A study on stress distribution to cement layer and root dentin for post and cores made of CAD/CAM materials with different elasticity modulus in the absence of ferrule

Исследование распределения напряжений в цементном слое и корневом дентине при использовании штифтово-культевых конструкций из материалов CAD/CAM с различными модулями упругости в отсутствие феррула
GS de Andrade, JPM Tribst, AMO Dal Piva, Marco Antônıo Bottıno, ALS Borges, Luiz Felipe Valandro, Mutlu Özcan
2019-01-01

CAD/CAM materialselastic modulusfinite element analysispost-and-core systemsroot dentin
BACKGROUND: To evaluate the stress distribution in a maxillary central incisor with different post and cores made of six CAD/CAM materials with different elastic modulus in the absence of ferrule using the finite element analysis. MATERIAL AND METHODS: A three-dimensional endodontically treated maxillary central incisor restored with an all-ceramic crown was modelled in Rhinoceros (5.0 SR8, McNeel). The geometries were analyzed in ANSYS 17.2 (ANSYS Inc.) considering isotropic, homogeneous, linearly elastic materials with perfectly bonded contacts. The elastic moduli (E) of the post-and-cores defined the groups to be compared: nanoceramic resin (E=12.8GPa); composite resin (E=16GPa); hybrid ceramic (E=34.7GPa); lithium disilicate (E=95GPa); titanium (Ti-Al6-V4) (E=112GPa); and Y-TZP material (E=209.3GPa). The set was constrained in the cortical bone and loaded (45°/100 N) on the incisor palatine face. Stress distribution was analyzed by Maximum Principal Stress criteria for the crown-core cement line, Post-and-core's cement line, Post-and-core system and Dentin. RESULTS: The stress distribution at the crown-core cement line (11.4 - 13.2 MPa) was inversely proportional to the increase of the elastic modulus of the post-core approaches, while it was direct proportional on the post-and-core (4.7 - 40 MPa) and cement line (4.1 - 6.2 MPa). Stress distribution on the dentin was similar for all groups (24.7 - 25.3). CONCLUSIONS: Endodontically treated teeth, Post-and-core technique, Ceramic crown, Finite element analysis, Biomimetics.
1
A finite element model evaluated stress distribution in a ferrule-less, endodontically treated maxillary central incisor restored with post-cores made from six CAD/CAM materials.
2
Dentin stress remained similar across all materials, ranging from 24.7 to 25.3 MPa, despite large differences in post-core elastic modulus.
3
Increasing elastic modulus increased stress within the post-and-core system, ranging from 4.7 to 40 MPa, and at its cement line, ranging from 4.1 to 6.2 MPa.
4
Increasing post-core elastic modulus reduced stress at the crown-core cement line, with values ranging from 11.4 to 13.2 MPa.
5
The analysis used a 45° load of 100 N on the palatal surface and maximum principal stress criteria under bonded, isotropic, homogeneous, linearly elastic assumptions.

An endodontically treated maxillary central incisor without a ferrule, restored with an all-ceramic crown and CAD/CAM post-and-cores made of materials with different elastic moduli

Stress distribution in the crown-core cement line, post-and-core cement line and system, and root dentin under oblique loading

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2019-01-01
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GS de Andrade
JPM Tribst
AMO Dal Piva
Marco Antônıo Bottıno
ALS Borges
Luiz Felipe Valandro
Mutlu Özcan
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