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Effect of hyperfunctional occlusal loads on periodontium: A three-dimensional finite element analysis

INTRODUCTION: The periodontal tissue reaction to variations in occlusal forces has been described in the literature wherein clinical and histologic changes are discussed that produced due to stresses in the periodontal structures. Unfortunately, these stresses are not quantified. AIM: The aim of thi...

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Autores principales: Reddy, Ravi Tejeshwar, Vandana, Kardhi Laxman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6128137/
https://www.ncbi.nlm.nih.gov/pubmed/30210187
http://dx.doi.org/10.4103/jisp.jisp_29_18
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author Reddy, Ravi Tejeshwar
Vandana, Kardhi Laxman
author_facet Reddy, Ravi Tejeshwar
Vandana, Kardhi Laxman
author_sort Reddy, Ravi Tejeshwar
collection PubMed
description INTRODUCTION: The periodontal tissue reaction to variations in occlusal forces has been described in the literature wherein clinical and histologic changes are discussed that produced due to stresses in the periodontal structures. Unfortunately, these stresses are not quantified. AIM: The aim of this study is to determine the stress produced on various periodontal tissues at different occlusal loads using finite element model (FEM) study. MATERIALS AND METHODS: Four FEMs of maxillary incisor were designed consisting of the tooth, pulp, periodontal ligament (PDL), and alveolar bone at the various level of bone height (25%, 50%, and 75%). Different occlusal load (15 and 29 kg) at an angle of 50° to the long axis of the tooth was applied on the palatal surface at the level of middle third of the crown. All the models were assumed to be isotropic, linear, and elastic, and the analysis was performed on a Pentium IV processor computer using the ANSYS software. RESULTS: At normofunction load, the stresses were maximum on the mesial side near the cervical region at point D for tooth (−10.93 Mpa) for PDL (−4.06 Mpa) for bone (−4.3 Mpa) with normal bone levels as the bone levels decreased the stresses increased and the stresses tend to concentrate at the apical region. At any given point, the stresses were increased by 90% at hyperfunctional load. CONCLUSION: Based on the findings of the present study, there is reasonably good attempt to express numerical data of stress to be given normal occlusal and hyperfunctional loads to simulate clinical occlusal situations which are known to be responsible for healthy and diseased periodontium.
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spelling pubmed-61281372018-09-12 Effect of hyperfunctional occlusal loads on periodontium: A three-dimensional finite element analysis Reddy, Ravi Tejeshwar Vandana, Kardhi Laxman J Indian Soc Periodontol Original Article INTRODUCTION: The periodontal tissue reaction to variations in occlusal forces has been described in the literature wherein clinical and histologic changes are discussed that produced due to stresses in the periodontal structures. Unfortunately, these stresses are not quantified. AIM: The aim of this study is to determine the stress produced on various periodontal tissues at different occlusal loads using finite element model (FEM) study. MATERIALS AND METHODS: Four FEMs of maxillary incisor were designed consisting of the tooth, pulp, periodontal ligament (PDL), and alveolar bone at the various level of bone height (25%, 50%, and 75%). Different occlusal load (15 and 29 kg) at an angle of 50° to the long axis of the tooth was applied on the palatal surface at the level of middle third of the crown. All the models were assumed to be isotropic, linear, and elastic, and the analysis was performed on a Pentium IV processor computer using the ANSYS software. RESULTS: At normofunction load, the stresses were maximum on the mesial side near the cervical region at point D for tooth (−10.93 Mpa) for PDL (−4.06 Mpa) for bone (−4.3 Mpa) with normal bone levels as the bone levels decreased the stresses increased and the stresses tend to concentrate at the apical region. At any given point, the stresses were increased by 90% at hyperfunctional load. CONCLUSION: Based on the findings of the present study, there is reasonably good attempt to express numerical data of stress to be given normal occlusal and hyperfunctional loads to simulate clinical occlusal situations which are known to be responsible for healthy and diseased periodontium. Medknow Publications & Media Pvt Ltd 2018 /pmc/articles/PMC6128137/ /pubmed/30210187 http://dx.doi.org/10.4103/jisp.jisp_29_18 Text en Copyright: © 2018 Journal of Indian Society of Periodontology http://creativecommons.org/licenses/by-nc-sa/4.0 This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Original Article
Reddy, Ravi Tejeshwar
Vandana, Kardhi Laxman
Effect of hyperfunctional occlusal loads on periodontium: A three-dimensional finite element analysis
title Effect of hyperfunctional occlusal loads on periodontium: A three-dimensional finite element analysis
title_full Effect of hyperfunctional occlusal loads on periodontium: A three-dimensional finite element analysis
title_fullStr Effect of hyperfunctional occlusal loads on periodontium: A three-dimensional finite element analysis
title_full_unstemmed Effect of hyperfunctional occlusal loads on periodontium: A three-dimensional finite element analysis
title_short Effect of hyperfunctional occlusal loads on periodontium: A three-dimensional finite element analysis
title_sort effect of hyperfunctional occlusal loads on periodontium: a three-dimensional finite element analysis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6128137/
https://www.ncbi.nlm.nih.gov/pubmed/30210187
http://dx.doi.org/10.4103/jisp.jisp_29_18
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