Comparison of Stress Distribution in a Maxillary Central Incisor Restored with Two Prefabricated Post Systems with and without Ferrule Using Finite Element Method
Introduction: When restoring an endodontically treated tooth with deficient coronal tooth structure, posts can be used to strengthen the tooth. Recently prefabricated posts are widely used as they exclude the need for complex laboratory procedures making the procedure time saving. But the post-p...
Main Authors: | , , , |
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Format: | Article |
Language: | English |
Published: |
JCDR Research and Publications Private Limited
2016-09-01
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Series: | Journal of Clinical and Diagnostic Research |
Subjects: | |
Online Access: | https://jcdr.net/articles/PDF/8492/19443_CE(EK)_F(AK)_PF1(NEAK)_PFA(AK)_PF2(PAG).pdf |
Summary: | Introduction: When restoring an endodontically treated tooth
with deficient coronal tooth structure, posts can be used to
strengthen the tooth. Recently prefabricated posts are widely
used as they exclude the need for complex laboratory procedures
making the procedure time saving. But the post-placement can
produce stresses that cause root fracture. Different techniques
can be used to study the stress distribution due to different
posts, but most of them are two-dimensional and difficult to
reproduce.
Aim: The aim of the study was to compare the stress distribution
in a maxillary central incisor with Titanium and Glass fiber posts
with and without ferrule using the three dimensional finite
element analysis.
Materials and Methods: In this study 3D finite element analysis
was used. Four models P1(Endodontically treated maxillary
central incisor with a ferrule of coronal dentin and restored
with parallel sided prefabricated titanium post and composite
resin core), P2 (Endodontically treated maxillary central incisor
restored with parallel sided prefabricated Titanium post and
composite resin core without a ferrule of coronal dentin), P3
(Endodontically treated maxillary central incisor with a ferrule
of coronal dentin and restored with parallel sided prefabricated
glass fiber reinforced composite post and composite core), P4
(Endodontically treated maxillary central incisor restored with
parallel sided prefabricated glass fiber reinforced composite
post and composite core without a ferrule of coronal dentin),
were modeled using PRO E software. Then stress analysis was
done using ANSYS WORKBENCH 10.0software. A load of 100
N was applied to the models at 2mm from the incisal edge on
the palatal surface with an angle of 45o to the long axis of the
tooth.
Results: The results suggested that maximum stresses were
seen around posts in order of Titanium post without ferrule
followed by Titanium post with ferrule next Glass fiber post
without ferrule followed by Glass fiber post with ferrule.
Conclusion: Stress distribution in a maxillary central incisor
restored with titanium post is greater than when restored with
glass fiber post. Stress distribution around posts is greater
when a ferrule is not present. |
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ISSN: | 2249-782X 0973-709X |