首页> 外文期刊>American journal of dentistry >Resistance to degradation of bonded restorations to simulated caries-affected primary dentin.
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Resistance to degradation of bonded restorations to simulated caries-affected primary dentin.

机译:抵抗粘结修复物对模拟龋齿影响的初级牙本质降解的抵抗力。

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PURPOSE: To investigate the resistance to degradation of resin modified glass-ionomer cement (RMGIC) and adhesive/composite restorations in sound and simulated caries-affected dentin of primary teeth subjected to carious challenge using a pH-cycling model and load-cycling, by means of a microtensile test. METHODS: Occlusal cavities were prepared in 60 sound exfoliated primary second molars. Half the specimens were submitted to pH-cycling to induce simulated caries lesion. The teeth were randomly restored with one of the two materials: (1) a RMGIC (Vitremer) and (2) a total-etch adhesive system (Adper Single Bond 2) followed by resin composite (Filtek Z100). After storage in distilled water at 37 degrees C for 24 hours, control group specimens were subjected to test procedures while the specimens in the experimental groups were subjected to two different aging methods: load-cycling (50,000 cycles, 90N, 3Hz) or carious challenge (pH-cycling: alternately 8 hours in demineralizing and 16 hours in remineralizing solutions, for 10 days). Teeth were sectioned into 1 mm2 beams and tested to failure under tension. ANOVA and multiple-comparisons tests were used (P<0.05). RESULTS: Vitremer bond strength was not altered by the condition of dentin. Conversely, Adper Single Bond 2 showed significantly lower bond strength values when bonded to simulated caries-affected dentin. Load-cycling did not influence bond strength for any of the tested materials, while carious challenge resulted in a significant decrease in microtensile bond strengths of Adper Single Bond 2, but not of Vitremer restorations.
机译:目的:通过pH循环模型和负荷循环研究通过龋齿挑战的乳齿的完好和模拟龋蚀牙本质中的树脂改性玻璃离聚物水泥(RMGIC)和粘合/复合修复物的抗降解能力,方法如下:微拉伸试验的手段。方法:在60个声脱落的第一磨牙中准备咬合腔。一半标本经过pH循环诱导模拟龋齿病变。使用两种材料之一随机修复牙齿:(1)RMGIC(Vitremer)和(2)全蚀刻粘合剂系统(Adper Single Bond 2),然后是树脂复合材料(Filtek Z100)。在37摄氏度的蒸馏水中保存24小时后,对对照组样品进行测试程序,而对实验组中的样品进行两种不同的老化方法:负荷循环(50,000个循环,90N,3Hz)或龋齿(pH循环:在脱矿物质中交替进行8小时,在矿物质溶液中交替进行16小时,持续10天)。将牙齿切成1平方毫米的横梁,并在张力下测试其是否损坏。采用方差分析和多重比较检验(P <0.05)。结果:玻璃体粘结强度不受牙本质状况的影响。相反地​​,当与模拟龋齿影响的牙本质粘合时,Adper Single Bond 2表现出明显较低的粘合强度值。负载循环不影响任何测试材料的粘结强度,而剧烈的冲击导致Adper Single Bond 2的微拉伸粘结强度显着降低,但Vitremer修复体却没有降低。

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