Department of Prosthodontics, Faculty of Dentistry, Dicle University, Diyarbakır, Turkey.
Acta Odontol Scand. 2013 Jan;71(1):65-71. doi: 10.3109/00016357.2011.654240. Epub 2012 Mar 27.
The aim of this study was to evaluate the reinforcing effect of differently oriented fibers on the load-bearing capacity of three-unit fixed dental prostheses (FDPs).
Forty-eight composite FDPs were fabricated. Specimens were divided into eight groups (n = 6/group; codes 1-8). Groups 1 and 5 were plain restorative composites (Grandio and Z100) without fiber reinforcement, groups 2 and 6 were reinforced with a continuous unidirectional fiber substructure, groups 3 and 7 were reinforced with a continuous bidirectional fiber and groups 4 and 8 were reinforced with a continuous bidirectional fiber substructure and continuous unidirectional fiber. FDPs were polymerized incrementally with a handheld light curing unit for 40 s and statically loaded until final fracture.
Kruskal-Wallis analysis revealed that all groups had significantly different load-bearing capacities. Group 4 showed the highest mean load-bearing capacity and Group 7 the lowest.
The results of this study suggest that continuous unidirectional fiber increased the mechanical properties of composite FDPs and bidirectional reinforcement slowed crack propagation on abutments.
本研究旨在评估不同取向纤维对三单位固定义齿修复体(FDP)承载能力的增强效果。
制作了 48 个复合 FDP。将样本分为 8 组(每组 6 个;代码 1-8)。组 1 和 5 为无纤维增强的普通修复复合材料(Grandio 和 Z100),组 2 和 6 用连续单向纤维增强体增强,组 3 和 7 用连续双向纤维增强体增强,组 4 和 8 用连续双向纤维增强体和连续单向纤维增强体增强。FDP 采用手持光固化装置分 40 s 进行增量聚合,然后进行静态加载直至最终断裂。
Kruskal-Wallis 分析显示,所有组的承载能力均有显著差异。组 4 的平均承载能力最高,组 7 最低。
本研究结果表明,连续单向纤维增加了复合 FDP 的力学性能,而双向增强体减缓了基牙上的裂纹扩展。