Analysis of Dentinal Stress Distribution of Maxillary Central Incisors Subjected to Various Post-and-core Applications
Анализ распределения напряжений в дентине верхних центральных резцов при использовании различных штифтово-культевых конструкций
2006-01-01
SCID: 54.1/9ucf4g44
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Von Mises stressdentinal stress distributionfinite element analysismaxillary central incisorszirconia ceramic posts
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Abstract (AI)
This study evaluated the stress distribution on an endodontically treated maxillary central incisor restored with different post-and-core systems by using a three-dimensional finite element analysis model. Seven three-dimensional finite element models were created. Each model contained cortical bone, cancelous bone, periodontal ligament, 3 mm apical root canal filling, post-and-core and all-ceramic crowns. Two different pre-fabricated zirconia ceramic post systems, a glass fiber-reinforced post system and a titanium post system were modeled. As a control, an all-ceramic crown on an endodontically treated maxillary central incisor without a post-and-core was modeled. Each model received a 45 degrees oblique occlusal load at a constant intensity of 100 N. In each model, the ratio of Von Mises stress distribution was compared. The greatest stresses were observed in the coronal third of the roots on facial surfaces. The ratio of Von Mises stress distribution in dentin for the zirconia ceramic post (CosmoPost) and ceramic core (Cosmo Ingot), zirconia ceramic post (CosmoPost) and composite core (Tetric Ceram), glass fiber-reinforced post (FRC Postec) and composite core (Tetric Ceram), titanium post (Er post) and composite core (Tetric Ceram), zirconia ceramic post (Cerapost) and ceramic core (Cosmo Ingot), zirconia ceramic post (Cerapost) and composite core (Tetric Ceram) and the control group were 0.886, 0.889, 0.988, 0.924, 0.889, 0.893 and 1, respectively. The stress concentrations in dentin created by two different zirconia ceramic post systems were nearly the same. The zirconia ceramic post systems created slightly less stress concentration in dentin than the glass fiber-reinforced and titanium posts.
Key Findings
1
A three-dimensional finite element model evaluated dentinal stress in endodontically treated maxillary central incisors restored with seven post-and-core configurations.
2
Relative dentinal Von Mises stress ratios were 0.886–0.924 for zirconia post systems, compared with 0.988 for glass fiber and 0.924 for titanium configurations.
3
The two zirconia ceramic post systems produced nearly identical dentinal stress distributions.
4
Under a 45° oblique 100 N load, the greatest stresses occurred in the coronal third of the roots, primarily on facial surfaces.
5
Zirconia ceramic posts generated slightly lower dentinal stress concentrations than glass fiber-reinforced and titanium posts, while the no-post control had a ratio of 1.
Research Object
Endodontically treated maxillary central incisor restored with different post-and-core systems and all-ceramic crowns
Research Subject
Dentin Von Mises stress distribution and concentration under 45° oblique 100 N occlusal loading across different post-and-core systems
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2006-01-01
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