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In Vitro Chewing Simulation Mode! Influence on the Adhesive-Tooth Structure Interface

机译:体外咀嚼模拟模式! 对胶牙结构界面的影响

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Loss of hard dental tissues of the posterior teeth during caries removal represents an important issue for conservative dentistry. The use of direct dental biomaterials in this case have to satisfy the requirements of the restored area. The studies have shown higher values of chewing forces at the molar teeth level (20-120N) compared to other teeth [1,2]. Thus, for a long-term clinical success the dental biomaterials have to assure a good marginal sealing and a high resistance to thermal and mechanical stresses developed in the lateral zones of the oral cavity [3]. The aim of this study was carried out to assess the effect of an in vitro chewing simulation model on the adhesively-bonded resin composite restorations. Standardized extended proximal cavities were prepared and restored in forty five sound human third molars. Three in vitro aging methods: a chewing simulation model (mechanical cycling and periodontal ligament simulation) (MC+PDL), thermocycling (TC) and distilled water storage (WS), were used to test the marginal sealing behavior of two adhesive techniques (an adhesive-free flowable resin composite and a self-etch all-in-one adhesive system). A weight-controlled dual-axis chewing device (CS-4.2, SD Mechatronik, Germany) was used for mechanical testing (MC) of the samples. Significantly higher marginal leakage values were observed for the chewing simulation model (MC) compared to TC and WS groups (p<0.05). No statistical correlations were found with regard to aging methods for the tracer's infiltration of the two adhesive techniques. The dual-axis chewing simulator (CS-4.2) due to its facile mechanical adjustment system may be used for different other in vitro aging models or simulated clinical settings.
机译:在龋齿中,后牙的硬牙齿组织的丧失代表了保守牙科的重要问题。在这种情况下使用直接牙科生物材料必须满足恢复区域的要求。与其他牙齿相比,研究表明,与其他牙齿相比,摩尔齿水平(20-120N)的咀嚼力的较高值[1,2]。因此,对于长期的临床成功,牙科生物材料必须确保良好的边缘密封和高抗体腔内横向区域中产生的热和机械应力的高抗性[3]。本研究的目的是为了评估体外咀嚼模拟模型对粘结树脂复合修复体的影响。制备标准化的延长近端腔,并以四十五个声音人的第三磨牙制备和恢复。三种体外老化方法:使用咀嚼模拟模型(机械循环和牙周韧带模拟)(MC + PDL),热循环(TC)和蒸馏水(WS)来测试两个粘合技术的边缘密封行为(AN无粘合的可流动树脂复合材料和自蚀刻一体化粘合剂系统)。一种重控制的双轴咀嚼装置(CS-4.2,SD Mechatronik,德国)用于样品的机械测试(MC)。与TC和WS组相比,咀嚼模拟模型(MC)观察到显着较高的边缘泄漏值(P <0.05)。对于Tracer对两个粘合技术的渗透的老化方法,没有发现统计相关性。由于其容易机械调节系统,双轴咀嚼模拟器(CS-4.2)可用于不同的其他体外老化模型或模拟临床环境。

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