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一项关于在无箍效应情况下,不同弹性模量的CAD/CAM材料制成的桩核对粘结层和牙根牙本质应力分布的研究。

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.

作者信息

de Andrade Guilherme-Schmidt, Tribst João-Paulo-Mendes, Dal Piva Amanda-Maria-de Oliveira, Bottino Marco-Antonio, Borges Alexandre-Luiz-Souto, Valandro Luiz-Felipe, Özcan Mutlu

机构信息

DDs, MSc Student in Prosthodontics, Department of Dental Materials and Proshodontics, São Paulo State University (Unesp), Institute of Science and Technology, São José dos Campos / SP, Brazil. Address: Av Engenheiro Francisco José Longo, 777, Jardim São Dimas, São José dos Campos, São Paulo, Brazil.

DDs, MSc, PhD Student, Department of Dental Materials and Proshodontics, São Paulo State University (Unesp), Institute of Science and Technology, São José dos Campos / SP, Brazil. Address: Av Engenheiro Francisco José Longo, 777, Jardim São Dimas, São José dos Campos, São Paulo, Brazil.

出版信息

J Clin Exp Dent. 2019 Jan 1;11(1):e1-e8. doi: 10.4317/jced.55295. eCollection 2019 Jan.

Abstract

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

Post-and-core made by CAD/CAM seems to be an efficient treatment alternative, since it is a conservative approach, promotes better aesthetic quality and it allows the control of the cement line thickness. Endodontically treated teeth, Post-and-core technique, Ceramic crown, Finite element analysis, Biomimetics.

摘要

背景

运用有限元分析,评估在无箍效应情况下,由六种具有不同弹性模量的CAD/CAM材料制成的不同桩核在上颌中切牙中的应力分布情况。

材料与方法

在Rhinoceros(5.0 SR8,McNeel)软件中对上颌中切牙进行根管治疗后用全瓷冠修复的三维模型进行建模。在ANSYS 17.2(ANSYS公司)中分析这些几何模型,考虑各向同性、均匀、线性弹性材料以及完全粘结接触。桩核的弹性模量(E)定义了要比较的组别:纳米陶瓷树脂(E = 12.8GPa);复合树脂(E = 16GPa);混合陶瓷(E = 34.7GPa);二硅酸锂(E = 95GPa);钛(Ti-Al6-V4)(E = 112GPa);以及Y-TZP材料(E = 209.3GPa)。模型在皮质骨处受到约束,并在切牙腭面施加(45°/100 N)载荷。通过最大主应力准则分析牙冠-桩核粘结线、桩核粘结线、桩核系统和牙本质的应力分布。

结果

牙冠-桩核粘结线处的应力分布(11.4 - 13.2 MPa)与桩核弹性模量的增加成反比,而在桩核(4.7 - 40 MPa)和粘结线(4.1 - 6.2 MPa)处则成正比。所有组别的牙本质应力分布相似(24.7 - 25.3)。

结论

CAD/CAM制作的桩核似乎是一种有效的治疗选择,因为它是一种保守的方法,能提升美学质量,并可控制粘结线厚度。根管治疗牙、桩核技术、陶瓷冠、有限元分析、仿生学。

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