Stress distribution in a post‐restored tooth using the three‐dimensional finite element method
Распределение напряжений в зубе, восстановленном с помощью штифта, методом трёхмерных конечных элементов
2006-08-08
SCID: 54.1/dtu978wy
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Von Mises stressendodontically treated teethfiberglass-reinforced composite postsstress distributionthree-dimensional finite element method
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Abstract (AI)
Clinicians are opting ever more frequently for restorative materials which have an elastic modulus similar to that of dentin when reconstructing endodontically treated teeth. Metallic posts, which are capable of causing dangerous and non-homogenous stresses in root dentin, are slowly being abandoned. Ideal posts may be those made of various types of fibre (carbon, mineral and glass) and which are adhesively luted into the canal. Among the different methods for evaluating the mechanical behaviour of posts in root canals (progressive loads and photo-elastic technique) the finite element method (FEM) presents many advantages. The aim of this paper is to evaluate, utilizing three-dimensional analysis of the finite elements, what the effect of material rigidity, depth of insertion and post diameter could be on the stress distribution in the different components of the single tooth-post-core reconstruction unit. The results of the FEM analyses, expressed as the distribution of Von Mises stress values, has allowed us to conclude that (i) fibreglass-reinforced composite distributes stress better than titanium alloy or stainless steel; (ii) fibreglass-reinforced composite posts should be inserted as deeply as possible (but maintaining 5-6 mm of gutta-percha apical seal); (iii) fibreglass-reinforced composite post diameter does not affect stress distribution, therefore, as much radicular dentin as possible should be preserved.
Key Findings
1
Fibreglass-reinforced composite post diameter does not significantly affect stress distribution, supporting maximal preservation of radicular dentin.
2
Fibreglass-reinforced composite posts distribute Von Mises stresses more favorably than titanium alloy or stainless-steel posts.
3
Fibreglass-reinforced composite posts should be inserted as deeply as possible while preserving a 5–6 mm apical gutta-percha seal.
4
Three-dimensional finite element analysis evaluated how post rigidity, insertion depth, and diameter affect stress distribution in restored endodontically treated teeth.
Research Object
single-tooth post-and-core reconstruction unit in an endodontically treated tooth, incorporating restorative posts of different materials, insertion depths, and diameters
Research Subject
the effects of post material rigidity, insertion depth, and diameter on Von Mises stress distribution among the components of the tooth–post–core reconstruction
Publication Details
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2006-08-08
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