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Influence of Connection Type and Platform Diameter on Titanium Dental Implants Fatigue: Non-Axial Loading Cyclic Test Analysis

Two-pieces dental implants must provide stability of the implant-abutment-interface. The connection type and platform diameter could influence the biomechanical resistance and stress distribution. This study aims to evaluate the fatigue for different types of connections, external and internal, and...

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Autores principales: Nicolas-Silvente, Ana I., Velasco-Ortega, Eugenio, Ortiz-Garcia, Ivan, Jimenez-Guerra, Alvaro, Monsalve-Guil, Loreto, Ayuso-Montero, Raul, Gil, Javier, Lopez-Lopez, Jose
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7730231/
https://www.ncbi.nlm.nih.gov/pubmed/33276652
http://dx.doi.org/10.3390/ijerph17238988
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author Nicolas-Silvente, Ana I.
Velasco-Ortega, Eugenio
Ortiz-Garcia, Ivan
Jimenez-Guerra, Alvaro
Monsalve-Guil, Loreto
Ayuso-Montero, Raul
Gil, Javier
Lopez-Lopez, Jose
author_facet Nicolas-Silvente, Ana I.
Velasco-Ortega, Eugenio
Ortiz-Garcia, Ivan
Jimenez-Guerra, Alvaro
Monsalve-Guil, Loreto
Ayuso-Montero, Raul
Gil, Javier
Lopez-Lopez, Jose
author_sort Nicolas-Silvente, Ana I.
collection PubMed
description Two-pieces dental implants must provide stability of the implant-abutment-interface. The connection type and platform diameter could influence the biomechanical resistance and stress distribution. This study aims to evaluate the fatigue for different types of connections, external and internal, and different platform diameters. Three implant designs with the same length were used: (a) external hexagon/narrow platform; (b) internal double hexagon/narrow platform; (c) internal octagon/regular platform. A fatigue test was developed to establish the number of cycles needed before fracture. A 30º oblique load with a sinusoidal function of fatigue at a frequency of 15 Hz and 10% stress variation was applied to each system. The fatigue load limit (FLL) for design (a) was 190 N, being the nominal-curvature-moment (NCM) = 1.045; FLL = 150 N, with a NCM = 0.825 for (b), and FLL = 325 N, with a NCM = 1.788 for (c). The platform diameter affects the FLL, obtaining lower FLL on a narrow platform. The connection type interferes with the implant walls’ width, especially in narrow implants, making internal connections more unstable at this level. Long-term clinical studies to assess the restoration’s success rate and survival are mandatory.
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spelling pubmed-77302312020-12-12 Influence of Connection Type and Platform Diameter on Titanium Dental Implants Fatigue: Non-Axial Loading Cyclic Test Analysis Nicolas-Silvente, Ana I. Velasco-Ortega, Eugenio Ortiz-Garcia, Ivan Jimenez-Guerra, Alvaro Monsalve-Guil, Loreto Ayuso-Montero, Raul Gil, Javier Lopez-Lopez, Jose Int J Environ Res Public Health Article Two-pieces dental implants must provide stability of the implant-abutment-interface. The connection type and platform diameter could influence the biomechanical resistance and stress distribution. This study aims to evaluate the fatigue for different types of connections, external and internal, and different platform diameters. Three implant designs with the same length were used: (a) external hexagon/narrow platform; (b) internal double hexagon/narrow platform; (c) internal octagon/regular platform. A fatigue test was developed to establish the number of cycles needed before fracture. A 30º oblique load with a sinusoidal function of fatigue at a frequency of 15 Hz and 10% stress variation was applied to each system. The fatigue load limit (FLL) for design (a) was 190 N, being the nominal-curvature-moment (NCM) = 1.045; FLL = 150 N, with a NCM = 0.825 for (b), and FLL = 325 N, with a NCM = 1.788 for (c). The platform diameter affects the FLL, obtaining lower FLL on a narrow platform. The connection type interferes with the implant walls’ width, especially in narrow implants, making internal connections more unstable at this level. Long-term clinical studies to assess the restoration’s success rate and survival are mandatory. MDPI 2020-12-02 2020-12 /pmc/articles/PMC7730231/ /pubmed/33276652 http://dx.doi.org/10.3390/ijerph17238988 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nicolas-Silvente, Ana I.
Velasco-Ortega, Eugenio
Ortiz-Garcia, Ivan
Jimenez-Guerra, Alvaro
Monsalve-Guil, Loreto
Ayuso-Montero, Raul
Gil, Javier
Lopez-Lopez, Jose
Influence of Connection Type and Platform Diameter on Titanium Dental Implants Fatigue: Non-Axial Loading Cyclic Test Analysis
title Influence of Connection Type and Platform Diameter on Titanium Dental Implants Fatigue: Non-Axial Loading Cyclic Test Analysis
title_full Influence of Connection Type and Platform Diameter on Titanium Dental Implants Fatigue: Non-Axial Loading Cyclic Test Analysis
title_fullStr Influence of Connection Type and Platform Diameter on Titanium Dental Implants Fatigue: Non-Axial Loading Cyclic Test Analysis
title_full_unstemmed Influence of Connection Type and Platform Diameter on Titanium Dental Implants Fatigue: Non-Axial Loading Cyclic Test Analysis
title_short Influence of Connection Type and Platform Diameter on Titanium Dental Implants Fatigue: Non-Axial Loading Cyclic Test Analysis
title_sort influence of connection type and platform diameter on titanium dental implants fatigue: non-axial loading cyclic test analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7730231/
https://www.ncbi.nlm.nih.gov/pubmed/33276652
http://dx.doi.org/10.3390/ijerph17238988
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