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In Vitro Testing of Femoral Impaction Grafting With Porous Titanium Particles: A Pilot Study

The disadvantages of allografts to restore femoral bone defects during revision hip surgery have led to the search for alternative materials. We investigated the feasibility of using porous titanium particles and posed the following questions: (1) Is it possible to create a high-quality femoral graf...

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Autores principales: Aquarius, René, Walschot, Luc, Buma, Pieter, Schreurs, Berend Willem, Verdonschot, Nico
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2674165/
https://www.ncbi.nlm.nih.gov/pubmed/19139968
http://dx.doi.org/10.1007/s11999-008-0688-3
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author Aquarius, René
Walschot, Luc
Buma, Pieter
Schreurs, Berend Willem
Verdonschot, Nico
author_facet Aquarius, René
Walschot, Luc
Buma, Pieter
Schreurs, Berend Willem
Verdonschot, Nico
author_sort Aquarius, René
collection PubMed
description The disadvantages of allografts to restore femoral bone defects during revision hip surgery have led to the search for alternative materials. We investigated the feasibility of using porous titanium particles and posed the following questions: (1) Is it possible to create a high-quality femoral graft of porous titanium particles in terms of graft thickness, cement thickness, and cement penetration? (2) Does this titanium particle graft layer provide initial stability when a femoral cemented stem is implanted in it? (3) What sizes of particles are released from the porous titanium particles during impaction and subsequent cyclic loading of the reconstruction? We simulated cemented revision reconstructions with titanium particles in seven composite femurs loaded for 300,000 cycles and measured stem subsidence. Particle release from the titanium particle grafts was analyzed during impaction and loading. Impacted titanium particles formed a highly interlocked graft layer. We observed limited cement penetration into the titanium particle graft. A total mean subsidence of 1.04 mm was observed after 300,000 cycles. Most particles released during impaction were in the phagocytable range (< 10 μm). There was no detectable particle release during loading. Based on the data, we believe titanium particles are a promising alternative for allografts. However, animal testing is warranted to investigate the biologic effect of small-particle release.
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spelling pubmed-26741652009-06-01 In Vitro Testing of Femoral Impaction Grafting With Porous Titanium Particles: A Pilot Study Aquarius, René Walschot, Luc Buma, Pieter Schreurs, Berend Willem Verdonschot, Nico Clin Orthop Relat Res Original Article The disadvantages of allografts to restore femoral bone defects during revision hip surgery have led to the search for alternative materials. We investigated the feasibility of using porous titanium particles and posed the following questions: (1) Is it possible to create a high-quality femoral graft of porous titanium particles in terms of graft thickness, cement thickness, and cement penetration? (2) Does this titanium particle graft layer provide initial stability when a femoral cemented stem is implanted in it? (3) What sizes of particles are released from the porous titanium particles during impaction and subsequent cyclic loading of the reconstruction? We simulated cemented revision reconstructions with titanium particles in seven composite femurs loaded for 300,000 cycles and measured stem subsidence. Particle release from the titanium particle grafts was analyzed during impaction and loading. Impacted titanium particles formed a highly interlocked graft layer. We observed limited cement penetration into the titanium particle graft. A total mean subsidence of 1.04 mm was observed after 300,000 cycles. Most particles released during impaction were in the phagocytable range (< 10 μm). There was no detectable particle release during loading. Based on the data, we believe titanium particles are a promising alternative for allografts. However, animal testing is warranted to investigate the biologic effect of small-particle release. Springer-Verlag 2009-01-13 2009-06 /pmc/articles/PMC2674165/ /pubmed/19139968 http://dx.doi.org/10.1007/s11999-008-0688-3 Text en © The Author(s) 2009
spellingShingle Original Article
Aquarius, René
Walschot, Luc
Buma, Pieter
Schreurs, Berend Willem
Verdonschot, Nico
In Vitro Testing of Femoral Impaction Grafting With Porous Titanium Particles: A Pilot Study
title In Vitro Testing of Femoral Impaction Grafting With Porous Titanium Particles: A Pilot Study
title_full In Vitro Testing of Femoral Impaction Grafting With Porous Titanium Particles: A Pilot Study
title_fullStr In Vitro Testing of Femoral Impaction Grafting With Porous Titanium Particles: A Pilot Study
title_full_unstemmed In Vitro Testing of Femoral Impaction Grafting With Porous Titanium Particles: A Pilot Study
title_short In Vitro Testing of Femoral Impaction Grafting With Porous Titanium Particles: A Pilot Study
title_sort in vitro testing of femoral impaction grafting with porous titanium particles: a pilot study
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2674165/
https://www.ncbi.nlm.nih.gov/pubmed/19139968
http://dx.doi.org/10.1007/s11999-008-0688-3
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