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Perfluorocarbon nanoparticles: A theranostic technology for MR imaging
Gregory M. Lanza
, Shelton D. Caruthers
, Anne H. Schmieder
,
Dipanjan Pan
, Grace Hu
, Huiying Zhang
, Angana Senpan
, John S. Allen
, Todd Williams
, Michael J. Scott
, Samuel A. Wickline
Ken and Mary Alice Lindquist Department of Nuclear Engineering
Penn State Cancer Institute
Cancer Institute, Experimental Therapeutics
Huck Institutes of the Life Sciences
Research output
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Chapter in Book/Report/Conference proceeding
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Keyphrases
Magnetic Resonance Imaging
100%
Angiogenesis
100%
Plaque
100%
Theranostics
100%
Subintimal
66%
Plaque Vulnerability
66%
Molecular Imaging
33%
Inflammation
33%
Vulnerability
33%
Nanotechnology
33%
Bystander
33%
Blood Flow
33%
Inflammatory Cells
33%
Shear Force
33%
Anti-angiogenesis
33%
Plaque Formation
33%
Macrophage Activity
33%
Neovascularization
33%
Metabolically Active
33%
Neovascular
33%
Atherosclerotic Plaque
33%
Plaque Progression
33%
Adventitia
33%
Metalloproteinases
33%
Perfluorocarbon
33%
Elastase Activity
33%
Fibrous Cap
33%
Microvascular Architecture
33%
Plaque Rupture
33%
Intraplaque Hemorrhage
33%
Medicine and Dentistry
Magnetic Resonance Imaging
100%
Angiogenesis
100%
Fluorocarbon
100%
Nanoparticle
100%
Biological Marker
33%
Molecular Imaging
33%
Sequela
33%
Bleeding
33%
Macrophage
33%
Blood Flow
33%
Inflammatory Cell
33%
Adventitia
33%
Metalloproteinase
33%
Antiangiogenic Therapy
33%
Elastase
33%
Fibrous Cap
33%