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Effect of Nano-Filled Protective Coating and Different pH Enviroment on Wear Resistance of New Glass Hybrid Restorative Material

机译:纳米填充保护涂层和不同pH环境对新型玻璃杂交恢复材料耐磨性的影响

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摘要

The purpose of the study was to determine the wear rate of Equia Forte HT Fil with Equia Forte Coat or without coating and compare it with Fuji IX GP high-viscosity glass ionomer cement (GIC) in conditions with acid load or at neutral pH. The samples were stored for 7 days: (1) in artificial saliva, (2) in artificial saliva and cyclically exposed to low pH, and (3) in distilled water and cyclically exposed to low pH. Wear was determined by measuring the difference in mass before and after brushing in an abrasion testing device. The wear of Fuji IX GP was significantly higher than that of Equia Forte HT Fil with or without coating (p = 0.000). The difference between Equia Forte HT Fil with and without Coat was not statistically significant (p < 0.803). The differences in wear resistance between samples stored in saliva and in distilled water were not significant (p = 0.588). Periodic exposure to the low pH solution significantly affected the wear resistance of all materials (p = 0.000). Equia Forte HT Fil was more resistant to wear than Fuji IX GP in all storage conditions. A resinous coat did not significantly increase wear resistance.
机译:该研究的目的是确定Equia Forte HT FIL的磨损率与Equia Forte涂层或没有涂层,并在酸负载或中性pH下与富士IX GP高粘度玻璃离聚物水泥(GIC)进行比较。将样品储存7天:(1)在人工唾液中,(2),在人工唾液中,并在蒸馏水中循环暴露于低pH,并循环暴露于低pH。通过在磨损试验装置中刷涂之前和之后的质量差异来确定磨损。富士IX GP的磨损明显高于Equia Forte HT Fil,或没有涂层(P = 0.000)。 EQUIA Forte HT FIL与无涂层之间的差异无统计学意义(P <0.803)。唾液中储存在唾液和蒸馏水中的样品之间的耐磨性的差异不显着(p = 0.588)。定期暴露于低pH溶液显着影响所有材料的耐磨性(P = 0.000)。 Equia Forte HT FIL在所有存储条件下比FUJI IX GP更耐磨。树脂涂层没有显着提高耐磨性。

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