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MR perfusion imaging in breast cancer
Riham H. El Khouli
, Katarzyna J. Macura
, David A. Bluemke
School of Medicine
Research output
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Chapter in Book/Report/Conference proceeding
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Chapter
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Keyphrases
Breast Cancer
100%
MR Perfusion Imaging
100%
Vascular Endothelial Growth Factor
66%
Metabolic Stressors
66%
Perfusion
33%
Tumor
33%
United States
33%
Lung Cancer
33%
Breast
33%
Malignant Tumor
33%
Malignant Lesions
33%
Angiogenesis
33%
Cause of Death
33%
Most Common Cause
33%
Living Cells
33%
Genetic mutation
33%
Proliferating Cells
33%
Oxygen Demand
33%
Capillary
33%
Bone Marrow
33%
Oncogene
33%
New Blood Vessel
33%
Circulating Endothelial Cells
33%
Peritumoral
33%
Biochemical Factors
33%
Vascular Wall
33%
Supply-leading
33%
Large Distances
33%
Suppressor Genes
33%
Feeding Vessels
33%
Common Cancers
33%
Cell mutation
33%
Immune-inflammatory Cells
33%
Branching Vessels
33%
Oxygen Diffusion
33%
Mechanical Pressure
33%
Nutrient Demand
33%
Simple Diffusion
33%
Medicine and Dentistry
Breast Cancer
100%
Scintigraphy
100%
Vasculotropin
66%
Neoplasm
33%
Malignant Neoplasm
33%
Cancer
33%
Inflammatory Cell
33%
Pathophysiology
33%
Angiogenesis
33%
Cell Proliferation
33%
Oncogene
33%
Gene Mutation
33%
Lung Cancer
33%
Capillary
33%
Suppressor Gene
33%
Volociximab
33%
Circulating Endothelial Cell
33%
Antidiabetic Agent
33%
Vascular Bundle
33%
Immunology and Microbiology
Perfusion
100%
Dioxygen
100%
Vasculotropin
66%
Gene Mutation
33%
Inflammatory Cell
33%
Cell Proliferation
33%
Blood Vessels
33%
Capillary
33%
Angiogenesis
33%
Volociximab
33%
Oxygen Diffusion
33%
Suppressor Gene
33%
Oncogene
33%
Lung
33%
Endothelial Cells
33%
Biochemistry, Genetics and Molecular Biology
Perfusion
100%
Vascular Endothelial Growth Factor
100%
Gene Mutation
50%
Angiogenesis
50%
Cell Proliferation
50%
Metabolic Pathway
50%
Suppressor Gene
50%
Oncogene
50%
Oxygen Diffusion
50%