Keyphrases
Revascularization
100%
Sheep
100%
Hibernating Myocardium
100%
Myocardial Hibernation
75%
Cardiac Hypertrophy
50%
Cardiomyocytes
50%
Stenosis
50%
Wall Thickness
50%
Myocardial Flow Reserve
50%
Percutaneous Transluminal Coronary Angioplasty
50%
Coronary Artery Stenosis
50%
Degenerative Phenomena
50%
Left Ventricular Function
25%
Glycogen
25%
Myocytes
25%
Subcellular Structure
25%
Connective Tissue
25%
Morphological Quantification
25%
Left Ventricular End Diastolic
25%
Viable Myocardium
25%
Left Ventricular Dilatation
25%
Left Ventricular Wall
25%
Global Function
25%
Ischemic Cardiomyopathy
25%
Myocardial Structure
25%
Sarcomere
25%
Myolysis
25%
Global Left
25%
2D Echocardiography
25%
Left Ventricular Dilation
25%
Myocardial Blood Flow
25%
Regional Function
25%
Multivessel
25%
Wall Segment
25%
Balloon Dilatation
25%
Reactive Fibrosis
25%
Regional Myocardial Blood Flow
25%
Fractional Area Change
25%
Coronary Reserve
25%
Colored Microspheres
25%
Left Ventricular Dimensions
25%
INIS
coronaries
100%
sheep
100%
myocardium
100%
walls
60%
reserves
60%
hibernation
60%
reduction
40%
arteries
40%
thickness
40%
blood flow
40%
hypertrophy
40%
data
20%
recovery
20%
microspheres
20%
cavities
20%
fibrosis
20%
layers
20%
ischemia
20%
dimensions
20%
accumulation
20%
glycogen
20%
balloons
20%
connective tissue
20%
Medicine and Dentistry
Cardiac Muscle Cell
100%
Myocardium
100%
Revascularization
100%
Myocardial Hibernation
75%
Transluminal Coronary Angioplasty
50%
Stenosis
50%
Coronary Artery Obstruction
50%
Heart Muscle Blood Flow
50%
Coronary Circulation
50%
Echocardiography
25%
Fibrosis
25%
Heart Left Ventricle Function
25%
Morphology
25%
Connective Tissue
25%
Balloon Dilatation
25%
Sarcomere
25%
Ischemic Cardiomyopathy
25%
Muscle Cell
25%
Microsphere
25%
Veterinary Science and Veterinary Medicine
Cardiac Muscle Cell
100%
Sheep
100%
Revascularization
100%
Angioplasty
50%
Myocyte
25%
Sarcomere
25%
Echocardiography
25%
Pharmacology, Toxicology and Pharmaceutical Science
Myocardial Hibernation
100%
Stenosis
66%
Coronary Artery Obstruction
66%
Fibrosis
33%
Ischemic Cardiomyopathy
33%
Microsphere
33%
Biochemistry, Genetics and Molecular Biology
Cardiac Muscle Cell
100%
Dilatation
50%
Coronary Artery Blood Flow
50%
Heart Muscle Blood Flow
50%
Morphology
25%
Heart Left Ventricle Function
25%
Microsphere
25%