[恒牙二硅酸锂冠三种修整线的压应力:有限元分析]。

Revista Cientifica Odontologica Pub Date : 2024-03-30 eCollection Date: 2024-01-01 DOI:10.21142/2523-2754-1201-2024-182
Joshua Yanapa Márquez, Martín Andrés Chávez-Méndez
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引用次数: 0

摘要

导言:在口腔修复中,陶瓷修复体的使用被广泛接受,因为它在美学上能够模仿牙体组织的自然度,材料寿命长,与金属结构的牙冠相比,边缘密合度更高。终止线是一种生物制剂,其作用是最大限度地减少边缘封闭的颈部开口。因此,分析修复材料在压缩力作用下的行为可以降低断裂的风险,提高治疗的成功率:比较采用三种不同加工方法的二硅酸锂冠的压应力:模拟右下第一磨牙的牙体预备,采用倒角(0.6 毫米)、肩线(0.5 毫米)和深倒角(0.5 毫米)三种表面处理线。使用 SolidWorks®️ 2017 版软件,收集了最大应力、最小应力和压缩力位置的兆帕测量值:倒角型端接线(0.6 毫米)获得的压应力低于其他两种肩型端接线(0.5 毫米)和深倒角(0.5 毫米):结论:倒角型终端线(0.6 毫米)的受力分布更好,因此在使用二硅酸锂冠时,选择这种终端线的可靠性更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

[Compressive stress in three types of finishing lines with lithium disilicate crowns in permanent teeth: finite element analysis].

[Compressive stress in three types of finishing lines with lithium disilicate crowns in permanent teeth: finite element analysis].

[Compressive stress in three types of finishing lines with lithium disilicate crowns in permanent teeth: finite element analysis].

[Compressive stress in three types of finishing lines with lithium disilicate crowns in permanent teeth: finite element analysis].

Introduction: In oral rehabilitation, the use of ceramic restorations is widely accepted due to its aesthetic capacity to mimic the naturalness of the dental tissue, provide longevity of the material, and present a greater marginal fit compared to crowns with a metal structure. Termination lines are biological preparations whose function is to minimize the cervical opening of the marginal seal. Consequently, analyzing the behavior of restorative materials under compressive forces decreases the risk of fracture and increases the success of the treatment.

Objective: To compare the compressive stresses of lithium disilicate crowns with three different finishing lines.

Methodology: In silico study of the simulation of a dental preparation on a lower right first molar with chamfer (0.6 mm), shoulder (0.5 mm) and deep chamfer (0.5 mm) finish lines. Using the SolidWorks®️ version 2017 software, the maximum stresses, minimum stresses, and location of the compressive force were collected on the Megapascal (Mpa) measurement scale.

Results: The chamfer type termination line (0.6mm) obtained a lower compressive stress compared to the other two shoulder type termination lines (0.5mm) and deep chamfer (0.5mm).

Conclusions: It was shown that the chamfer type finishing line (0.6mm) presented a better force distribution, determining greater reliability in the selection of this finishing line with the use of a lithium disilicate crown in a unitary manner.

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