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Finite Element Analysis of Compressive Stress and Strain of Different Implant Forms During Vertical Loading

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Authors
Tanasić, Ivan
Tihaček-Šojić, Ljiljana
Milić-Lemić, Aleksandra
Article (Published version)
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Abstract
This study analyzed the influence of platform switching on the stress/strain distribution of vertically loaded implants. Employing finite element analysis, the aim of this study was to determine the distribution of stresses and strains generated by a simulated vertical load on different implant models positioned in the molar region with respect to changes of implant design and biomechanics. Two different implant designs, one with and one without platform switching, with the same length (11.5 mm) and diameter of (3.80 mm) were analyzed. Both virtual implant-bone models were subjected to a load of 500 N. The results showed that the maximum stress/strain in implant-bone samples was located in the area of the implant neck, with stress/strain values decreasing in the apical direction. It was found that the implant design with platform switching developed lower stresses and strains than the implant design without platform switching.
Keywords:
platform switching implant / finite element analysis / biomechanics
Source:
International Journal of Computerized Dentistry, 2014, 17, 2, 125-133
Publisher:
  • Quintessenz Verlags GmbH

ISSN: 1463-4201

PubMed: 25098160

WoS: 000209717200004

Scopus: 2-s2.0-84906921987
[ Google Scholar ]
8
6
Handle
https://hdl.handle.net/21.15107/rcub_smile_1938
URI
https://smile.stomf.bg.ac.rs/handle/123456789/1938
Collections
  • Radovi istraživača
Institution/Community
Stomatološki fakultet
TY  - JOUR
AU  - Tanasić, Ivan
AU  - Tihaček-Šojić, Ljiljana
AU  - Milić-Lemić, Aleksandra
PY  - 2014
UR  - https://smile.stomf.bg.ac.rs/handle/123456789/1938
AB  - This study analyzed the influence of platform switching on the stress/strain distribution of vertically loaded implants. Employing finite element analysis, the aim of this study was to determine the distribution of stresses and strains generated by a simulated vertical load on different implant models positioned in the molar region with respect to changes of implant design and biomechanics. Two different implant designs, one with and one without platform switching, with the same length (11.5 mm) and diameter of (3.80 mm) were analyzed. Both virtual implant-bone models were subjected to a load of 500 N. The results showed that the maximum stress/strain in implant-bone samples was located in the area of the implant neck, with stress/strain values decreasing in the apical direction. It was found that the implant design with platform switching developed lower stresses and strains than the implant design without platform switching.
PB  - Quintessenz Verlags GmbH
T2  - International Journal of Computerized Dentistry
T1  - Finite Element Analysis of Compressive Stress and Strain of Different Implant Forms During Vertical Loading
VL  - 17
IS  - 2
SP  - 125
EP  - 133
UR  - https://hdl.handle.net/21.15107/rcub_smile_1938
ER  - 
@article{
author = "Tanasić, Ivan and Tihaček-Šojić, Ljiljana and Milić-Lemić, Aleksandra",
year = "2014",
abstract = "This study analyzed the influence of platform switching on the stress/strain distribution of vertically loaded implants. Employing finite element analysis, the aim of this study was to determine the distribution of stresses and strains generated by a simulated vertical load on different implant models positioned in the molar region with respect to changes of implant design and biomechanics. Two different implant designs, one with and one without platform switching, with the same length (11.5 mm) and diameter of (3.80 mm) were analyzed. Both virtual implant-bone models were subjected to a load of 500 N. The results showed that the maximum stress/strain in implant-bone samples was located in the area of the implant neck, with stress/strain values decreasing in the apical direction. It was found that the implant design with platform switching developed lower stresses and strains than the implant design without platform switching.",
publisher = "Quintessenz Verlags GmbH",
journal = "International Journal of Computerized Dentistry",
title = "Finite Element Analysis of Compressive Stress and Strain of Different Implant Forms During Vertical Loading",
volume = "17",
number = "2",
pages = "125-133",
url = "https://hdl.handle.net/21.15107/rcub_smile_1938"
}
Tanasić, I., Tihaček-Šojić, L.,& Milić-Lemić, A.. (2014). Finite Element Analysis of Compressive Stress and Strain of Different Implant Forms During Vertical Loading. in International Journal of Computerized Dentistry
Quintessenz Verlags GmbH., 17(2), 125-133.
https://hdl.handle.net/21.15107/rcub_smile_1938
Tanasić I, Tihaček-Šojić L, Milić-Lemić A. Finite Element Analysis of Compressive Stress and Strain of Different Implant Forms During Vertical Loading. in International Journal of Computerized Dentistry. 2014;17(2):125-133.
https://hdl.handle.net/21.15107/rcub_smile_1938 .
Tanasić, Ivan, Tihaček-Šojić, Ljiljana, Milić-Lemić, Aleksandra, "Finite Element Analysis of Compressive Stress and Strain of Different Implant Forms During Vertical Loading" in International Journal of Computerized Dentistry, 17, no. 2 (2014):125-133,
https://hdl.handle.net/21.15107/rcub_smile_1938 .

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