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We have previously developed a ligand targeted ultrasonic contrast system that is a lipid-encapsulated, liquid-perfluorocarbon emulsion.
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The agent is a biotinylated, lipid-coated, perfluorocarbon emulsion that has low inherent echogenicity unless bound to a surface or itself.
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Experiments in the 1960s showed that mice and cats submerged in perfluorocarbon liquids could survive for days breathing the oxygenated fluid.
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Perfluorocarbons are the environment's new public enemy number one.
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Herein, we describe how the unique properties of perfluorocarbons have been employed to understand and manipulate biological systems.
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Collectively, the simple synthesis and modular nature of the semifluorinated iodo-ene polymers will enable the convergence of perfluorocarbons and advanced materials.
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In this model, the acoustic reflectivity of the sample increases for perfluorocarbons with smaller velocities of longitudinal sound or lower densities.
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Perfluorocarbons, saturated carbon chains in which all the hydrogen atoms are replaced with fluorine, form a separate phase from both organic and aqueous solutions.
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In this study, we measure and report the velocity of longitudinal sound for 20 perfluorocarbons using a broadband phase spectroscopic approach for estimating phase velocities.
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A class of chemicals known as perfluorocarbons (PFCs) can dissolve high concentrations of oxygen and carbon dioxide, and are liquid at much more comfortable temperatures.