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前牙陶瓷树脂粘结固定局部义齿的结构完整性:有限元分析研究

Structural Integrity of Anterior Ceramic Resin-Bonded Fixed Partial Denture: A Finite Element Analysis Study.

作者信息

Osman Mas Linda Mohd, Lim Tong Wah, Chang Hung-Chih, Ab Ghani Amir Radzi, Tsoi James Kit Hon, Ab Ghani Siti Mariam

机构信息

Centre of Restorative Dentistry Studies, Faculty of Dentistry, Universiti Teknologi MARA, Sungai Buloh 47000, Selangor, Malaysia.

Division of Restorative Dental Sciences, Faculty of Dentistry, The University of Hong Kong, Hong Kong SAR, China.

出版信息

J Funct Biomater. 2023 Feb 15;14(2):108. doi: 10.3390/jfb14020108.

Abstract

This study was conducted as a means to evaluate the stress distribution patterns of anterior ceramic resin-bonded fixed partial dentures derived from different materials and numerous connector designs that had various loading conditions imposed onto them through the utilization of the finite element method. A finite element model was established on the basis of the cone beam computed tomography image of a cantilevered resin-bonded fixed partial denture with a central incisor as an abutment and a lateral incisor as a pontic. Sixteen finite element models representing different conditions were simulated with lithium disilicate and zirconia. Connector height, width, and shape were set as the geometric parameters. Static loads of 100 N, 150 N, and 200 N were applied at 45 degrees to the pontic. The maximum equivalent stress values obtained for all finite element models were compared with the ultimate strengths of their materials. Higher load exhibited greater maximum equivalent stress in both materials, regardless of the connector width and shape. Loadings of 200 N and 150 N that were correspondingly simulated on lithium disilicate prostheses of all shapes and dimensions resulted in connector fractures. On the contrary, loadings of 200 N, 150 N, and 100 N with rectangular-shaped connectors correspondingly simulated on zirconia were able to withstand the loads. However, two of the trapezoidal-shaped zirconia connectors were unable to withstand the loads and resulted in fractures. It can be deduced that material type, shape, and connector dimensions concurrently influenced the integrity of the bridge.

摘要

本研究旨在通过有限元方法,评估不同材料及多种连接体设计的前牙陶瓷树脂粘结固定局部义齿在施加各种加载条件下的应力分布模式。基于以中切牙为基牙、侧切牙为桥体的悬臂式树脂粘结固定局部义齿的锥形束计算机断层扫描图像建立有限元模型。用二硅酸锂和氧化锆模拟了代表不同条件的16个有限元模型。将连接体的高度、宽度和形状设置为几何参数。在与桥体呈45度角的方向上施加100 N、150 N和200 N的静载荷。将所有有限元模型获得的最大等效应力值与其材料的极限强度进行比较。无论连接体宽度和形状如何,两种材料中较高的载荷均表现出更大的最大等效应力。在所有形状和尺寸的二硅酸锂修复体上相应模拟的200 N和150 N载荷导致连接体断裂。相反,在氧化锆上相应模拟的200 N、150 N和100 N载荷以及矩形连接体能够承受这些载荷。然而,两个梯形氧化锆连接体无法承受载荷并导致断裂。可以推断,材料类型、形状和连接体尺寸共同影响桥体的完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/987a/9962904/278b8e2874ec/jfb-14-00108-g001.jpg

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