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Keyphrases
Angiotensin II (Ang II)
100%
Diastolic Dysfunction
100%
Fatty Acid Oxidation
100%
Angiotensin II Infusion
100%
Myocardial Fatty Acid Oxidation
100%
Acetyl-CoA Carboxylase 2
57%
Oxidative Stress
28%
Attenuation
28%
Flox
28%
Germ Cells
14%
Mouse Model
14%
Fibrosis
14%
Mitochondrial Function
14%
Heart Failure Patients
14%
Therapeutic Strategies
14%
Adult Mice
14%
Cardiac Fibrosis
14%
Hypertrophy
14%
Cardiac Hypertrophy
14%
Diastolic Function
14%
Preserved Ejection Fraction
14%
Hypertensive Patients
14%
Pressure Overload
14%
Osmotic Minipump
14%
Diabetic Patients
14%
Glycolysis
14%
Anaplerosis
14%
Metabolic Therapy
14%
Respiratory Chain Complex Activity
14%
Adult Heart
14%
Myocardial Metabolism
14%
Mitochondrial Fatty Acid Oxidation
14%
Systolic Dysfunction
14%
Adult Mouse Heart
14%
Mitochondrial Respiratory Chain
14%
Tamoxifen Therapy
14%
MerCreMer
14%
INIS
mice
100%
fatty acids
100%
oxidation
100%
infusion
100%
preservation
100%
angiotensin
100%
iko
45%
carboxylase
36%
mitochondria
27%
adults
27%
patients
18%
control
18%
comparative evaluations
18%
fibrosis
18%
maintenance
18%
attenuation
18%
hypertrophy
18%
data
9%
interventions
9%
metabolism
9%
proteins
9%
tamoxifen
9%
hypothesis
9%
heart failure
9%
magnesium 20
9%
pumps
9%
glycolysis
9%
Medicine and Dentistry
Fatty Acid Oxidation
100%
Diastolic Dysfunction
100%
Infusion
100%
Angiotensin II
100%
Acetyl-CoA
44%
Carboxylase
44%
Oxidative Stress
22%
Norfloxacin
22%
Systolic Dysfunction
11%
Fibrosis
11%
Diastolic Function
11%
Ventricular Hypertrophy
11%
Ejection Fraction
11%
Congestive Heart Failure
11%
Heart Muscle Metabolism
11%
E/A Ratio
11%
Cardiac Fibrosis
11%
Tamoxifen
11%
Germ Cell
11%
Pharmacology, Toxicology and Pharmaceutical Science
Fatty Acid
100%
Diastolic Dysfunction
100%
Angiotensin II
100%
Acetyl-CoA
44%
Carboxylase
44%
Norfloxacin
22%
Systolic Dysfunction
11%
Mouse Model
11%
Fibrosis
11%
Congestive Heart Failure
11%
Heart Ventricle Hypertrophy
11%
Heart Muscle Fibrosis
11%
Tamoxifen
11%
Biochemistry, Genetics and Molecular Biology
Beta Oxidation
100%
Angiotensin
100%
Acetyl-CoA Carboxylase
44%
Oxidative Stress
22%
Mouse Model
11%
Heart Ejection Fraction
11%
Anaplerosis
11%
Germline
11%
Germ Cell
11%
Heart Muscle Metabolism
11%
Mitochondrial-Targeting
11%