Polyurethanes In Biomedical Applications - Lamba Nina M.K.; Woodhouse Kimberly A.; Cooper Stuart L. | Libro Crc Press 11/1997 - HOEPLI.it


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lamba nina m.k.; woodhouse kimberly a.; cooper stuart l. - polyurethanes in biomedical applications

Polyurethanes in Biomedical Applications

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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

CRC Press

Pubblicazione: 11/1997
Edizione: 1° edizione





Sommario

IntroductionBiomaterialsBiocompatibilityBiomedical PolymersOrganizationReferencesThe Chemistry of Polyurethane CopolymersIntroductionHistory of Polyurethane CopolymersPolyurethane CopolymersSynthesis of PolyurethanesIsocyanate ChemistryAllophanate ReactionBiuret FormationAcylureaIsocyanurate FormationUretidione FormationCarbodiimide FormationCatalystsSynthesis MediaRaw Materials in Polyurethane Copolymer SynthesisIsocyanatesPolyolsChain ExtendersLinear Polyurethane Elastomer SynthesisCross-Linked Polyurethane CopolymersPolyurethane ModificationBulk Modification of PolyurethanesSurface Modification of PolyurethanesSummaryReferencesPolyurethane Processing and Survey of Biomedical PolyurethanesIntroductionProcessing of PolyurethanesOne-Dimensional ProcessesTwo-Dimensional ProcessesThree-Dimensional ProcessesSterilizationSteam SterilizationEthylene Oxide SterilizationRadiationCommercial and Experimental PolyurethanesReferencesBulk Characterization and Structure-Property Relationships of PolyurethanesIntroductionStates of Order and Thermal Transitions of PolymersIntermolecular Bonding in PolymersMechanical BehaviorMolecular WeightStructure of PolyurethanesMicrophase SeparationMorphological Models of Block CopolymersMolecular Orientation in PolyurethanesHydrogen BondingCross-LinkingThe Effect of Polyurethane Chemistry on Physical PropertiesCharacterization of PolyurethanesGel Permeation ChromatographyInfrared SpectroscopyDifferential Scanning CalorimetryDynamic Mechanical Thermal AnalysisElectron MicroscopyStress-Strain Properties and Ultimate Tensile StrengthSolubility TestsPermeability and ExtractabilityElectrical PropertiesSummaryReferencesSurface Characterization of PolyurethanesIntroductionSurface Energy and Surface TensionContact AnglesContact Angle MeasurementContact Angle HysteresisAttenuated Fourier Transform Infrared Spectroscopy (ATR-FTIR)ATR-FTIR Analysis of PolyurethanesSurface Spectroscopic TechniquesX-Ray Photo-Electron Spectroscopy (XPS)Secondary Ion Mass Spectrometry (SIMS)Surface Spectroscopic Studies of PolyurethanesSurface MorphologySurface Electrical PropertiesSummary ReferencesIntroduction to Host ResponsesIntroductionProtein AdsorptionThe First EventCoagulation SystemFibrinolytic SystemCells, Extracellular Matrix, and Cellular InteractionsPlateletsErythrocytesLeukocytesThe Extracellular MatrixCell Receptors and MediatorsHemostasis and ThrombosisThe Inflammatory ResponseForeign Body ResponseWound HealingImmune ResponseInnate ImmunityComplement SystemAdaptive ImmunitySummaryReferencesHost Responses to PolyurethanesIntroductionAssessment of Host Biomaterial InteractionsIn Vitro TestingEx Vivo TestingIn Vivo TestingClinical TestingGuidelines for Biological Testing of MaterialsProtein Adsorption onto PolyurethanesAlbuminFibrinogenFibronectinVitronectinLipoproteinsCoagulation SystemFibrinolytic SystemComplement SystemThe Vroman EffectCellular Responses to PolyurethanesPlateletsLeukocytesThrombus FormationSoft Tissue InteractionsNeointima Formation on PolyurethanesImmunological Response to BiomaterialsInfectionSummaryReferencesDegradation of PolyurethanesIntroductionMechanisms of BiodegradationHydrolysisOxidationChemical DegradationSterilizationBiological Catalysis of DegradationEnvironmental Stress CrackingImpact of Polyurethane Structure on BiodegradationOther Mechanisms of DegradationImplant LocationToxicity and CarcinogenicityCalcification of PolyurethanesBiodegradable PolyurethanesSummaryReferencesPolyurethanes in Biomedical ApplicationsIntroductionCardiovascular ApplicationsCathetersPacemaker Lead InsulationVascular ProsthesesHeart ValvesCardiac Assist DevicesArtificial OrgansArtificial HeartHemodialysisArtificial Lung/Blood OxygenationHemoperfusionArtificial PancreasBlood TubingBlood FiltersTissue Replacement and AugmentationBreast ImplantsWound DressingsFacial ReconstructionAdhesivesOther ApplicationsArtificial DuctsContraceptivesControlled Drug DeliveryPenile ProsthesesMiscellaneousReferencesSummary and Future DirectionsList of AbbreviationsIndex




Trama

Polyurethanes in Biomedical Applications studies the use of polyurethanes in implanted medical devices. This analysis describes the concepts of polymer science, the manufacture of polyurethanes, and the biological responses to implant polyurethanes, reflecting the developments in biomaterials science and the interdisciplinary nature of bioengineering.







Altre Informazioni

ISBN:

9780849345173

Condizione: Nuovo
Dimensioni: 9.75 x 6.75 in Ø 1.34 lb
Formato: Copertina rigida
Illustration Notes:30 b/w images, 19 tables, 30 halftones and 15 Equations
Pagine Arabe: 288






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