Stress Analysis of Endodontically Treated Anterior Teeth Restored with Different Types of Post Material

Анализ напряжений в эндодонтически леченных передних зубах, восстановленных с использованием различных типов штифтовых материалов
Takashi Nakamura, Tatsuo Ohyama, Tomonori Waki, Soichiro KINUTA, Kazumichi Wakabayashi, Yoshihiko Mutobe, Naoki TAKANO, Hirofumi Yatani
2006-01-01

endodontically treated teethfiber postfinite element analysisroot fracturestress distribution
Finite element analysis was performed to evaluate stress distribution in maxillary central incisors treated endodontically and restored with a post and an all-ceramic crown. Tensile stress at tooth root was analyzed using two-dimensional finite element models with different post diameters and lengths. One post length was 1/3 of the root (short), while the other was 2/3 of the root (long); one post diameter was 1/3 of the root (narrow), while the other was 2/3 of the root (wide). The following combinations were used for posts and cores: gold alloy cast post and core, commercial stainless steel post and resin core, and fiber post and resin core. Results showed that the fiber post produced less stress on the root dentin around the post tip than did the metal posts. This finding thus suggested that to reduce the stresses that cause root fracture, a long, thin fiber post should be used.
1
Fiber posts generated less stress in root dentin around the post tip than gold alloy and stainless steel posts.
2
Finite element analysis evaluated tensile stress in endodontically treated maxillary central incisors restored with posts and all-ceramic crowns.
3
Models compared short versus long posts and narrow versus wide diameters across gold alloy, stainless steel, and fiber post systems.
4
The findings suggest that a long, thin fiber post may reduce stresses associated with root fracture.

Endodontically treated maxillary central incisors restored with posts and all-ceramic crowns

Root-dentin tensile stress distribution and root-fracture-related stress as a function of post material, diameter, and length

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2006-01-01
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Takashi Nakamura
Tatsuo Ohyama
Tomonori Waki
Soichiro KINUTA
Kazumichi Wakabayashi
Yoshihiko Mutobe
Naoki TAKANO
Hirofumi Yatani
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