Tsujimoto Akimasa, Barkmeier Wayne W, Takamizawa Toshiki, Watanabe Hidehiko, Johnson William W, Latta Mark A, Miyazaki Masashi
Department of Operative Dentistry, Nihon University School of Dentistry.
Department of General Dentistry, Creighton University School of Dentistry.
J Oral Sci. 2018 Mar 24;60(1):29-36. doi: 10.2334/josnusd.16-0815. Epub 2018 Jan 29.
This study evaluated the simulated localized wear of resin luting cements for universal adhesive systems using different curing modes. Five resin luting cements for universal adhesive systems were evaluated and subsequently subjected to wear challenge in a Leinfelder-Suzuki wear simulation device. Overall, 20 specimens from each resin luting cement were photo-cured for 40 s (dual-cure group), and 20 specimens of each material were not photo-cured (chemical-cure group). Simulated localized wear was generated using a stainless steel ball-bearing antagonist in water slurry of polymethylmethacrylate beads. In addition, scanning electron microscopy (SEM) observations of resin luting cements and wear facets were conducted. Significant differences in simulated wear and SEM observations of wear facets were evident among the materials in the dual- and chemical-cure groups. The simulated wear and SEM observations of wear facets of G-CEM LinkForce and Panavia V5 were not influenced by the curing mode. SEM observations of resin luting cements were material dependent. In most cases, dual curing appears to ensure greater wear resistance of resin luting cements than chemical curing alone. The wear resistance of some resin luting cements appears to be material dependent and is not influenced by the curing mode.
本研究评估了使用不同固化模式的通用型粘结系统用树脂粘结水门汀的模拟局部磨损情况。对五种通用型粘结系统用树脂粘结水门汀进行了评估,随后在Leinfelder-Suzuki磨损模拟装置中对其进行磨损测试。总体而言,每种树脂粘结水门汀的20个样本进行光固化40秒(双重固化组),每种材料的20个样本不进行光固化(化学固化组)。在聚甲基丙烯酸甲酯珠粒的水浆中使用不锈钢滚珠作为对抗体产生模拟局部磨损。此外,对树脂粘结水门汀和磨损面进行了扫描电子显微镜(SEM)观察。在双重固化组和化学固化组的材料之间,模拟磨损和磨损面的SEM观察结果存在显著差异。G-CEM LinkForce和Panavia V5的模拟磨损和磨损面的SEM观察结果不受固化模式的影响。树脂粘结水门汀的SEM观察结果取决于材料。在大多数情况下,双重固化似乎比单独的化学固化能确保树脂粘结水门汀具有更高的耐磨性。一些树脂粘结水门汀的耐磨性似乎取决于材料,且不受固化模式的影响。