feeding Behavior
50%
Hibernation
50%
Food Consumption
50%
Food Intake Regulation
50%
Thirteen-lined Ground Squirrel
50%
Diabetes
25%
Signaling Pathway
25%
Activity Level
25%
Transcriptome
25%
Metabolic Disease
25%
Environmental Conditions
25%
Hypothalamus
25%
Differentially Expressed
25%
Illumina HiSeq 2000
25%
Serum Leptin
25%
Access to Food
25%
IRS2
25%
AdipoR2
25%
LepR
25%
Constant Darkness
25%
In(III)
25%
Ictidomys Tridecemlineatus
25%
Grant-free Access
25%
Neuroscience
Feeding Behavior
100%
Gene Expression
100%
Satiety
100%
Hypothalamus
50%
Transcriptome
50%
Leptin
50%
Immunology and Microbiology
Satiety
100%
Gene Expression
100%
Sciuridae
100%
Transcriptome
16%
Hypothalamus
16%
Leptin
16%
Biochemistry, Genetics and Molecular Biology
Satiety
100%
Gene Expression
100%
Sciuridae
100%
IRS2
16%
Leptin
16%
Transcriptome
16%
Food Science
Feeding Behavior
100%
Gene Expression
100%
Food Intake
50%
Leptin
50%
Veterinary Science and Veterinary Medicine
Squirrel
100%
Hypothalamus
16%
Leptin
16%
Diseases
16%