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Keyphrases
Guinea pig
100%
DNA Methylation (DNAm)
100%
NOS3
100%
Vascular Dysfunction
100%
Neonate
100%
Fetal Growth
100%
Fetal Growth Restriction
100%
Vascular Function
57%
Endothelial Cells
28%
Epigenetic Modification
28%
Aorta
28%
Endothelial Nitric Oxide Synthase (eNOS)
28%
Promoter Methylation
28%
Biomechanical Properties
14%
Quantitative PCR
14%
Oxidative Stress
14%
Stiffness
14%
Cardiovascular Disease
14%
Pyrosequencing
14%
Vascular Remodeling
14%
Function Properties
14%
Controlled Growth
14%
Carotid Artery
14%
Adult Subjects
14%
DNA Methylation Profiling
14%
Endothelial Dysfunction
14%
Femoral Artery
14%
Vessel Structure
14%
Wire Myography
14%
Arterial Remodeling
14%
Maternal Treatment
14%
Vascular Resistance
14%
Early Change
14%
Site-specific DNA Methylation
14%
Differential Methylation
14%
Fetal Development
14%
Methylation Pattern
14%
INIS
growth
100%
adults
100%
methylation
100%
dna
100%
neonates
100%
guinea pigs
100%
levels
37%
promoters
37%
comparative evaluations
25%
control
25%
in vivo
25%
messenger-rna
25%
aorta
25%
modifications
12%
data
12%
genes
12%
relaxation
12%
oxidation
12%
pregnancy
12%
wires
12%
stiffness
12%
cardiovascular diseases
12%
arteries
12%
vessels
12%
carotid arteries
12%
Medicine and Dentistry
Neonate
100%
DNA Methylation
100%
Fetus Growth
100%
Promoter Region
37%
Ex Vivo
25%
Endothelial Cell
25%
Messenger RNA
25%
Oxidative Stress
12%
Cardiovascular Disease
12%
Methylation
12%
Real-Time Polymerase Chain Reaction
12%
Endothelial Dysfunction
12%
Myography
12%
Carotid Artery
12%
Fetus Development
12%
Pyrosequencing
12%
Epigenetic Modification
12%
Vascular Remodeling
12%
Vascular Resistance
12%
Maternal Treatment
12%
Immunology and Microbiology
DNA Methylation
100%
Fetus Growth
100%
Guinea Pig
100%
Promoter Region
37%
Endothelial Cells
25%
Real-Time Polymerase Chain Reaction
12%
Pyrosequencing
12%
Rigidity
12%
Methylation
12%
Oxidative Stress
12%
Cardiovascular System
12%
Fetus Development
12%
Femoral Artery
12%
Carotid Artery
12%
Vascular Resistance
12%
Artery
12%
Epigenetic Modification
12%
Biochemistry, Genetics and Molecular Biology
DNA Methylation
100%
Guinea Pig
100%
Fetus Growth
100%
Promoter Region
37%
Messenger RNA
25%
Real-Time Polymerase Chain Reaction
12%
Oxidative Stress
12%
Rigidity
12%
Epigenetic Modification
12%
Methylation Pattern
12%
Pyrosequencing
12%
Endothelial NOS
12%
Fetus Development
12%
Vascular Resistance
12%