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Mechanical Characterisation and Biomechanical and Biological Behaviours of Ti-Zr Binary-Alloy Dental Implants

The objective of the study is to characterise the mechanical properties of Ti-15Zr binary alloy dental implants and to describe their biomechanical behaviour as well as their osseointegration capacity compared with the conventional Ti-6Al-4V (TAV) alloy implants. The mechanical properties of Ti-15Zr...

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Autores principales: Brizuela-Velasco, Aritza, Pérez-Pevida, Esteban, Jiménez-Garrudo, Antonio, Gil-Mur, Francisco Javier, Manero, José María, Punset-Fuste, Miquel, Chávarri-Prado, David, Diéguez-Pereira, Markel, Monticelli, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5727844/
https://www.ncbi.nlm.nih.gov/pubmed/29318142
http://dx.doi.org/10.1155/2017/2785863
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author Brizuela-Velasco, Aritza
Pérez-Pevida, Esteban
Jiménez-Garrudo, Antonio
Gil-Mur, Francisco Javier
Manero, José María
Punset-Fuste, Miquel
Chávarri-Prado, David
Diéguez-Pereira, Markel
Monticelli, Francesca
author_facet Brizuela-Velasco, Aritza
Pérez-Pevida, Esteban
Jiménez-Garrudo, Antonio
Gil-Mur, Francisco Javier
Manero, José María
Punset-Fuste, Miquel
Chávarri-Prado, David
Diéguez-Pereira, Markel
Monticelli, Francesca
author_sort Brizuela-Velasco, Aritza
collection PubMed
description The objective of the study is to characterise the mechanical properties of Ti-15Zr binary alloy dental implants and to describe their biomechanical behaviour as well as their osseointegration capacity compared with the conventional Ti-6Al-4V (TAV) alloy implants. The mechanical properties of Ti-15Zr binary alloy were characterised using Roxolid© implants (Straumann, Basel, Switzerland) via ultrasound. Their biomechanical behaviour was described via finite element analysis. Their osseointegration capacity was compared via an in vivo study performed on 12 adult rabbits. Young's modulus of the Roxolid© implant was around 103 GPa, and the Poisson coefficient was around 0.33. There were no significant differences in terms of Von Mises stress values at the implant and bone level between both alloys. Regarding deformation, the highest value was observed for Ti-15Zr implant, and the lowest value was observed for the cortical bone surrounding TAV implant, with no deformation differences at the bone level between both alloys. Histological analysis of the implants inserted in rabbits demonstrated higher BIC percentage for Ti-15Zr implants at 3 and 6 weeks. Ti-15Zr alloy showed elastic properties and biomechanical behaviours similar to TAV alloy, although Ti-15Zr implant had a greater BIC percentage after 3 and 6 weeks of osseointegration.
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spelling pubmed-57278442018-01-09 Mechanical Characterisation and Biomechanical and Biological Behaviours of Ti-Zr Binary-Alloy Dental Implants Brizuela-Velasco, Aritza Pérez-Pevida, Esteban Jiménez-Garrudo, Antonio Gil-Mur, Francisco Javier Manero, José María Punset-Fuste, Miquel Chávarri-Prado, David Diéguez-Pereira, Markel Monticelli, Francesca Biomed Res Int Research Article The objective of the study is to characterise the mechanical properties of Ti-15Zr binary alloy dental implants and to describe their biomechanical behaviour as well as their osseointegration capacity compared with the conventional Ti-6Al-4V (TAV) alloy implants. The mechanical properties of Ti-15Zr binary alloy were characterised using Roxolid© implants (Straumann, Basel, Switzerland) via ultrasound. Their biomechanical behaviour was described via finite element analysis. Their osseointegration capacity was compared via an in vivo study performed on 12 adult rabbits. Young's modulus of the Roxolid© implant was around 103 GPa, and the Poisson coefficient was around 0.33. There were no significant differences in terms of Von Mises stress values at the implant and bone level between both alloys. Regarding deformation, the highest value was observed for Ti-15Zr implant, and the lowest value was observed for the cortical bone surrounding TAV implant, with no deformation differences at the bone level between both alloys. Histological analysis of the implants inserted in rabbits demonstrated higher BIC percentage for Ti-15Zr implants at 3 and 6 weeks. Ti-15Zr alloy showed elastic properties and biomechanical behaviours similar to TAV alloy, although Ti-15Zr implant had a greater BIC percentage after 3 and 6 weeks of osseointegration. Hindawi 2017 2017-11-29 /pmc/articles/PMC5727844/ /pubmed/29318142 http://dx.doi.org/10.1155/2017/2785863 Text en Copyright © 2017 Aritza Brizuela-Velasco et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Brizuela-Velasco, Aritza
Pérez-Pevida, Esteban
Jiménez-Garrudo, Antonio
Gil-Mur, Francisco Javier
Manero, José María
Punset-Fuste, Miquel
Chávarri-Prado, David
Diéguez-Pereira, Markel
Monticelli, Francesca
Mechanical Characterisation and Biomechanical and Biological Behaviours of Ti-Zr Binary-Alloy Dental Implants
title Mechanical Characterisation and Biomechanical and Biological Behaviours of Ti-Zr Binary-Alloy Dental Implants
title_full Mechanical Characterisation and Biomechanical and Biological Behaviours of Ti-Zr Binary-Alloy Dental Implants
title_fullStr Mechanical Characterisation and Biomechanical and Biological Behaviours of Ti-Zr Binary-Alloy Dental Implants
title_full_unstemmed Mechanical Characterisation and Biomechanical and Biological Behaviours of Ti-Zr Binary-Alloy Dental Implants
title_short Mechanical Characterisation and Biomechanical and Biological Behaviours of Ti-Zr Binary-Alloy Dental Implants
title_sort mechanical characterisation and biomechanical and biological behaviours of ti-zr binary-alloy dental implants
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5727844/
https://www.ncbi.nlm.nih.gov/pubmed/29318142
http://dx.doi.org/10.1155/2017/2785863
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