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Direct comparison of polyethylene wear in cemented and uncemented acetabular cups.Do first-generation highly crosslinked polyethylenes oxidize in vivo?In vitro effects on mobile polyethylene insert under highly demanding daily activities: stair climbing.Nanomechanical and surface properties of rMSCs post-exposure to CAP treated UHMWPE wear particlesMagnetic particle imaging: advancements and perspectives for real-time in vivo monitoring and image-guided therapy.Biomaterials for Bone Regenerative Engineering.Oscillatory device for use with linear tribometer, for tribological evaluation of biomaterials.In vitro analysis of the cytotoxic and anti-inflammatory effects of antioxidant compounds used as additives in ultra high-molecular weight polyethylene in total joint replacement componentsUltra high molecular weight polyethylene is cytotoxic and causes oxidative stress, even when modified.Immunological Responses to Total Hip Arthroplasty.Macrophage Response to UHMWPE Submitted to Accelerated Ageing in Hydrogen Peroxide.How do CAD models compare with reverse engineered manufactured components for use in wear analysis?Polyethylene in total hip arthroplasty: half a century in the limelight.Adhesive forces and surface properties of cold gas plasma treated UHMWPE.Cross-linked ultra-high-molecular weight polyethylene liner and ceramic femoral head in total hip arthroplasty: a prospective study at 5 years follow-up.Biological effects of metal degradation in hip arthroplasties.All dual mobility cups are not the same.Wear resistance of poly(2-methacryloyloxyethyl phosphorylcholine)-grafted carbon fiber reinforced poly(ether ether ketone) liners against metal and ceramic femoral heads.Wear Behaviours and Oxidation Effects on Different UHMWPE Acetabular Cups Using a Hip Joint Simulator.Effects of extra irradiation on surface and bulk properties of PMPC-grafted cross-linked polyethylene.A 3D finite element model to investigate prosthetic interface stresses of different posterior tibial slope.Initial Response of Human Bone Marrow-Derived Stem Cells after Contact with Ultrahigh-Molecular-Weight Polyethylene (UHMWPE) Material: An In Vitro Study on Cell Viability and Interleukin-6 Expression.In vitro wear performance of standard, crosslinked, and vitamin-E-blended UHMWPEVitamin E blended Uhmwpe may have the potential to reduce bacterial adhesive ability
P2860
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P2860
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
@pt
bilimsel makale
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scientific article published on 24 December 2008
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
UHMWPE for arthroplasty: past or future?
@en
UHMWPE for arthroplasty: past or future?
@nl
type
label
UHMWPE for arthroplasty: past or future?
@en
UHMWPE for arthroplasty: past or future?
@nl
prefLabel
UHMWPE for arthroplasty: past or future?
@en
UHMWPE for arthroplasty: past or future?
@nl
P2093
P2860
P1476
UHMWPE for arthroplasty: past or future?
@en
P2093
Alessandro Bistolfi
Elena Maria Brach Del Prever
Luigi Costa
Pierangiola Bracco
P2860
P2888
P356
10.1007/S10195-008-0038-Y
P577
2008-12-24T00:00:00Z