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Surface Graft Microarchitectures for Biomedical Applications.- 4 R. Advincula: Polymer Brushes by Anionic and Cationic Surface Initiated;
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and contemporary advances in the design and modification of dental implants to enhance osseointegration and biocompatibility. The book begins;
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In current materials R&D, high priority is given to surface modification techniques to achieve improved surface properties for specific;
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many applications, including the plasma polymerization technique, organic surface functionalization by initiated chemical vapor deposition;
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biocompatibility and biodegradability, magnesium based degradable implants provide a viable option for the permanent metallic implants. This volume focuses;
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surface polymerization. Although solution polymerization has been broadly utilized for the preparation of polymeric materials, the book shows;
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holds. Coverage reviews issues such as intraocular lens implants, biocompatibility of materials, retinal implants, testing models, and software;
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The Role of Surface Modification on Bacterial Adhesion of Bio-implant Materials: Machining, Characterization, and Applications, explores;
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The Role of Surface Modification on Bacterial Adhesion of Bio-implant Materials: Machining, Characterization, and Applications, explores;
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-peptides, polydrugs and prodrugs, controlled radical polymerization, self-assembly, polycondensates, and polymers for surface modification;
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Part Two explores biosynthetic polymer coatings and surface modification. Subsequent sections discuss biosynthetic polymers for tissue;
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'/controlled polymerization and some of their combinations are covered. Polymers with different topologies such as block and graft copolymers;
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modification of the surface for active targeting. They can respond to stimuli which results in the controlled release of drug and targeting of the site.;
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modification of the surface for active targeting. They can respond to stimuli which results in the controlled release of drug and targeting of the site.;
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NONTHERMAL PLASMAS FOR MATERIALS PROCESSING This unique book covers the physical and chemical aspects of plasma chemistry with polymers and;
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: retinoblastoma, melanoma, graft vs. host disease, squamous cell neoplasia, intraocular lymphoma, coats disease, and choroidal hemangioma. Each chapter;
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implant is a monofocal spherical hydrophilic intraocular lens comprised of a 5mm bi-convex optic with two elliptical plane haptics. Bag-in-the;
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and bone graft, design and surface modification, biological interaction and biocompatibility of modern dental implants and bone graft, and new;
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applications for polymeric materials synthesized by anionic polymerization have been proposed. These remarkable developments have taken place in the;
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, block and graft copolymers, and polymer composites. Analyzes living/controlled radical polymerization, one of the latest developments in the;
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the key to developing new functionality for nanoparticles. These methods make it possible to tailor the size, chemical composition, or;
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of vinyl monomers; plant cell wall polymers; block and graft copolymerization by living/controlled polymerization; emulsion polymerization;
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This volume considers the most common materials used in medical devices. State-of-the-art reference information is given for implant;
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