Bioinert, biodegradable and injectable polymeric matrix composites for hard tissue replacement: state of the art and recent developments
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Calcium Orthophosphate-Containing Biocomposites and Hybrid Biomaterials for Biomedical ApplicationsBiocomposites and hybrid biomaterials based on calcium orthophosphatesSurface characterization and cytocompatibility evaluation of silanized magnesium alloy AZ91 for biomedical applicationsOsteoblast biocompatibility of premineralized, hexamethylene-1,6-diaminocarboxysulfonate crosslinked chitosan fibersIn Vivo Osseointegration Performance of Titanium Dioxide Coating Modified Polyetheretherketone Using Arc Ion Plating for Spinal Implant Application.Osteodifferentiation of human preadipocytes induced by strontium released from hydrogels.Selenium-Substituted Hydroxyapatite/Biodegradable Polymer/Pamidronate Combined Scaffold for the Therapy of Bone Tumour.Bone tissue engineering scaffolding: computer-aided scaffolding techniquesPreclinical evaluation of injectable bone substitute materials.Biodegradable Materials for Bone Repair and Tissue Engineering Applications.Mechanisms for Imparting Conductivity to Nonconductive Polymeric Biomaterials.The influence of polymeric component of bioactive glass-based nanocomposite paste on its rheological behaviors and in vitro responses: hyaluronic acid versus sodium alginate.Novel biomimetic thermosensitive β-tricalcium phosphate/chitosan-based hydrogels for bone tissue engineering.Hydroxyapatite-polymer biocomposites for bone regeneration: A review of current trends.Bone Regeneration after Treatment with Covering Materials Composed of Flax Fibers and Biodegradable Plastics: A Histological Study in Rats.Biodegradable packaging materials conception based on starch and polylactic acid (PLA) reinforced with cellulose.Bilayer Poly(Lactic-co-glycolic acid)/Nano-Hydroxyapatite Membrane with Barrier Function and Osteogenesis Promotion for Guided Bone Regeneration.Mechanical properties of α-tricalcium phosphate-based bone cements incorporating regenerative biomaterials for filling bone defects exposed to low mechanical loads.Influence of cow bone particle size distribution on the mechanical properties of cow bone-reinforced polyester composites.In vitro and in vivo enzyme-mediated biomineralization of oligo(poly(ethylene glycol) fumarate hydrogels.In vitro cytotoxicity and in vivo osseointergration properties of compression-molded HDPE-HA-Al2O3 hybrid biocomposites.Structure and rheology of dual-associative protein hydrogels under nonlinear shear flow.Evaluation of bone repair of critical size defects treated with simvastatin-loaded poly(lactic-co-glycolic acid) microspheres in rat calvaria.Cell response of flexible PMMA-derivatives: supremacy of surface chemistry over substrate stiffness.Scaffolds for epithelial tissue engineering customized in elastomeric molds.Improved osteoblast compatibility of medical-grade polyetheretherketone using arc ionplated rutile/anatase titanium dioxide films for spinal implants.Biocompatible electrospun polymer blends for biomedical applications.Challenges and Opportunities of Natural Biomaterials for Advanced Devices and TherapiesBiomimetic apatite-based composite materials obtained by spark plasma sintering (SPS): physicochemical and mechanical characterizationsBiodegradable composites based on nanocrystalline calcium phosphate and bioresorbable polymersIn vitro bioactivity of titanium implants coated with bicomponent hybrid biodegradable polymersAttachment and Proliferation of Human-Adipose-Tissue-Derived Stem Cells on Bioactive Glass/PVA Hybrid ScaffoldsThe Preparation andIn VitroEvaluations of a Nanoscaled Injectable Bone Repair Material
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P2860
Bioinert, biodegradable and injectable polymeric matrix composites for hard tissue replacement: state of the art and recent developments
description
article
@en
im Mai 2004 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в травні 2004
@uk
name
Bioinert, biodegradable and in ...... he art and recent developments
@en
Bioinert, biodegradable and in ...... he art and recent developments
@nl
type
label
Bioinert, biodegradable and in ...... he art and recent developments
@en
Bioinert, biodegradable and in ...... he art and recent developments
@nl
prefLabel
Bioinert, biodegradable and in ...... he art and recent developments
@en
Bioinert, biodegradable and in ...... he art and recent developments
@nl
P50
P1476
Bioinert, biodegradable and in ...... he art and recent developments
@en
P2093
Luciano F Boesel
P304
P356
10.1016/J.COMPSCITECH.2003.09.001
P577
2004-05-01T00:00:00Z