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Finite element analysis of multi-piece post-crown restoration using different types of adhesives / 国际口腔科学杂志·英文版
International Journal of Oral Science ; (4): 162-166, 2013.
Article in English | WPRIM | ID: wpr-358179
ABSTRACT
The multi-piece post-crown technique is more effective in restoring residual root than other restoration techniques. Various types of adhesives have different material properties that affect restoration. Therefore, the choice of adhesive is particularly important for patients. However, the effect of different kinds of adhesives was not too precise by experimental methods when concerning about individual differences of teeth. One tooth root can only be restored with one type of adhesive in experiment. After the mechanical test, this tooth root cannot be restored with other adhesives. With the help of medical imaging technology, reverse engineering and finite element analysis, a molar model can be reconstructed precisely and restored using different types of adhesives. The same occlusal and chewing loads were exerted on the same restored residual root models with different types of adhesives separately. Results of von Mises stress analysis showed that the adhesives with low Young's modulus can protect the root canal effectively. However, a root canal concentration is apparently produced around the root canal orifice when chewing. Adhesives with large Young's modulus can buffer the stress concentration of the root canal orifice. However, the root canal tissue may be destroyed because the adhesive is too hard to buffer the load.
Subject(s)
Full text: Available Index: WPRIM (Western Pacific) Main subject: Post and Core Technique / Dental Bonding / Tooth, Nonvital / Finite Element Analysis / Crowns / Dental Cements / Dental Pulp Cavity / Dental Stress Analysis / Elastic Modulus / Methods Limits: Humans Language: English Journal: International Journal of Oral Science Year: 2013 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Post and Core Technique / Dental Bonding / Tooth, Nonvital / Finite Element Analysis / Crowns / Dental Cements / Dental Pulp Cavity / Dental Stress Analysis / Elastic Modulus / Methods Limits: Humans Language: English Journal: International Journal of Oral Science Year: 2013 Type: Article