评估由两种不同材料和不同桥体设计制成的种植体支撑固定部分修复体的抗骨折性

Mohamed Shaaban Othman, M. Abu-Eittah
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引用次数: 0

摘要

研究目的本研究旨在评估由两种不同材料(整体氧化锆和聚醚醚酮 (PEEK))构建的不同牙本质框架设计对种植体支持的固定部分修复体抗折性的影响。材料与方法:该研究评估了基台设计对四单元种植体支持固定局部义齿抗折性的影响;基台采用两种不同的设计替代第二前磨牙和第一磨牙:改良脊搭接设计和卫生设计。本研究共使用了 40 个种植体;种植体嵌入聚氨酯泡沫块(20 磅/立方英尺 (20PCF))中,以类似于支撑骨结构。试样根据结构材料分为两组,即整体氧化锆组(10 个)和 PEEK 组(10 个)。然后,再根据基台设计将试样分为两组,即改良脊搭接组(5 个)和卫生组(5 个)。所有试样均在电脑万能试验机上进行加载试验,直至发生断裂。结果统计结果显示,氧化锆和聚醚醚酮在不同的桥体设计中存在显著差异。单片氧化锆的测试结果高于聚醚醚酮(PEEK),P≤0.05。所有测试材料的咀嚼功能都在可接受范围内。结论:氧化锆和聚醚醚酮因其较高的断裂强度值而成为设计大跨度牙桥的首选材料。除了桥体设计,修复材料对抗折强度、材料行为和应力分布也有很大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ASSESSMENT OF FRACTURE RESISTANCE OF IMPLANT-SUPPORTED FIXED PARTIAL PROSTHESES CONSTRUCTED OF TWO DIFFERENT MATERIALS WITH DIFFERENT PONTIC DESIGNS
Objective: The aim of this study is to evaluate the effect of different pontic framework designs, constructed from two different materials: monolithic zirconia and Polyether ether ketone (PEEK), on the fracture resistance of implant supported fixed partial prosthesis. Material and Methods: The study conducted assess the effect of pontic design on the fracture resistance of a four units implant supported fixed partial denture; the pontic constructed replaces the second premolar and first molar with two different designs: modified ridge lap and sanitary designs. A total of forty implants were used in this research; the implants are embedded in poly-urethane foam blocks (20 pounds per cubic foot (20 PCF)) to resemble supporting bone structure. Specimens are divided according to material of construction into two groups, monolithic zirconia group (n=10) and PEEK group (n=10). Then, the specimens are sub-divided into two subgroups according to pontic design modified ridge lap group (n=5) and sanitary group (n=5). All specimens are subjected to loading test in a computerized universal testing machine until fracture occurs. Results: According to statistical results, there is a significant difference between the zirconia and PEEK in different pontic designs. The monolithic Zirconia displayed higher results the PEEK upon testing p≤0.05. All the tested materials were within the acceptable range for functioning under mastication. Conclusions: Zirconia and PEEK are materials of choice when designing a long span bridges due to their high fracture strength values. Aside from the pontic design, the restorative material has a great impact on the fracture resistance, behavior of the material and stress distribution.
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