BiomaterialsCRC Press, 7.06.2007 г. - 296 страници For medical devices that must be placed inside the body, the right choice of material is the most important aspect of design. To ensure such devices are safe, reliable, economical, and biologically and physiologically compatible, the modern biomedical engineer must have a broad knowledge of currently available materials and the properties that affe |
Съдържание
Metallic Biomaterials | |
Ceramic Biomaterials | |
Polymeric Biomaterials | |
Composite Biomaterials | |
Tailoring Properties and Function through Chemistry and Structure | |
An Updated Overview | |
TissueDerived Biomaterials Collagen | |
Soft Tissue Replacements | |
Hard Tissue Replacements | |
Applications | |
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adhesion alloy alumina amino acids artificial Bajpai P.K. Bioceramics biocompatibility biodegradable biodegradable polymers biological Biomater Biomaterials Biomed biomedical applications blood bonds bone calcium phosphate carbon cell ceramics chains Chandran Chem chemical chemistry chemogradient chitosan clinical coating collagen collagen molecules components composite controlled copolymer corrosion covalent cross-linking degradable hydrogels density dental implants devices dextran drug delivery elastic fabrication fibers fibrin fixation fracture function glass ceramic glycol groups heart valves Hench hydrogels hydroxyapatite implant surface ingrowth interactions interface joint replacement leaflet matrix mechanical properties mechanical valves metal Metters modulus molecular weight monomers Orthopaedic oxide Park and Lakes particles plate polyesters polyethylene polyglycolide porous prostheses proteins pyrolytic carbon regeneration release resorbable result scaffolds screws Shalaby shown in Figure solution stability stainless steel stents strength stress structure substrate surgery surgical sutures swelling temperature tissue engineering titanium vascular grafts vitro vivo wettability York